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Smart optical fiber probes for precise tissue treatment

机译:智能光纤探头,用于精确组织处理

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摘要

Optical features of a novel technique for fiber-optic-based laser delivery into a precise tissue area are investigated. As a key optical element, the technique includes a single delivery fiber with a specially angle shaped tip. Because of the frustrated-total-internal-reflectance caused by the refractive-index change of the surrounding medium, the angled fiber tip acts as a smart, tissue-activated probe. It provides a safe way for laser delivery that includes only two states of tissue illumination: (1) off-state (no tissue illumination), when the fiber tip is out of the tissue area and the laser emission is backreflected due to total-internal-reflection; and (2) on-state (maximum tissue illumination), when the fiber tip is on the absorbing tissue area and becomes "transparent" because of the frustrated-total-internal-reflectance and the laser energy is coupled into the absorber. Here, optical properties of tissue-activated fiber probes used for precise laser delivery are investigated both experimentally and theoretically by analyzing the backreflectance signal power. Optical fibers with various geometrical parameters are used and a spatial resolution of 2 μm is achieved when the fiber tip is moved toward the absorption tissue surface. The results confirm the system potential for on-the-spot laser delivery applicable to precise laser treatment, tissue diagnostics, and micro-scale surgical procedures.
机译:作光纤为基础的激光输送的新颖技术的光学特征为精确的组织区域进行了研究。作为关键的光学元件,该技术包括用一个专门的角度形末端的单个传输光纤。因为造成的周围介质的折射率变化受挫-全内反射的,成角度的光纤顶端充当智能,组织活化的探针。它提供了一种用于激光输送一种安全的方式,其包括组织的照明的只有两种状态:(1)关断状态(无组织照明),当纤维尖端的组织区域的出和激光发射背反射由于全内-反射;和导通状态(2)(最大组织照明)中,当光纤顶端是在吸收组织区域和成为因为受挫-全内反射率和激光能量的“透明”被耦合到吸收器。这里,用于精确激光输送组织活化纤维探针的光学性质是通过分析backreflectance信号功率实验和理论研究。具有各种几何参数光纤被使用,并且当所述光纤尖端朝向吸收组织表面移动实现为2μm的空间分辨率。结果证实了在现场适用于精确激光治疗,组织诊断和微尺度外科手术激光传输系统的潜力。

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