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Sequential average segmented microscopy for high signal-to-noise ratio motion-artifact-free in vivo heart imaging

机译:顺序平均分段显微镜用于高信噪比无运动伪像的体内心脏成像

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摘要

In vivo imaging is often severely compromised by cardiovascular and respiratory motion. Highly successful motion compensation techniques have been developed for clinical imaging (e.g. magnetic resonance imaging) but the use of more advanced techniques for intravital microscopy is largely unexplored. Here, we implement a sequential cardiorespiratory gating scheme (SCG) for averaged microscopy. We show that SCG is very efficient in eliminating motion artifacts, is highly practical, enables high signal-to-noise ratio (SNR) in vivo imaging, and yields large field of views. The technique is particularly useful for high-speed data acquisition or for imaging scenarios where the fluorescence signal is not significantly above noise or background levels.
机译:体内成像通常受到心血管和呼吸运动的严重损害。已经开发出非常成功的运动补偿技术用于临床成像(例如磁共振成像),但是对于活体显微术使用更先进的技术仍未探索。在这里,我们为平均显微镜实施了顺序心肺门控方案(SCG)。我们表明,SCG在消除运动伪影方面非常有效,具有很高的实用性,可在体内成像时具有很高的信噪比(SNR),并能产生较大的视野。该技术对于高速数据采集或荧光信号没有明显高于噪声或背景水平的成像场景特别有用。

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