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首页> 外文期刊>The Journal of Physiology >Correction of z z ‐motion artefacts to allow population imaging of synaptic activity in behaving mice
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Correction of z z ‐motion artefacts to allow population imaging of synaptic activity in behaving mice

机译:Z Z-Motion人工制的校正允许突触活动在表现小鼠中的群体成像

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Key points Motion artefacts associated with motor behaviour are an inevitable problem of multiphoton imaging in awake behaving animals, particularly when imaging synapses. Correction of axial motion artefacts usually requires volumetric imaging resulting in slower rates of acquisition. We describe a method to correct z ‐motion artefacts that is easy to implement and allows population imaging of synaptic activity while scanning a single plane in a standard multiphoton microscope. The method uses a reference volume acquired in two colour channels – an activity reporter and an anatomical marker of blood vessels. The procedure estimates the z ‐displacement in every frame and applies an intensity correction in which the z intensity profile for each synapse is modelled as a Moffat function. We demonstrate that the method allows synaptic calcium signals to be collected from populations of synaptic boutons in mouse primary visual cortex during locomotion. Abstract Functional imaging of head‐fixed, behaving mice using two‐photon imaging of fluorescent activity reporters has become a powerful tool for studying the function of the brain. Motion artefacts are an inevitable problem during such experiments and are routinely corrected for in x and y dimensions. However, axial ( z ) shifts of several microns can also occur, leading to intensity fluctuations in structures such as synapses that are small compared to the axial point‐spread function of the microscope. Here we present a simple strategy to correct z ‐motion artefacts arising over the course of a time‐series experiment in a single optical plane. Displacement in z was calculated using dye‐filled blood vessels as an anatomical marker, providing high contrast images and accuracy to within ~0.1?μm. The axial profiles of ROIs corresponding to synapses were described using a Moffat function and this ‘ROI‐spread function’ used to correct activity traces on an ROI‐by‐ROI basis. We demonstrate the accuracy and utility of the procedures in simulation experiments using fluorescent beads and then apply them to correcting measurements of synaptic activity in populations of vasoactive‐intestinal peptide (VIP) interneurons expressing the synaptic reporter SyGCaMP6f. Correction of z ‐motion artefacts had a substantial impact on the apparent correlation between synaptic activity and running speed, demonstrating the importance of correcting these when performing imaging experiments in awake mice.
机译:成像突触当运动行为相关的关键点运动伪影的多光子成像在清醒运行得动物不可避免的问题,特别是。轴向运动伪影的校正通常需要导致采集速度较慢体积成像。我们描述到正确ž - 运动伪影的方法,其容易实施并且允许突触活性的人口成像而在一个标准的多光子显微镜扫描单平面。该方法使用两个颜色通道获得的参考音量 - 活性记者和血管的解剖标志。过程估计在每个帧中的Z - 位移和施加在其中为每个突触沿z强度分布被建模为莫法特功能的强度校正。我们表明,该方法允许突触钙信号从运动期间在小鼠初级视觉皮层突触终扣的群体中收集。使用荧光活性记者双光子成像头固定,小鼠行为的抽象功能成像已经成为研究大脑功能的有力工具。运动伪影是这样的实验过程中不可避免的问题,并且在x和y维度常规校正。然而,也可能发生的几微米的轴向(z)的位移,从而导致强度波动的结构,例如相比于显微镜的轴向点扩散函数,其为小突触。在这里,我们提出一个简单的策略,以正确的Z单一光学平面上而产生的时间序列实验的过程 - 运动伪影。沿z位移用填充染料的血管作为解剖标记来计算,到内〜0.1?微米提供高对比度的图像和准确性。使用莫法特函数并用于正确的活动痕迹上的ROI-通过-ROI基础这种“ROI-扩散函数”被描述对应于突触ROI的轴向轮廓。我们证明在使用荧光珠模拟实验程序的准确性和实用程序,然后将它们应用到纠正血管活性肠肽(VIP)表达突触记者SyGCaMP6f的interneurons的人口突触活动的测量。 ž - 运动伪影的校正对突触活动和运行速度之间的明显的相关性产生重大影响,这表明在清醒小鼠进行成像实验时纠正这些的重要性。

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