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Mapping complex spatio-temporal models to image space: The virtual microscope

机译:将复杂的时空模型映射到图像空间:虚拟显微镜

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Simulating synthetic image data is crucial for the design and validation of bio-imaging pipelines. Most of the existing frameworks assume objects in pixel space, whereas most of the spatio-temporal models of biological processes are formulated in object space. We show that the key to a physically-principled synthetic image data simulation engine is to model carefully the mapping between objects and pixels. We present a sound mathematical and computational framework for our simulation engine: the virtual microscope. A careful measure-theoretic formulation of the object-pixel mapping allows us to handle the simulation of image data arising from complex spatio-temporal dynamics. Computationally, we show that we can generally approximate the object-pixel mapping by a linear combination of shifted/scaled point spread functions that can be evaluated efficiently. We demonstrate the ability of our framework to handle real-world, complex spatio-temporal dynamics.
机译:模拟合成图像数据对于生物成像管道的设计和验证至关重要。现有的大多数框架都假设对象位于像素空间中,而大多数生物过程的时空模型都是在对象空间中制定的。我们表明,以物理为基础的合成图像数据仿真引擎的关键是仔细建模对象和像素之间的映射。我们为仿真引擎提供了一个完善的数学和计算框架:虚拟显微镜。对对象像素映射的仔细的量度理论公式化使我们能够处理由复杂的时空动力学产生的图像数据的模拟。通过计算,我们表明,一般而言,我们可以通过可以有效评估的平移/缩放点扩展函数的线性组合来近似对象-像素映射。我们展示了我们的框架处理现实世界中复杂的时空动态的能力。

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