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Optoacoustic Temperature Determination and Automatic Coagulation Control in Rabbits

机译:兔声光温度测定和自动混凝控制

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Retinal laser photocoagulation is an established treatment method for many retinal diseases like macula edema or diabetic retinopathy. The selection of the laser parameters is so far based on post treatment evaluation of the lesion size and strength. Due to local pigment variations in the fundus and individual transmission the same laser parameters often lead to an overtreatment. Optoacoustic allows a non invasive monitoring of the retinal temperature increase during retinal laser irradiation by measuring the temperature dependent pressure amplitudes, which are induced by short probe laser pulses. A 75 ns/ 523 nm Nd: YLF was used as a probe laser at a repetition rate of 1 kHz, and a cw / 532 nm treatment laser for heating. A contact lens was modified with a ring-shaped ultrasonic transducer to detect the pressure waves at the cornea. Temperatures were collected for irradiations leading to soft or invisible lesions. Based on this data the threshold for denaturation was found. By analyzing the initial temperature increase, the further temperature development during irradiation could be predicted. An algorithm was found to calculate the irradiation time, which is needed for a soft lesion formation, from the temperature curve. By this it was possible to provide a real-time dosimetry by automatically switching off the treatment laser after the calculated irradiation time. Automatically controlled coagulations appear softer and more uniformly.
机译:视网膜激光光凝术是许多视网膜疾病(如黄斑水肿或糖尿病性视网膜病变)的既定治疗方法。到目前为止,激光参数的选择基于病变大小和强度的治疗后评估。由于眼底和局部透射的局部色素变化,相同的激光参数通常会导致过度治疗。光声可通过测量由短探针激光脉冲引起的依赖于温度的压力幅度,从而对视网膜激光照射过程中的视网膜温度升高进行非侵入式监测。 75 ns / 523 nm Nd:YLF被用作探测激光器,重复频率为1 kHz,而cw / 532 nm处理激光器用于加热。用环形超声换能器修改隐形眼镜,以检测角膜处的压力波。收集温度以进行照射,从而导致软的或不可见的损伤。基于该数据,发现了变性的阈值。通过分析初始温度升高,可以预测辐照期间进一步的温度发展。发现了一种算法,可以根据温度曲线计算形成软病变所需的照射时间。这样,可以通过在计算出的照射时间后自动关闭治疗激光来提供实时剂量测定。自动控制的凝血看起来更柔和更均匀。

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