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Interferometric optical online dosimetry for selective retina treatment (SRT)

机译:干涉光学在线剂量选择性视网膜治疗(SRT)

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Selective retina treatment (SRT) is a new laser based method to treat retinal diseases associated with disorders of the retinal pigment epithelium (RPE). Applying microsecond laser pulses tissue damage spatially confined to the retinal pigment epithelium (RPE) is achieved. The RPE cell damage is caused by transient microbubbles emerging at the strongly absorbing melanin granules inside the RPE cells. Due to the spatial confinement to the RPE the photoreceptors can be spared and vision can be maintained in the treated retinal areas. A drawback for effective clinical SRT is that the laser induced lesions are ophthalmoscopically invisible. Therefore, a real-time feedback system for dosimetry is necessary in order to avoid undertreatment or unwanted collateral damage to the adjacent tissue. We develop a dosimetry system which uses optical interferometry for the detection of the transient microbubbles. The system is based on an optical fiber interferometer operated with a laser diode at 830nm. We present current results obtained with a laser slit lamp using porcine RPE explants in vitro and complete porcine eye globes ex vivo. The RPE cell damage is determined by Calcein fluorescence viability assays. With a threshold criterium for RPE cell death derived from the measured interferometric signal transients good agreement with the results of the viability assays is achieved.
机译:选择性视网膜治疗(SRT)是一种新的激光基础方法,可治疗与视网膜颜料上皮(RPE)的障碍相关的视网膜疾病。施加微秒激光脉冲,实现了空间局限于视网膜颜料上皮(RPE)的组织损伤。 RPE细胞损伤是由在RPE细胞内部强吸收的黑色素颗粒处出现的瞬态微泡引起的。由于RPE的空间限制,可以施用光感受器,并且可以在经过处理的视网膜区域中保持视力。有效临床SRT的缺点是激光诱导的病变是眼科看不见的。因此,需要用于剂量测定法的实时反馈系统,以避免对相邻组织的凸起或不希望的侧支损伤。我们开发了一种剂量测定系统,其使用光学干涉测量测量检测瞬态微泡。该系统基于在830nm的激光二极管操作的光纤干涉仪。我们使用猪RPE在体外和完整的猪眼地球外,使用猪RPE外植体使用激光切割灯获得的当前结果。 RPE细胞损伤由Calcein荧光活力测定确定。对于从测量的干涉式信号的RPE细胞死亡的阈值标记,实现了与可生存能测定结果的良好一致性。

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