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Wearable Tactile Pressure Sensing for Compression Garments and Control of Active Compression Devices

机译:压缩服装的可穿戴触觉压力感测和主动压缩设备的控制

摘要

Compression garments on the lower limbs have been used for the treatment of venous deficiencies for centuries. More recently, healthy athletes have used similar garments for an edge in performance and improved recovery times. The basis for their use is the increase of blood circulation that helps oxygenate muscles. Active compression devices that apply intermittent compression are less prevalent but have the potential to generate a greater impact on blood circulation. A new study into the effects of active compression required the development of an active compression system that would apply intermittent compression in a reliable manner.In the present thesis, a control system to facilitate active compression and generate a positive impact on blood circulation is pursued. This development involved setting up the timing of the compression and implementing a controller that regulates the compression pressure. A new capacitive sensor for pressure feedback to the controller is also evaluated.In the resulting active compression system that was built, an electrocardiogram (ECG) and heel switch are used to determine the timing of the compression. The ECG synchronizes the compression with the heartbeat, while the heel switch prevents compression from being applied when the calf muscles are contracted because the compression would not have an effect in that scenario. When the timing criteria is met, sequential compression up the calf is applied with five inflatable cuffs to push the blood up the leg and towards the heart. The pressure is sensed during each compression and used in an iterative learning controller that regulates the amount of compression applied.
机译:几个世纪以来,下肢的压缩服已用于治疗静脉缺乏症。最近,健康的运动员使用了类似的服装以提高性能并缩短恢复时间。使用它们的基础是增加血液循环,从而帮助肌肉充氧。主动施加间歇性压缩的压缩设备不那么普遍,但有可能对血液循环产生更大的影响。对主动压缩的效果的新研究要求开发一种主动压缩系统,该系统将以可靠的方式应用间歇压缩。在本论文中,寻求一种促进主动压缩并对血液循环产生积极影响的控制系统。这种发展涉及设定压缩时间并实施调节压缩压力的控制器。还评估了用于向控制器反馈压力的新型电容式传感器。在构建的最终主动压缩系统中,心电图(ECG)和脚跟开关用于确定压缩的时机。 ECG将压力与心跳同步,而脚后跟开关可防止在小腿肌肉收缩时施加压力,因为在这种情况下,压缩不会起作用。当符合计时标准时,用五个可充气的袖带对小腿进行连续加压,以将血液向上推动至腿部并朝向心脏。在每次压缩过程中感测到压力,并将其用于调节所施加压缩量的迭代学习控制器中。

著录项

  • 作者

    Lao Steven Baron;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-20 20:13:39

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