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Auxiliary lower limb rehabilitation training system for neurology department

A rehabilitation training and neurology technology, applied in applications, medical sciences, appliances to help people walk, etc., can solve the problems of secondary injury of lower limbs, patient adjustment, low automatic adaptability, etc., to improve safety and ensure safety. , the effect of improving the accuracy

Inactive Publication Date: 2022-05-31
天津市第四中心医院
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the lower limb rehabilitation training technology in the prior art has low automatic adaptability to the rehabilitation training of patients with different body types, and some patients cannot effectively perform rehabilitation training.
[0004] In order to solve the poor digital automatic control technology of the training system commonly found in this field, it is impossible to effectively adjust the intensity of adaptive training for the patient, and the intelligence is low, and it is no longer possible to monitor and monitor the posture of the patient's rehabilitation training during the rehabilitation training process of the patient's lower limbs. Guide and then easily cause secondary injury to patient's lower limbs etc. problem, made the present invention

Method used

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  • Auxiliary lower limb rehabilitation training system for neurology department
  • Auxiliary lower limb rehabilitation training system for neurology department
  • Auxiliary lower limb rehabilitation training system for neurology department

Examples

Experimental program
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Effect test

Embodiment 1

[0026] combined with figure 1 , attached figure 2 , attached image 3 , attached Figure 4 And attached Figure 5 , the present embodiment constructs a neurology auxiliary lower limb rehabilitation training system;

[0027] An auxiliary lower limb rehabilitation training system for neurology, the lower limb rehabilitation training system includes a walking training module for performing walking training on a patient, a knee limiting module that limits the bending angle of the patient's knee during the walking training process, and a The patient's upper body is fixed to control the stable support module of the patient's stability during the walking training process, wherein the walking training module includes a foot support pad that is fixed in cooperation with the patient's sole, circulates and is used to support the sole of the foot The training floor for stepping on the pad, the sensor array unit evenly distributed on the sole support pad to monitor the force distribut...

Embodiment 2

[0060] combined with figure 1 , attached figure 2 , attached image 3 , attached Figure 4 And attached Figure 5 , in addition to comprising the content of the above embodiments, also lies in:

[0061] The stable support module includes at least two support rails respectively arranged on both sides of the training floor, at least two support rails are respectively fixed on both sides of the training floor and the support rails The rod is adjusted and driven to the elevating rod above the corresponding distance of the training floor, the waist fixing belt around the patient's waist, at least two fixing ropes respectively matching on each of the support rails, respectively arranged on each One end of the fixed rope can be adjusted and fixed on the support pole, and the other end of the fixed rope that is arranged on both sides of the waist fixing belt and opposite to it is fixedly matched. The locking piece, wherein the locking piece is a rope locking buckle of the prior ...

Embodiment 3

[0065] combined with figure 1 , attached figure 2 , attached image 3 , attached Figure 4 And attached Figure 5 , in addition to comprising the content of the above embodiments, also lies in:

[0066] The knee restraint module includes an upper fitting ring that fits around the leg region above the patient's knee, a lower fitting ring that fits around the leg region below the patient's knee, and all fittings that will fit on the same leg. A tensioning unit for connecting and fitting the upper fitting ring and the lower fitting ring, the tensioning unit includes at least four upper openings fitting on the outer ring wall of the upper fitting ring, at least four openings fitting on the lower fitting ring The outer ring wall of the ring and the lower rope lock that is arranged opposite to the upper opening in turn, the miniature hoist that is movably fitted in the upper opening, one end of which is connected and fitted in the upper opening and is controlled by the miniature ...

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Abstract

The invention provides an auxiliary lower limb rehabilitation training system for the neurology department. The lower limb rehabilitation training system further comprises a walking training module for carrying out walking training on the patient, a knee limiting module for limiting the bending angle of the knees of the patient in the walking training process, and a stable supporting module for fixing the upper body of the patient to control the stability of the patient in the walking training process. The knee limiting module is used for controlling the bending angle of the knee of the patient in the walking training process so as to prevent knee injuries caused by wrong walking postures of the patient, and meanwhile movement adjustment adaptive to the walking speed of the patient is carried out based on induction recognition of the walking training module on the walking action of the patient. Therefore, the safety and effectiveness of assisting the lower limb rehabilitation training of the patient are effectively improved.

Description

technical field [0001] The invention relates to the technical field of rehabilitation therapy, in particular to an auxiliary lower limb rehabilitation training system for neurology. Background technique [0002] Lower extremity nerve injury refers to the injury of the nerves of the lower extremities of the human body, including sciatic, tibial, peroneal, and femoral nerves. Daily activities took a toll, and effective rehabilitation methods included weight-loss training, acupuncture rehabilitation, myoelectric biofeedback, and routine walking posture rehabilitation. Among them, weight loss training is mainly aimed at patients with preliminary rehabilitation or serious conditions. At present, there are robots specially used for weight loss rehabilitation, which can not only imitate the walking posture of normal people, but also help the human body bear part of the weight. The current clinical methods mainly include: Suspension weight reduction mode, pool type, inclined bed ty...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61H3/00A61B5/103A61B5/11
CPCA61H3/00A61B5/1038A61B5/11A61B5/112
Inventor 梁雪梅赵岚
Owner 天津市第四中心医院
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