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Hessian single-molecule localization microscopy using sCMOS camera

机译:使用sCMOS相机的Hessian单分子定位显微镜

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摘要

Single-molecule localization microscopy (SMLM) has the highest spatial resolution among the existing super-resolution imaging techniques, but its temporal resolution needs further improvement. An sCMOS camera can effectively increase the imaging rate due to its large field of view and fast imaging speed. Using an sCMOS camera for SMLM imaging can significantly improve the imaging time resolution, but the unique single-pixel-dependent readout noise of sCMOS cameras severely limits their application in SMLM imaging. This paper develops a Hessian-based SMLM (Hessian-SMLM) method that can correct the variance, gain, and offset of a single pixel of a camera and effectively eliminate the pixel-dependent readout noise of sCMOS cameras, especially when the signal-to-noise ratio is low. Using Hessian-SMLM to image mEos3.2-labeled actin was able to significantly reduce the artifacts due to camera noise.
机译:在现有的超分辨率成像技术中,单分子定位显微镜(SMLM)具有最高的空间分辨率,但其时间分辨率需要进一步提高。 sCMOS相机具有大视野和快速成像速度,因此可以有效提高成像速度。使用sCMOS相机进行SMLM成像可以显着提高成像时间分辨率,但是sCMOS相机独特的依赖于单像素的读出噪声严重限制了它们在SMLM成像中的应用。本文开发了一种基于Hessian的SMLM(Hessian-SMLM)方法,该方法可以校正相机单个像素的方差,增益和偏移,并有效消除sCMOS相机的像素相关读出噪声,尤其是在信号-噪声比低。使用Hessian-SMLM对mEos3.2标记的肌动蛋白进行成像能够显着减少由于相机噪音而造成的伪影。

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