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Over 1000 nm Near-Infrared Multispectral Imaging System for Laparoscopic In Vivo Imaging

机译:用于腹腔镜的超过1000nm近红外多光谱成像系统用于体内成像

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摘要

In this study, a laparoscopic imaging device and a light source able to select wavelengths by bandpass filters were developed to perform multispectral imaging (MSI) using over 1000 nm near-infrared (OTN-NIR) on regions under a laparoscope. Subsequently, MSI (wavelengths: 1000–1400 nm) was performed using the built device on nine live mice before and after tumor implantation. The normal and tumor pixels captured within the mice were used as teaching data sets, and the tumor-implanted mice data were classified using a neural network applied following a leave-one-out cross-validation procedure. The system provided a specificity of 89.5%, a sensitivity of 53.5%, and an accuracy of 87.8% for subcutaneous tumor discrimination. Aggregated true-positive (TP) pixels were confirmed in all tumor-implanted mice, which indicated that the laparoscopic OTN-NIR MSI could potentially be applied in vivo for classifying target lesions such as cancer in deep tissues.
机译:在该研究中,开发了一种腹腔镜成像装置和能够通过带通滤波器选择波长的光源,以在腹腔镜下的区域上使用1000nm近红外(OTN-nir)来执行多光谱成像(MSI)。随后,使用肿瘤植入前后9个活小鼠的内置装置进行MSI(波长:1000-1400nm)。在小鼠内捕获的正常和肿瘤像素被用作教学数据集,并且使用在休假交叉验证过程之后应用的神经网络进行肿瘤注入的小鼠数据。该系统提供的特异性为89.5%,灵敏度为53.5%,对皮下肿瘤歧视的准确度为87.8%。在所有肿瘤注入的小鼠中证实了聚集的真阳性(TP)像素,其表明腹腔镜OTN-NIR MSI可能潜在地用于体内用于分类靶病变,例如深层组织中的癌症。

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