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Semi-Synthetic Dataset for the Evaluation of Motion Compensation Approaches for Voltage Sensitive Dye Imaging

机译:用于评估电压敏感染料成像的运动补偿方法的半合成数据集

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Intracranial, functional optical imaging (OI) of intrinsic signals (like blood oxygenation coupled reflection changes) and of extrinsic properties of voltage sensitive probes (like voltage-sensitive dyes) belongs to a group of invasive neuroimaging techniques with very high temporal and spatial resolutions on a meso- to macroscopic scale. Voltage sensitive dye imaging (VSDI) images brain activity with low temporal delays, but the raw signal has a poor signal to noise ratio. An important pre-processing step for many biomedical imaging techniques is image registration and motion compensation. We can apply motion compensation successfully for optical imaging of intrinsic signals but VSDI recordings have low spatial contrast and often do not contain fine grained texture details which are crucial for successful image based motion compensation. In this work, we design a semi-synthetic dataset based on real recordings and a dummy voltage sensitive dye response for the evaluation of advanced motion compensation strategies for VSDI. This dataset aims to be used as a benchmark for the development of novel motion compensation strategies for VSDI and to derive error bounds of the methodologies with respect to motion.
机译:内在信号的颅内,功能光学成像(如血氧耦合反射变化)和电压敏感探针的外在性质(如电压敏感染料)属于一组侵入性神经影像技术,具有非常高的时间和空间分辨率一个巨大的宏观规模。电压敏感染料成像(VSDI)图像脑活动具有低时间延迟,但原始信号具有差的信噪比。许多生物医学成像技术的重要预处理步骤是图像配准和运动补偿。我们可以成功应用运动补偿,用于内在信号的光学成像,但VSDI录像具有低空间对比度,并且通常不包含对基于图像成功的图像的运动补偿至关重要的细粒纹理细节。在这项工作中,我们根据实际记录和虚拟电压敏感染料来设计一个半合成数据集,用于评估VSDI的高级运动补偿策略。该数据集旨在用作开发VSDI新型运动补偿策略的基准,并在动作中导出方法的错误界限。

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