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Towards a disposable in vivo miniature implantable fluorescence detector

机译:朝向一次性体内微型可植入荧光检测器

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In the field of fluorescent microscopy, neuronal activity, diabetes and drug treatment are a few of the wide ranging biomedical applications that can be monitored with the use of dye markers. Historically, in-vivo fluorescent detectors consist of implantable probes coupled by optical fibre to sophisticated bench-top instrumentation. These systems typically use laser light to excite the fluorescent marker dies and using sensors, such as the photo-multiplier tube (PMT) or charge coupled devices (CCD), detect the fluorescent light that is filtered from the total excitation. Such systems are large and expensive. In this paper we highlight the first steps toward a fully implantable in-vivo fluorescence detection system. The aim is to make the detector system small, low cost and disposable. The current prototype is a hybrid platform consisting of a vertical cavity surface emitting laser (VCSEL) to provide the excitation and a filtered solid state Geiger mode avalanche photo-diode (APD) to detect the emitted fluorescence. Fluorescence detection requires measurement of extremely low levels of light so the proposed APD detectors combine the ability to count individual photons with the added advantage of being small in size. At present the exciter and sensor are mounted on a hybrid PCB inside a 3mm diameter glass tube.This is wired to external electronics, which provide quenching, photon counting and a PC interface. In this configuration, the set-up can be used for in-vitro experimentation and in-vivo analysis conducted on animals such as mice.
机译:在荧光显微镜领域,神经元活性,糖尿病和药物治疗是可通过使用染料标记物监测的广泛的生物医学应用中的一些。从历史上看,体内荧光检测器由可植入探针组成,这些探针通过光纤耦合到复杂的台式仪器上。这些系统通常使用激光来激发荧光标记管芯,并使用传感器(例如光电倍增管(PMT)或电荷耦合器件(CCD))来检测从总激发中滤除的荧光。这样的系统大而昂贵。在本文中,我们重点介绍了朝着完全植入的体内荧光检测系统迈出的第一步。目的是使检测器系统更小,成本更低并且可抛弃。当前的原型是一个混合平台,由提供激发的垂直腔表面发射激光器(VCSEL)和用于检测发出的荧光的经过过滤的固态盖革模式雪崩光电二极管(APD)组成。荧光检测需要测量极低水平的光,因此,所提出的APD检测器结合了对单个光子进行计数的能力,并具有体积小的优势。目前,激励器和传感器安装在直径3mm的玻璃管内的混合PCB上,并与外部电子线路相连,从而提供淬火,光子计数和PC接口。在这种配置中,该设置可用于对动物(例如小鼠)进行的体外实验和体内分析。

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