WO2021139134A1 - 酸痛检测装置及按摩椅 - Google Patents

酸痛检测装置及按摩椅 Download PDF

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Publication number
WO2021139134A1
WO2021139134A1 PCT/CN2020/103942 CN2020103942W WO2021139134A1 WO 2021139134 A1 WO2021139134 A1 WO 2021139134A1 CN 2020103942 W CN2020103942 W CN 2020103942W WO 2021139134 A1 WO2021139134 A1 WO 2021139134A1
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Prior art keywords
detection device
conductive material
soreness
soft conductive
user
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PCT/CN2020/103942
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English (en)
French (fr)
Inventor
张荣光
王荣河
张建飞
冯时
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奥佳华智能健康科技集团股份有限公司
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Publication of WO2021139134A1 publication Critical patent/WO2021139134A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/0205Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/05Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fields; Measuring using microwaves or radio waves 
    • A61B5/053Measuring electrical impedance or conductance of a portion of the body
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H1/00Apparatus for passive exercising; Vibrating apparatus; Chiropractic devices, e.g. body impacting devices, external devices for briefly extending or aligning unbroken bones
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H7/00Devices for suction-kneading massage; Devices for massaging the skin by rubbing or brushing not otherwise provided for

Definitions

  • the utility model belongs to the technical field of soreness detection equipment, in particular to a soreness detection device and a massage chair.
  • Massage chairs can massage the whole body, relieve body fatigue, promote blood circulation throughout the body, stimulate the body's acupoints, and improve the body's immunity. Because of this, massage chairs are favored by the general public. With the rapid development of the massage chair industry, the functions are becoming more abundant. The meridian massage technique of traditional Chinese medicine is gradually integrated with modern high-tech methods. It has the ability to detect the soreness of different parts of the human body and push targeted massage techniques to become one of the massage chairs. Important requirement.
  • the massage chair with human body soreness detection function on the market uses the hard electrode module (electroplating a conductive coating on the surface of the plastic substrate, and then connecting the conductive coating with the metal pole piece of the detection circuit board) to collect skin electricity. It is obtained after the palm of the palm is fitted, but the hard electrode module with a fixed shape is difficult to fit the palm of the palm stably and effectively, resulting in a certain error in the test, and the test results of human soreness are not accurate enough, which affects the user's massage experience.
  • the utility model provides a soreness detection device, which includes a soreness detection device body.
  • the soreness detection device body is provided with a placement part for a user to place hands and a detection device for detecting the user's physical signs.
  • There is a soft conductive material the soft conductive material is conductively connected to the detection device; when the user's palm is placed on the placement part, the user's palm is in contact with the soft conductive material and passes through the soft conductive material.
  • the force deforms the soft conductive material, and the physical sign detection device detects the change of the skin electrical parameters of the palm of the user through the soft conductive material.
  • the utility model also provides a massage chair, which adopts the above-mentioned soreness detection device;
  • the massage chair includes an armrest and a control board, the armrest is provided with a receiving groove, and the soreness detecting device is arranged in the receiving groove and is connected to the control panel. Board communication connection.
  • the soreness detection device provided by the utility model is provided with a soft conductive material connected to the detection device on the placement part of the soreness detection device body.
  • a soft conductive material connected to the detection device on the placement part of the soreness detection device body.
  • the deformation of the soft conductive material ensures that the contact area between the palm and the placement part is approximately the same in different gripping modes, so as to ensure that the detection device can accurately detect the user's physical parameters, so the detected physical parameters are more accurate.
  • the physical parameter may be an electro-skin parameter or the like.
  • Figure 1 is a schematic diagram of the structure of the soreness detection device provided by the utility model.
  • FIG. 2 is a schematic diagram of the structure of the soreness detection handle of the preferred embodiment of the soreness detection device of FIG. 1.
  • the present utility model provides a soreness detection device, including a soreness detection device body 30, which is provided with a placement part for the user to place his hands. 31 and a detection device for detecting physical signs of a user, the placement portion is provided with a soft conductive material 20, and the soft conductive material 20 is electrically connected to the detection device; when the palm of the user is placed on the placement portion 31 When going up, the user's palm is in contact with the soft conductive material 20 and the soft conductive material 20 is deformed by applying force to the soft conductive material 20, and the physical sign detection device detects the skin of the user's palm through the soft conductive material Changes in electrical parameters.
  • the soreness detection device can be set on a plane of the massage chair, the soreness detection device body 30 is provided with a placement portion 31, the detection device is slightly raised upward, and the user's hand can be slightly It is arched and placed on the placement portion 31 in a natural state, and the palm of the user is attached to the placement portion 31; the placement portion 31 is provided with a soft conductive material 20, which is electrically connected to the detection device, and detects The device is used to detect the physical parameters of the user; when the user wants to perform a massage, the physical parameters (such as the degree of soreness) should be detected first, and then it can be placed on the placement part, the palm of the hand is conductive to the soft The material 20 is in contact; when a part of the palm of the hand is in contact with a part of the soft conductive material 20, the soft conductive material 20 will be deformed, so that the soft conductive material 20 is in contact with the entire palm of the user, so that the detection device passes through the soft The conductive
  • the soreness detection device provided by the utility model is provided with a soft conductive material 20 connected to the detection device on the placement portion 31 of the soreness detection device body 30.
  • the soft conductive material 20 is deformed, so that the entire palm of the user can completely contact the soft conductive material 20, which solves the problem of contact between the palm and the body of the soreness detection device due to different hand placement in the prior art
  • the problem of the large difference in area, the deformation of the soft conductive material 20 ensures that the contact area between the palm and the placement part is approximately the same under different holding methods, so as to ensure that the detection device can accurately detect the user’s physical parameters. Therefore, the detected The physical parameters are more accurate.
  • the physical parameter may be an electro-skin parameter or the like.
  • the utility model provides a soreness detection handle, which includes a handle portion 10 for a user to hold and a detection device (not shown in the figure) for detecting the user's physical signs; the surface of the handle portion 10 is provided with a soft
  • the soft conductive material 20 is conductively connected to the detection device; when the user's hand grasps the detection handle, the user's palm contacts the soft conductive material 20 and makes the soft conductive material 20 through the gripping force The material 20 is deformed, and the physical sign detection device detects the change in the electrocutaneous parameters of the grip portion of the user's hand through the soft conductive material 20.
  • a soft conductive material 20 is provided on the outer surface of the handle portion 10, and the soft conductive material 20 is electrically connected to a detection device, which is used to detect the physical parameters of the user; When the user wants to massage, he must first detect the physical parameters (such as the degree of soreness).
  • the handle 10 of the soreness detection handle can hold the handle 10 of the soreness detection handle, and the palm of the hand is in contact with the soft conductive material 20;
  • the soft conductive material 20 will be deformed, so that the soft conductive material 20 is in contact with the entire palm of the user, so that the detection device can be better through the soft conductive material 20 Detect the user's physical parameters.
  • the soreness detection handle provided by the utility model is provided with a soft conductive material 20 connected to the detection device on the handle portion 10.
  • the pressure exerted by the palm causes the soft conductive material 20 to generate Deformed, so that the entire palm of the user can completely contact the soft conductive material 20, so that the detection device can better detect the physical sign parameters of the user, and therefore, the detected physical sign parameters are more accurate.
  • the soft conductive material 20 is conductive foam cotton.
  • the conductive foam cotton has good conductivity, and when used on the soreness detection handle, it can better detect the user's physical parameters.
  • the conductive foam has many pores, and when the user's palm is in contact with the conductive foam, the user's palm is not easy to sweat.
  • a hard electrode sheet is provided between the placement part and the soft conductive material.
  • a hard electrode sheet (not shown in the figure) is provided between the handle portion 10 and the soft conductive material 20.
  • the conductive foam has more pores, if the conductive foam is only connected to the detection device with a wire, it may cause a problem of poor contact. Therefore, first lay a hard layer on the placement part or the handle part 10. Then lay the conductive foam pad on the hard electrode pad, and the hard electrode pad is electrically connected to the detection device to ensure that the conductive foam pad is always conductively connected to the detection device.
  • the soft conductive material protrudes outside the placement portion.
  • the soft conductive material 20 protrudes outside the handle portion 10.
  • the soft conductive material 20 is protrudingly provided on the outside of the handle or the outside of the placement part, so that when the user's hand holds the handle part 10 or is placed on the placement part, the palm of the user can be The soft conductive material 20 is in contact.
  • the soft conductive material 20 is adhered to the hard electrode sheet through a conductive tape to ensure that the soft conductive material 20 is electrically connected to the hard electrode sheet.
  • the soft conductive material 20 can also be fixed on the hard electrode sheet with nails to ensure the conductive connection between the soft conductive material 20 and the hard electrode sheet.
  • the number of the soft conductive material 20 is two, and the soft conductive material 20 is insulated from each other and arranged on the handle part, so as to detect the user's soreness.
  • the utility model also provides a massage chair, which adopts any of the above-mentioned soreness detection handles;
  • the massage chair includes an armrest and a control board, the armrest is provided with a receiving groove, and the soreness detecting handle is arranged in the receiving groove and is connected to the Control board communication connection.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Veterinary Medicine (AREA)
  • Public Health (AREA)
  • General Health & Medical Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • Surgery (AREA)
  • Cardiology (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Medical Informatics (AREA)
  • Molecular Biology (AREA)
  • Pathology (AREA)
  • Biophysics (AREA)
  • Physics & Mathematics (AREA)
  • Rehabilitation Therapy (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Engineering & Computer Science (AREA)
  • Physiology (AREA)
  • Pain & Pain Management (AREA)
  • Epidemiology (AREA)
  • Dermatology (AREA)
  • Pulmonology (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
  • Radiology & Medical Imaging (AREA)
  • Measuring And Recording Apparatus For Diagnosis (AREA)
  • Finger-Pressure Massage (AREA)

Abstract

一种酸痛检测装置及按摩椅,其中酸痛检测装置包括酸痛检测装置本体(30)。通过在酸痛检测装置本体(30)的放置部(31)上设置与检测装置连接的软质导电材料(20),当使用者的手放置于该放置部(31)时,手掌施加的压力使得软质导电材料(20)发生变形,从而,使用者的整个手掌心能够完全与软质导电材料(20)相接触,解决了现有技术中由于不同的手放置方式而导致的手掌与酸痛检测装置本体(30)接触面积相差较大的问题,通过软质导电材料(20)的变形确保不同握持方式下,手掌与放置部(31)接触面积大致相同,从而确保检测装置能够准确的检测使用者的体征参数,因此,检测到的体征参数更准确。该体征参数可以是皮肤电参数等。

Description

酸痛检测装置及按摩椅 技术领域
本实用新型属于酸痛检测设备技术领域,尤其涉及酸痛检测装置及按摩椅。
背景技术
按摩椅能够对人体进行全身按摩,缓解身体疲劳,促进全身的血液循环,还能刺激身体穴位,提高身体的免疫能力,也正因如此,按摩椅受到广大民众的青睐。随着按摩椅行业的快速发展,功能日渐丰富,中医的经络按摩医术与现代高科技手段逐渐融为一体,具备检测人体不同部位酸痛程度,并推送有针对性的按摩手法成为了按摩椅的一项重要需求。
目前市面上具备人体酸痛检测功能的按摩椅,其采集皮肤电的方式是将硬质电极模块(在塑胶基板表面电镀一层导电镀层,然后将导电镀层与检测电路板的金属极片连接)与手掌掌心进行贴合后获取的,但是这种形态固定的硬质电极模块难以稳定有效地和手掌心贴合,导致测试存在一定的误差,人体酸痛测试结果不够准确,影响了用户的按摩体验。
技术问题
为了解决上述问题,有必要提供一种能使使用者的手掌心始终贴合检测装置的酸痛检测装置及按摩椅。
技术解决方案
本实用新型提供一种酸痛检测装置,包括酸痛检测装置本体,该酸痛检测装置本体上设有供使用者放置手的放置部和用于对使用者进行体征检测的检测装置,该放置部上设有软质导电材料,该软质导电材料与该检测装置导电连接;当使用者的手掌放置于该放置部上时,使用者的手掌与软质导电材料接触并通过对该软质导电材料施力使该软质导电材料变形,该体征检测装置通过该软质导电材料检测使用者手掌的皮肤电参数变化。
本实用新型还提供一种按摩椅,采用如上所述的酸痛检测装置;该按摩椅包括扶手及控制板,该扶手上设有收容槽,该酸痛检测装置设置于该收容槽内且与该控制板通讯连接。
有益效果
本实用新型提供的酸痛检测装置,通过在酸痛检测装置本体的放置部上设置与检测装置连接的软质导电材料,当使用者的手放置于该放置部时,手掌施加的压力使得软质导电材料发生变形,从而,使用者的整个手掌心能够完全与软质导电材料相接触,解决了现有技术中由于不同的手放置方式而导致的手掌与酸痛检测装置本体接触面积相差较大的问题,通过软质导电材料的变形确保不同握持方式下,手掌与放置部接触面积大致相同,从而确保检测装置能够准确的检测使用者的体征参数,因此,检测到的体征参数更准确。该体征参数可以是皮肤电参数等。
附图说明
图1为本实用新型提供的酸痛检测装置结构示意图。
图2为图1酸痛检测装置优选实施例酸痛检测手柄结构示意图。
附图标记:10 -手柄部  20- 软质导电材料  30-酸痛检测装置本体  31-放置部。
本发明的最佳实施方式
以下结合具体实施例和说明书附图对本实用新型进行详细说明:本实用新型提供一种酸痛检测装置,包括酸痛检测装置本体30,该酸痛检测装置本体30上设有供使用者放置手的放置部31和用于对使用者进行体征检测的检测装置,该放置部上设有软质导电材料20,该软质导电材料20与该检测装置导电连接;当使用者的手掌放置于该放置部31上时,使用者的手掌与软质导电材料20接触并通过对该软质导电材料20施力使该软质导电材料20变形,该体征检测装置通过该软质导电材料检测使用者手掌的皮肤电参数变化。
具体实施时,如图1所示:酸痛检测装置可设置为按摩椅的一平面上,该酸痛检测装置本体30设有放置部31,该检测装置略微向上形成凸起,使用者的手可略微拱起呈自然状态放置于该放置部31上,使用者的手掌心与放置部31相贴合;放置部31上设置软质导电材料20,该软质导电材料20与检测装置导电连接,检测装置用于对使用者的体征参数进行检测;当使用者要进行按摩时,要先对体征参数(例如:酸痛程度)进行检测,此时可将放置于放置部上,手掌心与软质导电材料20相接触;当手掌心的一部分与一部分软质导电材料20接触时,软质导电材料20会发生变形,使得软质导电材料20与使用者的整个手掌心相接触,从而检测装置通过软质导电材料20能够更好地检测使用者的体征参数。
本实用新型提供的酸痛检测装置,通过在酸痛检测装置本体30的放置部31上设置与检测装置连接的软质导电材料20,当使用者的手放置于该放置部31时,手掌施加的压力使得软质导电材料20发生变形,从而,使用者的整个手掌心能够完全与软质导电材料20相接触,解决了现有技术中由于不同的手放置方式而导致的手掌与酸痛检测装置本体接触面积相差较大的问题,通过软质导电材料20的变形确保不同握持方式下,手掌与放置部接触面积大致相同,从而确保检测装置能够准确的检测使用者的体征参数,因此,检测到的体征参数更准确。该体征参数可以是皮肤电参数等。
本实用新型提供一种酸痛检测手柄,包括用于供使用者手握的手柄部10和用于对使用者进行体征检测的检测装置(图中未示出);手柄部10的表面设有软质导电材料20,该软质导电材料20与该检测装置导电连接;当使用者的手掌握住检测手柄时,使用者的手掌与软质导电材料20接触并通过握持力使该软质导电材料20变形,该体征检测装置通过该软质导电材料20检测使用者手掌握持部的皮肤电参数变化。
具体实施时,如图2所示:在手柄部10的外表面设置软质导电材料20,该软质导电材料20与检测装置导电连接,检测装置用于对使用者的体征参数进行检测;当使用者要进行按摩时,要先对体征参数(例如:酸痛程度)进行检测,此时可将手握住酸痛检测手柄的手柄部10,手掌心与软质导电材料20相接触;当手掌心的一部分与一部分软质导电材料20接触时,软质导电材料20会发生变形,使得软质导电材料20与使用者的整个手掌心相接触,从而检测装置通过软质导电材料20能够更好地检测使用者的体征参数。
本实用新型提供的酸痛检测手柄,通过在手柄部10上设置与检测装置连接的软质导电材料20,当使用者的手握住手柄部10时,手掌施加的压力使得软质导电材料20发生变形,从而,使用者的整个手掌心能够完全与软质导电材料20相接触,从而检测装置能够更好的检测使用者的体征参数,因此,检测到的体征参数更准确。
优选地,该软质导电材料20为导电泡沫棉。具体实施时,导电泡沫棉具有较好的导电性,用在酸痛检测手柄上,能够更好地检测使用者的体征参数。另一方面,导电泡沫棉中具有较多孔隙,使用者的手掌心与导电泡沫棉相接触时,使用者的手掌心不容易流汗。
优选地,该放置部与软质导电材料之间设有硬质电极片。优选地,该手柄部10与软质导电材料20之间设有硬质电极片(图中未示出)。具体实施时,由于导电泡沫棉具有较多孔隙,如果仅用导线将导电泡沫棉与检测装置连接,则可能引起接触不良的问题,因此,先在放置部上或者手柄部10上铺设一层硬质电极片,再将导电泡沫棉铺设于硬质电极片,硬质电极片与检测装置导电连接,确保导电泡沫棉始终与检测装置导电连接。
优选地,该软质导电材料外凸于该放置部的外侧。优选地,该软质导电材料20外凸于手柄部10的外侧。具体实施时,将软质导电材料20外凸设于手柄的外侧或者放置部的外侧,使得使用者的手握住手柄部10时或者放置于放置部上时,使用者的手掌心即可与软质导电材料20相接触。
优选地,该软质导电材料20通过导电胶带黏贴于该硬质电极片上,确保软质导电材料20与硬质电极片导电连接。
优选地,该软质导电材料20也可用钉子固定于硬质电极片上,确保软质导电材料20与硬质电极片导电连接。
优选地,该软质导电材料20的数量为两个,所述软质导电材料20相互绝缘设置在该手柄部上,以便对使用者进行酸痛检测。
本实用新型还提供一种按摩椅,采用如上任意所述的酸痛检测手柄;该按摩椅包括扶手及控制板,该扶手上设有收容槽,该酸痛检测手柄设置于该收容槽内且与该控制板通讯连接。

Claims (10)

  1. 一种酸痛检测装置,包括酸痛检测装置本体,该酸痛检测装置本体上设有供使用者放置手的放置部和用于对使用者进行体征检测的检测装置,其特征在于:该放置部上设有软质导电材料,该软质导电材料与该检测装置导电连接;当使用者的手掌放置于该放置部上时,使用者的手掌与软质导电材料接触并通过对该软质导电材料施力使该软质导电材料变形,该体征检测装置通过该软质导电材料检测使用者手掌的皮肤电参数变化。
  2. 根据权利要求1所述的酸痛检测装置,其特征在于:该酸痛检测装置本体为酸痛检测手柄,该酸痛检测手柄包括用于供使用者手握的手柄部,手柄部的表面设有该软质导电材料,当使用者的手掌握住检测手柄时,使用者的手掌与该软质导电材料接触并通过握持力使该软质导电材料变形,该体征检测装置通过该软质导电材料检测使用者手掌握持部的皮肤电参数变化。
  3. 根据权利要求1或2所述的酸痛检测装置,其特征在于:该软质导电材料为导电泡沫棉。
  4. 根据权利要求1所述的酸痛检测装置,其特征在于:该放置部与软质导电材料之间设有硬质电极片。
  5. 根据权利要求2所述的酸痛检测装置,其特征在于:该手柄部与软质导电材料之间设有硬质电极片。
  6. 根据权利要求1所述的酸痛检测装置,其特征在于:该软质导电材料外凸于该放置部的外侧。
  7. 根据权利要求2所述的酸痛检测装置,其特征在于:该软质导电材料外凸于该手柄部的外侧。
  8. 根据权利要求3所述的酸痛检测装置,其特征在于:该软质导电材料通过导电胶带黏贴于该硬质电极片上。
  9. 根据权利要求3所述的酸痛检测装置,其特征在于:该软质导电材料的数量为两个,所述软质导电材料相互绝缘。
  10. 一种按摩椅,其特征在于:采用如权利要求1-9中任一项所述的酸痛检测装置;该按摩椅包括扶手及控制板,该扶手上设有收容槽,该酸痛检测装置设置于该收容槽内且与该控制板通讯连接。
PCT/CN2020/103942 2019-07-08 2020-07-24 酸痛检测装置及按摩椅 WO2021139134A1 (zh)

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