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A Human Thermoregulation Simulator for Calibrating Water-Perfused Cooling Pad Systems for Therapeutic Hypothermia

机译:用于校准用于治疗体温过低的水灌装冷却垫系统的人热调节模拟器

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摘要

The induction of a mild reduction in body core temperature has been demonstrated to provide neuroprotection for patients who have suffered a medical event resulting in ischemia to the brain or vital organs. Temperatures in the range of 32-34 degrees C provide the required level of protection and can be produced and maintained by diverse means for periods of days. Rewarming from hypothermia must be conducted slowly to avoid serious adverse consequences and usually is performed under control of the thermal therapeutic device based on a closed-loop feedback strategy based on the patient's core temperature. Given the sensitivity and criticality of this process, it is important that the device control system be able to interact with the human thermoregulation system, which itself is highly nonlinear. The therapeutic hypothermia device must be calibrated periodically to ensure that its performance is accurate and safe for the patient. In general, calibration processes are conducted with the hypothermia device operating on a passive thermal mass that behaves much differently than a living human. This project has developed and demonstrated an active human thermoregulation simulator (HTRS) that embodies major governing thermal functions such as central metabolism, tissue conduction, and convective transport between the core and the skin surface via the flow of blood and that replicates primary dimensions of the torso. When operated at physiological values for metabolism and cardiac output, the temperature gradients created across the body layers and the heat exchange with both an air environment and a clinical water-circulating cooling pad system match that which would occur in a living body. Approximately two-thirds of the heat flow between the core and surface is via convection rather than conduction, highlighting the importance of including the contribution of blood circulation to human thermoregulation in a device designed to calibrate the functioning of a therapeutic hypothermia system. The thermoregulation simulator functions as anticipated for a typical living patient during both body cooling and warming processes. This human thermoregulatory surrogate can be used to calibrate the thermal function of water-perfused cooling pads for a hypothermic temperature management system during both static and transient operation.
机译:已经证明了体内核心温度轻度降低的诱导,为患有患有脑或重要器官患有缺血的医疗事件的患者提供神经保护。 32-34摄氏度范围内的温度提供所需的保护水平,并且可以通过多元化的方式生产和维护。必须缓慢地进行从体温过低进行复原以避免严重的不良后果,并且通常基于患者核心温度的闭环反馈策略在热治疗装置的控制下进行。鉴于该过程的灵敏度和临界性,重要的是,器件控制系统能够与人类热调节系统相互作用,这本身是高度的非线性。治疗性低温装置必须定期校准,以确保其性能对患者准确和安全。通常,校准过程与在被动热质量上运行的低温装置进行,其表现得比活着的人不同。该项目已开发并展示了一个活跃的人类热调节模拟器(HTR),其体现了主要的控制热函数,例如中央代谢,组织传导和核心和皮肤表面之间的对流传输,通过血液流动,并复制了初级尺寸躯干。当在用于代谢和心脏输出的生理值操作时,在身体层上产生的温度梯度和空气环境和临床水循环冷却垫系统的热交换,其在活体中发生这种情况。核心和表面之间的大约三分之二的热流是通过对流而不是传导,突出了包括血液循环在设计用于校准治疗性低温系统的功能的装置中对人体温度调节的重要性。热调节模拟器在体内冷却和升温过程中预期典型的患者。这种人类热调节蛋白剂可用于在静态和瞬态操作期间校准水灌储水垫的热函数,用于低温温度管理系统。

著录项

  • 来源
    《Journal of Medical Devices》 |2017年第3期|共10页
  • 作者单位

    Univ Texas Austin Dept Biomed Engn 107 W Dean Keeton St Stop C0800 Austin TX 78712 USA;

    Univ Texas Hlth Sci Ctr San Antonio Dept Neurosurg MC7843 7703 Floyd Curl Dr San Antonio TX 78229 USA;

    Univ Texas Austin Dept Biomed Engn 107 W Dean Keeton St Stop C0800 Austin TX 78712 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仪器、设备;
  • 关键词

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