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用于热疗的低温可测纤维辐射温度计的研制。

Development of hypothermia measurable fiber radiometric thermometer for thermotherapy.

机构信息

Department of Chemical, Paper and Biomedical Engineering, Miami University, Oxford, Ohio, USA.

Currently associated with the Department of Applied Physics, Stanford University, Stanford, California, USA.

出版信息

J Biophotonics. 2020 May;13(5):e201960205. doi: 10.1002/jbio.201960205. Epub 2020 Mar 1.

Abstract

Temperature monitoring is extremely important during thermotherapy. Fiber-optic temperature sensors are preferred because of their flexibility and immunity to electromagnetic interference. Although many types of fiber-optic sensors have been developed, clinically adopting them remains challenging. Here, we report a silica fiber-based radiometric thermometer using a low-cost extended InGaAs detector to detect black body radiation between 1.7 and 2.4 μm. For the first time, this silica fiber-based thermometer is capable of measuring temperatures down to 35°C, making it suitable for monitoring hyperthermia during surgery. In particular, the thermometer has potential for seamless integration with current silica fiber catheters, which are widely used in laser interstitial thermotherapy. The feasibility, capability and sensitivity of tracking tissue temperature variation were proved through ex vivo tissue studies. After further improvement, the technology has the potential to be translated into clinics for monitoring tissue temperature.

摘要

在热疗过程中,温度监测极其重要。光纤温度传感器因其灵活性和对电磁干扰的免疫力而受到青睐。尽管已经开发出许多类型的光纤传感器,但在临床上采用它们仍然具有挑战性。在这里,我们报告了一种使用低成本扩展 InGaAs 探测器的基于二氧化硅光纤的辐射温度计,用于检测 1.7 至 2.4 μm 之间的黑体辐射。首次,这种基于二氧化硅光纤的温度计能够测量低至 35°C 的温度,使其适用于手术中监测过热。特别是,该温度计具有与当前广泛用于激光间质热疗的二氧化硅光纤导管无缝集成的潜力。通过离体组织研究证明了跟踪组织温度变化的可行性、能力和灵敏度。在进一步改进后,该技术有可能转化为临床,用于监测组织温度。

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