CN219332140U - Head and neck supporting device of spine cervical vertebra decompression system - Google Patents

Head and neck supporting device of spine cervical vertebra decompression system Download PDF

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Publication number
CN219332140U
CN219332140U CN202122169882.2U CN202122169882U CN219332140U CN 219332140 U CN219332140 U CN 219332140U CN 202122169882 U CN202122169882 U CN 202122169882U CN 219332140 U CN219332140 U CN 219332140U
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neck
head
support
layer
air bag
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CN202122169882.2U
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张新民
申彦魁
李洪涛
李传
张吉琛
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Zhengzhou Feilong Medical Equipment Co ltd
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Zhengzhou Feilong Medical Equipment Co ltd
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Abstract

The utility model provides a head and neck supporting device of a spine cervical vertebra decompression system, which comprises a base, a base shell, a head support, a neck lifting mechanism and a helmet; the base shell is covered on the base, the head support is fixed on the base shell, the bottom end of the neck lifting mechanism is fixed on the base, the neck lifting mechanism is hidden in the base shell, the neck support is arranged at the top end of the neck lifting mechanism and above the base shell, the helmet is fixed on the base shell and surrounds the head support and the neck support, and the helmet is provided with a transparent baffle plate capable of being turned and opened. The head and neck supporting device has the advantages of adjustable neck supporting height, high comfort and excellent health care function.

Description

Head and neck supporting device of spine cervical vertebra decompression system
Technical Field
The utility model relates to the field of vertebral column and cervical vertebra decompression rehabilitation, in particular to a head and neck supporting device of a vertebral column and cervical vertebra decompression system.
Background
The prior relaxation stretching equipment for human body vertebration, cervical vertebra and the like is usually designed into lying bed type traction equipment, and products under a vertebra and cervical vertebra decompression treatment system, such as an external star bin and the like, are usually used for fixing the head, waist, legs and feet of a human body, and then traction rehabilitation treatment is carried out on local parts of the human body in a traction mode.
On this basis, the support and the fixation of each part are particularly important.
Particularly in systems with specific positioning and decompression for the cervical vertebrae, which are relatively critical for the support of the head and neck, there is currently no specific adjustable integrated support solution for the head and neck arrangement.
In order to solve the above problems, an ideal technical solution is always sought.
Disclosure of Invention
The utility model aims at overcoming the defects of the prior art, thereby providing the head and neck supporting device of the spine cervical vertebra decompression system with adjustable neck supporting height, high comfort and excellent health care function.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows: a head and neck supporting device of a spine cervical vertebra decompression system comprises a base, a base shell, a head support, a neck lifting mechanism, a forehead fixing belt and a helmet;
the base shell cover is established on the base, the head support is fixed on the base shell, neck elevating system's bottom mounting is in on the base, neck elevating system hide in the base shell, the neck support is installed on neck elevating system's top and is located the top of base shell, the one end of forehead fixed band is fixed in on the base shell of head support one side, the other end passes through fast-insert component connection on the base shell of head support opposite side, the helmet is fixed on the base shell and surrounds the head support with the neck support, there is the transparent baffle that can overturn and open on the helmet.
The neck lifting mechanism comprises a bracket, a motor, a bidirectional screw rod, a guide post, two sliding blocks, two supporting arms and two rotating arms;
the support is arranged on the base, the bidirectional screw rod and the guide post are arranged in parallel and horizontally and are arranged on the support, and the motor is arranged on the support and drives the bidirectional screw rod to rotate;
the two sliding blocks are respectively provided with a threaded hole and a guide hole, the two sliding blocks are respectively arranged at the threaded parts at the left end and the right end of the bidirectional screw rod in a threaded manner, the guide holes of the two sliding blocks are sleeved on the guide posts, and the motor, the bidirectional screw rod, the sliding blocks and the guide posts form a linear motion mechanism;
one end of the supporting arm is hinged on the sliding block, the other end of the supporting arm is hinged on the neck support on the same side as the sliding block, one end of the rotating arm is hinged in the middle of the supporting arm, and the other end of the rotating arm is hinged on the bracket;
the two supporting arms are arranged in a V shape.
Based on the above, the middle part of the bidirectional screw rod is fixed with a transmission gear, and the output side of the motor is used for transmitting the transmission gear through a gear or a gear set.
Based on the above, two ends of the bidirectional screw rod are rotatably arranged on the bracket through bearings.
Based on the above, limit baffles are arranged on the inner sides of the guide posts corresponding to the two sliding blocks respectively, and the bottom ends of the limit baffles are fixed on the support.
The neck support comprises a neck support plate, a support sponge layer, an air bag module, a sponge filling layer, a neck heating plate, a neck pillow sponge layer and a neck finish layer;
the neck support plate is fixed on the base shell and is a plane neck support plate;
the support sponge layer is paved on the neck support plate, and the air bag module is arranged at the upper end of the support sponge layer;
the neck pillow sponge layer is paved above the neck heating plate;
the neck supporting plate, the supporting sponge layer, the air bag module, the sponge filling layer, the neck heating plate and the neck pillow sponge layer form a pillow core, and the neck finish layer is wrapped on the outer layer of the pillow core.
The air bag module comprises a left air bag and a right air bag, wherein the left air bag and the right air bag are communicated through an adjusting valve and an air pipe, the left air bag corresponds to the left half side of the pillow core, and the right air bag corresponds to the right half side of the pillow core.
Based on the above, the neck heating piece is a graphene neck heating piece, and the neck heating piece is divided into a left half part and a right half part which are symmetrically arranged on the left half part and the right half part of the pillow core.
The head support comprises a head support plate, a thin film pressure distributed sensor, a thick sponge filling layer, a head heating plate, a headrest sponge layer and a head finish layer, wherein the thick sponge filling layer is arranged above the head support plate, the head heating plate is arranged on the upper end surface of the thick sponge filling layer, the headrest sponge layer is arranged above the head heating plate, and the thin film pressure distributed sensor is arranged in the headrest sponge layer; the head supporting plate, the film pressure distributed sensor, the thick sponge filling layer, the head heating plate and the headrest sponge layer form a pillow core, and the head decoration layer wraps the pillow core.
Based on the above, the thin film pressure distribution sensor is arranged with a back brain supporting point as a center, the head heating sheet is a graphene head heating sheet, and the head facing layer is leather.
Compared with the prior art, the utility model has substantial characteristics and progress, in particular, the utility model improves the traditional head and neck support structure, separates the head support from the neck support, adopts the fixed support, adopts the height-adjustable support form for the neck support, is matched with the forehead fixing belt, and accurately adjusts the head and neck height difference suitable for a patient by adjusting the height of the neck support after fixing the forehead position, thereby achieving the aim of accurately positioning and pulling, and the design of the helmet can lead the head of the patient to be in a closed space, has little external interference and is beneficial to rehabilitation and rest.
Further, the neck support part abandons the traditional air bag type, adopts the flexible neck brace, and under the prerequisite of flexible neck brace, designs a set of mechanism that can V-arrangement support, props up the neck support, forms the bearing portion of V nature, and then improves the neck brace and the degree of fit of neck, has still guaranteed the travelling comfort of neck simultaneously.
Furthermore, the neck support abandons the traditional pure air bag neck support and the traditional fixed neck support, combines the advantages of the two, adopts the neck support plate, the support sponge layer, the air bag, the sponge filling layer, the neck heating plate and the neck pillow sponge as the pillow core, not only retains the advantage of the adjustable support capacity of the air bag, but also avoids the defect of being too hard after the pure air bag is filled with air, and achieves the comfort of support; the heating plate is added on the basis, so that the heating can be compensated in cold seasons, or the physical therapy is performed in a hot compress mode, and the functionality is also increased.
Further, two air bags on the left side and the right side are arranged, the two air bags respectively support the head of a person from the two sides, the support flexibility is higher, and the pressure of the two air bags can be respectively controlled according to the shape difference of the neck of the patient, so that personalized fixation is realized, and the human physiological curve is more matched.
Further, by adopting a graphene far infrared heating technology, the heating temperature can be adjusted, and the effect is that: far infrared rays with the wavelength of 6-14 mu m are of great significance for human survival and health. Far infrared has multiple biological effects of dilating capillary vessel, increasing tissue blood flow, enhancing metabolism, repairing, and regulating organism unbalance. The far infrared heating produces biological effect on human body, mainly cell activation effect, and makes cells undergo a series of active biochemical and histochemical changes, so that the human body is in good health state.
Furthermore, a thin film pressure distribution type sensor is added on the basis of the traditional sponge pillow core and the leather coat, the pressure distribution of the headrest is sensed by the thin film pressure distribution type sensor, whether the neck support is supported in place or not is judged, and then the support angle and the support pressure of the neck support are adjusted; the head heating plate is arranged to heat the head, which is helpful for blood circulation.
Furthermore, the helmet is matched with an oxyhydrogen machine for use, and the hydrogen has the characteristic of selective antioxidation, and also has therapeutic effects on oxidative damage, inflammatory reaction, apoptosis, abnormal vascular proliferation and the like in various disease processes. Hydrogen has therapeutic effect on cerebrovascular diseases, respiratory hydrogen has ideal therapeutic effect on ischemic and anoxic brain injury caused by neonatal asphyxia, hydrogen has inhibiting effect on nerve cell apoptosis enzyme activity after ischemic and anoxic brain injury, and apoptosis enzyme activity is reduced to reduce nerve cell apoptosis, so that nerve cell necrosis is reduced, thereby relieving brain injury and protecting brain function after adult.
Drawings
Fig. 1 is a schematic structural view of a head and neck support device of a cervical spine decompression system according to the present utility model.
Fig. 2 is a schematic perspective view of the neck lifting mechanism according to the present utility model.
Fig. 3 is a schematic front view of the neck lifting mechanism in the present utility model.
Fig. 4 is a schematic view of the structure of the neck support of the present utility model.
Fig. 5 is a schematic view of the structure of the airbag module in the neck support of the present utility model.
Fig. 6 is a schematic view of the structure of the head support of the present utility model.
Fig. 7 is a schematic view of the structure of the inside of the helmet of the present utility model.
Fig. 8 is a top view of the head support and neck support of the present utility model.
In the figure: 1. a base; 2. a base housing; 3. a head support; 3-1, a head support plate; 3-2, a film pressure distribution sensor; 3-3, a thick sponge filling layer; 3-4, a head heating plate; 3-5, a headrest sponge layer; 3-6, a head decoration layer; fourthly, supporting the neck; 4-1, neck support plate; 4-2, supporting the sponge layer; 4-3, an air bag module; 4-4, a sponge filling layer; 4-5, heating the neck; 4-6, a neck pillow sponge layer; 4-7, a neck finish layer; 5. a neck lifting mechanism; 5-1, a bracket; 5-2, a motor; 5-3, a bidirectional screw rod; 5-4, guiding columns; 5-5, two sliding blocks; 5-6, supporting arms; 5-7, rotating arms; 6. a helmet; 6-1, an oxyhydrogen machine air supply pipeline; and 6-2, an air supply hole.
Description of the embodiments
The technical scheme of the utility model is further described in detail through the following specific embodiments.
As shown in fig. 1 to 8, a head and neck supporting device of a spine cervical vertebra decompression system comprises a base 1, a base shell 2, a head support 3, a neck support 4, a neck lifting mechanism 5, a forehead fixing belt and a helmet 6;
the base shell 2 is covered on the base 1, the head support 3 is fixed on the base shell 2, the bottom end of the neck lifting mechanism 5 is fixed on the base 1, the neck lifting mechanism 5 is hidden in the base shell 2, the neck support 4 is arranged at the top end of the neck lifting mechanism 5 and is positioned above the base shell 2, one end of the forehead fixing strap is fixed on the base shell on one side of the head support, the other end of the forehead fixing strap is connected on the base shell on the other side of the head support through a quick-insertion component, the helmet 6 is fixed on the base shell 2 and surrounds the head support 3 and the neck support 4, a transparent baffle plate capable of being turned and opened is arranged on the helmet 6, an oxyhydrogen machine air supply pipeline 6-1 is arranged at the front edge position of the helmet 6, and an air supply hole 6-2 is formed in the oxyhydrogen machine air supply pipeline.
The neck lifting mechanism 5 comprises a bracket 5-1, a motor 5-2, a bidirectional screw rod 5-3, a guide post 5-4, two sliding blocks 5-5, two supporting arms 5-6 and two rotating arms 5-7.
The support 5-1 is arranged on the base 1, the bidirectional screw rod 5-3 and the guide post 5-4 are arranged in parallel and horizontally and are arranged on the support 5-1, two ends of the bidirectional screw rod 5-3 are rotatably arranged on the support 5-1 through bearings, a transmission gear is fixed in the middle of the bidirectional screw rod 5-3, the output side of the motor is used for transmitting the transmission gear through a gear or a gear set, and the motor 5-2 is arranged on the support 5-1 and drives the bidirectional screw rod 5-3 to rotate.
Screw holes and guide holes are formed in the two sliding blocks 5-5, the two sliding blocks 5-5 are respectively arranged at the screw thread parts at the left end and the right end of the bidirectional screw rod 5-3 in a threaded mode, the guide holes of the two sliding blocks 5-5 are sleeved on the guide column 5-3, and the motor 5-2, the bidirectional screw rod 5-3, the sliding blocks 5-5 and the guide column 5-3 form a linear motion mechanism; the inner sides of the guide posts 5-4 are respectively provided with a limit baffle 5-8 corresponding to the two sliding blocks 5-5, and the bottom ends of the limit baffles 5-8 are fixed on the support 5-1.
One end of the supporting arm 5-6 is hinged on the sliding block 5-5, the other end of the supporting arm is hinged on the neck support 4 on the same side with the sliding block, one end of the rotating arm 5-7 is hinged in the middle of the supporting arm 5-6, the other end of the rotating arm is hinged on the bracket 5-1, and the two supporting arms 5-6 are arranged in a V shape.
The neck support 4 comprises a neck support plate 4-1, a support sponge layer 4-2, an air bag module 4-3, a sponge filling layer 4-4, a neck heating plate 4-5, a neck pillow sponge layer 4-6 and a neck finish layer 4-7;
the neck support plate 4-1 is fixed on the base shell 2, the neck support plate 4-1 is a plane neck support plate, the support sponge layer 4-2 is paved on the neck support plate 4-1, the air bag module 4-3 is installed at the upper end of the support sponge layer 4-2, the sponge filling layer 4-4 is installed above the air bag module 4-3, the air bag module 4-3 comprises a left air bag and a right air bag, the left air bag and the right air bag are communicated through an adjusting valve and an air pipe, the left air bag corresponds to the left half side of the pillow, and the right air bag corresponds to the right half side of the pillow. The neck heating piece 4-5 is paved above the sponge filling layer 4-4, the neck pillow sponge layer 4-6 is paved above the neck heating piece 4-5, the neck supporting plate 4-1, the supporting sponge layer 4-2, the air bag module 4-3, the sponge filling layer 4-4, the neck heating piece 4-5 and the neck pillow sponge layer 4-6 form a pillow core, the neck decorating layer 4-7 is wrapped on the outer layer of the pillow core, and the neck decorating layer 4-7 can be leather or fabric.
The neck heating piece is a graphene neck heating piece, and the neck heating piece is divided into a left half part and a right half part which are symmetrically arranged on the left half part and the right half part of the pillow core.
The head support 3 comprises a head support plate 3-1, a thin film pressure distribution type sensor 3-2, a thick sponge filling layer 3-3, a head heating plate 3-4, a headrest sponge layer 3-5 and a head decoration layer 3-6, wherein the thick sponge filling layer 3-3 is arranged above the head support plate 3-1, the head heating plate 3-4 is arranged on the upper end surface of the thick sponge filling layer 3-3, a graphene heating plate is selected as a head heating cavity 3-4, the headrest sponge layer 3-5 is arranged above the head heating plate 3-4, and the thin film pressure distribution type sensor 3-2 is arranged in the headrest sponge layer 3-5; the head supporting plate 3-1, the film pressure distributed sensor 3-2, the thick sponge filling layer 3-3, the head heating plate 3-4 and the headrest sponge layer 3-5 form a pillow core, the head decoration layer 3-7 wraps the pillow core, and leather or fabric is selected as the head decoration layer 3-7.
Working principle:
the patient lies on the back on the equipment, open the transparent baffle on the helmet 6, the head is lain on head support 3, neck support 4 aims at patient's neck, slightly adjust the posture, make prone position comfortable, then walk around the forehead with the forehead fixed back, begin to adjust the height of neck, start the motor, make neck elevating system 5 begin to go up and down, adjust the support of neck, through the rise of V-arrangement support arm, neck support shape changes, form U-shaped holding surface, more agree with human neck physiological curve, meanwhile, the state of pressure distribution is sensed to the film pressure distribution sensor of installing in the head, judge whether pressure distribution is reasonable, if the distribution is unreasonable, adjust the elevating height of neck elevating system 5, and human neck's supporting angle, slightly adjust the gesture of lying on the back, until adjust to comfortable angle and height, begin to pull and move, carry out the treatment.
Finally, it should be noted that the above-mentioned embodiments are only for illustrating the technical scheme of the present utility model and are not limiting; while the utility model has been described in detail with reference to the preferred embodiments, those skilled in the art will appreciate that: modifications may be made to the specific embodiments of the present utility model or equivalents may be substituted for part of the technical features thereof; without departing from the spirit of the utility model, it is intended to cover the scope of the utility model as claimed.

Claims (9)

1. A neck portion support device of a spine cervical vertebra decompression system, which is characterized in that: comprises a base, a base shell, a head support, a neck lifting mechanism, a forehead fixing belt and a helmet;
the base shell cover is established on the base, the head support is fixed on the base shell, neck elevating system's bottom mounting is in on the base, neck elevating system hide in the base shell, the neck support is installed on neck elevating system's top and is located the top of base shell, the one end of forehead fixed band is fixed in on the base shell of head support one side, the other end passes through fast-insert component connection on the base shell of head support opposite side, the helmet is fixed on the base shell and surrounds the head support with the neck support, there is the transparent baffle that can overturn and open on the helmet.
2. The head and neck support device of a spinal cervical decompression system according to claim 1, wherein: the neck lifting mechanism comprises a bracket, a motor, a bidirectional screw rod, a guide post, two sliding blocks, two supporting arms and two rotating arms;
the support is arranged on the base, the bidirectional screw rod and the guide post are arranged in parallel and horizontally and are arranged on the support, and the motor is arranged on the support and drives the bidirectional screw rod to rotate;
the two sliding blocks are respectively provided with a threaded hole and a guide hole, the two sliding blocks are respectively arranged at the threaded parts at the left end and the right end of the bidirectional screw rod in a threaded manner, the guide holes of the two sliding blocks are sleeved on the guide posts, and the motor, the bidirectional screw rod, the sliding blocks and the guide posts form a linear motion mechanism;
one end of the supporting arm is hinged on the sliding block, the other end of the supporting arm is hinged on the neck support on the same side as the sliding block, one end of the rotating arm is hinged in the middle of the supporting arm, and the other end of the rotating arm is hinged on the bracket;
the two supporting arms are arranged in a V shape.
3. The head and neck support device of a spinal cervical decompression system according to claim 2, wherein: the middle part of the bidirectional screw rod is fixed with a transmission gear, and the output side of the motor is used for transmitting the transmission gear through a gear or a gear set.
4. A head and neck support device of a spinal cervical decompression system according to claim 3, wherein: and two ends of the bidirectional screw rod are rotatably arranged on the bracket through bearings.
5. The head and neck support device of a spinal cervical decompression system according to claim 4, wherein: the inner side of the guide post is provided with limit baffles corresponding to the two sliding blocks respectively, and the bottom ends of the limit baffles are fixed on the support.
6. The head and neck support device of a spinal cervical decompression system according to claim 4, wherein: the neck support comprises a neck support plate, a support sponge layer, an air bag module, a sponge filling layer, a neck heating plate, a neck pillow sponge layer and a neck finish layer;
the neck support plate is fixed on the base shell and is a plane neck support plate;
the support sponge layer is paved on the neck support plate, and the air bag module is arranged at the upper end of the support sponge layer;
the neck pillow sponge layer is paved above the neck heating plate;
the neck supporting plate, the supporting sponge layer, the air bag module, the sponge filling layer, the neck heating plate and the neck pillow sponge layer form a pillow core, and the neck finish layer is wrapped on the outer layer of the pillow core.
7. The head and neck support device of a spinal cervical decompression system according to claim 6, wherein: the air bag module comprises a left air bag and a right air bag, the left air bag is communicated with the right air bag through an adjusting valve and an air pipe, the left air bag corresponds to the left half side of the pillow core, the right air bag corresponds to the right half side of the pillow core, the neck heating piece is a graphene neck heating piece, and the neck heating piece is divided into a left half part and a right half part which are symmetrically arranged on the pillow core.
8. The head and neck support device of a spinal cervical decompression system according to claim 7, wherein: the front edge of the helmet is provided with an oxyhydrogen machine air supply pipeline, and an air supply hole is formed in the oxyhydrogen machine air supply pipeline.
9. The head and neck support device of a spinal cervical decompression system according to claim 7, wherein: the head support comprises a head support plate, a thin film pressure distributed sensor, a thick sponge filling layer, a head heating plate, a headrest sponge layer and a head decoration layer, wherein the thick sponge filling layer is arranged above the head support plate, the head heating plate is arranged on the upper end surface of the thick sponge filling layer, the headrest sponge layer is arranged above the head heating plate, and the thin film pressure distributed sensor is arranged in the headrest sponge layer; the head supporting plate, the film pressure distributed sensor, the thick sponge filling layer, the head heating plate and the headrest sponge layer form a pillow core, and the head decoration layer wraps the pillow core.
CN202122169882.2U 2021-09-09 2021-09-09 Head and neck supporting device of spine cervical vertebra decompression system Active CN219332140U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122169882.2U CN219332140U (en) 2021-09-09 2021-09-09 Head and neck supporting device of spine cervical vertebra decompression system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122169882.2U CN219332140U (en) 2021-09-09 2021-09-09 Head and neck supporting device of spine cervical vertebra decompression system

Publications (1)

Publication Number Publication Date
CN219332140U true CN219332140U (en) 2023-07-14

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ID=87103777

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122169882.2U Active CN219332140U (en) 2021-09-09 2021-09-09 Head and neck supporting device of spine cervical vertebra decompression system

Country Status (1)

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CN (1) CN219332140U (en)

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