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High-efficiency integrated readout circuit for single photon avalanche diode arrays in fluorescence lifetime imaging

机译:用于单光子雪崩二极管阵列的高效集成读出电路荧光寿命成像

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摘要

In recent years, lifetime measurements by means of the Time Correlated Single Photon Counting (TCSPC) technique have led to a significant breakthrough in medical and biological fields. Unfortunately, the many advantages of TCSPC-based approaches come along with the major drawback of a relatively long acquisition time. The exploitation of multiple channels in parallel could in principle mitigate this issue, and at the same time it opens the way to a multi-parameter analysis of the optical signals, e.g., as a function of wavelength or spatial coordinates. The TCSPC multichannel solutions proposed so far, though, suffer from a tradeoff between number of channels and performance, and the overall measurement speed has not been increased according to the number of channels, thus reducing the advantages of having a multichannel system. In this paper, we present a novel readout architecture for bi-dimensional, high-density Single Photon Avalanche Diode (SPAD) arrays, specifically designed to maximize the throughput of the whole system and able to guarantee an efficient use of resources. The core of the system is a routing logic that can provide a dynamic connection between a large number of SPAD detectors and a much lower number of high-performance acquisition channels. A key feature of our smart router is its ability to guarantee high efficiency under any operating condition.
机译:近年来,借助于时间相关的单光子计数(TCSPC)技术的寿命测量导致了医学和生物领域的显着突破。不幸的是,基于技巧的方法的许多优点与相对长的采集时间的主要缺点相同。并行利用多个信道的原则上可以减轻该问题,并且同时它打开了光信号的多参数分析的方式,例如,作为波长或空间坐标的函数。然而,到目前为止提出的TCSPC多声道解决方案遭受了通道和性能之间的权衡,并且根据通道的数量没有增加整体测量速度,从而降低了具有多通道系统的优点。在本文中,我们介绍了一种用于双维,高密度单光子雪崩二极管(SPAD)阵列的新型读数架构,专门设计用于最大化整个系统的吞吐量并且能够保证有效地利用资源。系统的核心是路由逻辑,可以在大量的SPAD检测器和大量的高性能采集通道之间提供动态连接。我们的智能路由器的一个关键特性是它能够在任何操作条件下保证高效率。

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