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首页> 外文期刊>Investigative ophthalmology & visual science >Time-Resolved Ultraa??High Resolution Optical Coherence Tomography for Real-Time Monitoring of Selective Retina Therapy
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Time-Resolved Ultraa??High Resolution Optical Coherence Tomography for Real-Time Monitoring of Selective Retina Therapy

机译:时间分辨的Ultraa ??高分辨率光学相干断层扫描技术,用于选择性视网膜治疗的实时监测

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Purpose: Selective retina therapy (SRT) is a novel treatment for retinal pathologies, solely targeting the RPE. During SRT, the detection of an immediate tissue reaction is challenging, as tissue effects remain limited to intracellular RPE photodisruption. Time-resolved ultra-high axial resolution optical coherence tomography (OCT) is thus evaluated for the monitoring of dynamic optical changes at and around the RPE during SRT. Methods: An experimental OCT system with an ultra-high axial resolution of 1.78 ??m was combined with an SRT system and time-resolved OCT M-scans of the target area were recorded from four patients undergoing SRT. Optical coherence tomography scans were analyzed and OCT morphology was correlated with findings in fluorescein angiography, fundus photography, and cross-sectional OCT. Results: In cases in which the irradiation caused RPE damage proven by fluorescein angiography, the lesions were well discernible in time-resolved OCT images but remained invisible in fundus photography and cross-sectional OCT acquired after treatment. If RPE damage was introduced, all applied SRT pulses led to detectable signal changes in the time-resolved OCT images. The extent of optical signal variation seen in the OCT data appeared to scale with the applied SRT pulse energy. Conclusions: The first clinical results proved that successful SRT irradiation induces detectable changes in the OCT M-scan signal while it remains invisible in conventional ophthalmoscopic imaging. Thus, real-time high-resolution OCT is a promising modality to monitor and analyze tissue effects introduced by selective retina therapy and may be used to guide SRT in an automatic feedback mode (www.swissmedic.ch number, 2011-MD-0006).
机译:目的:选择性视网膜疗法(SRT)是一种针对视网膜病变的新型疗法,仅针对RPE。在SRT期间,立即检测组织反应非常具有挑战性,因为组织效应仍然局限于细胞内RPE光破裂。因此,对时间分辨的超高轴向分辨率光学相干断层扫描(OCT)进行了评估,以监控SRT期间RPE及其周围的动态光学变化。方法:将实验性OCT系统(具有1.78?m的超高轴向分辨率)与SRT系统相结合,并记录了四名接受SRT的患者的目标区域的时间分辨OCT M扫描。分析了光学相干断层扫描,并将OCT形态与荧光素血管造影,眼底照相和横截面OCT中的发现相关联。结果:在放射线引起荧光素血管造影证实的RPE损伤的情况下,在时间分辨的OCT图像中可清楚辨认病变,但在眼底照相和治疗后获得的横截面OCT中仍看不见病变。如果引入了RPE损坏,则所有施加的SRT脉冲都会在时间分辨的OCT图像中导致可检测到的信号变化。在OCT数据中看到的光信号变化程度似乎与施加的SRT脉冲能量成比例。结论:最初的临床结果证明,成功的SRT辐照会导致OCT M扫描信号发生可检测的变化,而在常规检眼镜镜检查中仍不可见。因此,实时高分辨率OCT是一种有前途的监测和分析选择性视网膜疗法引入的组织效应的方法,可用于以自动反馈模式指导SRT(www.swissmedic.ch编号,2011-MD-0006) 。

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