Balance capability training device for rats with brain injury

A technology for balance ability and training device, applied in animal taming devices, applications, animal husbandry, etc., can solve the problems of lack of sensory feedback, difficult for patients to adjust and control movement, maintain posture and maintain balance, etc. The effect of stimulating short-circuit failure, improving tactile sense and balance sense
CN104412907AInactive Publication Date: 2015-03-18AFFILIATED HUSN HOSPITAL OF FUDAN UNIV

Patent Information

Authority / Receiving Office
CN · China
Current Assignee / Owner
AFFILIATED HUSN HOSPITAL OF FUDAN UNIV
Publication Date
2015-03-18
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention discloses a balance capability training device for rats with brain injury. The device comprises an outer frame bracket, a console and a plurality of training cages, wherein the console is connected to the outer side of the outer frame bracket; the training cages are arranged abreast in the outer frame bracket, and comprise at least one ordinary training cage and at least one forward and backward balance training cage; a treadmill is arranged in each training cage; a forward and backward swinging regulation mechanism is arranged below the forward and backward balance training cage; the console is electrically connected with each treadmill and the forward and backward balance regulation mechanism. The device can be used for simplex treadmill training and implementing a feeling-balance-motion multifunctional habilitation training mode, the experimental requirements of a researcher can be met, and an advanced animal experiment means can be provided for researches on the neural mechanism rehabilitation of brain injury diseases.
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Description

technical field

[0001] The invention relates to a medical simulation experiment device, in particular to a balance ability training device for cerebrovascular rats. Background technique

[0002] Brain injury, including stroke, is a common clinical disease with high morbidity, high mortality, high disability rate and low cure rate, and its high disability rate causes a huge burden to patients, families and society. Clinical experiments have confirmed that rehabilitation therapy such as sensory-balance-motor can improve the walking ability of patients with brain injury sequelae, but its neural mechanism is still unclear, which hinders the development of rehabilitation medicine to a certain extent. Human experiments are subject to methodological and ethical restrictions, and have relatively large limitations. It is very necessary to conduct research through animal experiments. Rats are genetically similar to humans. Using rats to simulate human physiological and pathological s...

Claims

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