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在双光子活体显微镜中自动过滤内在运动伪影。

Automated filtering of intrinsic movement artifacts during two-photon intravital microscopy.

机构信息

Centre de recherche du CHUQ-CHUL, Axe neurosciences, Québec, Canada.

出版信息

PLoS One. 2013;8(1):e53942. doi: 10.1371/journal.pone.0053942. Epub 2013 Jan 11.

Abstract

In vivo imaging using two-photon microscopy is an essential tool to explore the dynamic of physiological events deep within biological tissues for short or extended periods of time. The new capabilities offered by this technology (e.g. high tissue penetrance, low toxicity) have opened a whole new era of investigations in modern biomedical research. However, the potential of using this promising technique in tissues of living animals is greatly limited by the intrinsic irregular movements that are caused by cardiac and respiratory cycles and muscular and vascular tone. Here, we show real-time imaging of the brain, spinal cord, sciatic nerve and myenteric plexus of living mice using a new automated program, named Intravital_Microscopy_Toolbox, that removes frames corrupted with motion artifacts from time-lapse videos. Our approach involves generating a dissimilarity score against precalculated reference frames in a specific reference channel, thus allowing the gating of distorted, out-of-focus or translated frames. Since the algorithm detects the uneven peaks of image distortion caused by irregular animal movements, the macro allows a fast and efficient filtering of the image sequence. In addition, extra features have been implemented in the macro, such as XY registration, channel subtraction, extended field of view with maximum intensity projection, noise reduction with average intensity projections, and automated timestamp and scale bar overlay. Thus, the Intravital_Microscopy_Toolbox macro for ImageJ provides convenient tools for biologists who are performing in vivo two-photon imaging in tissues prone to motion artifacts.

摘要

使用双光子显微镜进行活体成像,是探索生物组织内短期或长期生理事件动态的重要工具。这项技术(例如,高组织穿透性、低毒性)提供的新功能,为现代生物医学研究开辟了一个全新的研究时代。然而,由于心脏和呼吸周期以及肌肉和血管张力引起的固有不规则运动,该技术在活体动物组织中的应用潜力受到了极大限制。在这里,我们使用一种名为 Intravital_Microscopy_Toolbox 的新自动化程序,实时成像活体小鼠的大脑、脊髓、坐骨神经和肌间神经丛。该程序可以从延时视频中去除带有运动伪影的帧,从而实现实时成像。我们的方法涉及生成与特定参考通道中预先计算的参考帧的不相似度得分,从而可以对变形、离焦或平移的帧进行门控。由于该算法可以检测到由动物不规则运动引起的图像失真的不均匀峰值,因此该宏允许对图像序列进行快速有效的过滤。此外,该宏还实现了其他功能,例如 XY 配准、通道减法、最大强度投影的扩展视场、平均强度投影的降噪以及自动时间戳和比例尺叠加。因此,用于 ImageJ 的 Intravital_Microscopy_Toolbox 宏为在容易产生运动伪影的组织中进行活体双光子成像的生物学家提供了便捷的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b86/3543396/4ef004ad49e6/pone.0053942.g001.jpg

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