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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Thermal diffusion probe and instrument system for tissue blood flow measurements: validation in phantoms and in vivo organs
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Thermal diffusion probe and instrument system for tissue blood flow measurements: validation in phantoms and in vivo organs

机译:用于组织血流量测量的热扩散探针和仪器系统:在体模和体内器官中的验证

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摘要

A minimally invasive probe and instrument system for real-time measurements of temperature, thermal conductivity and tissue blood flow has been designed for research and clinical use. The essence of the probe is a thermistor, located at the tip of catheters or glass and steel needles, and operating in transient self-heated mode at constant temperature increment. Thermal conductivity and tissue blood flow are determined by use of a coupled tissue-probe thermal model. The effects of temporal baseline temperature shifts are minimized by a novel, automatic, analog compensation circuit. Very short heating periods (3 s) and cooling periods (12 s) provided near-continuous measurements (4/min). Calibration experiments performed in media of known thermal conductivity exhibit a linear response with respect to thermal conductivity. In vitro experiments performed in isolated perfused dog liver preparations are presented to evaluate this instrument system. In vivo experiments performed in cat brain, dog liver, and human tumor demonstrate the ability of this instrument system to perform physiologically valid measurements (comparison inter-subjects and intra-subjects). The minimally invasive probes (0.8 mm OD) are capable of long term measurements (several months), with minimal tissue reactions (0.3 mm around the probe).
机译:一种用于实时测量温度,热导率和组织血流的微创探针和仪器系统已经设计用于研究和临床用途。探头的本质是一个热敏电阻,它位于导管或玻璃和钢针的尖端,并在恒定的温度增量下以瞬态自热模式运行。通过使用耦合的组织探针热模型确定热导率和组织血流量。新型的自动模拟补偿电路可最大程度地降低时间基线温度漂移的影响。非常短的加热时间(3 s)和冷却时间(12 s)提供了近乎连续的测量(4 / min)。在已知热导率的介质中执行的校准实验相对于热导率表现出线性响应。介绍了在离体灌注狗肝制剂中进行的体外实验,以评估该仪器系统。在猫脑,犬肝和人类肿瘤中进行的体内实验证明了该仪器系统执行生理有效测量(比较受试者间和受试者内)的能力。微创探头(外径0.8 mm)能够长期测量(数月),而组织反应最少(探头周围0.3 mm)。

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