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Photoacoustic thermography of tissue

机译:组织的光声热成像

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摘要

Photoacoustic (PA) techniques can measure temperature in biological tissues because PA signal amplitude is sensitive to tissue temperature. So far, temperature-measuring PA techniques have focused on sensing of temperature changes at a single position. In this work, we photoacoustically measured spatial distribution of temperature in deep tissue. By monitoring the temperature at a single position using a thermocouple, the relationship between the PA signal amplitude and the actual temperature was determined. The relationship was then used to translate a PA image into a temperature map. This study showed that it is possible to calibrate the system for the temperature range of hyperthermia using single-point measurements over a smaller temperature range. Our experimental results showed a precision of −0.8±0.4°C (mean±standard error) in temperature measurement, and a spatial resolution as fine as 1.0 mm. PA techniques can be potentially applied to monitor temperature distribution deep in tissue during hyperthermia treatment of cancer.
机译:由于PA信号幅度对组织温度敏感,因此光声(PA)技术可以测量生物组织中的温度。到目前为止,温度测量功率放大器技术已经集中在单个位置的温度变化感测上。在这项工作中,我们用光声法测量了深层组织中温度的空间分布。通过使用热电偶监测单个位置的温度,可以确定PA信号幅度与实际温度之间的关系。然后使用该关系将PA图像转换为温度图。这项研究表明,可以在较小的温度范围内使用单点测量来校准系统的高温温度范围。我们的实验结果表明温度测量的精度为-0.8±0.4°C(平均值±标准误差),空间分辨率可达1.0 mm。 PA技术可潜在地用于监测癌症热疗过程中组织深处的温度分布。

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