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首页> 外文期刊>Photomedicine and laser surgery >Development of a surgical diode-laser system: controlling the mode of operation.
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Development of a surgical diode-laser system: controlling the mode of operation.

机译:外科二极管激光系统的开发:控制操作模式。

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OBJECTIVE: The aim of this study was to develop a microcontroller based surgical diode laser system and to test it at two different modes (continuous [CW] and modulated) in vitro on lamb liver tissue. BACKGROUND DATA: In laser surgery, depending on the properties of laser source (wavelength, power, application time, and mode of operation), the effects observed on the tissue may change from carbonization to hyperthermia. The aim is to remove the target tissue without giving any thermal damage to the surrounding tissue. Carbonization should be avoided, thus controlling the mode of operation is very crucial. METHODS: The system consisted of a microcontroller based control unit, 980-nm high-power diode laser source, and fiber delivery unit. This system has the capability of delivering different modes of laser energy to the target tissue ranging from CW to 20-Hz modulated beams. The surgical diode laser system was tested on liver tissue in vitro. Efficiency of laser-tissue interaction was quantified in terms of thermal alteration per unit energy and corresponding carbonization level. RESULTS: Modulated mode resulted in larger coagulated area with minimum carbonizations. Carbonized area/thermally altered area (CarbA/TAA) ratio for CW mode of operation at 16 J is 0.35; however, this ratio was found to be 0.05 at modulated mode, when even 10 times higher energy (160 J) was delivered to the target tissue. CONCLUSION: Results emphasized the significance of mode of operation as well as the other laser parameters. Modulated mode was found to be a promising regime for safer laser surgery.
机译:目的:本研究的目的是开发一种基于微控制器的手术二极管激光系统,并在两种不同的模式下(连续[CW]和调制)在羔羊肝组织上进行体外测试。背景数据:在激光手术中,根据激光源的特性(波长,功率,施加时间和操作模式),在组织上观察到的影响可能会从碳化变为热疗。目的是在不对周围组织造成任何热损伤的情况下去除目标组织。应避免碳化,因此控制操作模式非常关键。方法:该系统由一个基于微控制器的控制单元,一个980 nm大功率二极管激光源和一个光纤传输单元组成。该系统具有将不同模式的激光能量传递到目标组织的能力,范围从CW到20 Hz调制光束。手术二极管激光系统在肝脏组织上进行了体外测试。激光-组织相互作用的效率根据每单位能量的热变化和相应的碳化水平进行定量。结果:调节模式导致更大的凝结面积,碳化最小。 CW操作模式在16 J下的碳化面积/热变化面积(CarbA / TAA)之比为0.35;然而,当甚至高10倍的能量(160 J)传递到目标组织时,该比率在调制模式下为0.05。结论:结果强调了操作模式以及其他激光参数的重要性。发现调制模式是用于更安全的激光手术的有希望的方案。

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