Kaufmann Daniel, Burri Christian, Arnold Patrik, Koch Volker M, Meier Christoph, Považay Boris, Justiz Jörn
Bern University of Applied Sciences, HuCE BME Lab, BFH-TI, CH-2501 Biel, Switzerland.
Bern University of Applied Sciences, HuCE optoLab, BFH-TI, CH-2501 Biel, Switzerland.
Biomed Opt Express. 2018 Jun 26;9(7):3320-3334. doi: 10.1364/BOE.9.003320. eCollection 2018 Jul 1.
Selective treatment of the retinal pigment epithelium (RPE) by using short-pulse lasers leads to a less destructive treatment for certain retinal diseases in contrast to conventional photocoagulation. The introduction of selective retina therapy (SRT) to clinical routine is still precluded by the challenges to reliably monitor treatment success and to automatically adjust dose within the locally varying therapeutic window. Combining micrometer-scale depth resolving capabilities of optical coherence tomography (OCT) with SRT can yield real-time information on the laser-induced changes within the RPE after a laser pulse or even during treatment with a laser pulse train. In the present study, SRT and OCT were combined to treat ex-vivo porcine eyes demonstrating closed-loop dose-control. We found a reliable correlation of specific signal changes in time resolved OCT images and physiological lesions in the RPE. First experiments, including 23 porcine eyes, prove the feasibility of the novel treatment concept.
与传统光凝术相比,使用短脉冲激光对视网膜色素上皮(RPE)进行选择性治疗对某些视网膜疾病的破坏性较小。选择性视网膜治疗(SRT)引入临床常规仍面临挑战,即难以可靠地监测治疗效果以及在局部变化的治疗窗口内自动调整剂量。将光学相干断层扫描(OCT)的微米级深度分辨能力与SRT相结合,可以在激光脉冲后甚至在用激光脉冲序列治疗期间获得有关RPE内激光诱导变化的实时信息。在本研究中,将SRT和OCT相结合以治疗离体猪眼,展示了闭环剂量控制。我们发现时间分辨OCT图像中的特定信号变化与RPE中的生理损伤之间存在可靠的相关性。包括23只猪眼的初步实验证明了这种新治疗概念的可行性。