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New illuminations approaches with single-use micro LEDs endoilluminators for the pars plana vitrectomy

机译:用于单用Micro LED的方法采用新的照明方法,用于平板玻璃体切除术

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The illumination of the intraocular space during pars plana vitrectomy always bears the risk of retina damage by irradiation. Conventional illumination systems consist of an external light source and an optical fiber to transfer the visible light (radiation) into the eye. Often xenon arc and halogen lamps are employed for this application with some disadvantageous properties like high phototoxicity and low efficiency. Therefore, we propose to generate the light directly within the eye by inserting a white micro LED with a diameter of 0.6 mm. The LED offers a luminous flux of 0.6 1m of white light with a blue peak @ 450 nm and a yellow peak @ 555 nm. The presented prototypes fit through a standard 23 G trocar and are the first intraocular light sources worldwide. Two different single-use approaches have already been developed: a hand-guided and a chandelier device. The hand-guided applicator enables a directly navigation and illumination up to a working distance of 6 mm. The chandelier device is much smaller and does not need an active navigation of the light cone. The brightness and homogeneity of the illumination of these LED devices have been successfully tested on porcine eyes. Presented measurements and calculations prove that even for high LED currents and small distances to the retina these intraocular micro LED devices expose the retina to less hazard than conventional illumination sources like fiber based xenon systems. Even under the worst circumstances application durations of 180 hours would be justifiable.
机译:Pars Plana Vitrectomy期间的眼内空间的照明总是承受通过照射的视网膜损伤的风险。传统的照明系统包括外部光源和光纤,以将可见光(辐射)转移到眼睛中。通常,氙弧和卤素灯用于本申请,具有一些不利的特性,如高光毒性和低效率。因此,我们建议通过插入直径为0.6mm的白色微型LED在眼内直接产生光。 LED提供0.6 1米白光的光通量,蓝峰@ 450nm和黄色峰@ 555 nm。所呈现的原型通过标准的23g套管针符合标准的23g套管,并且是全球第一座眼内光源。已经开发了两种不同的一次性方法:手动和枝形吊灯设备。手动涂抹器可直接导航和照明直至工作距离为6毫米。枝形吊灯设备要小得多,不需要光锥的主动导航。这些LED器件照明的亮度和均匀性已成功测试猪眼。呈现的测量和计算证明,即使对于高LED电流和距离视网膜的小距离而言,这些眼内微LED器件将视网膜暴露于诸如纤维的氙气系统等纤维的常规照明来源的危害较少。即使在最糟糕的情况下,也是180小时的应用持续时间是合理的。

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