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首页> 外文期刊>Scientific reports. >Functional optoacoustic imaging of moving objects using microsecond-delay acquisition of multispectral three-dimensional tomographic data
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Functional optoacoustic imaging of moving objects using microsecond-delay acquisition of multispectral three-dimensional tomographic data

机译:使用微秒延迟获取多光谱三维断层数据的移动物体的功能光声成像

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The breakthrough capacity of optoacoustics for three-dimensional visualization of dynamic events in real time has been recently showcased. Yet, efficient spectral unmixing for functional imaging of entire volumetric regions is significantly challenged by motion artifacts in concurrent acquisitions at multiple wavelengths. Here, we introduce a method for simultaneous acquisition of multispectral volumetric datasets by introducing a microsecond-level delay between excitation laser pulses at different wavelengths. Robust performance is demonstrated by real-time volumetric visualization of functional blood parametrers in human vasculature with a handheld matrix array optoacoustic probe. This approach can avert image artifacts imposed by velocities greater than 2?m/s, thus, does not only facilitate imaging influenced by respiratory, cardiac or other intrinsic fast movements in living tissues, but can achieve artifact-free imaging in the presence of more significant motion, e.g. abrupt displacements during handheld-mode operation in a clinical environment.
机译:最近已经展示了实时动态事件三维可视化的光声可视化的突破能力。然而,用于整个容积区域的功能成像的有效光谱解混在多个波长的同时采集中的运动伪影显着地攻击。这里,我们介绍一种通过在不同波长下引入激光激光脉冲之间的微秒级延迟来同时采集多光谱体积数据集的方法。通过手持矩阵阵列光声探头,通过人体脉管系统的功能血压调节器的实时变量可视化来证明鲁棒性能。这种方法可以避免由大于2?m / s施加的图像伪像,因此,不仅促进了活疗组织中受呼吸,心脏或其他内在的快速运动的成像,而且可以在更多的情况下实现无伪影像显着的运动,例如临床环境中手持式操作期间的突然位移。

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