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Joint Localization and Parameter Estimation for Localized Calcium Release Events in Video Microscopy

机译:视频显微镜中局部钙释放事件的联合定位和参数估计

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This paper addresses modeling and inference for localized calcium release events observed in cardiac muscle tissue known as sparks, a recently discovered and little-understood phenomenon thought to be central to cardiac pathophysiology and hence of much scientific interest. In contrast to earlier algorithms proposed for studying sparks observed via confocal line-scan data, we consider here a model for the spatiotemporal spark process in unpaced cardiac myocytes observed in vitro via fluorescence video microscopy. In particular, we focus on parametric modeling of the spark process, leading naturally to a framework for joint localization and estimation of spark events and their parameters in space and time, along with the ability to quantify the uncertainty of our resulting inference. We show that for simulated sparks derived from real micropatterned cardiac myocyte data, and for which ground truth is known, our method significantly outperforms a video-adapted version of the most popular spark localization method currently in use in the cardiac biophysics community. Importantly, the framework we propose extends naturally to other other applications of video microscopy, and also allows for subsequent refinement of both the models and fitting procedures described here.
机译:本文地址建模和推理在被称为火花心肌组织中观察到本地化的钙释放事件,最近发现的和鲜为人知的现象,认为是中央对心脏的病理生理和因此许多科学的兴趣。相较于提出研究通过共焦线扫描数据观察到火星早期的算法,我们在这里考虑在体外通过荧光视频显微镜观察unpaced心肌细胞的时空火花过程的模型。尤其是,我们专注于火花过程的参数化建模,自然导致对关节的定位和火花事件及其在空间和时间参数的估计的框架,随着量化我们的推论产生的不确定性的能力。我们发现,从,和其地面实况被称为真正的微图案的心肌细胞数据得出的模拟火花,我们的方法显著目前在心脏生物物理学界使用胜过最流行的火花定位方法的视频改编版本。重要的是,我们提出的框架自然地延伸到视频显微镜等其他应用程序,并且还允许这两个模型和这里所描述拟合程序的后续细化。

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