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Shedding light on pediatric diseases: multispectral optoacoustic tomography at the doorway to clinical applications

机译:聚焦小儿疾病:临床应用门口的多光谱光声层析成像

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摘要

Principle of optoacoustic imaging. The terms “photoacoustic” or “optoacoustic” describe the use of “light” and “sound.” The illumination of tissue by pulsed laser light and the subsequent recording of thermoelastic pressure waves combines the advantages optical (high contrast) and acoustic (high resolution) imaging. Subsequent image reconstruction and spectral unmixing enables non-invasive real-time visualization and quantification of specific endogenous chromophores such as hemoglobin, lipids, and collagens. RUCT reflectance ultrasound computed tomography, MSOT multispectral optoacoustic tomography. Imaging example from muscular imaging resolving hemoglobin, collagen, and fat signals. DMD Duchenne muscular dystrophy. MSOT imaging of the colon unmixed total hemoglobin signal. S serosa, M muscularis mucosa, Sm submucosa, L lumen, US ultrasound. Example for imaging of palmaris longus tendon at the wrist with unmixing for different tissue components. Note the clear delineation of yellow/red containing tendon in comparison of hemoglobin signals from vessels
机译:光声成像原理。术语“光声”或“光声”描述了“光”和“声”的使用。通过脉冲激光照射组织以及随后记录热弹性压力波,结合了光学(高对比度)和声学(高分辨率)成像的优势。随后的图像重建和光谱分解可实现特定内源生色团(例如血红蛋白,脂质和胶原蛋白)的非侵入性实时可视化和定量。 RUCT反射超声计算机断层扫描,MSOT多光谱光声层析成像。肌肉成像解决血红蛋白,胶原蛋白和脂肪信号的成像示例。 DMD杜兴氏肌营养不良症。结肠未混合总血红蛋白信号的MSOT成像。浆膜浆膜,肌层粘膜,粘膜下粘膜,L管腔,超声腕部手掌肌腱成像的示例,其中不混合用于不同组织成分。注意与来自血管的血红蛋白信号相比,含有黄色/红色肌腱的清晰轮廓

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