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In vivo demonstration of real-time oxygen saturation imaging using a portable and affordable LED-based multispectral photoacoustic and ultrasound imaging system

机译:使用便携式且价格合理的基于LED的多光谱光声和超声成像系统进行体内氧饱和度实时成像演示

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摘要

Photoacoustic imaging is a hybrid medical imaging technique that combines the contrast and spectral sensitivity ofoptical imaging with resolution and tissue penetration of ultrasound. Due to the difference between the optical absorptionspectra of deoxygenated and oxygenated hemoglobin, multispectral photoacoustic imaging holds strong potential in noninvasivelocal blood oxygen saturation imaging. Oxygen saturation imaging is one of the most promising applications ofphotoacoustic imaging and has been widely explored in studies related to tumor hypoxia, cancer therapy etc. However,clinical translation of this technology has often been limited by bulky and expensive excitation sources. Recently, weintroduced a multi-wavelength real-time LED-based photoacoustic/ultrasound imaging system. In this work, potential ofthis LED-based system in real-time oxygen saturation imaging is demonstrated using an in vivo measurement on ahuman volunteer. We used ultra-fast switching two-wavelength LED arrays (750nm/850nm) along with a linear-array 7MHz US probe for the experiments. 2D PA, US, and oxygen saturation imaging were performed on the index finger of ahuman volunteer. Results demonstrate that LED-based PA imaging system used in this study is promising for generating2D/3D oxygen saturation maps along with PA and US images in real-time. We believe that these results will haveprofound impact in non-invasive blood oxygen saturation imaging and subsequent clinical translation of PA-basedoximetry.
机译:光声成像是一种混合医学成像技术,将常规成像的对比度和光谱灵敏度与超声的分辨率和组织穿透性结合在一起。由于脱氧血红蛋白和氧合血红蛋白的光吸收光谱不同,多光谱光声成像在非侵入性局部血氧饱和度成像中具有强大的潜力。氧饱和度成像是\ r \ n光声成像最有前途的应用之一,并且在与肿瘤缺氧,癌症治疗等相关的研究中得到了广泛的探索。然而,该技术的临床翻译常常受到体积大且昂贵的限制。激发源。最近,我们推出了基于LED的多波长实时光声/超声成像系统。在这项工作中,使用对人类志愿者的体内测量证明了这种基于LED的系统在实时氧饱和度成像中的潜力。我们在实验中使用了超快切换的两波长LED阵列(750nm / 850nm)和线性阵列7 \ r \ nMHz US探针。对人类志愿者的食指进行了2D PA,US和氧饱和度成像。结果表明,本研究中使用的基于LED的PA成像系统有望实时生成\ r \ n2D / 3D氧饱和度图以及PA和US图像。我们相信这些结果将对非侵入性血氧饱和度成像以及随后基于PA的\ r \血氧测定法的临床翻译产生深远影响。

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    《Photons Plus Ultrasound: Imaging and Sensing 2019》|2019年|108785N.1-108785N.4|共4页
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    Research Business Development Division, CYBERDYNE INC, Cambridge Innovation Center,Stationsplein 45, 3013 AK, A4.004, Rotterdam, The Netherlands mithun_ajith@cyberdyne.jp Phone: +31108080827;

    Research Development Division , CYBERDYNE INC,2-2-1, Gakuen-Minami, Tsukuba, Ibaraki Prefecture 305-0818, Japan;

    Research Development Division , CYBERDYNE INC,2-2-1, Gakuen-Minami, Tsukuba, Ibaraki Prefecture 305-0818, Japan;

    Research Development Division , CYBERDYNE INC,2-2-1, Gakuen-Minami, Tsukuba, Ibaraki Prefecture 305-0818, Japan;

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