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A non-contact temperature measurement system for controlling photothermal medical laser treatments

机译:用于控制光热医疗激光治疗的非接触式温度测量系统

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Photothermal medical laser treatments are extremely dependent on the generated tissue temperature. It is necessary to reach a certain temperature threshold to achieve successful results, whereas preventing to exceed an upper temperature value is required to avoid thermal damage. One method to overcome this problem is to use previously conducted dosimetry studies as a reference. Nevertheless, these results are acquired in controlled environments using uniform subjects. In the clinical environment, the optical and thermal characteristics (tissue color, composition and hydration level) vary dramatically among different patients. Therefore, the most reliable solution is to use a closed-loop feedback system that monitors the target tissue temperature to control laser exposure. In this study, we present a compact, non-contact temperature measurement system for the control of photothermal medical laser applications that is cost-efficient and simple to use. The temperature measurement is achieved using a focused, commercially available MOEMS infrared thermocouple sensor embedded in an off-axis arrangement on the laser beam delivery hand probe. The spot size of the temperature sensor is ca. 2.5 mm, reasonably smaller than the laser spot sizes used in photothermal medical laser applications. The temperature readout and laser control is realized using a microcontroller for fast operation. The utilization of the developed system may enable the adaptation of several medical laser treatments that are currently conducted only in controlled laboratory environments into the clinic. Laser tissue welding and cartilage reshaping are two of the techniques that are limited to laboratory research at the moment. This system will also ensure the safety and success of laser treatments aiming hyperthermia, coagulation and ablation, as well as LLLT and PDT.
机译:光热医学激光治疗非常依赖于产生的组织温度。为了达到成功的结果,必须达到某个温度阈值,而为了避免热损坏,则需要防止超过一个较高的温度值。解决此问题的一种方法是使用以前进行的剂量学研究作为参考。但是,这些结果是在使用统一主题的受控环境中获得的。在临床环境中,不同患者的光学和热学特征(组织颜色,成分和水合水平)差异很大。因此,最可靠的解决方案是使用监视目标组织温度的闭环反馈系统来控制激光照射。在这项研究中,我们提出了一种紧凑的,非接触式的温度测量系统,用于控制光热医用激光应用,该系统经济高效且易于使用。使用聚焦的,可商购获得的MOEMS红外热电偶传感器来实现温度测量,该传感器嵌入离轴布置在激光束传输手持式探头上。温度传感器的光点尺寸约为。 2.5毫米,比光热医疗激光应用中使用的激光光斑尺寸小得多。温度读数和激光控制使用微控制器实现,以实现快速操作。利用开发的系统可以使目前仅在受控实验室环境中进行的几种医学激光治疗适应于临床。激光组织焊接和软骨整形是目前仅限于实验室研究的两种技术。该系统还将确保针对热疗,凝血和消融以及LLLT和PDT的激光治疗的安全性和成功性。

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