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首页> 外文期刊>Biomedical Optics Express >Increasing the field-of-view of dynamic cardiac OCT via post-acquisition mosaicing without affecting frame-rate or spatial resolution
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Increasing the field-of-view of dynamic cardiac OCT via post-acquisition mosaicing without affecting frame-rate or spatial resolution

机译:通过采集后拼接增加动态心脏OCT的视野,而不会影响帧速率或空间分辨率

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Optical coherence tomography (OCT) allows imaging dynamic structures and fluid flow within scattering tissue, such as the beating heart and blood flow in murine embryos. For any given system, the frame rate, spatial resolution, field-of-view (FOV), and signal-to-noise ratio (SNR) are interconnected: favoring one aspect limits at least one of the others due to optical, instrumentation, and software constraints. Here we describe a spatio-temporal mosaicing technique to reconstruct high-speed, high spatial-resolution, and large-field-of-view OCT sequences. The technique is applicable to imaging any cyclically moving structure and operates on multiple, spatially overlapping tiled image sequences (each sequence acquired sequentially at a given spatial location) and effectively decouples the (rigid) spatial alignment and (non-rigid) temporal registration problems. Using this approach we reconstructed full-frame OCT sequences of the beating embryonic rat heart (11.5 days post coitus) and compared it to direct imaging on the same system, demonstrating a six-fold improvement of the frame rate without compromising spatial resolution, FOV, or SNR.
机译:光学相干断层扫描(OCT)可以对散射组织内的动态结构和流体流动进行成像,例如老鼠胚胎中跳动的心脏和血液流动。对于任何给定的系统,帧速率,空间分辨率,视场(FOV)和信噪比(SNR)都是相互关联的:由于光学,仪器,和软件限制。在这里,我们描述了一种时空拼接技术来重建高速,高空间分辨率和大视野OCT序列。该技术适用于对任何循环运动的结构进行成像,并在多个空间重叠的平铺图像序列(每个序列在给定的空间位置处顺序获取)上进行操作,并有效地解耦(刚性)空间对齐和(非刚性)时间配准问题。使用这种方法,我们重建了跳动的胚胎大鼠心脏的全帧OCT序列(交房后11.5天),并将其与同一系统上的直接成像进行了比较,证明了帧速率提高了6倍,而不会损害空间分辨率,FOV,或SNR。

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