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Polymer-Based Spherical Matrix Array for High Resolution Real-Time Volumetric Optoacoustic Micro-Angiography

机译:基于聚合物的球矩阵阵列,用于高分辨率实时体积音质微血管造影

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Optoacoustic (OA) tomography has recently demonstrated ultrafast imaging rates, owing to its unique ability to capture volumetric image data with a single nanosecond-duration flash of light. The achievable spatial resolution of volumetric tomography is however limited by the narrow bandwidth and lack of scalability of the piezo-composite arrays currently employed for OA signal detection. Here we report on the first implementation of high-density spherical matrix array technology based on flexible polyvinylidene difluoride films featuring ultrawideband (38 MHz) sub-millimeter sized elements thus enabling volumetric imaging with ~35 μm resolution, superior image fidelity and excellent signal to noise performance permitting real-time imaging of deep tissues without employing signal averaging. We demonstrate real-time volumetric in vivo imaging capabilities of the new approach by performing cerebral angiography in mice. The new technology leverages the true potential of OA for high spatio-temporal resolution visualization of rapid biodynamics.
机译:光声(OA)断层扫描最近展示了超快成像率,由于其具有单一纳秒闪光闪光的单一纳秒闪光的功能捕获体积图像数据的独特能力。然而,体积断层扫描的可实现的空间分辨率受到目前用于OA信号检测的压电复合阵列的窄带宽和缺乏可扩展性。在这里,我们报告了基于柔性聚偏二氟化膜的高密度球矩阵阵列技术的第一次实现,其具有超法带(38MHz)亚毫米大小元件,从而使得具有〜35μm分辨率的体积成像,优异的图像保真度和噪声优异的信号性能允许深组织的实时成像而不采用信号平均值。我们通过在小鼠中进行脑血管造影来证明新方法的体内成像能力的实时体积体积。新技术利用OA的真正潜力,用于快速生物动力学的高时空分辨率可视化。

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