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Autonomous training device for neurology department

A training device and neurology technology, applied in passive exercise equipment, coatings, anti-corrosion coatings, etc., can solve the problems affecting the patient's condition, no neurology department's independent leg training device, poor training effect of patients, etc., and achieve simple structure , Improve mobility and flexibility, facilitate movement and fixation

Pending Publication Date: 2019-05-17
THE SECOND PEOPLES HOSPITAL OF NANTONG
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The purpose of the present invention is to provide an autonomous training device for neurology to solve the problem in the background art that there is no device for autonomous training of legs in neurology in the existing market, resulting in poor training effect for patients and affecting the patient's condition

Method used

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  • Autonomous training device for neurology department
  • Autonomous training device for neurology department
  • Autonomous training device for neurology department

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 2

[0071] The difference from Example 1 is that the outer wall of the bed board 2 is provided with an anti-corrosion layer, and the anti-corrosion layer is prepared as follows:

[0072] Take the following raw materials and weigh them by weight: 6 parts of hydrogenated castor oil, 8 parts of silicone acrylic emulsion, 7 parts of modified phenolic resin, 3 parts of polyvinyl acetate, 9 parts of polyisocyanate, 11 parts of talc powder, 4 parts of mica powder, 3 parts of carbon black powder, 5 parts of thickener, 6 parts of binder, 3 parts of defoamer, 90 parts of distilled water;

[0073] S1: Material preparation: first weigh the above raw materials;

[0074] S2: Liquid oil mixing: first pour distilled water into the blender, then pour hydrogenated castor oil and silicone acrylic emulsion into the blender for stirring and mixing, control the speed of the blender at 90r / min, and the temperature at 60 degrees Celsius, Controlled stirring for 15 minutes;

[0075] S3: Add powder: put ...

Embodiment 3

[0083] The difference with embodiment 2 is the preparation of anti-corrosion layer, and its specific preparation method is as follows:

[0084]Take the following raw materials and weigh them by weight: 8 parts of hydrogenated castor oil, 12 parts of silicon acrylic emulsion, 9 parts of modified phenolic resin, 7 parts of polyvinyl acetate, 11 parts of polyisocyanate, 15 parts of talcum powder, 6 parts of mica powder, 5 parts of carbon black powder, 7 parts of thickener, 10 parts of binder, 7 parts of defoamer, 110 parts of distilled water;

[0085] S1: Material preparation: first weigh the above raw materials;

[0086] S2: Liquid oil mixing: first pour distilled water into the blender, then pour hydrogenated castor oil and silicone acrylic emulsion into the blender for stirring and mixing, control the speed of the blender at 90r / min, and the temperature at 60 degrees Celsius, Controlled stirring for 15 minutes;

[0087] S3: Add powder: put talcum powder, mica powder, and car...

Embodiment 4

[0095] The difference with embodiment 2 is the preparation of anti-corrosion layer, and its specific preparation method is as follows:

[0096] Take the following raw materials and weigh them by weight: 7 parts of hydrogenated castor oil, 10 parts of silicon acrylic emulsion, 8 parts of modified phenolic resin, 5 parts of polyvinyl acetate, 10 parts of polyisocyanate, 13 parts of talc powder, 5 parts of mica powder, 4 parts of carbon black powder, 6 parts of thickener, 8 parts of binder, 5 parts of defoamer, 100 parts of distilled water;

[0097] S1: Material preparation: first weigh the above raw materials;

[0098] S2: Liquid oil mixing: first pour distilled water into the blender, then pour hydrogenated castor oil and silicone acrylic emulsion into the blender for stirring and mixing, control the speed of the blender at 90r / min, and the temperature at 60 degrees Celsius, Controlled stirring for 15 minutes;

[0099] S3: Add powder: put talcum powder, mica powder, and carbo...

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Abstract

The invention discloses an autonomous training device for the neurology department. The autonomous training device comprises a rack, a first servo motor is fixed to a mounting plate, a first gear is fixed to the end of an output shaft of a first servo motor, a first connecting shaft is fixed to the first gear, and one side of the first gear is in engaged and transmission connection with a second gear. A second connecting shaft is fixed to the second gear, the second connecting shaft and the first connecting shaft are both rotationally connected with a bed board, first supporting plates are fixed to the upper end of the second connecting shaft and the end of the first connecting shaft, one side of each first supporting plate is movably connected with a second supporting plate, a bending training mechanism is arranged between each first supporting plate and the corresponding second supporting plate, and a pedal mechanism is arranged at one end of each second supporting plate. By means ofthe structure, autonomous training of the legs of a patient is achieved, operation is easy, the training effect is good, the anti-corrosion effect is good, and long-term use is benefited.

Description

technical field [0001] The invention belongs to the technical field of training devices for neurology, and in particular relates to an autonomous training device for neurology. Background technique [0002] Neurology is a secondary discipline concerned with neurology. Mainly treat cerebrovascular diseases (cerebral infarction, cerebral hemorrhage), migraine, brain inflammatory diseases (encephalitis, meningitis), myelitis, epilepsy, dementia, metabolic diseases and genetic predisposition diseases, trigeminal neuralgia, sciatic nerve disease, Peripheral neuropathy and myasthenia gravis. Neurosurgery is a branch of surgery, which uses unique neurosurgery research methods to study the human nervous system, such as the brain, spinal cord and peripheral nervous system, as well as related diseases, based on surgery as the main treatment method. Subsidiary organs, such as skull, scalp, cerebrovascular meninges and other structural injuries, inflammation, tumors, deformities and c...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61H1/02C09D143/04C09D161/32C09D131/04C09D191/00C09D5/08C09D7/61
Inventor 潘雯黄汇平
Owner THE SECOND PEOPLES HOSPITAL OF NANTONG
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