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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Optimal design of a thermistor probe for surface measurement of cerebral blood flow
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Optimal design of a thermistor probe for surface measurement of cerebral blood flow

机译:用于脑血流表面测量的热敏电阻探头的优化设计

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摘要

Microthermistors are put on the surface of the cerebral cortex to monitor local cerebral blood flow (CBF) continuously with minimal tissue damage and disturbance to the normal physiological state. Using a distributed, dynamic model of the measurement system, the authors simulated the effects of this flow measurement method under isothermal and adiabatic boundary conditions. Numerical results show that the adiabatic boundary condition can provide maximal sensitivity to perfusion changes at physiological perfusion levels. The constant power and constant temperature operating modes are compared in terms of output relation, sensitivity, and frequency response through analytical and numerical solutions. While the steady-state relations between thermistor measurements and perfusion for the two modes do not differ significantly, the constant temperature mode has better frequency response. Analytical results show that the relative sensitivity is the same for the two modes and is approximately proportional to the radius of thermistor.
机译:将微热敏电阻器放置在大脑皮层的表面上,以连续监测局部脑血流(CBF),而对组织的损害最小,对正常生理状态的干扰也最小。使用测量系统的分布式动态模型,作者模拟了在等温和绝热边界条件下这种流量测量方法的效果。数值结果表明,绝热边界条件可以在生理灌注水平下对灌注变化提供最大的敏感性。通过解析和数值解决方案,在输出关系,灵敏度和频率响应方面比较了恒定功率和恒定温度工作模式。尽管两种模式下热敏电阻测量值和灌注之间的稳态关系没有显着差异,但恒温模式具有更好的频率响应。分析结果表明,两种模式的相对灵敏度相同,并且与热敏电阻的半径近似成比例。

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