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A Magnetically Controlled Wireless Optical Oxygen Sensor for Intraocular Measurements

机译:用于眼内测量的磁控无线光学氧气传感器

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摘要

The influence of oxygen on various ophthalmological complications is not completely understood and intraocular oxygen measurements are essential for better diagnosis and treatment. A magnetically controlled wireless sensor device is proposed for minimally invasive intraocular oxygen concentration measurements. This device will make it possible to make measurements at locations that are currently too invasive for human intervention by integrating a luminescence optical sensor and a magnetic steering system. The sensor works based on quenching of luminescence in the presence of oxygen. A novel iridium phosphorescent complex is designed and synthesized for this system. A frequency-domain lifetime measurement approach is employed because of the intrinsic nature of the lifetime of luminescence. Experimental results of the oxygen sensor together with magnetic and hydrodynamic characterization of the sensor platform are presented to demonstrate the concept. In order to use this sensor for in vivo intraocular applications, the size of the sensor must be reduced, which will require an improved signal-to-noise ratio.
机译:氧气对各种眼科并发症的影响尚不完全清楚,眼内氧气测量对于更好地诊断和治疗至关重要。提出了一种磁控无线传感器设备,用于微创眼内氧气浓度测量。通过集成发光光学传感器和电磁转向系统,该设备将有可能在目前对人类干预而言过于侵入的位置进行测量。该传感器基于在氧气存在下的发光淬灭而工作。为此系统设计并合成了一种新型的铱磷光配合物。由于发光寿命的内在本质,因此采用了频域寿命测量方法。提出了氧气传感器的实验结果,以及传感器平台的磁和流体动力学特性,以证明这一概念。为了将该传感器用于体内眼内应用,必须减小传感器的尺寸,这将需要改善的信噪比。

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