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The performance of 2D array detectors for light sheet based fluorescence correlation spectroscopy

机译:用于基于光片的荧光相关光谱的二维阵列检测器的性能

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摘要

Single plane illumination microscopy based fluorescence correlation spectroscopy (SPIM-FCS) is a new method for imaging FCS in 3D samples, providing diffusion coefficients, transport, flow velocities and concentrations in an imaging mode. SPIM-FCS records correlation functions over a whole plane in a sample, which requires array detectors for recording the fluorescence signal. Several types of image sensors are suitable for FCS. They differ in properties such as effective area per pixel, quantum efficiency, noise level and read-out speed. Here we compare the performance of several low light array detectors based on three different technologies: (1) Single-photon avalanche diode (SPAD) arrays, (2) passive-pixel electron multiplying charge coupled device (EMCCD) and (3) active-pixel scientific-grade complementary metal oxide semiconductor cameras (sCMOS). We discuss the influence of the detector characteristics on the effective FCS observation volume, and demonstrate that light sheet based SPIM-FCS provides absolute diffusion coefficients. This is verified by parallel measurements with confocal FCS, single particle tracking (SPT), and the determination of concentration gradients in space and time. While EMCCD cameras have a temporal resolution in the millisecond range, sCMOS cameras and SPAD arrays can extend the time resolution of SPIM-FCS down to 10 ?s or lower.
机译:基于单平面照明显微镜的荧光相关光谱法(SPIM-FCS)是一种用于对3D样品中的FCS进行成像的新方法,可在成像模式下提供扩散系数,传输,流速和浓度。 SPIM-FCS在样品的整个平面上记录相关函数,这需要阵列检测器来记录荧光信号。几种类型的图像传感器适用于FCS。它们的特性不同,例如每个像素的有效面积,量子效率,噪声水平和读出速度。在这里,我们比较了基于三种不同技术的几种低光阵列检测器的性能:(1)单光子雪崩二极管(SPAD)阵列,(2)无源像素电子倍增电荷耦合器件(EMCCD)和(3)有源-像素科学级互补金属氧化物半导体相机(sCMOS)。我们讨论了检测器特性对有效FCS观测体积的影响,并证明了基于光片的SPIM-FCS提供了绝对扩散系数。通过共焦FCS的并行测量,单粒子跟踪(SPT)以及确定时空中的浓度梯度,可以验证这一点。尽管EMCCD摄像机的时间分辨率在毫秒范围内,但是sCMOS摄像机和SPAD阵列可以将SPIM-FCS的时间分辨率降低到10 µs或更低。

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