Anti-tumble device for myotonia and myospasm patients

A muscle spasm, muscle-specific technology, applied in the field of anti-fall devices, can solve problems such as injury and elevated blood pressure, and achieve the effects of increasing or decreasing comfort, preventing falls, and relieving symptoms of spasm or rigidity

Active Publication Date: 2017-06-13
广西华夏医药科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] But for patients with hereditary myotonia, when they are frightened, feared and other stimuli, the coeruleus-sympathetic-adrenal medullary system is excited, a large amount of catecholamines are secreted, resulting in elevated blood pressure, and subconscious fighting and evasion actions. Falls occur due to muscle spasms. In severe cases, they cannot be supported by

Method used

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  • Anti-tumble device for myotonia and myospasm patients
  • Anti-tumble device for myotonia and myospasm patients
  • Anti-tumble device for myotonia and myospasm patients

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0043] The user wears the wrist sphygmomanometer on the wrist, pre-fixes the treatment belt around the body, and connects the plug 6 on the auxiliary treatment belt 5 with the output socket 3 on the main treatment belt 1, And the plug 6 of the secondary treatment zone 5 far away from the main treatment zone 1 is connected with the output socket 3 of the adjacent secondary treatment zone to realize the conduction of the electric pulse; and the parameters of the electric pulse circuit are set in advance ( Frequency is 1H Z , the duration is 0.3ms, the delay time of two groups of pulses is 0.1s, the set time is set to 10s, and the set blood pressure value is set to 5mmHg) Turn on the bluetooth module one and the bluetooth module two, and the bluetooth module one can set The data detected by the wrist sphygmomanometer is sent to the Bluetooth module 2 in real time, and the Bluetooth module 2 is connected to the main controller and transmits the data to the main controller. After ...

Embodiment 2

[0045] The user wears the wrist sphygmomanometer on the wrist, pre-fixes the treatment belt around the body, and connects the plug 6 on the auxiliary treatment belt 5 with the output socket 3 on the main treatment belt 1, And the plug 6 of the secondary treatment zone 5 far away from the main treatment zone 1 is connected with the output socket 3 of the adjacent secondary treatment zone, so as to realize the conduction of the electric pulse; and the parameters of the electric pulse circuit are set in advance ( Frequency is 1H Z , the duration is 0.3ms, the delay time of two groups of pulses is 0.1s, the set time is set to 5s, and the set blood pressure value is set to 8mmHg) Turn on the bluetooth module one and the bluetooth module two, and the bluetooth module one can set The data detected by the wrist sphygmomanometer is sent to the Bluetooth module 2 in real time, and the Bluetooth module 2 is connected to the main controller and transmits the data to the main controller. ...

Embodiment 3

[0047] The user wears the wrist sphygmomanometer on the wrist, pre-fixes the treatment belt around the body, and connects the plug 6 on the auxiliary treatment belt 5 with the output socket 3 on the main treatment belt 1, And the plug 6 of the secondary treatment zone 5 far away from the main treatment zone 1 is connected with the output socket 3 of the adjacent secondary treatment zone to realize the conduction of the electric pulse; and the parameters of the electric pulse circuit are set in advance ( Frequency is 1H Z, the duration is 0.2ms, the delay time of two groups of pulses is 0.1s, the set time is set to 2s, and the set blood pressure value is set to 10mmHg) Turn on the bluetooth module one and the bluetooth module two, and the bluetooth module one can set The data detected by the wrist sphygmomanometer is sent to the Bluetooth module 2 in real time, and the Bluetooth module 2 is connected to the main controller and transmits the data to the main controller. After t...

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Abstract

The invention discloses an anti-tumble device for myotonia and myospasm patients. The device is characterized in that the device comprises a wrist blood pressure monitor and a treatment band, the treatment band is divided into a main treatment band and a subsidiary treatment band, and the main treatment band further comprises a second Bluetooth module, a main controller, a rechargeable battery and an electrical impulse circuit which are arranged in the main treatment band; the wrist blood pressure monitor is provided with a first Bluetooth module, and the first Bluetooth module is compatible with the second Bluetooth module, can transmit data detected by the wrist blood pressure monitor to the main controller in real time, and can also transmit signals of the main controller to the wrist blood pressure monitor; the main controller can conduct calculation on the maximum value of blood pressure changes within set time, and can control the electrical impulse circuit to work when the maximum value exceeds a set blood pressure value, electrical stimulation therapy is conducted to a user, a symptom of myospasm or myotonia is relieved, and the situation that the user tumbles in a straight mode and major damage is caused is avoided.

Description

[0001] 【Technical field】 [0002] The invention relates to a medical device, in particular to an anti-drop device for patients with muscle rigidity and muscle spasm. [0003] 【Background technique】 [0004] The current treatment methods for spasticity mainly include physical therapy, drug therapy, surgery and other methods. In terms of the site of action, most of these methods start with the spastic muscle group to directly relieve the spasm. In recent years, some domestic scholars have advocated starting from the antagonistic muscles of the patients, improving the excitability of the antagonistic muscles of the spastic muscles and relieving muscle tension, and achieved good rehabilitation effects. Its main theoretical basis is the principle of reciprocal inhibition: if a certain muscle is stretched (extensor excitation), the antagonistic muscle (flexor) relaxes. The reason is that the afferent impulse of class Ia afferent fibers can also connect with interneurons through the...

Claims

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Application Information

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IPC IPC(8): A61B5/0225A61B5/00A61N1/36
CPCA61B5/0002A61B5/0225A61B5/746A61N1/36003A61N1/36014
Inventor 丁书明杜艳平李翠凡仝雷曹迎东
Owner 广西华夏医药科技有限公司
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