首页> 外文会议>55th International Astronautical Congress 2004 vol.2 >The Fly Wheel Exercise Device (FWED) A Countermeasure against Bone Loss and Muscle Atrophy
【24h】

The Fly Wheel Exercise Device (FWED) A Countermeasure against Bone Loss and Muscle Atrophy

机译:飞轮运动装置(FWED)对付骨丢失和肌肉萎缩的对策

获取原文
获取原文并翻译 | 示例

摘要

The Flywheel Exercise Device (FWED) is planned for use as an in-flight exercise system, to demonstrate its efficacy as a counter measure device to prevent muscle atrophy, bone loss and impairment of muscle function in human beings in response to long duration space flight. It is intended to be used on the International Space Station and will be launched by the European cargo carrier, the Automated Transfer Vehicle (ATV) in late 2005. The FWED is a non-gravity dependent mechanical device based on the Yo-Yo principle, which provides resistance during coupled concentric and eccentric muscle actions, through the inertia of a spinning flywheel. Currently, the development of a FWED Flight and Ground Model is in progress and is due to be completed in May 2004. An earlier developed prototype is available that has been used for various ground studies. Our FWED design provides a maximum of built-in safety and support to the operation by one astronaut. This is achieved in particular by innovative mechanical design features and an easy, safe to use man machine interface. The modular design is optimized for efficient set-up and maintenance operations to be performed in orbit by the crew. The mechanical subsystem of the FWED includes a μg disturbance suspension, which minimizes the mechanical disturbances of the exercising subject at the mechanical interface to the ISS. During the FWED operation the astronaut is guided through the exercises by the data management subsystem, which acquires sensor data from the FWED, calculates and displays real-time feedback to the subject, and stores all data on hard disk and personalized storage media for later scientific analysis.
机译:飞轮运动设备(FWED)计划用作飞行中的运动系统,以证明其作为对策设备的功效,可防止人类因长时间太空飞行而出现肌肉萎缩,骨骼丢失和肌肉功能受损。它打算在国际空间站上使用,并将于2005年下半年由欧洲货轮自动转运车(ATV)发射。FWED是基于溜溜球原理的不依赖重力的机械设备,它通过旋转的飞轮的惯性在耦合的同心和偏心肌肉动作中提供阻力。目前,FWED飞行和地面模型的开发正在进行中,计划于2004年5月完成。目前已有较早开发的原型已用于各种地面研究。我们的FWED设计为一名宇航员提供了最大程度的内置安全性和操作支持。这尤其是通过创新的机械设计功能以及易于使用的安全人机界面实现的。模块化设计经过优化,可以有效地进行设置和维护操作,由机组人员在轨道上进行。 FWED的机械子系统包括一个μg扰动悬架,可将运动对象在与ISS的机械界面处的机械扰动最小化。在FWED操作过程中,数据管理子系统指导宇航员进行演习,该管理系统从FWED获取传感器数据,计算并显示对受试者的实时反馈,并将所有数据存储在硬盘和个性化存储介质上,以便以后进行科学分析。分析。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号