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Ultrasonic thermal dust: a method to monitor deep tissue temperature profiles

机译:超声波热粉尘:一种监测深层组织温度型材的方法

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We demonstrate a tetherless, sub-millimeter implantable temperature sensing system employing ultrasonic powering and ultrasonic backscatter modulation assembled using commercially available components. We demonstrate two sizes of sensors based on available components with volumes of 1.45 mm~3 and 0.118 mm~3. Individual sensors are able to resolve ±0.5°C changes in temperature, suitable for medical diagnostic and monitoring purposes. We verify less than 0.3°C drift in temperature readings over 14 days in physiological conditions. This approach is compatible with more sophisticated temperature sensors such as classic proportional to absolute temperature (PTAT) integrated circuits, as well as digital backscatter approaches. Our goal is to solve a long-standing issue: chronic and tetherlessly monitoring deep tissue temperature with high spatial accuracy.
机译:我们展示了采用超声波电力和超声波反向散射调制的系列式,亚毫米可植入温度传感系统,使用市售的部件组装。我们基于可用组件展示了两种尺寸的传感器,其中体积为1.45 mm〜3和0.118 mm〜3。各个传感器能够解决±0.5°C的温度变化,适用于医疗诊断和监测目的。在生理条件下,在14天内,我们验证的温度读数小于0.3°C。这种方法与更复杂的温度传感器兼容,例如与绝对温度(PTAT)集成电路的经典成比例,以及数字反向散射方法。我们的目标是解决长期存在的问题:慢性和无条件地监测具有高空间精度的深层组织温度。

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