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WO2018105760A1 - Correcteur de scoliose utilisant un procédé d'analyse de mesure, et procédé de correction de scoliose l'utilisant - Google Patents

Correcteur de scoliose utilisant un procédé d'analyse de mesure, et procédé de correction de scoliose l'utilisant Download PDF

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Publication number
WO2018105760A1
WO2018105760A1 PCT/KR2016/014184 KR2016014184W WO2018105760A1 WO 2018105760 A1 WO2018105760 A1 WO 2018105760A1 KR 2016014184 W KR2016014184 W KR 2016014184W WO 2018105760 A1 WO2018105760 A1 WO 2018105760A1
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WO
WIPO (PCT)
Prior art keywords
patient
scoliosis
sensor
measurement
memory unit
Prior art date
Application number
PCT/KR2016/014184
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English (en)
Korean (ko)
Inventor
조용선
최호열
백선애
Original Assignee
조용선
최호열
백선애
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
Application filed by 조용선, 최호열, 백선애 filed Critical 조용선
Priority to KR1020197016271A priority Critical patent/KR102278478B1/ko
Priority to PCT/KR2016/014184 priority patent/WO2018105760A1/fr
Publication of WO2018105760A1 publication Critical patent/WO2018105760A1/fr

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    • 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. long-term immobilising or pressure directing devices for treating broken or deformed bones such as splints, casts or braces
    • A61F5/02Orthopaedic corsets
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/18Status alarms

Definitions

  • the present invention relates to a scoliosis correction apparatus applying a measurement analysis method and a scoliosis correction method using the same.
  • the present invention relates to an apparatus for correcting scoliosis using analytical methods and a method for correcting scoliosis using the same.
  • the present invention relates to a scoliosis correction apparatus using a measurement analysis method that can be used as data necessary for applying medical insurance including improvement data and a discount rate, and a scoliosis correction method using the same.
  • Scoliosis correction device which is made in the form of a vest to be worn on the upper body of the patient. It is a device for applying a corrective load of a certain intensity to the upper body as a medical aid worn on the basis of the severity of the patient's scoliosis symptoms and the progress of the disease. Since it is the basic purpose of the scoliosis corrector to straighten the spine bent left and right, the orthodontic device is provided with a fastening belt so that a constant load can be applied. In addition, the temporary physical force is applied in a short time, and the curved spine is not erected directly, but a constant correction load is applied to the upper body of the patient for a long time, so it should be continuously worn for 23 hours and several months every day.
  • the scoliosis correction process using the scoliosis correction device is a difficult process that can be expected to achieve the expected correction effect, if worn for a long time steadily.
  • scoliosis correction instruments require patience because they need to be worn for 23 hours or more per month.
  • pressure on the entire upper body due to wearing, and attention to the appearance is a lot of time, so not only the burden of wearing for several months, but also the psychological pressure of the situation to wear more than 20 hours a day It cannot be overlooked.
  • fasteners are not fastened or loosely fastened to the required calibration load.
  • braces such as everyday clothes, they often do not recognize the problem of unfastened or loosened.
  • the wear state information of the braces is recorded on the braces itself, and the wear state information is transmitted to an external device so that the desired information can be checked, thereby maximizing the personal correction effect of the wearing patient. There will be.
  • the objective and accurate evidence of the correction effect may be derived.
  • the number of medical insurances can be the basis for the calculation, which will provide reasonable insurance benefits for patients with scoliosis, and by informing them of the benefits, the patients can actively use the correction device. You will be encouraged to do so.
  • the present invention has been made in order to solve the conventional problems as described above, according to an embodiment of the present invention, in more detail, in a state in which the wear patient wearing the orthodontic device, body temperature, belt tension, posture
  • the purpose of the present invention is to provide a scoliosis correction device using a measurement analysis method that can improve the effectiveness of orthodontic treatment by recording, storing, and confirming various accurate wearing state data including pressure, and scoliosis correction method using the same. have.
  • the purpose of the present invention is to provide a scoliosis correction apparatus using a measurement analysis method that can be used as data necessary for applying medical insurance including improved data and a discount rate, and a scoliosis correction method using the same.
  • a first object of the present invention is a scoliosis correction device, a measurement sensor for measuring the wearing state of the correction device of the patient, a memory unit for storing the wearing state data measured from the measurement sensor, the wearing state data and the calibration reference value
  • a calibrator measurement including an alarm unit for alerting the patient based on the control unit, a transceiver configured to bidirectionally communicate with a plurality of communication terminals, a central processor controlling at least one of the memory unit, the alert unit, and the transceiver unit; And a smart device capable of bidirectionally communicating with the transceiver, wherein the smart device may download the wearing state data stored in the memory unit and display the wearing state data.
  • the measuring sensor may include at least one of a temperature sensor measuring a body temperature of the patient, a tension sensor measuring a belt tension of the calibrator, a posture sensor measuring a posture of the calibrator, and a pressure sensor. can do.
  • the temperature sensor may be characterized in that at least two or more places are installed so as to confirm the heat distribution and wearing of the patient.
  • the tension sensor may be characterized in that the tension of at least one or more belts can be measured.
  • the posture sensor may include a three-axis posture sensor capable of measuring the inclination and rotation of the patient's upper and lower sides.
  • the pressure sensor may measure a close contact pressure between the upper body of the patient and the calibration device.
  • the tension sensor may be characterized in that the direction and the intensity can be measured simultaneously.
  • the transmission and reception unit may be characterized in that data communication using a wireless communication protocol including at least one of Bluetooth, WiFi, LTE, and tethering (tethering) through a wireless communication line.
  • a wireless communication protocol including at least one of Bluetooth, WiFi, LTE, and tethering (tethering) through a wireless communication line.
  • the patient may input his or her physical activity state including at least one of a walking state, a sleeping state, and an exercise state through the smart device to the memory unit, and the memory unit may include the physical activity state information.
  • the medical personnel in charge of the patient can be characterized in that it can be downloaded using his smart device.
  • the medical practitioner in charge of the patient may check, change, and store the calibration reference value, which is already stored in the memory unit, using his smart device.
  • the calibrator measuring device characterized in that for transmitting the different state of wearing data according to the identity of the user of the smart device, including the patient, guardian, medical personnel.
  • the central processing unit may control the measurement sensor to periodically measure the wearing state data.
  • the measurement sensor may be removable, so that the mounting position can be changed according to the individual state of the patient including the body shape and symptoms.
  • the alarm unit may compare the wearing state data with the calibration reference value set by the user of the smart device, and alert the patient according to an alarm sequence set by the user and stored in the memory unit. have.
  • the central processing unit may compare the wearing state data with the calibration reference value set by the user of the smart device, and notify the smart device of the medical person according to the alarm sequence set by the medical personnel in charge of the patient. I can do it.
  • a second object of the present invention is to measure the scoliosis correction method using a scoliosis correction device using a measurement analysis method, the scoliosis correction device, measuring the wearing state of the correction device including body temperature, posture, tension and pressure of the belt Mounting a measurement sensor; And storing wear state data measured by the measuring sensor in a memory unit; and downloading wear state data stored in the memory unit in a smart device. Can be achieved with scoliosis correction methods.
  • a variety of accurate wearing state data including body temperature, belt tension, posture and pressure in a state in which the wearing patient is wearing a correction device
  • the effect of the treatment can be improved.
  • FIG. 1 is a front view of a scoliosis correction apparatus applying a measurement analysis method according to an embodiment of the present invention
  • Figure 2 is a front view of the fastening belt loosened of the scoliosis correction apparatus applying the measurement analysis method according to an embodiment of the present invention
  • Figure 3 is a block diagram of the measuring device 120 applied to the scoliosis correction apparatus applying the measurement analysis method according to an embodiment of the present invention and a front view of the smart device 290
  • Scoliosis correction apparatus using the measurement analysis method according to an embodiment of the present invention and scoliosis correction method using the same device for correcting the spine curvature of scoliosis patients.
  • FIG. 1 is a front view of the scoliosis correction apparatus applying the measurement analysis method according to an embodiment of the present invention
  • Figure 2 is a front view of the fastening belt loosened in the scoliosis correction field applying the measurement analysis method according to an embodiment of the present invention Shown.
  • the scoliosis correction device includes a correction device body 100 having a vest-shaped frame, a fastening belt 110 for fastening it to the upper body of a patient, and measurement sensors 210 and 220 for measuring a state of wearing the correction device. , 230, 240, and the measurement device 120.
  • the measurement sensors 210, 220, 230, and 240 may include a body temperature sensor 210, a tension sensor 220, a posture sensor 230, and a pressure sensor 240. It is possible to change the attachment position according to the state of the wearing patient.
  • the scoliosis correction apparatus allows the wearer to wear a correction device, by recording, storing, and confirming various accurate wearing state data including body temperature, belt tension, posture, pressure, The effect can be improved.
  • the body temperature sensor 210 is attached for the purpose of measuring the body temperature of a patient to be worn, it may be preferable to be mounted on the inner surface of the body 100 of the calibrator as shown in FIG. have. In addition, since the body temperature may be measured differently for each part of the body, the body temperature sensor may be mounted in at least two places, and the body temperature measurement value using the plurality of body temperature sensors may also check whether the patient wears the correction device.
  • the posture sensor 220 is a sensor for detecting the upper body posture of a wearing patient.
  • the posture sensor 220 may detect a tilted state, a movement state, and a rotation state in front, rear, left, and right directions, and a gyro sensor which is generally used may be used.
  • a gyro sensor which is generally used may be used.
  • the number of mounting of the sensors may be reduced, and a plurality of posture sensors 220 on one axis may be mounted at different positions of the calibrator body, and the measured values of the posture sensors 220 and the By matching the position, the posture of the wearing patient may be implemented in a three-dimensional shape. This can be used to distinguish between warping and torsion in the upper body of the patient.
  • the tension sensor 230 is a sensor for checking whether a calibration load required for calibration is applied when the patient wears the calibration device.
  • a uniform and constant correction load based on medical data must be applied to the upper body of the patient. Therefore, proper belt tension is an important factor in correcting spinal curvature.
  • Belt fastening is for the orthodontic device body 100 to apply the orthodontic load to the upper body of the patient, and whether or not to apply the orthodontic load means the degree of close contact between the patient body and the principal device body. Therefore, as the belt is tightened more strongly, it can be assumed that the patient body and the orthodontic device body are in close contact with each other, and can be used as an indicator for determining whether or not the orthodontic load of the orthodontic device is properly acting on the patient body.
  • the human body is a three-dimensional bent shape. Therefore, just by fastening the belt provided on one side of the calibration device body 100, it may be difficult to accurately determine that the calibration device body is applying a calibration load to the various parts of the patient body. That is, the tension of the belt fastening can be said to be an indirect physical quantity for measuring the application of the calibration load to the patient body by the orthodontic device.
  • a pressure sensor 240 at the major calibration force acting points, which measure the pressure acting between the patient body and the calibration device, a direct measure of whether a calibration load is applied, to observe the trend of the pressure change. This can be used for medical data related to the intended corrective and therapeutic effects.
  • the body shape of the patient wearing the orthodontic device may be deformed, and the body of the orthodontic device 100 may be worn depending on the clothes according to the seasonal change.
  • Available patient body types can vary. 1 to 2, since there is no measurement or control device in the fastening belt 110 itself, the belt fastening degree for applying a constant, corrective load in accordance with the physical change state of the patient mentioned above is recognized. Difficult to do
  • the constant belt state may remain constant. That is, if the tension applied to the belt itself is measured irrespective of the actual fastening position of the fastening belt 110, even if there is an unavoidable physical change, there is no difference in the calibration load required for effective bending correction, so that the patient self-corrects If the load value and the corresponding belt tension value are known, constant belt tension can be maintained at all times.
  • the belt tension is not measured, it is possible to check whether or not the braces are worn.
  • the effect of the bending correction may be remarkably degraded, so that a clear causal relationship to the calibration effect can be identified.
  • the pressure measurement values of the calibration device and the patient body measured using the pressure sensor 240 are independent of any fastening situation of the fastening belt and can track aspects of direct calibration load as described above. That is, regardless of the fastening state of the fastening belt, all the pressure change factors including the change in the patient's body shape is measured as it is, and the action and response to the change factor may be immediate as compared to the belt tension measuring method. Therefore, the combined observation and analysis of the belt tension measured by the tension sensor 230, the pressure measured by the pressure sensor 240, and the change of the patient's scoliosis symptoms, the improved correction effect can be expected, while unnatural fit The burden and oversight may be helpful in the development of an improved calibration device.
  • a plurality of fastening belts are mounted from the upper portion to the lower portion of the straightening device body 100, thereby intentionally applying tension in the vertical direction up to the chest and stomach of the upper body. Accordingly, a plurality of tension sensors 220 and pressure sensors 240 may also be mounted on the calibration device body 100 to distinguish and measure the tension for each position.
  • FIG. 3 illustrates a block diagram of the measuring device 120 and a front view of the smart device 290.
  • the measuring device 120 is based on the wearing state data measured by the measuring sensors 210, 220, 230, and 240 and the calibration reference value based on the medical data, and alerts the wearer in various ways.
  • Memory unit 260 which stores the measured values and calibration reference values of the 210, 220, 230, and 240, stores the transmitter and the power supply unit 280 and transmits the information of the measuring instrument including the wear state measurement data or information from an external device ( 270), the measurement sensor 210, 220, 230, 240 by controlling the extraction to extract the measured value, and consists of a central processing unit 200 for controlling the above components.
  • the measuring device 120 is wirelessly connected to the external smart device 290 through a transceiver, and at this time, may be connected to a plurality of different smart devices 290.
  • the central processing unit 200 controls the measurement sensors 210, 220, 230, 240 to measure the measured value periodically.
  • the measured value is stored in the memory unit 260, and at this time, the measured value and the sensor position may be matched and stored.
  • the measured values stored in the memory unit 260 are transmitted to the smart device 290 through the transceiver unit, and the user of the smart device 290 uses all of the data stored in the memory unit 260 or by using the dedicated application 295. You can download some of them selectively.
  • the transceiver 280 may communicate wirelessly using a wireless communication protocol including Bluetooth, WiFi, LTE, and tethering.
  • the user identity of the smart device 290 may be a patient wearing a calibration device, a caregiver of the patient and a medical practitioner, and, depending on the identity of the user, the measured value or calibration stored in the memory unit 260 through the application 295. Differentiate access rights and download rights to reference values.
  • the calibration information including the calibration reference value may be transmitted to the measuring device 120 using the dedicated application 295 of the smart device 290.
  • the CPU 200 may store information received from the smart device 290 in the memory unit. The stored calibration reference value is compared with the wearing state data measured by the central processing unit, and when the alarm sequence set by the medical professional is notified, the alarm situation may be notified to the smart device used by the medical professional or the caregiver of the wearing patient. . For example, if the abnormal wearing state is maintained for a certain time and the wearer does not recognize the situation, the situation can be propagated to the person concerned, and the correct wearing of the braces can be confirmed.
  • the calibration reference value stored by the medical practitioner may be checked, and the dedicated application 295 may be linked with the smart watch to further reconsider convenience.
  • the wearing patient can also set or enter his or her physical activity state on his smart device.
  • scoliosis braces are mainly used in adolescence, and the physical activity state of the active adolescents can be very diverse and active compared to general adults. That is, various and sometimes extreme physical activity states may be considered, such as standing up state, sitting state, walking state, light exercise state, sleeping state, or sitting state on a flat surface such as a playground.
  • the wearing patient may input his or her physical activity state using his smart device, and store the input physical activity state by matching the wearing state data measured by the sensor with the time, so that the medical person can check and analyze it. can do.
  • the alarm unit 250 compares the calibration reference value including the calibration load with the state measurement data, and alerts the wearing patient when necessary.
  • the central processing unit 200 controls the alarm unit to alert the patient.
  • the alarm can use hearing and touch.
  • a calibration reference value may be set in the measured values through the body temperature sensor 210 and the posture sensor 230 to alert the patient.
  • the posture conversion frequency measured by one posture sensor 220 may be measured in real time, and may replace the physical activity state input by the patient himself described above, and compared with a physical activity state reference value set by a professional medical person including a doctor. For example, if an excessive physical activity is detected, the alarm may alert the user to restrain activity.
  • the measurement device 120 may include a wired external storage device connection port including a USB device to download data stored in the memory unit 260, and may be used as the memory unit 260 by installing a memory card mounting unit.
  • the above-described apparatus and method may not be limitedly applied to the configuration and method of the above-described embodiments, but the embodiments may be selectively combined in whole or in part in each of the embodiments so that various modifications may be made. It may be configured.

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  • Orthopedic Medicine & Surgery (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
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  • Orthopedics, Nursing, And Contraception (AREA)
  • Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)

Abstract

La présente invention concerne un correcteur de scoliose utilisant un procédé d'analyse de mesure, et un procédé de correction de scoliose l'utilisant. Plus spécifiquement, la présente invention concerne un correcteur de scoliose utilisant un procédé d'analyse de mesure, le correcteur de scoliose comprenant un dispositif de mesure de correcteur et un dispositif intelligent, le dispositif de mesure de correcteur comprenant : un capteur de mesure pour mesurer des états d'un patient portant un correcteur; une unité de mémoire pour stocker des données sur les états du patient portant le correcteur, mesurées par le capteur de mesure; une unité d'avertissement pour émettre un avertissement au patient sur la base des données sur les états du patient portant le correcteur et une valeur de référence de correction; une unité d'émission-réception pour émettre et recevoir des données vers et depuis le dispositif intelligent; et une unité centrale de traitement pour commander au moins l'une de l'unité de mémoire, de l'unité d'avertissement et de l'unité d'émission-réception, et le dispositif intelligent établit une connexion de données avec le dispositif de mesure de correcteur de façon à télécharger les données sur les états du patient portant le correcteur, stockées dans l'unité de mémoire, et afficher les données en fonction des paramètres et de l'identité de l'utilisateur.
PCT/KR2016/014184 2016-12-05 2016-12-05 Correcteur de scoliose utilisant un procédé d'analyse de mesure, et procédé de correction de scoliose l'utilisant WO2018105760A1 (fr)

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Application Number Priority Date Filing Date Title
KR1020197016271A KR102278478B1 (ko) 2016-12-05 2016-12-05 계측분석방법을 적용한 측만증 교정장치
PCT/KR2016/014184 WO2018105760A1 (fr) 2016-12-05 2016-12-05 Correcteur de scoliose utilisant un procédé d'analyse de mesure, et procédé de correction de scoliose l'utilisant

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PCT/KR2016/014184 WO2018105760A1 (fr) 2016-12-05 2016-12-05 Correcteur de scoliose utilisant un procédé d'analyse de mesure, et procédé de correction de scoliose l'utilisant

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* Cited by examiner, † Cited by third party
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CN112315495A (zh) * 2020-11-25 2021-02-05 西安锐普打印机有限公司 一种用于脊柱侧弯矫形力测量的方法
KR20210113894A (ko) * 2020-03-09 2021-09-17 주식회사 와이에이치라이프 흉부 호흡 훈련 및 척추 교정 장치
CN113951878A (zh) * 2021-11-03 2022-01-21 苏州高新区人民医院 一种基于云平台的人工智能脊柱侧弯监测预警系统
CN114732583A (zh) * 2022-05-18 2022-07-12 上海大学 一种智能监测和主动调节压力的分体式脊柱侧弯矫形器
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WO2024027856A1 (fr) * 2022-08-05 2024-02-08 Tang Tsz Hin Dispositif de commande d'angle de courbe de scoliose
CN118230931A (zh) * 2024-03-27 2024-06-21 浙江值的医疗科技有限责任公司 一种脊椎支具佩戴监控方法

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KR20210044063A (ko) * 2019-10-14 2021-04-22 서울대학교병원 섬유센서를 이용한 요추 자세 교정 보조기구
CN112545824B (zh) * 2020-12-03 2022-11-15 四川大学华西医院 一种脊柱侧弯检测矫形方法及其一体化系统
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KR102715693B1 (ko) * 2022-10-18 2024-10-11 서울대학교병원 경도 조절 흉요추 보조기
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KR102815512B1 (ko) * 2023-09-26 2025-06-02 주식회사 바디렉스 스마트 척추측만증 교정 관리시스템의 동작방법

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003256568A (ja) * 2002-02-28 2003-09-12 Matsushita Electric Works Ltd 姿勢診断方法、姿勢診断システム、そのサーバ
US20070149359A1 (en) * 2001-10-01 2007-06-28 Tarig Rahman Brace compliance monitor
KR20090032497A (ko) * 2007-09-28 2009-04-01 인제대학교 산학협력단 지능형 척추변형 교정기
KR20140061416A (ko) * 2011-11-17 2014-05-21 요시아키 사토 근육 증강 기구 및 그 제어 방법
KR20150064418A (ko) * 2013-12-03 2015-06-11 황정범 자세 교정 시스템 및 방법
KR101553585B1 (ko) * 2014-06-02 2015-09-17 박정근 자세 교정 유도 시스템
KR20160063951A (ko) * 2014-11-27 2016-06-07 서현빈 자세의 흐트러짐을 알려주는 휴대 장치

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20100089539A (ko) * 2009-02-04 2010-08-12 한국전자통신연구원 인체 센서를 이용한 정형외과적 자세 교정 장치
KR101183580B1 (ko) * 2012-01-31 2012-09-17 동서대학교산학협력단 스마트기기 연동형 착용식 자세교정 유도장치
KR20150123393A (ko) * 2014-04-24 2015-11-04 하병욱 스마트 척추 측만증 보정조끼
KR200482054Y1 (ko) 2016-04-18 2016-12-08 문양규 척추 측만증 교정구

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20070149359A1 (en) * 2001-10-01 2007-06-28 Tarig Rahman Brace compliance monitor
JP2003256568A (ja) * 2002-02-28 2003-09-12 Matsushita Electric Works Ltd 姿勢診断方法、姿勢診断システム、そのサーバ
KR20090032497A (ko) * 2007-09-28 2009-04-01 인제대학교 산학협력단 지능형 척추변형 교정기
KR20140061416A (ko) * 2011-11-17 2014-05-21 요시아키 사토 근육 증강 기구 및 그 제어 방법
KR20150064418A (ko) * 2013-12-03 2015-06-11 황정범 자세 교정 시스템 및 방법
KR101553585B1 (ko) * 2014-06-02 2015-09-17 박정근 자세 교정 유도 시스템
KR20160063951A (ko) * 2014-11-27 2016-06-07 서현빈 자세의 흐트러짐을 알려주는 휴대 장치

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KR20210113894A (ko) * 2020-03-09 2021-09-17 주식회사 와이에이치라이프 흉부 호흡 훈련 및 척추 교정 장치
KR102462178B1 (ko) * 2020-03-09 2022-11-02 주식회사 와이에이치라이프 흉부 호흡 훈련 및 척추 교정 장치
CN111904682A (zh) * 2020-08-10 2020-11-10 武汉大学中南医院 一种骨骼智能矫形系统
CN112315495A (zh) * 2020-11-25 2021-02-05 西安锐普打印机有限公司 一种用于脊柱侧弯矫形力测量的方法
CN113951878A (zh) * 2021-11-03 2022-01-21 苏州高新区人民医院 一种基于云平台的人工智能脊柱侧弯监测预警系统
CN113951878B (zh) * 2021-11-03 2023-08-15 苏州高新区人民医院 一种基于云平台的人工智能脊柱侧弯监测预警系统
CN114795614A (zh) * 2022-04-20 2022-07-29 互典数据科技(上海)有限公司 脊柱侧弯康复支具用支具芯及支具系统
CN114732583A (zh) * 2022-05-18 2022-07-12 上海大学 一种智能监测和主动调节压力的分体式脊柱侧弯矫形器
WO2024027856A1 (fr) * 2022-08-05 2024-02-08 Tang Tsz Hin Dispositif de commande d'angle de courbe de scoliose
GB2625039A (en) * 2022-08-05 2024-06-05 Hin Tang Tsz Device for controlling curve angle of scoliosis
CN118230931A (zh) * 2024-03-27 2024-06-21 浙江值的医疗科技有限责任公司 一种脊椎支具佩戴监控方法

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