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Method for testing mechanical properties of flexion and extension muscles of cervical vertebrae

A technique of muscle group mechanics and cervical spine applied in the field of rehabilitation medicine

Active Publication Date: 2013-04-03
YUEYANG INTEGRATED TRADITIONAL CHINESE & WESTERN MEDICINE HOSPITAL SHANGHAI UNIV OF CHINESE TRADITIONAL MEDICINE
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The technical problem to be solved by the present invention is to provide a test method for cervical flexor and extensor muscles, which can cooperate with a test device based on Biodex3 to overcome the defects in the prior art that there is no testing and training for cervical flexor and extensor muscles

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  • Method for testing mechanical properties of flexion and extension muscles of cervical vertebrae

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Embodiment Construction

[0011] The test method of the flexor-extensor muscle group of the cervical spine involved in the present invention is a test method aimed at the muscle mechanical properties of the flexor-extensor muscle group of the cervical spine in the body state. Through this test method, data such as the maximum peak torque, muscle endurance, average power, total work, and interactive muscle group torque ratio of the cervical flexor and extensor muscles can be collected and analyzed during the cervical spine movement.

[0012] The present invention is implemented based on the Biodex3 isokinetic testing system. According to the anatomical characteristics of human cervical spine motion and the tolerance of the test personnel, the angular velocity of the cervical spine is determined through the large-sample experiment in the early stage. The angular velocity can be set to 30 angular velocity / second ( rad / s), 60 angular velocity / second (rad / s), or 90 angular velocity / second (rad / s). Fix the t...

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Abstract

The invention discloses a method for testing mechanical properties of flexion and extension muscles of cervical vertebrae, which comprises the steps: a test device is fixed to the head of a testee, cervical vertebrae is led to flexion and extension resistance movement under the state of multistage constant angular velocity, the test device acquires data reflecting mechanical properties of flexionand extension muscles of cervical vertebrae during the movement, and the data is compared with the value of flexion and extension muscles of cervical vertebrae of normal person to analyze the damage extent of flexion and extension muscles of cervical vertebrae. The method for testing mechanical properties of flexion and extension muscles of cervical vertebrae according to the invention fills in the blank in the aspect of mechanical property evaluation and exercise rehabilitation of flexion and extension muscles of cervical vertebrae in a Biodex multi-joint isokinetic test training system, andnot only can implement functional evaluation on muscle state and mechanical properties of flexion and extension muscles of cervical vertebrae of a patient suffering from cervical spondylosis before and after treatment, but can also achieve functional training of flexion and extension muscles of cervical vertebrae, monitor muscle state of testee during exercise and guarantee safe training.

Description

technical field [0001] The invention belongs to the field of rehabilitation medicine, and in particular relates to a method for testing cervical flexor and extensor muscle groups based on the Biodex3 system. Background technique [0002] The Biodex3 multi-joint isokinetic test and training system is widely used in rehabilitation medicine, especially for providing test evaluation and training for the rehabilitation data of the six major joints of the human body, including shoulder, elbow, wrist, hip, knee, and ankle. The device consists of five parts, namely the control instrument, the computer host, the seat, the power head, and the limbs connecting the force arm. The power head is connected to the limbs to connect the force arm, and the whole test device is driven by the power head to connect the limbs to the force arm, and then the test personnel are tested and trained through the limbs to connect the force arm. [0003] So far, there is no isokinetic measurement and trai...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A61B5/22
Inventor 房敏严隽陶方磊朱清广
Owner YUEYANG INTEGRATED TRADITIONAL CHINESE & WESTERN MEDICINE HOSPITAL SHANGHAI UNIV OF CHINESE TRADITIONAL MEDICINE
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