WO2024073902A1 - 颈椎理疗设备 - Google Patents

颈椎理疗设备 Download PDF

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Publication number
WO2024073902A1
WO2024073902A1 PCT/CN2022/125992 CN2022125992W WO2024073902A1 WO 2024073902 A1 WO2024073902 A1 WO 2024073902A1 CN 2022125992 W CN2022125992 W CN 2022125992W WO 2024073902 A1 WO2024073902 A1 WO 2024073902A1
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WIPO (PCT)
Prior art keywords
light
shell
emitting
shaped bearing
arc
Prior art date
Application number
PCT/CN2022/125992
Other languages
English (en)
French (fr)
Inventor
黄鹏
汪平贵
肖润才
Original Assignee
深圳市盈择科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Priority claimed from CN202222651557.4U external-priority patent/CN219184377U/zh
Priority claimed from CN202222656438.8U external-priority patent/CN219231235U/zh
Application filed by 深圳市盈择科技有限公司 filed Critical 深圳市盈择科技有限公司
Publication of WO2024073902A1 publication Critical patent/WO2024073902A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G9/00Bed-covers; Counterpanes; Travelling rugs; Sleeping rugs; Sleeping bags; Pillows
    • A47G9/10Pillows
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F5/00Orthopaedic methods or devices for non-surgical treatment of bones or joints; Nursing devices; Anti-rape devices
    • A61F5/01Orthopaedic devices, e.g. splints, casts or braces
    • A61F5/04Devices for stretching or reducing fractured limbs; Devices for distractions; Splints
    • A61F5/042Devices for stretching or reducing fractured limbs; Devices for distractions; Splints for extension or stretching

Definitions

  • the present application relates to the technical field of health care and rehabilitation equipment, and in particular to a cervical vertebrae physical therapy device.
  • cervical curvature traction device to use the head's own weight to traction to improve the cervical curvature has a significant effect.
  • Most of the existing horizontal cervical traction pillows are mainly based on single horizontal traction or traction with additional heating and massage functions.
  • Some physical therapy equipment will place a light-emitting component for phototherapy of the user's neck.
  • the straight shape cannot match the curve of the human neck.
  • the straight shape can only irradiate a partial area and cannot fully and accurately cover the phototherapy area.
  • the radiation dose control is not accurate, which makes its physical therapy effect limited, resulting in the user still having to endure discomfort and pain for a long time after use.
  • the main purpose of this application is to provide a cervical vertebrae therapy device, which aims to simultaneously achieve red light infrared phototherapy and cervical curvature traction through the cervical vertebrae therapy device. While gradually correcting the curvature and physiological state of the cervical spine itself, it can also perform PBM photobiological irradiation therapy by precisely controlling the red light infrared irradiation position and irradiation dose, so as to achieve the effect of helping to reduce inflammation, repair damaged muscles and nerves, and provide better pain relief, thereby improving the user's discomfort symptoms in a relatively short period of time, thereby improving the physiotherapy effect.
  • a cervical vertebrae physiotherapy device comprising:
  • a shell structure wherein the shell structure has a receiving side surface, the shell structure includes a bottom shell and an upper cover assembly, the upper cover assembly is connected to the bottom shell and encloses a cavity, a butterfly-shaped bearing surface is provided on the side of the bottom shell facing the receiving side surface, and the butterfly-shaped bearing surface is arranged adjacent to the upper cover assembly, a saddle-shaped bearing surface is provided on the side of the upper cover assembly facing away from the bottom shell, the saddle-shaped bearing surface has a light-transmitting area, the saddle-shaped bearing surface extends toward the receiving side surface, and is partially located at the center of the butterfly-shaped bearing surface, so that the edge of the saddle-shaped bearing surface cooperates with the butterfly-shaped bearing surface to form a positioning portion, the positioning portion is used to carry and position the user's shoulders, and the saddle-shaped bearing surface is used to carry the user's neck and back; and
  • a light emitting device is disposed in the cavity and corresponds to the light transmitting area.
  • the saddle-shaped bearing surface includes a recessed portion and two raised portions connected to the recessed portion, the two raised portions are symmetrically arranged on both sides of the recessed portion, the two raised portions are hemispherical on the side facing away from the bottom shell, and the connection between the raised portion and the recessed portion is smoothly transitioned, the recessed portion is located in the center of the saddle-shaped bearing surface, the recessed portion extends toward one side of the receiving side surface, and forms an arc-shaped bearing portion, the arc-shaped bearing portion is located in the center of the butterfly-shaped bearing surface, the light-transmitting area is arranged in the recessed portion, and the two sides of the arc-shaped bearing portion are respectively smoothly connected to the edges of the two raised portions to form an arc-shaped positioning flange, and the arc-shaped positioning flange cooperates with the butterfly-shaped bearing surface to form the positioning portion.
  • the upper cover assembly includes a mounting shell and a traction shell, the mounting shell is connected to the bottom shell, the mounting shell includes two protrusions and a sinking portion located between the two protrusions, the sinking portion is provided with a through hole connected to the cavity, the sinking portion extends toward one side of the receiving side to form the arc-shaped bearing portion, the traction shell covers the through hole and is connected to the mounting shell, the side of the traction shell facing away from the cavity is formed with the recessed portion smoothly transitioned to the protrusion, and the traction shell is formed with the light-transmitting area.
  • the bottom shell includes a main body and two arc-shaped portions, the two arc-shaped portions are arranged on one side of the main body facing the receiving side, and are symmetrically arranged, and the two arc-shaped portions cooperate to form a recessed groove, the arc-shaped bearing portion is accommodated and limited in the recessed groove, and the arc-shaped bearing portion, the edge of the mounting shell and the two arc-shaped portions jointly form the positioning portion.
  • the cervical vertebrae therapy device further includes a foot pad assembly, the foot pad assembly includes a pad and a magnetic component, the pad is magnetically connected to a side of the bottom shell facing away from the upper cover assembly via the magnetic component.
  • the magnetic attraction member includes:
  • a first magnetic member, the backing plate is provided with a first mounting groove, and the first magnetic member is arranged in the first mounting groove;
  • a second magnetic member the bottom shell is provided with a plurality of second mounting grooves corresponding to the first mounting grooves, and the second magnetic member is arranged in the second mounting grooves;
  • the first magnetic member is magnetically connected to the second magnetic member, so that the pad is installed on the side of the bottom shell facing away from the upper cover assembly.
  • the foot pad assembly is provided in plurality, the plurality of foot pad assemblies have the same thickness, and the plurality of foot pad assemblies are provided on the same side of the bottom shell;
  • the thickness of the pad is 5 mm to 10 mm;
  • the light emitting device comprises:
  • a mounting frame the mounting frame is arranged in the cavity and is installed on the side of the bottom shell facing the upper cover assembly, the mounting frame includes a main body and an extension portion, the main body is an arched structure and is formed with an arched surface, and the extension portion is arranged at one end of the main body; and
  • a light-emitting component wherein the light-emitting component is arranged on the side of the mounting frame facing the light-transmitting area, and the light-emitting component includes a first light-emitting component and a second light-emitting component, wherein the first light-emitting component is arranged on the arch surface, and the first light-emitting component extends along the arch surface toward the extension portion, and the second light-emitting component is arranged on the extension portion and is located on the same side as the arch surface.
  • the extension portion is formed with a flat surface, and the flat surface is connected to the arched surface;
  • the first light emitting component is disposed on a side of the arched surface facing the light transmission area, and the second light emitting component is disposed on a side of the flat surface facing the light transmission area.
  • the main body includes a first curved surface and a second curved surface connected to each other, the first curved surface and the second curved surface form the arched surface, the arched surface is provided with a placement groove arranged along the arc of the arched surface, and the first light-emitting component is limited to the placement groove.
  • the placement groove includes a plurality of first limiting grooves, the plurality of first limiting grooves extend from the end of the second arcuate surface facing away from the first arcuate surface to the extension portion, and are connected to the extension portion, and the plurality of first limiting grooves are evenly spaced and distributed along the axial direction of the arcuate surface, and are parallel to each other;
  • the first light-emitting member includes a plurality of light-emitting bars, the number of the light-emitting bars is the same as the number of the first limiting grooves, and the light-emitting bars are arranged along the arc direction of the arched surface so that each of the light-emitting bars is limited in one of the first limiting grooves.
  • a plurality of red infrared lamp beads are evenly and spaced apart on one side surface of the light-emitting bar along the arc direction of the arched surface, and the other side of the light-emitting bar is bonded to the bottom wall of the first limiting groove by an adhesive, so that the light-emitting bar is limited in the first limiting groove;
  • each of the light strips is provided with 5 to 10 red light infrared lamp beads.
  • the extension portion is provided with a second limiting groove, the second limiting groove is communicated with a plurality of the first limiting grooves, and the second light-emitting element is limitedly disposed in the second limiting groove.
  • a through hole is opened in the center of the bottom wall of the second limiting groove, one end of the second light-emitting component is passed through the through hole, and the other end of the second light-emitting component is abutted against the bottom wall of the second limiting groove, so that the second light-emitting component is installed on the extension portion.
  • the second light-emitting member includes a light-emitting board and a positioning block, a plurality of red light infrared lamp beads are arranged on one side of the light-emitting board, the periphery of the other side of the light-emitting board abuts against the bottom wall of the second limiting groove, the positioning block is arranged at the center of the side where the light-emitting board abuts against the bottom wall of the second limiting groove, and the positioning block is penetrated through the through hole to limit and fix the second light-emitting member on the extension portion;
  • the second light emitting element is provided with a plurality of red light infrared lamp beads, and the plurality of red light infrared lamp beads are arranged in a rectangular array;
  • the second light emitting component is provided with a plurality of red light infrared lamp beads, and the number of the red light infrared lamp beads is 5 to 10.
  • the wavelength of red light in the red infrared lamp bead is 630nm to 700nm, and the light irradiance is 20mw/cm 2 to 150mw/cm 2 ;
  • the infrared wavelength of the red light infrared lamp bead is 810nm to 890nm, and the light irradiance is 50mw/ cm2 to 150mw/ cm2 .
  • the number of chips of the red light infrared lamp bead is single chip, double chips or triple chips.
  • the bottom shell and the upper cover assembly enclose a through groove communicating with the cavity, the through groove is arranged adjacent to the receiving side surface, and the notch direction of the through groove is parallel to the receiving side surface;
  • the cervical vertebrae physiotherapy device further comprises a control component, wherein the control component comprises:
  • a key shell the key shell is inserted into the through slot and is clamped with the housing structure, and the key shell is provided with a key slot;
  • a key plate the key plate being mounted on a side of the key shell facing the cavity, the key plate being electrically connected to the light emitting component, and a key portion being provided on a side of the key plate facing the key shell;
  • a guide key one end of the guide key is inserted into the key slot and is engaged with the key shell, and the other end of the guide key is connected to the key part.
  • the cervical physiotherapy device also includes a circuit board, which is mounted on the bottom shell and is electrically connected to the light-emitting device and the control component so that the control component controls and adjusts the light-emitting device.
  • the cervical vertebrae therapy device of the technical solution of the present application repairs the physiological curvature of the user's cervical vertebrae by setting up a curved shell structure, and a supporting side is provided on one side of the shell structure for supporting the shoulders and back of the user;
  • the shell structure includes an upper cover assembly and a bottom shell, and the upper cover assembly is a saddle-shaped bearing surface with high sides and a low middle, so that when the user uses the cervical vertebrae therapy device in a supine position, the cervical vertebrae can be placed in the saddle-shaped bearing surface.
  • the saddle-shaped bearing surface supports and positions the user's neck and back, fixes the user's neck in the physiological curvature recovery position, and then uses the gravity of the user's head to gently traction the neck.
  • the bottom shell is provided with a butterfly-shaped bearing surface on one side of the receiving side, which is in contact with the user's shoulder and is symmetrically distributed.
  • the edge of the butterfly-shaped bearing surface and the saddle-shaped bearing surface together form a positioning part for positioning the user's shoulder.
  • the cervical spine physiotherapy equipment is also provided with a light-emitting device, which is arranged in the cavity formed by the upper cover assembly and the bottom shell.
  • the light-emitting device can accurately control the red light infrared irradiation position and irradiation dose, and perform PBM photobiological irradiation therapy on the user's neck through the light-transmitting area to achieve the effect of relieving pain and repairing damaged muscles and nerves.
  • FIG1 is a schematic structural diagram of an embodiment of a cervical vertebra physiotherapy device of the present application.
  • FIG2 is a schematic structural diagram of an embodiment of a housing structure of the present application.
  • FIG3 is a schematic structural diagram of an embodiment of a light emitting device of the present application.
  • FIG. 4 is a schematic structural diagram of an embodiment of a light emitting device of the present application.
  • connection can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly defined.
  • fixation can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly defined.
  • cervical curvature traction device to use the head's own weight to traction to improve the cervical curvature has a significant effect.
  • Most of the existing horizontal cervical traction pillows are mainly based on single horizontal traction or traction with additional heating and massage functions.
  • Some physical therapy equipment will place a light-emitting component for phototherapy of the user's neck.
  • the straight shape cannot match the curve of the human neck.
  • the straight shape can only irradiate a partial area and cannot fully and accurately cover the phototherapy area.
  • the radiation dose control is not accurate, which makes its physical therapy effect limited, resulting in the user still having to endure discomfort and pain for a long time after use.
  • the present application proposes a cervical vertebra physiotherapy device 100.
  • the cervical vertebra physiotherapy device 100 through the combination of the saddle-shaped bearing surface 133 and the butterfly-shaped bearing surface 123, allows the user to restore the physiological curvature of the cervical spine when the user pulls the cervical spine through the gravity of the head.
  • the user's shoulder also has a certain positioning and bearing function, thereby improving the effect of the cervical vertebra physiotherapy device 100.
  • the cervical vertebra physiotherapy device 100 is also provided with a light-emitting device 2, which is used to perform phototherapy on the user's neck, thereby achieving the effect of helping to reduce inflammation, repair damaged muscles and nerves, and provide better pain relief, and improve the user's discomfort symptoms in a relatively short time.
  • the cervical vertebrae therapy device 100 includes a shell structure 1 and a light emitting device 2.
  • the shell structure 1 has a receiving side 11.
  • the shell structure 1 includes a bottom shell 12 and an upper cover assembly 13.
  • the upper cover assembly 13 is connected to the bottom shell 12 and encloses a cavity 14.
  • the bottom shell 12 is provided with a butterfly-shaped bearing surface 123 on one side facing the receiving side 11, and the butterfly-shaped bearing surface 123 is adjacent to the upper cover assembly 13.
  • the upper cover assembly 13 is facing away from the bottom shell 12.
  • a saddle-shaped bearing surface 133 is provided, and the saddle-shaped bearing surface 133 has a light-transmitting area.
  • the saddle-shaped bearing surface 133 extends toward the receiving side surface 11 and is partially located in the center of the butterfly-shaped bearing surface 123, so that the edge of the saddle-shaped bearing surface 133 cooperates with the butterfly-shaped bearing surface 123 to form a positioning portion 111.
  • the positioning portion 111 is used to support and position the user's shoulders, and the saddle-shaped bearing surface 133 is used to support the user's neck and back.
  • the light-emitting device 2 is arranged in the cavity 14 and is arranged corresponding to the light-transmitting area.
  • the housing structure 1 has a receiving side surface 11 in contact with the user, and the receiving side surface 11 is arranged on a side of the housing structure 1 perpendicular to the plane on which it is placed.
  • the housing structure 1 is composed of a bottom shell 12 placed on a plane and an upper cover assembly 13 covering the bottom shell 12.
  • a butterfly-shaped bearing surface 123 is arranged on the side of the bottom shell 12 facing the receiving side surface 11, that is, the side of the bottom shell 12 in contact with the user, and the edge of the butterfly-shaped bearing surface 123 is connected to the upper cover assembly 13.
  • the butterfly-shaped bearing surface 123 is arranged on one side of the supporting side and extends symmetrically to both sides on the bottom shell 12, and is used to bear and position the user's shoulders.
  • the butterfly-shaped bearing surface 123 fits the shape of the user's shoulders, and can better position and bear the user's shoulders, making it easier for the cervical vertebrae physiotherapy device 100 to pull the user's neck.
  • the upper cover assembly 13 is shaped like a saddle surface, and a saddle-shaped bearing surface 133 is provided on the side of the upper cover assembly 13 facing away from the bottom shell 12.
  • the saddle-shaped bearing surface 133 has a special shape with a low middle and high sides, and the lower middle position also extends in a direction perpendicular to the higher positions on both sides to form a smooth saddle surface shape, so that when the user's neck is placed in the upper cover assembly with the saddle-shaped bearing surface 133, the lower position of the saddle-shaped bearing surface 133 has a good wrapping property for the user's neck, so that the user's neck is completely placed and positioned in the center of the saddle-shaped bearing surface 133.
  • the curvature of the lower middle position is set with reference to the normal curve of the human cervical spine.
  • the curvature can help the user's cervical spine restore the normal physiological curvature.
  • the user's head naturally falls through the curvature, so that the cervical spine gradually fits closely to the curvature, continuously pulling the user's cervical spine, improving the physical therapy effect, and restoring the normal curve and physiological state of the cervical spine.
  • the central area of the saddle-shaped bearing surface 133 extends toward the receiving side surface 11 against which the user rests, and eventually extends beyond the receiving side surface 11, and is located in the middle of the symmetrically distributed butterfly-shaped bearing surface 123, so that the edge of the saddle-shaped bearing surface 133 and the butterfly-shaped bearing surface 123 cooperate to form a positioning portion 111.
  • the portion of the saddle-shaped bearing surface 133 extending toward the receiving side surface 11 is used to support the user's back. Since the area that the user's back needs to bear is relatively large, the extended portion also extends further beyond the receiving side surface 11. In addition, according to the physiological structure of the back when the human body lies on its back, the extended portion is designed to gradually increase in height from the placement plane to the lowest point of the saddle-shaped bearing surface 133, and has a smooth periphery.
  • the positioning part 111 is used to support and position the user's shoulders, so that when the user uses the gravity of the head to naturally fall down and drive the cervical spine to bend to restore the physiological curvature, the positioning part 111 provides a reaction force by closely contacting the user's shoulders to prevent the cervical vertebrae physiotherapy device 100 from sliding, thereby improving the traction effect on the neck and the overall physiotherapy effect.
  • the setting of the supporting side 11 and the positioning part 111 can help the user find a reasonable horizontal traction position at the first time, so that the user's neck is placed in the center of the saddle-shaped bearing surface 133 of the cervical vertebrae physiotherapy device 100 to improve the physiotherapy effect.
  • the cervical vertebra physiotherapy device 100 further includes a light emitting device 2.
  • the upper cover assembly 13 and the bottom shell 12 enclose a cavity 14.
  • the light emitting device 2 is fixed to the side of the bottom shell 12 facing the upper cover assembly and is located in the cavity 14.
  • the saddle-shaped bearing surface 133 is provided with a light-transmitting area at a lower central position corresponding to the light emitting device 2, and the light-transmitting area can transmit the light emitted by the light emitting device 2 to the neck of the user.
  • the light emitting device 2 performs photophysical therapy on the user's neck through red light and infrared light of specific wavelength and illumination amplitude, which can relieve the user's pain, repair the user's damaged muscles and nerves, and work together with the arc-shaped traction part of the saddle-shaped bearing surface 133 to repair the physiological curvature of the user's cervical spine and improve the user's physiological state.
  • the upper cover assembly 13 with a light-transmitting area should have a light transmittance greater than or equal to 70%.
  • the cervical vertebrae therapy device 100 of the technical solution of the present application is provided with a curved shell structure 1 to repair the physiological curvature of the user's cervical spine, and a supporting side surface 11 is provided on one side of the shell structure for supporting the shoulders and back of the user;
  • the shell structure 1 includes an upper cover assembly 13 and a bottom shell 12, and the upper cover assembly 13 is a saddle-shaped bearing surface 133 with high sides and a low middle, so that when the user uses the cervical vertebrae therapy device 100 in a supine position, the cervical spine can be placed in the saddle-shaped bearing surface 133.
  • the saddle-shaped bearing surface 133 supports and positions the user's neck and back, fixes the user's neck in the physiological curvature recovery position, and then uses the gravity of the user's head to gently traction the neck.
  • the bottom shell 12 is provided with a butterfly-shaped bearing surface 123 on one side of the receiving side surface 11, which is in contact with the user's shoulder and is symmetrically distributed. The edge of the butterfly-shaped bearing surface 123 and the saddle-shaped bearing surface 133 together form a positioning portion 111 for positioning the user's shoulder.
  • the shoulder of the human body is supported and positioned by the positioning portion 111, forming a reaction force to act on the neck curvature repair, so as to achieve the effect of loosening the spasmodic muscles and adhesions of soft tissues, effectively adjust the physiological curvature of the cervical spine, restore the physiological curvature of the cervical spine, and keep various functions of the cervical spine in a stable state.
  • the cervical spine physiotherapy equipment is also provided with a light-emitting device, which is arranged in the cavity formed by the upper cover assembly 13 and the bottom shell 12.
  • the light-emitting device 2 can accurately control the red light infrared irradiation position and irradiation dose, and perform PBM photobiological irradiation therapy on the user's neck through the light-transmitting area to achieve the effect of relieving pain and repairing damaged muscles and nerves.
  • the saddle-shaped bearing surface 133 includes a recessed portion 1321 and two raised portions 1311 connected to the recessed portion 1321, the two raised portions 1311 are symmetrically arranged on both sides of the recessed portion 1321, the two raised portions 1311 are hemispherical on the side facing away from the bottom shell 12, and the connection between the raised portion 1311 and the recessed portion 1321 is smoothly transitioned, the recessed portion 1321 is located in the center of the saddle-shaped bearing surface 133, the recessed portion 1321 extends toward one side of the receiving side surface 11, and forms an arc-shaped bearing portion 1313, the arc-shaped bearing portion 1313 is located in the center of the butterfly-shaped bearing surface 123, the light-transmitting area is arranged in the recessed portion 1321, and the two sides of the arc-shaped bearing portion 1313 are respectively smoothly connected to the edges of the two raised portions 1311 to form an arc-shaped positioning flange 134, and the arc-shaped positioning flange 134 cooperates
  • the saddle-shaped bearing surface 133 is composed of a raised portion 1311 with higher sides and a lower recessed portion 1321 located between the two raised portions 1311, and the recessed portion 1321 is connected to the raised portions 1311 on both sides by a smooth transition, and the two raised portions are also set to a hemispherical shape toward the side away from the bottom shell 12.
  • the recessed portion 1321 is connected to the raised portions 1311 on both sides by a smooth transition, so that the saddle-shaped bearing surface 133 has a curved surface suitable for users, providing users with a comfortable physical therapy environment.
  • the smooth transition connection also provides accurate positioning and bearing for the cervical spine, which is conducive to the user's cervical spine to restore normal physiological curvature.
  • the recessed portion 1321 is arranged at the center of the saddle-shaped bearing surface 133, and the recessed portion 1321 extends toward one side of the receiving side surface 11 to protrude from the receiving side surface 11 to form an arc-shaped bearing portion 1313, and the arc-shaped bearing portion 1313 is smoothly connected to the edges of the two raised portions 1311, and similarly, the protruding receiving side surface 11 forms an arc-shaped positioning flange 134, so that the arc-shaped positioning flange 134 cooperates with the butterfly-shaped bearing surface 123 to form the positioning portion 111.
  • the distance of the arc-shaped bearing part 1313 protruding from the receiving side surface 11 is greater than the distance of the arc-shaped positioning flange 134 protruding from the receiving side surface 11, so that a smooth transition curve can be formed from the arc-shaped bearing part 1313 to the edge of the raised part 1311, that is, the distance of the butterfly-shaped bearing surface 123 protruding from the receiving side surface 11 where it is connected to the arc-shaped bearing part 1313 is slightly greater than the distance of the butterfly-shaped bearing surface 123 protruding from the receiving side surface 11 where the edge of the raised part 1311 is connected, and the semi-enclosed area formed is the positioning part 111.
  • the user's shoulder can be effectively positioned and supported, so that the user's shoulder is partially wrapped in the positioning part 111.
  • a stable three-point support structure formed by the user's shoulder and the user's back is formed, ensuring that when the user is pulling the neck, the shoulder and back can stably provide support force, further improving the bearing and support of the user's neck, and improving the physical therapy effect.
  • the upper cover assembly 13 includes a mounting shell 131 and a traction shell 132.
  • the mounting shell 131 is connected to the bottom shell 12.
  • the mounting shell 131 includes two protrusions 1311 and a sinking portion 1312 located between the two protrusions 1311.
  • the sinking portion 1312 is provided with a through hole connected to the cavity 14.
  • the sinking portion 1312 extends toward the side surface 11 to form an arc-shaped bearing portion 1313.
  • the traction shell 132 covers the through hole and is connected to the mounting shell 131.
  • a recessed portion 1321 smoothly connected to the protrusion 1311 is formed on the side of the traction shell 132 facing away from the cavity 14, and a light-transmitting area is formed on the traction shell 132.
  • the mounting shell 131 is connected to the bottom shell 12, the mounting shell 131 is shaped like a saddle surface, and the protrusions 1311 are provided at both ends of the mounting shell 131, a sinking portion 1312 is provided on the mounting shell 131 and between the two protrusions 1311, a through hole connecting the accommodating cavity 14 is opened on the sinking portion 1312, the traction shell 132 is provided on the sinking portion 1312, and covers the through hole and is connected to the mounting shell 131, and the traction shell 132 forms a light-transmitting area.
  • a concave portion 1321 which is smoothly connected to the protrusion 1311 is formed on the side of the traction shell 132 facing away from the cavity 14, so as to form a saddle-shaped bearing surface 133 together with the protrusions 1311 located at both ends of the mounting shell 131.
  • the upper cover assembly 13 is divided into the mounting shell 131 and the traction shell 132.
  • the mounting shell 131 is the main supporting structure, which is used to connect with the bottom shell 12 and bear the pressure applied by the user;
  • the traction shell 132 is the main modeling structure, and through the cooperation of its concave portion 1321 and the protrusion 1311, an arc structure suitable for the normal physiological curvature of the user's cervical spine is formed.
  • a light-transmitting area is set on the traction shell 132, so that the traction shell 132 can also perform phototherapy on the neck while traction on the user's cervical spine, so as to achieve the effect of relieving pain and repairing damaged muscles and nerves.
  • the bottom shell 12 includes a main body portion 121 and two arc-shaped portions 122.
  • the two arc-shaped portions 122 are arranged on one side of the main body portion 121 facing the receiving side surface 11, and are symmetrically arranged.
  • the two arc-shaped portions 122 cooperate to form a recessed groove 1221.
  • the arc-shaped bearing portion 1313 is accommodated and limited in the recessed groove 1221.
  • the arc-shaped bearing portion 1313, the edge of the mounting shell 131 and the two arc-shaped portions 122 jointly form a positioning portion 111.
  • the bottom shell 12 is composed of a main body 121 and arc-shaped portions 122 arranged on both sides of the main body 121.
  • the two arc-shaped portions 122 are symmetrically arranged and cooperate to form a recessed groove 1221 located on the main body 121 and facing the receiving side surface 11, so that the arc-shaped bearing portion 1313 can be placed and installed in the recessed groove 1221.
  • the arc-shaped portions 122 located on both sides of the main body 121 are respectively connected to the protrusions 1311 provided at both ends of the mounting shell 131, so as to form a smooth spherical structure at both ends of the shell structure 1.
  • the butterfly-shaped bearing surface 123 is located on both sides of the recessed groove 1221, so that the edge of part of the butterfly-shaped bearing surface 123 is connected to the edge of the protrusion 1311.
  • the shell structure 1 forms a side of the receiving side surface 11 facing the user, and forms an area suitable for the user's back and shoulders to be placed, which effectively helps the user lie down in the best position and provides a comfortable use experience for the user.
  • the cervical physiotherapy device 100 also includes a foot pad assembly 3, the foot pad assembly 3 includes a pad 31 and a magnetic component 32, and the pad 31 is magnetically connected to the side of the bottom shell 12 facing away from the upper cover assembly 13 through the magnetic component 32.
  • the magnetic attraction member 32 is arranged in the pad 31, so that the pad 31 can be detachably arranged on the side of the bottom shell 12 facing away from the upper cover assembly 13, so as to facilitate the user to adjust the height of the cervical physiotherapy device 100.
  • the magnetic component 32 includes a first magnetic component 321 and a second magnetic component 322, the pad 31 is provided with a first installation groove, the first magnetic component 321 is arranged in the first installation groove, the bottom shell 12 is provided with a plurality of second installation grooves corresponding to the first installation groove, and the second magnetic component 322 is arranged in the second installation groove; wherein the first magnetic component 321 is magnetically connected with the second magnetic component 322, so that the pad 31 is installed on the side of the bottom shell 12 facing away from the upper cover assembly 13.
  • first magnetic member 321 is connected to the backing plate 31, and the second magnetic member 322 is connected to the bottom shell, and the backing plate 31 is detachably mounted on the bottom side of the bottom shell 12 through the magnetic attraction of the first magnetic member 321 and the second magnetic member 322.
  • the user can adjust the height of the cervical vertebra physiotherapy device 100 according to their own situation, find the most suitable physiotherapy height, so as to achieve a good traction effect on the cervical spine and improve the physiotherapy effect.
  • a plurality of foot pad assemblies 3 are provided, and the plurality of foot pad assemblies 3 have the same thickness and are provided on the same side of the bottom shell 12. It can be understood that, as shown in FIG1 , a plurality of foot pad assemblies 3 are provided, and are evenly distributed on the same side of the bottom shell 12 facing away from the upper cover assembly 13, and the plurality of foot pad assemblies 3 used at the same time have the same thickness.
  • the number of foot pad assemblies 3 may be 2, 3 or 4, which is not limited here, and the plurality of foot pad assemblies 3 are symmetrically distributed to ensure the stability of the cervical vertebra physiotherapy device 100 when placed.
  • the thickness of the pad 31 is 5 mm to 10 mm. It is understandable that the thickness of the pad 31 in the foot pad assembly 3 can be selected to be 5 mm to 10 mm according to the user's daily usage habits and different levels of physical therapy. Such a setting allows the user to configure the foot pad assembly 3 more flexibly to achieve a comfortable and effective actual experience effect.
  • each magnetic member 32 there are multiple magnetic members 32. It is understandable that, as shown in FIG1, there are multiple magnetic members 32, so that the pad 31 and the bottom shell 12 are respectively provided with multiple corresponding first mounting grooves and second mounting grooves, wherein each first magnetic member 321 is arranged in a first mounting groove, and each second magnetic member 322 is arranged in a second mounting groove.
  • the light-emitting device 2 includes a mounting frame 21 and a light-emitting component 22.
  • the mounting frame 21 is arranged in the cavity and is installed on the side of the bottom shell facing the upper cover component.
  • the mounting frame 21 includes a main body 211 and an extension portion 212.
  • the main body 211 is an arched structure and is formed with an arched surface 2111.
  • the extension portion 212 is arranged at one end of the main body 211.
  • the light-emitting component 22 is arranged on the side of the mounting frame 21 facing the light-transmitting area.
  • the light-emitting component 22 includes a first light-emitting component 221 and a second light-emitting component 222.
  • the first light-emitting component 221 is arranged on the arched surface 2111, and the first light-emitting component 221 extends along the arched surface 2111 toward the extension portion 212.
  • the second light-emitting component 222 is arranged on the extension portion 212 and is located on the same side as the arched surface 2111.
  • the mounting frame 21 is a structural support member of the light-emitting device 2, which is used to support the light-emitting component 22 and provide a mounting base for the light-emitting component 22.
  • the mounting frame 21 is arranged opposite to the light-transmitting area of the physiotherapy device.
  • the light-emitting component 22 is arranged on the side of the mounting frame 21 facing the light-transmitting area.
  • the mounting frame 21 can be a mounting table, a base, a rack or a mounting surface, which is not limited here.
  • the light-emitting component 22 can be bonded to the mounting frame 21, can be limitedly connected to the mounting frame 21, or can be plugged into the mounting frame 21, which is not limited here.
  • the mounting frame 21 is arranged in the cavity and the light emitting component 22 is mounted on the mounting frame 21, so as to perform photophysical therapy on the neck and part of the shoulder of the user through the light-transmitting area, which helps to reduce inflammation and repair damaged nerves and muscles.
  • the position and height of the mounting frame 21 can be adjusted, that is, the curvature, height and width of the arched surface 2111 and the width and height of the flat surface 2121 can be adjusted to adapt to different usage scenarios and physical therapy objects, thereby improving the versatility and applicability of the cervical vertebra physical therapy device.
  • the mounting frame 21 has an arched surface 2111 corresponding to the saddle-shaped traction shell facing it, and the highest point of the arched surface 2111 corresponds to the highest point of the saddle surface of the traction shell, so that the first light-emitting element 221 is arranged on the side facing the light-transmitting area according to the curve of the arched surface 2111.
  • the first light-emitting element 221 is strip-shaped, and there are multiple strips, which are arranged on the arched surface 2111 in parallel with each other, and are arranged along the curve of the arched surface 2111 to irradiate the human cervical spine from multiple angles and in all directions.
  • the first light-emitting component 221 can have a curve that is the same as the saddle surface shape in the traction shell, so that when the user's neck fits on the traction shell according to the saddle surface curve, the first light-emitting component 221 can also achieve all-round lighting for the human cervical spine through the curve, thereby improving the physical therapy effect.
  • the light emitting device 2 is installed in the cervical vertebra therapy device 100, and the cervical vertebra therapy device 100 provides installation space, power supply and control components for the light emitting device 2, so that the light emitting device 2 can operate independently or together with the cervical vertebra therapy device 100. It can be understood that the light emitting device 2 can emit red light and infrared light of specific wavelength and irradiance to perform phototherapy on specific parts of the user.
  • the cervical vertebra therapy device 100 is provided with a light-transmitting area for transmitting red light and infrared light.
  • the light-transmitting area also has an arc surface and a plane surface that match the curve of the user's shoulder, neck, waist, back or leg, so that the user can fix the treatment part on the light-transmitting area, so that the light emitting device 2 can perform phototherapy on the specific part.
  • the light emitting device 2 can be applied to many parts of the human body, and its versatility and applicability are strong.
  • the mounting frame 21 is composed of a main body 211 with an arched structure and an extension 212 arranged at one end of the main body 211.
  • the extension 212 is in the shape of a plate.
  • the main body 211 with an arched structure is provided with an arched surface 2111.
  • the extension 212 is provided with a placement surface located on the same arc surface as the arched surface 2111, so that the light-emitting component 22 is placed on the arched surface 2111 and the placement surface. It can be understood that the main body 211 and the extension 212 can be integrally formed or installed separately, which is not limited here.
  • the main body 211 and the extension 212 target different physiotherapy parts.
  • the main body 211 with an arched structure can better match the neck and waist curves of the human body, so that the red light and infrared light emitted by the light-emitting component 22 can more evenly and comprehensively cover the phototherapy parts, effectively improving the physiotherapy effect.
  • the flat extension 212 is mainly targeted at the neck and back, as well as the shoulder and back adjacent areas. For example, at the Dazhui point on the back of the human neck, the light emitting component 22 disposed in the extension portion 212 emits light radiation to provide radiant heat, accelerate blood circulation, and effectively help users relieve neck pain and neck and shoulder pain.
  • the light-emitting component 22 is composed of a first light-emitting component 221 arranged on the arched surface 2111 and a second light-emitting component 222 arranged on the placement surface of the extension portion 212.
  • the arched surface 2111 and the placement surface are located on the same side of the mounting frame 21, that is, the first light-emitting component 221 and the second light-emitting component 222 are also arranged on the same side of the mounting frame 21.
  • first light-emitting component 221 is laid on the arched surface 2111, so that the first light-emitting component 221 is also arched, which is suitable for users to repair the physiological curvature of specific parts or perform phototherapy on some parts with curvature, such as the neck, waist or legs.
  • the second light-emitting component 222 is used in conjunction with the first light-emitting component 221 to perform phototherapy on some larger areas, such as shoulders, back or waist.
  • the light-emitting component 22 emits red light and infrared light of specific wavelength and light irradiance to provide radiant heat to the part to be phototreated, accelerate blood circulation, so as to relax the user's local stiff muscles and relieve soreness, while helping to repair damaged nerves and muscles and eliminate inflammation and edema.
  • the extension portion 212 is formed with a flat surface 2121, which is connected to the arched surface 2111; the first light-emitting component 221 is arranged on the side of the arched surface 2111 facing the light-transmitting area, and the second light-emitting component 222 is arranged on the side of the flat surface 2121 facing the light-transmitting area.
  • a flat surface 2121 for placing the second light-emitting element 222 is extended at one end of the arched surface 2111, that is, the side facing the receiving side, and the arched surface 2111 and the flat surface 2121 are an integrally formed structure.
  • the second light-emitting element 222 placed on the flat surface 2121 can also illuminate part of the user's back, relax the back muscles and nerves, relieve back pain, and achieve the effect of photophysical therapy.
  • the main body 211 includes a first curved surface 2111a and a second curved surface 2111b connected to each other.
  • the first curved surface 2111a and the second curved surface 2111b form an arched surface 2111.
  • the arched surface 2111 is provided with a placement groove 2112 arranged along the arc of the arched surface 2111.
  • the first light-emitting component 221 is limited in the placement groove 2112.
  • the arched surface 2111 of the main body 211 is composed of a first arcuate surface 2111a and a second arcuate surface 2111b connected to each other, and the extension portion 212 is arranged at the end of the first arcuate surface 2111a facing away from the second arcuate surface 2111b, and a placement groove 2112 for placing the first light-emitting component 221 is arranged on the arched surface 2111.
  • the placement groove 2112 is arranged along the arc of the arched surface 2111, that is, the placement groove 2112 is also arranged in an arched shape, and the first light-emitting component 221 is also laid in the placement groove 2112 with an arched structure, so that the first light-emitting component 221 is installed in an accurate position during production to avoid affecting the phototherapy effect due to position offset.
  • the main body 211 is provided with a plurality of reinforcing ribs to strengthen the structural strength of the main body 211 and the mounting frame 21.
  • the placement groove 2112 includes a plurality of first limiting grooves 2112a, and the plurality of first limiting grooves 2112a extend from the end of the second curved surface 2111b facing away from the first curved surface 2111a to the extension portion 212 and are connected to the extension portion 212.
  • the plurality of first limiting grooves 2112a are evenly spaced and distributed along the axial direction of the arc of the arched surface 2111 and are parallel to each other;
  • the first light-emitting component 221 includes a plurality of light-emitting bars 2211, and the number of the light-emitting bars 2211 is the same as the number of the first limiting grooves 2112a.
  • the light-emitting bars 2211 are arranged along the arc direction of the arched surface 2111, so that each light-emitting bar 2211 is limited in a first limiting groove 2112a.
  • the placement groove 2112 is composed of a plurality of identical first limiting grooves 2112a, and the plurality of first limiting grooves 2112a are also arranged along the arc of the arched surface 2111, specifically, extending from the end of the second arcuate surface 2111b facing away from the first arcuate surface 2111a to the end where the first arcuate surface 2111a is connected to the extension portion 212, so that the plurality of first limiting grooves 2112a are connected to the extension portion 212, and the first light-emitting member 221 also includes a plurality of light-emitting bars 2211 with the same number as the first limiting grooves 2112a, and each light-emitting bar 2211 is limitedly arranged in a first limiting groove 2112a, so that the light-emitting bars 2211 and the first limiting grooves 2112a are evenly spaced in the axial direction along the arc of the arched surface 2111.
  • the placement groove 2112 can be a complete placement area, or it can be split into a plurality of first limiting grooves 2112a.
  • the first light-emitting component 221 can be a complete light-emitting component limiting setting in the placement groove 2112, or it can be split into a plurality of identical light-emitting bars 2211 set in the first limiting groove 2112a.
  • the light-emitting bar 2211 and the first limiting groove 2112a are both arranged along the arc direction of the arched surface 2111, and are arranged in parallel at intervals along the axial direction of the arc of the arched surface 2111.
  • the positions of the plurality of first limiting grooves 2112a and the plurality of light-emitting bars 2211 are not fixed, and their positions can be changed according to the actual needs of the user.
  • the setting of the plurality of light-emitting bars 2211 and the first limiting groove 2112a can flexibly set the position of the light-emitting bar 2211 to better fit the physiological curve of the human body to improve the therapeutic effect.
  • a plurality of red infrared lamp beads are evenly and spacedly arranged on one side of the light strip 2211 along the arc direction of the arch surface 2111 to form an arc-shaped light-emitting area, and the other side of the light strip 2211 is bonded to the bottom wall of the first limiting groove 2112a by an adhesive so that the light strip 2211 is limited in the first limiting groove 2112a; optionally, each light strip 2211 is provided with up to 10 red infrared lamp beads.
  • the plurality of red infrared lamp beads arranged along the arc direction of the arch surface 2111 of the light strip 2211 are arranged in a single row, and each row is set to up to 10 red infrared lamp beads according to the size of the light-emitting device 2, so as to select different numbers of red infrared lamp beads for different user groups, different phototherapy parts and different physical therapy intensities, so as to improve the versatility and applicability of the product.
  • the irradiation intensity and irradiation dose of the light-emitting device 2 can also be accurately controlled by selecting different numbers of red infrared lamp beads.
  • the light bar 2211 is bonded to the bottom wall of the first limiting groove 2112a by an adhesive, so that the light bar 2211 is limitedly disposed in the first limiting groove 2112a.
  • the light bar 2211 can also be fixed in the first limiting groove 2112a by snapping or plugging, which is not limited here.
  • the extension portion 212 defines a second limiting groove 2122 , the second limiting groove 2122 is communicated with the plurality of first limiting grooves 2112 a , and the second light emitting member 222 is limitedly disposed in the second limiting groove 2122 .
  • the extension portion 212 is provided with a second limiting groove 2122 for placing the second light-emitting component 222, the second placement groove 2112 is flat, and multiple first limiting grooves 2112a are all connected to the second limiting groove 2122, so that the first light-emitting component 221 can be directly electrically connected to the second light-emitting component 222, avoiding the setting of additional circuits.
  • a through hole 2122a is opened in the center of the bottom wall of the second limiting groove 2122, one end of the second light-emitting component 222 is passed through the through hole 2122a, and the other end of the second light-emitting component 222 is abutted against the bottom wall of the second limiting groove 2122, so that the second light-emitting component 222 is installed on the extension portion 212.
  • the extension portion 212 is provided with a through hole 2122a at the center of the bottom wall of the second limiting groove 2122, and one end of the second light-emitting member 222 passes through the through hole 2122a, and the other end abuts against the bottom wall of the second limiting groove 2122, so that the second light-emitting member 222 is fixed to the extension portion 212 as a whole.
  • the provision of the through hole 2122a enables the second light-emitting member 222 to be connected to the external control component and the power supply component through the through hole 2122a, avoiding wiring on the side of the mounting frame 21 where the arched surface 2111 is provided, thereby improving the aesthetics of the light-emitting device 2 without affecting the phototherapy effect of the light-emitting device 2.
  • the second light-emitting member 222 includes a light-emitting plate 2221 and a positioning block 2222.
  • a plurality of red infrared lamp beads are arranged on one side of the light-emitting plate 2221.
  • the periphery of the other side of the light-emitting plate 2221 abuts against the bottom wall of the second limiting groove 2122.
  • the positioning block 2222 is arranged at the center of the light-emitting plate 2221 abutting against the bottom wall of the second limiting groove 2122.
  • the positioning block 2222 is penetrated through the through hole 2122a to limit and fix the second light-emitting member 222 on the extension portion 212.
  • the second light-emitting member 222 is provided with a plurality of red infrared lamp beads, and the plurality of red infrared lamp beads are arranged in a rectangular array; optionally, the second light-emitting member 222 is provided with a plurality of red infrared lamp beads, and the number of red infrared lamp beads is to. It can be understood that the number of red infrared lamp beads is selected to, and the irradiation dose can be more accurately controlled for different users.
  • the second light-emitting member 222 is composed of a light-emitting plate 2221 and a positioning block 2222.
  • the peripheral edge of one side of the light-emitting plate 2221 abuts against the bottom wall of the second limiting groove 2122, so that the light-emitting plate 2221 can be placed in the second limiting groove 2122 and face the user for phototherapy.
  • the light-emitting plate 2221 is provided with a plurality of red infrared lamp beads on the side of the bottom wall facing away from the second limiting groove 2122.
  • the plurality of red infrared lamp beads are arranged in a rectangular array at intervals to form a planar light-emitting area, and according to different targeted populations, different phototherapy sites and different phototherapy intensities, the number of red infrared lamp beads on the light-emitting plate 2221 is between 100 and 200, which is convenient for users to adjust and replace phototherapy schemes.
  • a positioning block 2222 is provided at the central position of the light emitting board 2221 facing the bottom wall of the second limiting groove 2122. The positioning block 2222 abuts against the hole wall of the through hole 2122a, so that the second light emitting member 222 can be clamped in the through hole 2122a.
  • the light emitting board 2221 can also be connected to the bottom wall of the second limiting groove 2122 by bolt connection.
  • the red light wavelength in the red light infrared lamp bead is 630nm to 700nm, and the light irradiance is 20mw/ cm2 to 150mw/ cm2 ; optionally, the infrared wavelength in the red light infrared lamp bead is 810nm to 890nm, and the light irradiance is 50mw/ cm2 to 150mw/ cm2 .
  • phototherapy is successful in relieving pain, repairing damaged muscles and nerves, and improving the function of osteoarthritis. It is a new type of physical therapy technology, but attention should be paid to parameters such as the wavelength, irradiance, and irradiation dose of the light to ensure the effectiveness of the product.
  • the red light wavelength of the red light infrared lamp beads in the light emitting device 2 is 630nm to 700nm, and the light irradiance is 20mw/ cm2 to 150mw/ cm2 ; the infrared wavelength is 810nm to 890nm, and the light irradiance is 50mw/ cm2 to 150mw/ cm2 , so that the light emitting device 2 has a wide adjustment range to adapt to different physical therapy populations and different phototherapy intensities, thereby enhancing the applicability of the light emitting device 2.
  • a temperature sensor is installed on the light emitting board 2221, which can collect the real-time temperature of the skin at the phototherapy site to adjust the irradiance of red light and infrared light.
  • the irradiation dose can be accurately controlled for the user.
  • the high-intensity red light with a maximum wavelength of 700nm is the main wavelength for repairing nerves and muscles.
  • the specific wavelength of 850nm near infrared is better than other wavelengths of far infrared in terms of anti-inflammatory and analgesia. Therefore, based on 850nm, 810nm to 890nm is set as the infrared light wavelength adjustment range of the light emitting device 2.
  • the number of chips of the red light infrared lamp beads is single chip, double chip or triple chip. It can be understood that the red light infrared lamp beads can be set to single chip, double chip or triple chip according to different target groups, different phototherapy parts and different phototherapy intensities, so as to enhance the practicality and flexibility of the light emitting device 2, provide a variety of phototherapy solutions and improve the physical therapy effect.
  • the cervical vertebrae physiotherapy device 100 also includes a control assembly 4, the control assembly 4 includes a key shell 41, a key plate 42 and a guide key 43, the key shell 41 is penetrated through the through groove 141 and is clamped with the shell structure 1, the key shell 41 is provided with a key slot 411, the key plate 42 is installed on the side of the key shell 41 facing the cavity 14, the key plate 42 is electrically connected to the light-emitting device 2, and a button portion 421 is provided on the side of the key plate 42 facing the key shell 41, one end of the guide key 43 is penetrated in the key slot 411 and is clamped with the key shell 41, and the other end of the guide key 43 is connected to the button portion 421.
  • the control assembly 4 includes a key shell 41, a key plate 42 and a guide key 43, the key shell 41 is penetrated through the through groove 141 and is clamped with the shell structure 1, the key shell 41 is provided with a key slot 411, the key plate 42 is installed on the side of the key
  • the cervical physiotherapy device 100 further includes a control component 4 disposed on the shell structure 1.
  • the shell structure 1 is provided with a through slot 141 on one side adjacent to the receiving side surface 11.
  • the control component 4 is disposed in the through slot 141.
  • the control component 4 is electrically connected to the light emitting component 22 to control the operation of the light emitting component 22.
  • the control component 4 includes a key shell 41 disposed on the outermost side.
  • the key shell 41 is respectively engaged with the bottom shell 12 and the upper cover component 13.
  • a key slot 411 is provided on the key shell 41 for placing a guide key 43.
  • the other end of the guide key 43 is connected to the key plate 42.
  • the guide key 43 is in contact with the key portion 421 on the key plate 42.
  • the key plate 42 is fixed to the side of the key shell 41 facing the cavity 14.
  • control component 4 controls the opening and closing of the cervical vertebrae therapy device 100, and also controls the operation and parameter adjustment of the core component light-emitting device 2 in the cervical vertebrae therapy device 100.
  • the height and curvature of the bracket 21 are controlled, and the light irradiance and wavelength of the light-emitting component 22 are controlled to adjust the irradiation dose of the light-emitting device 2, thereby adjusting the physiotherapy for the user.
  • the user presses one end of the guide key 43 in the key slot 411, and the other end of the guide key 43 presses the button part 421 on the key plate 42.
  • the button part 421 corresponds to different components and parts, thereby controlling the light-emitting device 2 to achieve different operations.
  • the cervical vertebrae therapy device 100 further includes a circuit board, which is mounted on the bottom shell 12, and the circuit board is electrically connected to the light emitting device 2 and the control component 4, so that the control component 4 controls and adjusts the light emitting device 2.
  • the circuit board is electrically connected to the light emitting device 2 and the control component 4, so that the user's operation of the control component 4 can be transmitted to the circuit board to achieve the purpose of controlling and adjusting the light emitting device 2, and the circuit board also has the functions of stabilizing voltage, transmitting signals, and adjusting the irradiation intensity of the light emitting device 2.

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Abstract

一种颈椎理疗设备(100),该颈椎理疗设备(100)包括壳体结构(1)和发光装置(2),壳体结构(1)具有承接侧面(11),包括底壳(12)和上盖组件(13),上盖组件(13)与底壳(12)连接并围合形成容腔(14),底壳(12)面向承接侧面(11)的一侧设有蝴蝶形承载面(123),上盖组件(13)背向底壳(12)一侧设有马鞍形承载面(133),马鞍形承载面(133)具有透光区,并朝向承接侧面(11)延伸,以使马鞍形承载面(133)的边缘与蝴蝶形承载面(123)配合形成定位部(111),定位部(111)用于对用户肩部进行承载和定位,马鞍形承载面(133)用于承载用户的颈部和背部,发光组件(22)设于容腔(14)内,并对应透光区设置。在通过该颈椎理疗设备(100)逐步纠正颈椎曲度同时,达到帮助消炎、修复受损肌肉和神经以及缓解疼痛的效果。

Description

颈椎理疗设备
相关申请的交叉引用
本申请要求于2022年10月08日提交的名称为“颈椎理疗装置”的中国专利申请202222651557.4的优先权,以及本申请要求于2022年10月08日提交的名称为“发光装置和理疗设备”的中国专利申请202222656438.8的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及保健康复器械技术领域,特别涉及一种颈椎理疗设备。
背景技术
随着现代工作、学习及生活节奏的加快,颈椎生理曲度变直的人群越来越多,特别是长期处于坐位的人群中,颈椎生理曲度变直更为普遍,颈椎的修复能力随之降低,组织易发生劳损,经常会感到局部肌肉僵硬酸痛、疲劳,出现颈椎相关的退行性疾病,如颈椎生理曲度变直,神经、血管等重要结构受损,严重会发展成疾病。临床上已证实颈椎生理曲度变直后通过有效的治疗,能够恢复正常的生理曲度,通过颈椎曲度牵引器利用头部自重牵引改善颈椎生理曲度有明显的疗效。
现有的卧式颈椎牵引枕大多以单独卧式牵引或者追加一些发热、按摩功能的牵引为主,一些理疗设备中会放置发光部件,用于对用户的颈部进行光疗,但由于其发光部件为直板形,虽能够提高使用者的即时感觉,有一定的缓解疼痛和舒适效果,但由于直板外形无法匹配人体颈部的曲线,其直板外形只能照射部分区域,无法全面且精准的覆盖所光疗的部位,并且辐射度的剂量控制也并不准确,使得其理疗效果有限,导致使用后用户依然需要长时间的忍受不适感及疼痛感。
上述内容仅用于辅助理解本申请的技术方案,并不代表承认上述内容是现有技术。
发明内容
本申请的主要目的是提供一种颈椎理疗设备,旨在通过颈椎理疗设备同时实现红光红外光疗及颈椎曲度牵引,在逐步纠正颈椎自身曲度和生理状态的同时,又可以通过精准控制红光红外辐照位置和辐照剂量,进行PBM光生物照射理疗,以达到帮助消炎、修复受损肌肉和神经以及提供更加良好的缓解疼痛的效果,在相对较短的时间内改善用户不适症状,从而提升理疗效果。
为实现上述目的,本申请提出的一种颈椎理疗设备包括:
壳体结构,所述壳体结构具有承接侧面,所述壳体结构包括底壳和上盖组件,所述上盖组件与所述底壳连接,并围合形成容腔,所述底壳面向所述承接侧面的一侧设有蝴蝶形承载面,且所述蝴蝶形承载面邻近所述上盖组件设置,所述上盖组件背向所述底壳的一侧设有马鞍形承载面,所述马鞍形承载面具有透光区,所述马鞍形承载面朝向所述承接侧面延伸,并部分位于所述蝴蝶形承载面的中央,以使所述 马鞍形承载面的边缘与所述蝴蝶形承载面配合形成定位部,所述定位部用于对用户的肩部进行承载和定位,所述马鞍形承载面用于承载用户的颈部和背部;和
发光装置,所述发光装置设于所述容腔内,并与所述透光区对应设置。
在本申请的一实施例中,所述马鞍形承载面包括凹陷部和与所述凹陷部相连接的两个凸起部,两个所述凸起部对称设于所述凹陷部两侧,两个所述凸起部背向所述底壳的一侧呈半球形,且所述凸起部与所述凹陷部的连接处呈圆滑过渡设置,所述凹陷部位于所述马鞍形承载面的中央,所述凹陷部朝向所述承接侧面的一侧延伸,并形成弧形承载部,所述弧形承载部位于所述蝴蝶形承载面的中央,所述透光区设于所述凹陷部,所述弧形承载部的两侧分别与两个所述凸起部的边缘圆滑过渡连接,以形成弧形定位凸缘,所述弧形定位凸缘与所述蝴蝶形承载面配合形成所述定位部。
在本申请的一实施例中,所述上盖组件包括安装壳和牵引壳,所述安装壳与所述底壳相连接,所述安装壳包括两个所述凸起部和位于两个所述凸起部之间的下沉部,所述下沉部开设有连通所述容腔的贯穿孔,所述下沉部朝向所述承接侧面一侧延伸形成所述弧形承载部,所述牵引壳盖合所述贯穿孔,并与所述安装壳连接,所述牵引壳背向所述容腔的一侧形成有与所述凸起部圆滑过渡连接的所述凹陷部,所述牵引壳形成有所述透光区。
在本申请的一实施例中,所述底壳包括主体部和两个弧形部,两个所述弧形部设于所述主体部面向所述承接侧面的一侧,并呈对称设置,且两个所述弧形部配合形成凹陷槽,所述弧形承载部容纳并限位于所述凹陷槽内,所述弧形承载部、所述安装壳边缘及两个所述弧形部共同形成所述定位部。
在本申请的一实施例中,所述颈椎理疗设备还包括脚垫组件,所述脚垫组件包括垫板和磁吸件,所述垫板通过所述磁吸件与所述底壳背向所述上盖组件的一侧磁吸连接。
在本申请的一实施例中,所述磁吸件包括:
第一磁性件,所述垫板开设有第一安装槽,所述第一磁性件设于所述第一安装槽中;和
第二磁性件,所述底壳对应所述第一安装槽开设有多个第二安装槽,所述第二磁性件设于所述第二安装槽中;
其中,所述第一磁性件与所述第二磁性件磁吸连接,使所述垫板安装于所述底壳背向所述上盖组件一侧。
在本申请的一实施例中,所述脚垫组件设有多个,多个所述脚垫组件厚度相同,且多个所述脚垫组件设于所述底壳的同侧;
且/或,所述垫板厚度为5mm至10mm;
且/或,所述磁吸件设有多个。
在本申请的一实施例中,所述发光装置包括:
安装架,所述安装架设于所述容腔中,并安装于所述底壳面向所述上盖组件一侧,所述安装架包括主体部和延伸部,所述主体部呈拱形结构,并形成有拱形面,所述延伸部设于所述主体部的一端;和
发光组件,所述发光组件设于所述安装架面向所述透光区一侧,所述发光组件包括第一发光件和第二发光件,所述第一发光件设于所述拱形面上,所述第一发光件沿所述拱形面向所述延伸部方向延伸,所述第二发光件设于所述延伸部,并与所述拱形面位于同一侧。
在本申请的一实施例中,所述延伸部形成有平直面,所述平直面与所述拱形面相连接;
所述第一发光件设于所述拱形面朝向所述透光区一侧,所述第二发光件设于所述平直面朝向所述透光区一侧。
在本申请的一实施例中,所述主体部包括相连接的第一弧形面和第二弧形面,所述第一弧形面和所述第二弧形面形成所述拱形面,所述拱形面上设有沿所述拱形面弧形设置的放置槽,所述第一发光件限位于所述放置槽中。
在本申请的一实施例中,所述放置槽包括有多个第一限位槽,多个所述第一限位槽从所述第二弧形面背向所述第一弧形面的端部延伸到所述延伸部,并与所述延伸部相连通,多个所述第一限位槽沿所述拱形面弧形的轴线方向上间隔均匀分布,并互相平行;
所述第一发光件包括有多个发光条,所述发光条个数与所述第一限位槽个数相同,所述发光条沿所述拱形面的弧形方向设置,使每一所述发光条限位于一所述第一限位槽中。
在本申请的一实施例中,所述发光条一侧表面沿所述拱形面弧形方向均匀且间隔的设有多个红光红外灯珠,所述发光条另一侧通过粘合剂与所述第一限位槽底壁相粘合,以使所述发光条限位于所述第一限位槽中;
且/或,每一所述发光条上设置有5至10个红光红外灯珠。
在本申请的一实施例中,所述延伸部开设有第二限位槽,所述第二限位槽与多个所述第一限位槽相连通,所述第二发光件限位设置于所述第二限位槽中。
在本申请的一实施例中,所述第二限位槽底壁中央开设有通孔,所述第二发光件一端穿设于所述通孔中,所述第二发光件另一端抵接于所述第二限位槽的底壁,以使所述第二发光件安装于所述延伸部上。
在本申请的一实施例中,所述第二发光件包括发光板和定位块,所述发光板一侧设有多个红光红外灯珠,所述发光板另一侧的周缘抵接于第二限位槽底壁,所述定位块设于所述发光板抵接于所述第二限位槽底壁一侧的中央,所述定位块穿设于所述通孔,以将所述第二发光件限位和固定于所述延伸部上;
且/或,所述第二发光件设有多个红光红外灯珠,多个所述红光红外灯珠呈矩形阵列排布;
且/或,所述第二发光件设有多个红光红外灯珠,所述红光红外灯珠个数为5至10个。
在本申请的一实施例中,所述红光红外灯珠中的红光波长为630nm至700nm,光辐照度为20mw/cm 2至150mw/cm 2
且/或,所述红光红外灯珠中的红外波长为810nm至890nm,光辐照度为50mw/cm 2至150mw/cm 2
在本申请的一实施例中,所述红光红外灯珠的芯片个数为单芯片、双芯片或三芯片。
在本申请的一实施例中,所述底壳和所述上盖组件围合形成连通所述容腔的通槽,所述通槽邻近所述承接侧面设置,且所述通槽的槽口方向与所述承接侧面相平行;
所述颈椎理疗设备还包括控制组件,所述控制组件包括:
键壳,所述键壳穿设于所述通槽,并与所述壳体结构卡接,所述键壳开设有键槽;
键板,所述键板安装于所述键壳面向所述容腔的一侧,所述键板与所述发光组件电性连接,所述键板面向所述键壳的一侧设有按键部;及
导键,所述导键一端穿设于所述键槽中,并与所述键壳卡接,所述导键的另一端与所述按键部连接。
在本申请的一实施例中,所述颈椎理疗设备还包括电路板,所述电路板安装于所述底壳上,所述电路板与所述发光装置和所述控制组件电性连接,以使所述控制组件控制和调节所述发光装置。
本申请技术方案的颈椎理疗设备通过设置曲面壳体结构,以对用户的颈椎生理曲度进行修复,并且在壳体结构的一侧设有承接侧面,用于承接用户的肩部和背部;壳体结构包括上盖组件和底壳,上盖组件呈两边高、中间低的马鞍形承载面,使得用户在仰卧使用该颈椎理疗设备时,可将颈椎放入马鞍形承载面中,此时马鞍形承载面对用户颈部和背部进行承载和定位,将用户颈部固定于生理曲度恢复位,然后利用用户头部的重力对颈部进行缓和牵引。同时,底壳在承接侧面的一侧设有与用户肩部接触且对称分布的蝴蝶形承载面,蝴蝶形承载面与马鞍形承载面的边缘共同形成用于定位用户肩部的定位部,当用户在利用头部重力进行颈部曲度修复时,通过该定位部对人体的肩部进行承载和定位,形成反作用力作用于颈部曲度修复,以达到松解痉挛的肌肉和粘连的软组织的效果,有效调节颈椎生理曲度,恢复颈椎的生理曲度,使颈椎各种功能保持稳定状态。该颈椎理疗设备还设有发光装置,该发光装置设于上盖组件和底壳围合形成的容腔中,该发光装置可精准控制红光红外辐照位置和辐照剂量,并通过透光区对用户的颈部进行进行PBM光生物照射理疗,以达到缓解疼痛、修复受损肌肉和神经的效果。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1为本申请颈椎理疗设备一实施例的结构示意图;
图2为本申请壳体结构一实施例的结构示意图;
图3为本申请发光装置一实施例的结构示意图;
图4为本申请发光装置一实施例的结构示意图。
附图标号说明:
标号 名称 标号 名称
100 颈椎理疗设备 2111b 第二弧形面
1 壳体结构 2112 放置槽
11 承接侧面 2112a 第一限位槽
111 定位部 212 延伸部
12 底壳 2121 平直面
121 主体部 2122 第二限位槽
122 弧形部 2122a 通孔
1221 凹陷槽 22 发光组件
123 蝴蝶形承载面 221 第一发光件
13 上盖组件 2211 发光条
131 安装壳 222 第二发光件
1311 凸起部 2221 发光板
1312 下沉部 2222 定位块
1313 弧形承载部 3 脚垫组件
132 牵引壳 31 垫板
1321 凹陷部 32 磁吸件
133 马鞍形承载面 321 第一磁性件
134 弧形定位凸缘 322 第二磁性件
14 容腔 4 控制组件
141 通槽 41 键壳
2 发光装置 411 键槽
21 安装架 42 键板
211 主体部 421 按键部
2111 拱形面 43 导键
2111a 第一弧形面    
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,本申请实施例中所有方向性指示(诸如上、下、左、右、前、后……)仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
在本申请中,除非另有明确的规定和限定,术语“连接”、“固定”等应做广义理解,例如,“固定”可以是固定连接,也可以是可拆卸连接,或成一体;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系,除非另有明确的限定。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
另外,在本申请中涉及“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,全文中出现的“和/或”的含义为,包括三个并列的方案,以“A和/或B为例”,包括A方案,或B方案,或A和B同时满足的方案。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
随着现代工作、学习及生活节奏的加快,颈椎生理曲度变直的人群越来越多,特别是长期处于坐位的人群中,颈椎生理曲度变直更为普遍,颈椎的修复能力随之降低,组织易发生劳损,经常会感到局部肌肉僵硬酸痛、疲劳,出现颈椎相关的退行性疾病,如颈椎生理曲度变直,神经、血管等重要结构受损,严重会发展成疾病。临床上已证实颈椎生理曲度变直后通过有效的治疗,能够恢复正常的生理曲度,通过颈椎曲度牵引器利用头部自重牵引改善颈椎生理曲度有明显的疗效。
现有的卧式颈椎牵引枕大多以单独卧式牵引或者追加一些发热、按摩功能的牵引为主,一些理疗设备中会放置发光部件,用于对用户的颈部进行光疗,但由于其发光部件为直板形,虽能够提高使用者的即时感觉,有一定的缓解疼痛和舒适效果,但由于直板外形无法匹配人体颈部的曲线,其直板外形只能照射部分区域,无法全面且精准的覆盖所光疗的部位,并且辐射度的剂量控制也并不准确,使得其理疗效果有限,导致使用后用户依然需要长时间的忍受不适感及疼痛感。
基于上述构思和问题,本申请提出一种颈椎理疗设备100。可以理解的,该颈椎理疗设备100通过 马鞍形承载面133和蝴蝶形承载面123的结合,使得用户在通过头部重力对颈椎进行牵引时,从而恢复颈椎的生理曲度,此时用户的肩部也具有一定的定位和承载作用,提高该颈椎理疗设备100的作用效果。同时,该颈椎理疗设备100还设有发光装置2,用于对用户的颈部进行光疗,从而达到帮助消炎、修复受损肌肉和神经以及提供更加良好的缓解疼痛的效果,在相对较短的时间内改善用户不适症状。
请结合参照图1和图4所示,在本申请实施例中,该颈椎理疗设备100包括壳体结构1和发光装置2,壳体结构1具有承接侧面11,壳体结构1包括底壳12和上盖组件13,上盖组件13与底壳12连接,并围合形成容腔14,底壳12面向承接侧面11的一侧设有蝴蝶形承载面123,且蝴蝶形承载面123邻近上盖组件13设置,上盖组件13背向底壳12的一侧设有马鞍形承载面133,马鞍形承载面133具有透光区,马鞍形承载面133朝向承接侧面11延伸,并部分位于蝴蝶形承载面123的中央,以使马鞍形承载面133的边缘与蝴蝶形承载面123配合形成定位部111,定位部111用于对用户的肩部进行承载和定位,马鞍形承载面133用于承载用户的颈部和背部,发光装置2设于容腔14内,并与透光区对应设置。
在本实施例中,壳体结构1具有与用户接触的承接侧面11,承接侧面11设于壳体结构1与所放置平面垂直的一侧。壳体结构1由放置于平面的底壳12和盖合于底壳12上的上盖组件13组成,在底壳12面向承接侧面11的一侧,也就是底壳12与用户接触的一侧设有蝴蝶形承载面123,蝴蝶形承载面123的边缘与上盖组件13相连接。
可以理解的,蝴蝶形承载面123设于承接侧面一侧,并在底壳12上呈对称向两侧延伸分布,用于对用户的肩部进行承载和定位,蝴蝶形承载面123契合用户人体肩膀的外形,能够更好的对用户肩部进行定位和承载,便于该颈椎理疗设备100对用户颈部进行牵引。
在本实施例中,上盖组件13为马鞍面造型,并且上盖组件13背向底壳12的一侧设有马鞍形承载面133。可以理解的,马鞍形承载面133具有中间低、两边高的特殊外形,并且中间较低的位置还向与两边较高位置垂直的方向进行延伸,以形成圆滑的马鞍面造型,使得用户颈部放入具有马鞍形承载面133的上盖组件中时,其中马鞍形承载面133较低位置具有对用户的颈部良好的包裹性,使得用户颈部完整的放置和定位于马鞍形承载面133中央。同时,中间较低的位置所具有的弧度,参照人体颈椎正常的曲线而设置,一方面该弧度可以帮助用户颈椎恢复正常的生理曲度,另一方面用户头部通过该弧度自然下坠,使得颈椎逐渐紧密贴合该弧度,不断牵引用户颈椎,提升理疗效果,恢复颈椎正常曲线和生理状态。
在本实施例中,马鞍形承载面133中央部分区域向用户抵靠的承接侧面11延伸,最终延伸到超出承接侧面11,并位于呈对称分布的蝴蝶形承载面123中间部位,使得马鞍形承载面133的边缘和蝴蝶形承载面123配合形成定位部111。
可以理解的,马鞍形承载面133向承接侧面11一侧延伸的部分,用于对用户的背部进行承载,由 于用户的背部需承载的面积较大,因此该延伸的部分也超出承接侧面11较多,并且根据人体仰卧时背部生理结构,将该延伸部位设计为从所放置平面到马鞍形承载面133最低点高度逐渐升高,并且具有圆滑的周缘。
可以理解的,定位部111用于对用户的肩部进行承载和定位,使得用户在利用头部重力自然下坠,带动颈椎弯曲以恢复生理弧度的同时,定位部111通过与用户肩部的紧密抵接,提供一个反作用力,避免该颈椎理疗设备100发生滑动,提升对颈部的牵引效果以及对整体的理疗效果。同时,承接侧面11和定位部111的设置,可以帮助用户第一时间找到合理的卧式牵引位置,使得用户的颈部放置于该颈椎理疗设备100的马鞍形承载面133中央,以提升理疗效果。
在本实施例中,该颈椎理疗设备100还包括发光装置2,上盖组件13与底壳12围合形成容腔14,发光装置2固定于底壳12面向上盖组件一侧,并位于容腔14中。马鞍形承载面133在中央较低处对应发光装置2设有透光区,透光区可以将发光装置2发出的光线传递到用户的颈部。
可以理解的,发光装置2通过特定波长和光照幅度的红光及红外光对用户的颈部进行光生物理疗,光生物理疗能够缓解用户的疼痛,修复用户受损的肌肉和神经,与马鞍形承载面133的弧形牵引部共同修复用户颈椎的生理曲度,改善用户生理状态。优选地,设有透光区的上盖组件13,其透光率应大于或等于70%。
本申请技术方案的颈椎理疗设备100通过设置曲面壳体结构1,以对用户的颈椎生理曲度进行修复,并且在壳体结构的一侧设有承接侧面11,用于承接用户的肩部和背部;壳体结构1包括上盖组件13和底壳12,上盖组件13呈两边高、中间低的马鞍形承载面133,使得用户在仰卧使用该颈椎理疗设备100时,可将颈椎放入马鞍形承载面133中,此时马鞍形承载面133对用户颈部和背部进行承载和定位,将用户颈部固定于生理曲度恢复位,然后利用用户头部的重力对颈部进行缓和牵引。同时,底壳12在承接侧面11的一侧设有与用户肩部接触且对称分布的蝴蝶形承载面123,蝴蝶形承载面123与马鞍形承载面133的边缘共同形成用于定位用户肩部的定位部111,当用户在利用头部重力进行颈部曲度修复时,通过该定位部111对人体的肩部进行承载和定位,形成反作用力作用于颈部曲度修复,以达到松解痉挛的肌肉和粘连的软组织的效果,有效调节颈椎生理曲度,恢复颈椎的生理曲度,使颈椎各种功能保持稳定状态。该颈椎理疗设备还设有发光装置,该发光装置2设于上盖组件13和底壳12围合形成的容腔中,该发光装置2可精准控制红光红外辐照位置和辐照剂量,并通过透光区对用户的颈部进行进行PBM光生物照射理疗,以达到缓解疼痛、修复受损肌肉和神经的效果。
在本申请的一实施例中,马鞍形承载面133包括凹陷部1321和与凹陷部1321相连接的两个凸起部1311,两个凸起部1311对称设于凹陷部1321两侧,两个凸起部1311背向底壳12的一侧呈半球形,且凸起部1311与凹陷部1321的连接处呈圆滑过渡设置,凹陷部1321位于马鞍形承载面133的中央,凹 陷部1321朝向承接侧面11的一侧延伸,并形成弧形承载部1313,弧形承载部1313位于蝴蝶形承载面123的中央,透光区设于凹陷部1321,弧形承载部1313的两侧分别与两个凸起部1311的边缘圆滑过渡连接,以形成弧形定位凸缘134,弧形定位凸缘134与蝴蝶形承载面123配合形成定位部111。
在本实施例中,如图1和图2所示,马鞍形承载面133由两侧较高2的凸起部1311和位于两个凸起部1311中间较低的凹陷部1321组成,并且凹陷部1321与两侧的凸起部1311均为圆滑过渡连接,并且两个凸起部也朝向背离底壳12的一侧设置为半球形。可以理解的,凹陷部1321与两侧的凸起部1311均为圆滑过渡连接,使得马鞍形承载面133具有适合用户使用的曲面,为用户提供舒适的理疗环境。同时,圆滑过渡连接也为颈椎提供准确的定位和承载,利于用户颈椎恢复正常的生理曲度。
在本实施例中,凹陷部1321设于马鞍形承载面133的中央,并且凹陷部1321向承接侧面11的一侧延伸,以凸出承接侧面11形成弧形承载部1313,弧形承载部1313与两个凸起部1311的边缘圆滑过渡连接,同样凸出承接侧面11形成弧形定位凸缘134,以使弧形定位凸缘134与蝴蝶形承载面123配合形成定位部111。
可以理解的,弧形承载部1313凸出承接侧面11的距离要大于弧形定位凸缘134凸出承接侧面11的距离,以使从弧形承载部1313到凸起部1311的边缘能够形成圆滑的过渡曲线,也即在蝴蝶形承载面123与弧形承载部1313连接的地方其凸出承接侧面11的距离要稍大于蝴蝶形承载面123与凸起部1311的边缘连接地方的凸出承接侧面11的距离,形成的半封闭区域即为定位部111。如此设置,可以有效的对用户的肩部进行定位和承载,使用户的肩部部分包裹在定位部111中。同时,通过定位部111和弧形承载部1313的配合,形成由用户的肩部和用户的背部形成的稳定三点支撑结构,保证用户在进行颈部的牵引时,肩部和背部能够稳定提供支撑力,进一步提升对用户颈部的承载和支撑,提升理疗效果。
在本申请的一实施例中,上盖组件13包括安装壳131和牵引壳132,安装壳131与底壳12相连接,安装壳131包括两个凸起部1311和位于两个凸起部1311之间的下沉部1312,下沉部1312开设有连通容腔14的贯穿孔,下沉部1312朝向承接侧面11一侧延伸形成弧形承载部1313,牵引壳132盖合贯穿孔,并与安装壳131连接,牵引壳132背向容腔14的一侧形成有与凸起部1311圆滑过渡连接的凹陷部1321,牵引壳132形成有透光区。
在本实施例中,如图1所示,安装壳131与底壳12相连接,安装壳131呈马鞍面造型,并且凸起部1311设于安装壳131的两端,在安装壳131上并位于两个凸起部1311之间设有下沉部1312,在下沉部1312上开设有连通容腔14的贯穿孔,牵引壳132设于下沉部1312,并盖合贯穿孔与安装壳131连接,牵引壳132形成有透光区。
可以理解的,牵引壳132背向容腔14的一侧形成有与凸起部1311圆滑过渡连接的凹陷部1321,以和位于安装壳131上两端的凸起部1311共同形成马鞍形承载面133。根据制造工艺和实际使用效果, 将上盖组件13分体设置为安装壳131和牵引壳132,安装壳131为主体支撑结构,用于与底壳12相连接并且承受用户所施加的压力;牵引壳132为主要造型结构,通过其凹陷部1321和凸起部1311的配合,形成适于用户颈椎正常生理曲度的弧形结构。并且,为保证发光装置2能够穿透上盖组件13对用户颈部进行光疗,将透光区设于牵引壳132上,以使牵引壳132在对用户颈椎进行牵引的同时也能对颈部进行光疗,以达到缓解疼痛,修复受损肌肉和神经的效果。
在本申请的一实施例中,底壳12包括主体部121和两个弧形部122,两个弧形部122设于主体部121面向承接侧面11的一侧,并呈对称设置,且两个弧形部122配合形成凹陷槽1221,弧形承载部1313容纳并限位于凹陷槽1221内,弧形承载部1313、安装壳131边缘及两个弧形部122共同形成定位部111。
在本实施例中,如图1和图2所示,底壳12由主体部121和设于主体部121两侧的弧形部122组成,两个弧形部122呈对称设置,并配合形成位于主体部121且面向承接侧面11一侧的凹陷槽1221,以使弧形承载部1313能够放置安装于凹陷槽1221内。
可以理解的,位于主体部121两侧的弧形部122,分别与设于安装壳131两端的凸起部1311相连接,以在壳体结构1两端形成圆滑的球形结构。蝴蝶形承载面123位于凹陷槽1221的两侧,使得部分蝴蝶形承载面123的边缘与凸起部1311边缘相连接。通过弧形承载部1313与凹陷槽1221的配合安装,使得壳体结构1形成面向用户使用的承接侧面11的一侧,形成有适于用户背部和肩部放置的区域,有效帮助用户卧躺到最佳位置,为用户提供舒适的使用体验。
在本申请的一实施例中,颈椎理疗设备100还包括脚垫组件3,脚垫组件3包括垫板31和磁吸件32,垫板31通过磁吸件32与底壳12背向上盖组件13的一侧磁吸连接。
可以理解的,如图1所示,磁吸件32设于垫板31中,使得垫板31可拆卸的设于底壳12背向上盖组件13的一侧,便于用户调整该颈椎理疗设备100的高度。
在本申请的一实施例中,磁吸件32包括第一磁性件321和第二磁性件322,垫板31开设有第一安装槽,第一磁性件321设于第一安装槽中,底壳12对应第一安装槽开设有多个第二安装槽,第二磁性件322设于第二安装槽中;其中,第一磁性件321与第二磁性件322磁吸连接,使垫板31安装于底壳12背向上盖组件13一侧。
可以理解的,第一磁性件321与垫板31相连接,第二磁性件322与底壳相连接,通过第一磁性件321与第二磁性件322的磁性吸合,使垫板31可拆卸的安装于底壳12底侧。通过磁性吸合可拆卸的方式,使得用户可按照自身情况以调整该颈椎理疗设备100的高度,寻找最适合的理疗高度,以对颈椎实现良好的牵引效果,提高理疗效果。
在本申请的一实施例中,脚垫组件3设有多个,多个脚垫组件3厚度相同,且设于底壳12同侧。可以理解的,如图1所示,脚垫组件3设有多个,且均匀分布在底壳12背向上盖组件13同一侧,同时 使用的多个脚垫组件3厚度相同。可选地,脚垫组件3可设有2个、3个或4个,在此不做限定,多个脚垫组件3呈对称分布,以保证该颈椎理疗设备100在放置时的稳定性。
可选地,垫板31厚度为5mm至10mm。可以理解的,脚垫组件3中垫板31的厚度可根据用户的日常使用习惯和理疗程度的不同,选择为5mm至10mm。如此设置,可使用户更加灵活的配置脚垫组件3,以达到舒适和有效的实际体验效果。
可选地,磁吸件32设有多个。可以理解的,如图1所示,磁吸件32设有多个,使得垫板31和底壳12分别开设有多个相对应的第一安装槽和第二安装槽,其中每一个第一磁性件321设于一个第一安装槽中,每一个第二磁性件322设于一个第二安装槽中。
在本申请的一实施例中,发光装置2包括安装架21和发光组件22,安装架21设于容腔中,并安装于底壳面向上盖组件一侧,安装架21包括主体部211和延伸部212,主体部211呈拱形结构,并形成有拱形面2111,延伸部212设于主体部211的一端,发光组件22设于安装架21面向透光区一侧,发光组件22包括第一发光件221和第二发光件222,第一发光件221设于拱形面2111上,第一发光件221沿拱形面2111向延伸部212方向延伸,第二发光件222设于延伸部212,并与拱形面2111位于同一侧。
在本实施例中,如图1、图3及图4所示,安装架21为发光装置2的结构支撑件,用于支撑发光组件22,并为发光组件22提供安装基础,安装架21正对理疗装置的透光区设置。发光组件22设于安装架21面向透光区的一侧。可以理解的,安装架21可以是安装台、基台、机架或安装面,在此不做限定。发光组件22可以是粘合于安装架21上,也可以是限位卡接于安装架21上,还可以是插接于安装架21上,在此不做限定。
可以理解的,安装架21设于容腔中发光组件22安装于安装架21上,以通过透光区对用户的颈部和部分肩部进行光生物理疗,起到帮助消炎和修复受损神经和肌肉的效果。安装架21的位置和高度均可调节,也即拱形面2111的曲度、高度和宽度以及平直面2121的宽度、高度均可调节,以适应不同的使用场景和理疗对象,提高该颈椎理疗设备的通用性和适用性。
在本实施例中,安装架21具有与正对的马鞍面造型的牵引壳所对应的拱形面2111,拱形面2111的最高点与牵引壳马鞍面最高点对应,以使第一发光件221按照拱形面2111的曲线设置与面向透光区的一侧。第一发光件221为条状,并且设有多条,互相平行的设置于拱形面2111上,并且沿拱形面2111的曲线设置,以对人体颈椎进行多角度全方位的照射。
可以理解的,通过拱形面2111的设置,可以使第一发光件221具有与牵引壳中马鞍面造型相同的曲线,从而使得用户的颈部按照马鞍面曲线贴合于牵引壳上时,第一发光件221也能通过该曲线对人体颈椎实现全方位的光照,提高理疗效果。
在本实施例中,该发光装置2安装于颈椎理疗设备100中,颈椎理疗设备100为发光装置2提供安装空间、电源供给和控制部件,使得发光装置2可以独立运行也可以随颈椎理疗设备100一同运行。可以理解的,该发光装置2可以发出特定波长和辐照度的红光及红外光,以对用户的特定部位进行光疗,当发光装置2安装于颈椎理疗设备100时,颈椎理疗设备100开设有用于透过红光及红外光光线的透光区。同时,该透光区也具有匹配用户肩部、颈部、腰部、背部或腿部曲线的弧面和平面,以使用户将所理疗部位固定于透光区上,便于发光装置2对特定部位进行光疗。该发光装置2可应用于人体多处部位,其通用性和适用性较强。
在本实施例中,安装架21由呈拱形结构的主体部211和设于主体部211一端的延伸部212组成,延伸部212呈平板状,呈拱形结构的主体部211设有拱形面2111,延伸部212设有与拱形面2111位于同一弧面上的放置面,以使发光组件22放置于拱形面2111和放置面上。可以理解的,主体部211和延伸部212可以是一体成型,也可以是分体安装,在此不做限定。主体部211和延伸部212所针对的理疗部位也有所不同,呈拱形结构的主体部211可以更好的匹配人体的颈部和腰部曲线,使得发光组件22所发出的红光和红外光更加均匀和全面的覆盖所光疗的部位,有效提高理疗效果。而呈平板状的延伸部212主要针对颈部与背部,以及肩部与背部相邻的部分区域。例如人体颈背部的大椎穴处,通过设于延伸部212的发光组件22发出光辐照,提供辐射热量,加速血液循环,可以有效的帮助用户缓解脖子疼、颈肩痛。
在本实施例中,发光组件22由设于拱形面2111上的第一发光件221和设于延伸部212的放置面的第二发光件222组成,拱形面2111和放置面位于安装架21的同一侧,也即第一发光件221和第二发光件222也设于安装架21的同一侧。
可以理解的,第一发光件221铺设于拱形面2111上,使得第一发光件221也呈拱形,其适用于用户修复特定部位的生理曲度或对一些存在弧度的部位进行光疗,如颈部、腰部或腿部等。第二发光件222配合第一发光件221使用,可对一些区域较大的部位进行光疗,如肩部、背部或腰部等。具体来说,发光组件22通过发出特定波长和光辐照度的红光及红外光,以对所光疗的部位提供辐射热量,加速血液循环,以达到松弛用户局部僵硬的肌肉,缓解酸痛的效果,同时帮助修复受损的神经和肌肉,消除炎症和水肿。
在本申请的一实施例中,延伸部212形成有平直面2121,平直面2121与拱形面2111相连接;第一发光件221设于拱形面2111朝向透光区一侧,第二发光件222设于平直面2121朝向透光区一侧。
可以理解的,如图3和图4所示,在拱形面2111的一端,也即面向承接侧面一侧延伸设置有用于放置第二发光件222的平直面2121,拱形面2111和平直面2121为是一体成型结构。同时在平直面2121上所放置的第二发光件222,也能够照射到用户的部分背部,放松背部肌肉和神经,减缓背部疼痛,实 现光生物理疗的效果。
在本申请的一实施例中,主体部211包括相连接的第一弧形面2111a和第二弧形面2111b,第一弧形面2111a和第二弧形面2111b形成拱形面2111,拱形面2111上设有沿拱形面2111弧形设置的放置槽2112,第一发光件221限位于放置槽2112中。
在本实施例中,如图3所示,主体部211的拱形面2111有相连接的第一弧形面2111a和第二弧形面2111b组成,延伸部212设于第一弧形面2111a背向第二弧形面2111b的端部,在拱形面2111上设有用于放置第一发光件221的放置槽2112。可以理解的,放置槽2112沿拱形面2111的弧形设置,也即放置槽2112也呈拱形设置,第一发光件221也以拱形结构限位铺设于放置槽2112中,使得第一发光件221在生产时安装于准确的位置,避免因位置偏移而影响光疗效果。在背向拱形面2111的一侧,主体部211设有多条加强筋,以加强该主体部211以及安装架21的结构强度。
在本申请的一实施例中,放置槽2112包括有多个第一限位槽2112a,多个第一限位槽2112a从第二弧形面2111b背向第一弧形面2111a的端部延伸到延伸部212,并与延伸部212相连通,多个第一限位槽2112a沿拱形面2111弧形的轴线方向上间隔均匀分布,并互相平行;第一发光件221包括有多个发光条2211,发光条2211个数与第一限位槽2112a个数相同,发光条2211沿拱形面2111的弧形方向设置,使每一发光条2211限位于一第一限位槽2112a中。
在本实施例中,如图3和图4所示,放置槽2112由多个相同的第一限位槽2112a组成,多个第一限位槽2112a同样沿拱形面2111的弧形设置,具体来说,就是从第二弧形面2111b背向第一弧形面2111a的端部延伸到第一弧形面2111a与延伸部212连接的端部,以使多个第一限位槽2112a与延伸部212相连通,第一发光件221也包括与第一限位槽2112a数量相同的多个发光条2211,每一发光条2211限位设置于一第一限位槽2112a中,以使发光条2211和第一限位槽2112a在沿拱形面2111弧形的轴线方向上间隔均匀分布。
可以理解的,放置槽2112可以是一个完整的放置区域,也可以是拆分为多个第一限位槽2112a的形式。同样的,第一发光件221可以是一个完整的发光部件限位设置与放置槽2112中,也可拆分为多个相同的发光条2211设置于第一限位槽2112a中。发光条2211和第一限位槽2112a均沿拱形面2111的弧形方向设置,并沿拱形面2111弧形的轴线方向间隔平行排布。同时,多个第一限位槽2112a和多个发光条2211的位置也并不固定,其位置可以随用户的实际需求而改变。多个发光条2211和第一限位槽2112a的设置,可以灵活设置发光条2211的位置,更好的契合人体生理曲线,以提高理疗效果。
在本申请的一实施例中,发光条2211一侧表面沿拱形面2111弧形方向均匀且间隔的设有多个红光红外灯珠,以形成弧形的发光区域,发光条2211另一侧通过粘合剂与第一限位槽2112a底壁相粘合,以使发光条2211限位于第一限位槽2112a中;可选地,每一发光条2211上设置有至个红光红外灯珠。 可以理解的,如图和图所示,发光条2211沿拱形面2111弧形方向设有的多个红光红外灯珠,其为单列排布,且每一列上依据该发光装置2的大小设为至个红光红外灯珠,以针对不同使用人群、不同的光疗部位以及不同的理疗强度,选择不同个数的红光红外灯珠,提高该产品的通用性和适用性。同时,也可以通过选择不同的红光红外灯珠个数,从而精准的控制该发光装置2的辐照强度和辐照剂量。优选地,发光条2211通过粘合剂粘合于第一限位槽2112a的底壁上,使发光条2211限位设置于第一限位槽2112a中。发光条2211也可通过卡接或插接的方式固定于第一限位槽2112a中,在此不做限定。
在本申请的一实施例中,延伸部212开设有第二限位槽2122,第二限位槽2122与多个第一限位槽2112a相连通,第二发光件222限位设置于第二限位槽2122中。
可以理解的,如图3所示,延伸部212开设有放置第二发光件222的第二限位槽2122,第二放置槽2112呈平板状,多个第一限位槽2112a均与第二限位槽2122相连通,使得第一发光件221可以与第二发光件222直接电性连接,避免设置额外的电路。
在本申请的一实施例中,第二限位槽2122底壁中央开设有通孔2122a,第二发光件222一端穿设于通孔2122a中,第二发光件222另一端抵接于第二限位槽2122的底壁,以使第二发光件222安装于延伸部212上。
可以理解的,如图4所示,延伸部212在第二限位槽2122的底壁的中央开设有通孔2122a,第二发光件222一端穿过通孔2122a中,另一端抵接于第二限位槽2122的底壁上,以使第二发光件222整体固定于延伸部212上。通孔2122a的设置,使得第二发光件222可通过通孔2122a与外部的控制部件和电源部件进行电路连通,避免在安装架21设有拱形面2111的一侧布线,提高该发光装置2的美观度的同时,也不会影响该发光装置2的光疗效果。
在本申请的一实施例中,第二发光件222包括发光板2221和定位块2222,发光板2221一侧设有多个红光红外灯珠,发光板2221另一侧的周缘抵接于第二限位槽2122底壁,定位块2222设于发光板2221抵接于第二限位槽2122底壁一侧的中央,定位块2222穿设于通孔2122a,以将第二发光件222限位和固定于延伸部212上。可选地,第二发光件222设有多个红光红外灯珠,多个红光红外灯珠呈矩形阵列排布;可选地,所述第二发光件222设有多个红光红外灯珠,红光红外灯珠个数为至个。可以理解的,红光红外灯珠的个数选择为至个,可以针对不同的用户更精准的控制辐照剂量。
可以理解的,如图4所示,第二发光件222由发光板2221和定位块2222组成,发光板2221一侧的周缘抵接与第二限位槽2122的底壁上,使得发光板2221能够放置于第二限位槽2122中,并面向用户以进行光疗,发光板2221背向第二限位槽2122的底壁一侧设有多个红光红外灯珠。优选地,多个红光红外灯珠呈矩形阵列间隔排布,以形成平面的发光区域,并且根据所针对的人群不同,所光疗的部位不同以及所光疗的强度不同,发光板2221上的红光红外灯珠个数在至个,便于用户调整和更换光疗方 案。在发光板2221面向第二限位槽2122底壁一侧的中央位置,设有定位块2222,定位块2222抵接于通孔2122a的孔壁,使得第二发光件222可以卡接于通孔2122a中。为保证第二发光件222能牢固限位和固定于延伸部212上,还可通过螺栓连接,将发光板2221与第二限位槽2122的底壁连接起来。
在本申请的一实施例中,红光红外灯珠中的红光波长为630nm至700nm,光辐照度为20mw/cm 2至150mw/cm 2;可选地,红光红外灯珠中的红外波长为810nm至890nm,光辐照度为50mw/cm 2至150mw/cm 2
可以理解的,光生物理疗在缓解疼痛、修复受损肌肉和神经和改善骨关节炎疾病的功能方面是成功的,是一种新型的理疗技术,但是要关注光线的波长、辐照度以及照射剂量等参数,才能保证产品的有效性。该发光装置2中红光红外灯珠中红光波长为630nm至700nm,光辐照度为20mw/cm 2至150mw/cm 2;红外波长为810nm至890nm,光辐照度为50mw/cm 2至150mw/cm 2,使得该发光装置2具有较宽的调节范围,以适应不同的理疗人群和不同的光疗强度,增强该发光装置2的适用性。在另一实施例中,发光板2221上安装有有温度传感器,可以收集光疗部位皮肤的实时温度以调整红光及红外线的辐照度,通过调节控制红光及红外线的辐照度以控制辐射到颈部的红外能量,使得对用户可以精准控制辐照剂量。并且最高700nm的高强度红光是修复神经和肌肉的主要波长,优选地,850nm特定波长近红外,其在消炎、镇痛上的表现都优于其他波长的远红外。因此,以850nm为基准,设置810nm至890nm为该发光装置2中红外光波长调节范围。
在本申请的一实施例中,红光红外灯珠的芯片个数为单芯片、双芯片或三芯片。可以理解的,红光红外灯珠按照所针对的人群不同,所光疗的部位不同以及所光疗的强度不同,可设置为单芯片、双芯片或三芯片,以增强该发光装置2的实用性和灵活性,提供多种光疗方案,提升理疗效果。
在本申请的一实施例中,底壳12和上盖组件13围合形成连通容腔14的通槽141,通槽141邻近承接侧面11设置,且通槽141的槽口方向与承接侧面11相平行;颈椎理疗设备100还包括控制组件4,控制组件4包括键壳41、键板42及导键43,键壳41穿设于通槽141,并与壳体结构1卡接,键壳41开设有键槽411,键板42安装于键壳41面向容腔14的一侧,键板42与发光装置2电性连接,键板42面向键壳41的一侧设有按键部421,导键43一端穿设于键槽411中,并与键壳41卡接,导键43的另一端与按键部421连接。
在本实施例中,如图1所示,该颈椎理疗设备100还包括设于壳体结构1上的控制组件4,具体来说,壳体结构1在邻近承接侧面11的一侧上开设有通槽141,控制组件4设于通槽141中,控制组件4与发光组件22电性连接,以控制发光组件22的运行。控制组件4包括设于最外侧的键壳41,键壳41分别与底壳12和上盖组件13相卡接,同时,键壳41上开设有键槽411,用于放置导键43,导键43的另一端与键板42相连接,具体来说,导键43与键板42上的按键部421相抵接,键板42固定在键壳 41面向容腔14的一侧。
可以理解的,控制组件4控制该颈椎理疗设备100的开启和关闭,同时也控制该颈椎理疗设备100中核心部件发光装置2的运行和参数调整。如控制支架21的高度和弯曲度,控制发光组件22的光辐照度和光照波长,以调节该发光装置2的辐照剂量,进而调节对用户的理疗。用户在操作时,按下导键43设于键槽411中的一端,导键43的另一端随之按动键板42上的按键部421,通过按键部421对应不同的组件和部件,从而控制发光装置2,以实现不同的操作。
在本申请的一实施例中,颈椎理疗设备100还包括电路板,电路板安装于底壳12上,电路板与发光装置2和控制组件4电性连接,以使控制组件4控制和调节发光装置2。可以理解的,电路板与发光装置2和控制组件4电性连接,使得用户对控制组件4的操作,可传递到电路板中,以达到控制和调节发光装置2的目的,并且电路板也具有稳压、传输信号、调节发光装置2辐照强度的功能。
以上所述仅为本申请的优选实施例,并非因此限制本申请的专利范围,凡是在本申请的构思下,利用本申请说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。

Claims (19)

  1. 一种颈椎理疗设备,其中,所述颈椎理疗设备包括:
    壳体结构,所述壳体结构具有承接侧面,所述壳体结构包括底壳和上盖组件,所述上盖组件与所述底壳连接,并围合形成容腔,所述底壳面向所述承接侧面的一侧设有蝴蝶形承载面,且所述蝴蝶形承载面邻近所述上盖组件设置,所述上盖组件背向所述底壳的一侧设有马鞍形承载面,所述马鞍形承载面具有透光区,所述马鞍形承载面朝向所述承接侧面延伸,并部分位于所述蝴蝶形承载面的中央,以使所述马鞍形承载面的边缘与所述蝴蝶形承载面配合形成定位部,所述定位部用于对用户的肩部进行承载和定位,所述马鞍形承载面用于承载用户的颈部和背部;和
    发光装置,所述发光装置设于所述容腔内,并与所述透光区对应设置。
  2. 根据权利要求1所述的颈椎理疗设备,其中,所述马鞍形承载面包括凹陷部和与所述凹陷部相连接的两个凸起部,两个所述凸起部对称设于所述凹陷部两侧,两个所述凸起部背向所述底壳的一侧呈半球形,且所述凸起部与所述凹陷部的连接处呈圆滑过渡设置,所述凹陷部位于所述马鞍形承载面的中央,所述凹陷部朝向所述承接侧面的一侧延伸,并形成弧形承载部,所述弧形承载部位于所述蝴蝶形承载面的中央,所述透光区设于所述凹陷部,所述弧形承载部的两侧分别与两个所述凸起部的边缘圆滑过渡连接,以形成弧形定位凸缘,所述弧形定位凸缘与所述蝴蝶形承载面配合形成所述定位部。
  3. 根据权利要求2所述的颈椎理疗设备,其中,所述上盖组件包括安装壳和牵引壳,所述安装壳与所述底壳相连接,所述安装壳包括两个所述凸起部和位于两个所述凸起部之间的下沉部,所述下沉部开设有连通所述容腔的贯穿孔,所述下沉部朝向所述承接侧面一侧延伸形成所述弧形承载部,所述牵引壳盖合所述贯穿孔,并与所述安装壳连接,所述牵引壳背向所述容腔的一侧形成有与所述凸起部圆滑过渡连接的所述凹陷部,所述牵引壳形成有所述透光区。
  4. 根据权利要求3所述的颈椎理疗设备,其中,所述底壳包括主体部和两个弧形部,两个所述弧形部设于所述主体部面向所述承接侧面的一侧,并呈对称设置,且两个所述弧形部配合形成凹陷槽,所述弧形承载部容纳并限位于所述凹陷槽内,所述弧形承载部、所述安装壳边缘及两个所述弧形部共同形成所述定位部。
  5. 根据权利要求1所述的颈椎理疗设备,其中,所述颈椎理疗设备还包括脚垫组件,所述脚垫组件包括垫板和磁吸件,所述垫板通过所述磁吸件与所述底壳背向所述上盖组件的一侧磁吸连接。
  6. 根据权利要求5所述的颈椎理疗设备,其中,所述磁吸件包括:
    第一磁性件,所述垫板开设有第一安装槽,所述第一磁性件设于所述第一安装槽中;和
    第二磁性件,所述底壳对应所述第一安装槽开设有多个第二安装槽,所述第二磁性件设于所述第二安装槽中;
    其中,所述第一磁性件与所述第二磁性件磁吸连接,使所述垫板安装于所述底壳背向所述上盖组件一侧。
  7. 根据权利要求5所述的颈椎理疗设备,其中,所述脚垫组件设有多个,多个所述脚垫组件厚度相同,且多个所述脚垫组件设于所述底壳的同侧;
    且/或,所述垫板厚度为5mm至10mm;
    且/或,所述磁吸件设有多个。
  8. 根据权利要求1至7中任一项所述的颈椎理疗设备,其中,所述发光装置包括:
    安装架,所述安装架设于所述容腔中,并安装于所述底壳面向所述上盖组件一侧,所述安装架包括主体部和延伸部,所述主体部呈拱形结构,并形成有拱形面,所述延伸部设于所述主体部的一端;和
    发光组件,所述发光组件设于所述安装架面向所述透光区一侧,所述发光组件包括第一发光件和第二发光件,所述第一发光件设于所述拱形面上,所述第一发光件沿所述拱形面向所述延伸部方向延伸,所述第二发光件设于所述延伸部,并与所述拱形面位于同一侧。
  9. 根据权利要求8所述的颈椎理疗设备,其中,所述延伸部形成有平直面,所述平直面与所述拱形面相连接;
    所述第一发光件设于所述拱形面朝向所述透光区一侧,所述第二发光件设于所述平直面朝向所述透光区一侧。
  10. 根据权利要求8所述的颈椎理疗设备,其中,所述主体部包括相连接的第一弧形面和第二弧形面,所述第一弧形面和所述第二弧形面形成所述拱形面,所述拱形面上设有沿所述拱形面弧形设置的放置槽,所述第一发光件限位于所述放置槽中。
  11. 根据权利要求10所述的颈椎理疗设备,其中,所述放置槽包括有多个第一限位槽,多个所述第一限位槽从所述第二弧形面背向所述第一弧形面的端部延伸到所述延伸部,并与所述延伸部相连通,多个所述第一限位槽沿所述拱形面弧形的轴线方向上间隔均匀分布,并互相平行;
    所述第一发光件包括有多个发光条,所述发光条个数与所述第一限位槽个数相同,所述发光条沿所述拱形面的弧形方向设置,使每一所述发光条限位于一所述第一限位槽中。
  12. 根据权利要求11所述的颈椎理疗设备,其中,所述发光条一侧表面沿所述拱形面弧形方向均匀且间隔的设有多个红光红外灯珠,所述发光条另一侧通过粘合剂与所述第一限位槽底壁相粘合,以使所述发光条限位于所述第一限位槽中;
    且/或,每一所述发光条上设置有5至10个红光红外灯珠。
  13. 根据权利要求11所述的颈椎理疗设备,其中,所述延伸部开设有第二限位槽,所述第二限位槽与多个所述第一限位槽相连通,所述第二发光件限位设置于所述第二限位槽中。
  14. 根据权利要求13所述的颈椎理疗设备,其中,所述第二限位槽底壁中央开设有通孔,所述第二发光件一端穿设于所述通孔中,所述第二发光件另一端抵接于所述第二限位槽的底壁,以使所述第二发光件安装于所述延伸部上。
  15. 根据权利要求14所述的颈椎理疗设备,其中,所述第二发光件包括发光板和定位块,所述发光板一侧设有多个红光红外灯珠,所述发光板另一侧的周缘抵接于第二限位槽底壁,所述定位块设于所述发光板抵接于所述第二限位槽底壁一侧的中央,所述定位块穿设于所述通孔,以将所述第二发光件限位和固定于所述延伸部上;
    且/或,所述第二发光件设有多个红光红外灯珠,多个所述红光红外灯珠呈矩形阵列排布;
    且/或,所述第二发光件设有多个红光红外灯珠,所述红光红外灯珠个数为5至10个。
  16. 根据权利要求12或15中任一项所述的颈椎理疗设备,其中,所述红光红外灯珠中的红光波长为630nm至700nm,光辐照度为20mw/cm 2至150mw/cm 2
    且/或,所述红光红外灯珠中的红外波长为810nm至890nm,光辐照度为50mw/cm 2至150mw/cm 2
  17. 根据权利要求16所述的颈椎理疗设备,其中,所述红光红外灯珠的芯片个数为单芯片、双芯片或三芯片。
  18. 根据权利要求1所述的颈椎理疗设备,其中,所述底壳和所述上盖组件围合形成连通所述容腔的通槽,所述通槽邻近所述承接侧面设置,且所述通槽的槽口方向与所述承接侧面相平行;
    所述颈椎理疗设备还包括控制组件,所述控制组件包括:
    键壳,所述键壳穿设于所述通槽,并与所述壳体结构卡接,所述键壳开设有键槽;
    键板,所述键板安装于所述键壳面向所述容腔的一侧,所述键板与所述发光组件电性连接,所述键板面向所述键壳的一侧设有按键部;及
    导键,所述导键一端穿设于所述键槽中,并与所述键壳卡接,所述导键的另一端与所述按键部连接。
  19. 根据权利要求18所述的颈椎理疗设备,其中,所述颈椎理疗设备还包括电路板,所述电路板安装于所述底壳上,所述电路板与所述发光装置和所述控制组件电性连接,以使所述控制组件控制和调节所述发光装置。
PCT/CN2022/125992 2022-10-08 2022-10-18 颈椎理疗设备 WO2024073902A1 (zh)

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