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使用基于脉冲激光二极管的光声系统进行实时温度监测。

Real-time monitoring of temperature using a pulsed laser-diode-based photoacoustic system.

出版信息

Opt Lett. 2020 Feb 1;45(3):718-721. doi: 10.1364/OL.386173.

Abstract

Tissue local temperature information is necessary for guiding energy-based medical treatments. In cancer treatments such as thermal therapy, heating is applied to local tissue to kill the tumor cells. These techniques require a temperature monitoring device with high sensitivity. In this Letter, we demonstrate a pulsed-laser-diode-(PLD)-based photoacoustic temperature sensing (PATS) system for monitoring tissue temperature in real time. The system takes advantage of a high repetition rate (7000 Hz), a near-infrared wavelength (803 nm), and a relatively high energy 1.42 mJ/pulse laser. The system is capable of providing local temperature information at high temporal resolution of 1 ms and high sensitivity of 0.31°C. The temperature data measured with a PLD-PATS system are compared with the data provided by the commercial fiber Bragg grating sensor. The proposed system will find applications in radio-frequency ablation, photothermal therapy, and focused ultrasound, etc., used for cancer treatments.

摘要

组织局部温度信息对于指导基于能量的医学治疗至关重要。在癌症治疗如热疗中,加热被应用于局部组织以杀死肿瘤细胞。这些技术需要具有高灵敏度的温度监测设备。在本研究中,我们展示了一种基于脉冲激光二极管(PLD)的光声温度传感(PATS)系统,用于实时监测组织温度。该系统利用了高重复率(7000 Hz)、近红外波长(803nm)和相对较高的能量(1.42mJ/脉冲)激光。该系统能够以 1ms 的高时间分辨率和 0.31°C 的高灵敏度提供局部温度信息。用 PLD-PATS 系统测量的温度数据与商业光纤布拉格光栅传感器提供的数据进行了比较。所提出的系统将在用于癌症治疗的射频消融、光热治疗和聚焦超声等领域得到应用。

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