Gravity imitation wearable device under zero (micro) gravity condition and relative ancillary facility

A wearable device and gravity technology, applied in the field of aerospace biomedicine, can solve the problems of small volume space and difficult realization

Inactive Publication Date: 2017-08-15
康子纯
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It will require a huge investment to build a giant space station, and it will be difficult to achieve in the next few decades
In addition, for long-term travel to Mars and other p

Method used

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  • Gravity imitation wearable device under zero (micro) gravity condition and relative ancillary facility
  • Gravity imitation wearable device under zero (micro) gravity condition and relative ancillary facility
  • Gravity imitation wearable device under zero (micro) gravity condition and relative ancillary facility

Examples

Experimental program
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Embodiment

[0113] Select the simplified version of the gravity-imitation wearable device (simplified version of the gravity-imitation spacesuit, simplified version of the gravity-imitation electromagnetic boots, simplified version of the gravity-imitation bed rest) as an embodiment.

[0114] A simplified version of the gravity-mimicking wearable device, and related supporting facilities, including: a simplified version of the gravity-mimicking space suit, a simplified version of the gravity-mimicking electromagnetic boots, a simplified version of the gravity-mimicking bed, and related supporting facilities.

[0115] 1. The simplified version of the gravity-imitation spacesuit is characterized in that it only considers the changes in the extrusion-imitation gravity exerted by the above-mentioned gravity-imitation spacesuit on various parts of the human body, and does not consider the changes in the imitation gravity of stretching; the rest of the description is omitted.

[0116] 2. It belo...

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PUM

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Abstract

Imitation gravity wearable equipment and related supporting facilities under zero (micro) gravity conditions, including: Imitation gravity space suit, Imitation gravity electromagnetic boots, Imitation gravity bed, and related supporting facilities. Imitation gravity wearable device controls elastic material tensioning device, electromagnetic force control device, air pressure and hydraulic mechanical control device through computer automatic control system or pure manual according to different activity states of human body (standing, walking, sitting, lying position). Under zero (micro) gravity conditions, imitate gravity equivalent to the natural gravity of the ground to each part of the human body to create imitated gravity conditions suitable for human activities and a livable imitated gravity environment, and overcome the long-term space station under zero (micro) gravity conditions 1. Spaceship (rocket) space travel has a serious negative impact on the physiology and psychology of the human body (astronaut), and provides the greatest possible safety and health guarantee and a livable imitation gravity environment for the long-term flight of human beings to conquer space. Gradually end the floating age of the human body (astronaut) in the early space flight of human beings, and start the imitation gravity era of space flight.

Description

[0001] Technical field: [0002] The invention relates to aerospace biomedical technology. [0003] Background technique: [0004] As we all know, the astronauts in the space field live and work in zero gravity or microgravity conditions for a long time, all of which lead to major adaptation and health problems. According to a report on the website of the British "Guardian" on October 25, 2016, during long-term spaceflight, astronauts will grow one or two inches taller (1 inch is approximately equal to 2.54 centimeters), but their muscles will be severely atrophied. Small areas of muscle around the spine atrophy due to the absence of body weight on the spine in microgravity or zero gravity conditions. After 4 to 7 months of flight, MRI scans showed that the cross-section of muscles around the spine of astronauts shrank by an average of 19%, and after returning to the ground for one to two months, only 2 / 3 of the atrophied muscles recovered. Since the paravertebral muscles are...

Claims

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Application Information

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IPC IPC(8): B64G6/00A43B3/00A47C17/00
CPCB64G6/00A43B3/00A47C17/00
Inventor 康子纯
Owner 康子纯
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