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In vivo volumetric imaging of biological dynamics in deep tissue via wavefront engineering

机译:通过波前工程对体内深层组织动力学进行体内成像

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摘要

Biological systems undergo dynamical changes continuously which span multiple spatial and temporal scales. To study these complex biological dynamics in vivo, high-speed volumetric imaging that can work at large imaging depth is highly desired. However, deep tissue imaging suffers from wavefront distortion, resulting in reduced Strehl ratio and image quality. Here we combine the two wavefront engineering methods developed in our lab, namely the optical phase-locked ultrasound lens based volumetric imaging and the iterative multiphoton adaptive compensation technique, and demonstrate in vivo volumetric imaging of microglial and mitochondrial dynamics at large depth in mouse brain cortex and lymph node, respectively.
机译:生物系统持续经历跨越多个时空尺度的动态变化。为了研究体内这些复杂的生物动力学,非常需要能够在较大成像深度下工作的高速体积成像。但是,深层组织成像会遭受波前畸变的影响,从而导致Strehl比和图像质量降低。在这里,我们结合了我们实验室开发的两种波前工程方法,即基于光学锁相超声透镜的体积成像和迭代多光子自适应补偿技术,并展示了小鼠大脑皮层中大胶质和线粒体动力学的体内体积成像。和淋巴结。

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