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Luminescence lifetime imaging system using imaging fibers to measure the 2D distribution of O2 in biological samples

机译:发光寿命成像系统,使用成像纤维测量生物样品中O2的二维分布

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Abstract: A new sensor head and imaging application with planar oxygen optodes is presented. It combines the versatility of the recently presented modular luminescence lifetime imaging system (MOLLI) and the oxygen measuring features of planar optodes to investigate the 2D-distribution of oxygen with a high spatial resolution. The marine sediments are settled by micro-organisms. They are characterized by steep gradients of solutes perpendicular to the interface. Oxygen as the most favorable electron acceptor plays an important role in these communities and exhibits steep gradients within distances of 100 micrometer to a couple of millimeters. Traditionally these gradients are commonly accessed by either oxygen microelectrodes or oxygen micro-optodes, that measure single oxygen depth profiles at spatial resolutions in the range of 50 - 5 micrometer. As the influences on the metabolism of these organisms are complex, profiles that are measured at one location exhibit a natural heterogeneity. To address this problem by using the potential of planar oxygen optodes first measurements with optodes fixed to an aquarium wall (Glud et al. 1996) based on luminescence intensity measurements have been published. They showed the large amount of information that can be gathered by this method. We further developed this approach by combining the planar optode with the capabilities of imaging fibers that form an endoscope. We developed a periscope type sensor head that can be independently applied in biological samples. It has an overall diameter of 2.5 mm and a calculated pixel resolution of 12 micrometer. The according measuring system compared to the published system has a different excitation light setup and corresponding endoscope optics to measure the lifetime based images. We present the adapted system, sensor head and the first results of an application. !31
机译:摘要:提出了一种新型的采用平面氧光电二极管的传感头和成像应用。它结合了最新推出的模块化发光寿命成像系统(MOLLI)的多功能性和平面光电二极管的氧气测量功能,以高空间分辨率研究氧气的2D分布。海洋沉积物被微生物沉降。它们的特征在于垂直于界面的溶质的陡峭梯度。作为最有利的电子受体的氧在这些族群中起着重要的作用,并且在100微米至几毫米的距离内表现出陡峭的梯度。传统上,这些梯度通常是由氧气微电极或氧气微光电二极管访问的,它们以50-5微米范围内的空间分辨率测量单个氧气深度分布。由于对这些生物代谢的影响是复杂的,因此在一个位置测量的曲线显示出自然的异质性。为了利用平面氧气光电二极管的潜力来解决这个问题,已经公开了基于发光强度测量的将光电二极管固定在水族箱壁上的首次测量方法(Glud et al。1996)。他们展示了可以通过这种方法收集的大量信息。我们通过将平面光电二极管与形成内窥镜的成像光纤功能相结合,进一步开发了这种方法。我们开发了可以独立应用于生物样品的潜望镜型传感器头。它的总直径为2.5毫米,计算出的像素分辨率为12微米。与已发布的系统相比,相应的测量系统具有不同的激发光设置和相应的内窥镜光学器件,可以测量基于寿命的图像。我们介绍了适配的系统,传感器头和一个应用程序的最初结果。 !31

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