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Three-dimensional surface reconstruction and panoramic optical mapping of large hearts

机译:大心脏的三维表面重建和全景光学映射

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摘要

Optical mapping of electrical activity from the surface of the heart is a powerful tool for studying complex arrhythmias. However, a limitation of traditional optical mapping is that the mapped region is restricted to the field of view of the sensor, which makes it difficult to track electrical waves as they drift in and out of view. To address this, we developed an optical system that panoramically maps epicardial electrical activity in three dimensions. The system was engineered to accomodate hearts comparable in size to human hearts. It is comprised of a surface scanner that measures epicardial geometry and a panoramic fluorescence imaging system that records electrical activity. Custom software texture maps the electrical data onto a reconstructed epicardial surface. The result is a high resolution, spatially contiguous, mapping dataset. In addition, the three-dimensional positions of the recording sites are known, making it possible to accurately measure parameters that require geometric information, such as propagation velocity. In this paper, we describe the system and demonstrate it by mapping a swine heart.
机译:来自心脏表面的电活动的光学映射是研究复杂性心律不齐的有力工具。但是,传统光学映射的局限性在于,映射区域仅限于传感器的视场,这使得在电波进入和离开视线时很难跟踪它们。为了解决这个问题,我们开发了一种光学系统,可以在三个维度上全景绘制心外膜电活动。该系统经过精心设计,可容纳与人类心脏大小相当的心脏。它由测量心外膜几何形状的表面扫描仪和记录电活动的全景荧光成像系统组成。定制软件纹理将电数据映射到重建的心外膜表面上。结果是高分辨率,空间连续的映射数据集。另外,记录位置的三维位置是已知的,使得可以精确地测量需要几何信息的参数,例如传播速度。在本文中,我们描述了该系统并通过绘制猪的心脏进行了演示。

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