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3D Data Mapping and Real-Time Experiment Control and Visualization in Brain Slices

机译:脑切片中的3D数据映射以及实时实验控制和可视化

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摘要

Here, we propose two basic concepts that can streamline electrophysiology and imaging experiments in brain slices and enhance data collection and analysis. The first idea is to interface the experiment with a software environment that provides a 3D scene viewer in which the experimental rig, the brain slice, and the recorded data are represented to scale. Within the 3D scene viewer, the user can visualize a live image of the sample and 3D renderings of the recording electrodes with real-time position feedback. Furthermore, the user can control the instruments and visualize their status in real time. The second idea is to integrate multiple types of experimental data into a spatial and temporal map of the brain slice. These data may include low-magnification maps of the entire brain slice, for spatial context, or any other type of high-resolution structural and functional image, together with time-resolved electrical and optical signals. The entire data collection can be visualized within the 3D scene viewer. These concepts can be applied to any other type of experiment in which high-resolution data are recorded within a larger sample at different spatial and temporal coordinates.
机译:在这里,我们提出了两个基本概念,它们可以简化脑切片中的电生理和成像实验,并增强数据收集和分析。第一个想法是将实验与提供3D场景查看器的软件环境相接口,在其中可以按比例表示实验装备,大脑切片和记录的数据。在3D场景查看器中,用户可以通过实时位置反馈可视化样品的实时图像和记录电极的3D渲染。此外,用户可以控制仪器并实时查看其状态。第二个想法是将多种类型的实验数据整合到大脑切片的时空图上。这些数据可能包括整个大脑切片的低放大率地图(用于空间环境)或任何其他类型的高分辨率结构和功能图像,以及时间分辨的电和光信号。整个数据集可以在3D场景查看器中可视化。这些概念可以应用于任何其他类型的实验,其中高分辨率数据以不同的空间和时间坐标记录在较大的样本中。

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