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Toward automated selective retina treatment (SRT): An optical microbubble detection technique

机译:朝向自动选择性视网膜处理(SRT):光学微泡检测技术

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Selective retina therapy (SRT) is an ophthalmological laser technique, targeting the retinal pigment epithelium (RPE) with repetitive microsecond laser pulses, while causing no thermal damage to the neural retina, the photoreceptors as well as the choroid. The RPE cells get damaged mechanically by microbubbles originating, at the intracellular melanosomes. Beneficial effects of SRT on Central Serous Retinopathy (CSR) and Diabetic Macula Edema (DME) have already been shown. Variations in the transmission of the anterior eye media and pigmentation variation of RPE yield in intra- and inter- individual thresholds of the pulse energy required for selective RPE damage. Those selective RPE lesions are not visible. Thus, dosimetry-systems, designed to detect microbubbles as an indicator for RPE cell damage, are demanded elements to facilitate SRT application. Therefore, a technique based on the evaluation of backscattered treatment light has been developed. Data of 127 spots, acquired during 10 clinical treatments of CSR patients, were assigned to a RPE cell damage class, validated by fluorescence angiography (FLA). An algorithm has been designed to match the FLA based information. A sensitivity of 0.9 with a specificity close to 1 is achieved. The data can be processed within microseconds. Thus, the process can be implemented in existing SRT lasers with an automatic pulse wise increasing energy and an automatic irradiation ceasing ability to enable automated treatment close above threshold to prevent adverse effects caused by too high pulse energy. Alternatively, a guidance procedure, informing the treating clinician about the adequacy of the actual settings, is possible.
机译:选择性视网膜治疗(SRT)是一种眼科激光技术,靶向具有重复微秒激光脉冲的视网膜颜料上皮(RPE),同时不会对神经视网膜,感光体以及脉络膜没有热损坏。 RPE细胞通过微泡来到源自细胞内黑色素的微泡机械损坏。 SRT对中枢性浆膜视网膜病变(CSR)和糖尿病药片水肿(DME)的有益效果已经显示出。在选择性RPE损伤所需的脉冲能量的脉冲能量内和层间阈值中的脉冲能量的递传动和色素沉着变化的变化。那些选择性RPE病变不可见。因此,设计用于将微泡作为RPE电池损坏的指示器检测微泡的剂量 - 系统是为了方便SRT应用。因此,已经开发了一种基于评估背散处理光的技术。在10个CSR患者的临床治疗期间获得的127个斑点的数据被分配给RPE细胞损伤类,通过荧光血管造影(FLA)验证。算法旨在匹配基于FLA的信息。实现了靠近1的特异性的0.9的灵敏度。数据可以在微秒内处理。因此,该过程可以在现有的SRT激光器中实现,其具有自动脉冲明智的能量和自动辐照可持续能力,使自动化处理能够紧密地关闭阈值以防止由太高的脉冲能量引起的不利影响。或者,可以提供指导程序,通知治疗临床医生关于实际设置的充分性。

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