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Multi-Modality Photoacoustic Tomography, Ultrasound, and Light Sheet Microscopy for Volumetric Tumor Margin Detection

机译:多模态光声层析成像,超声和光片显微术用于体积肿瘤边缘检测

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Current methods for breast tumor margin detection are invasive, time consuming, and typically result in a reoperative rate of over 25%. This marks a clear clinical need to develop improved tools to intraoperatively differentiate negative versus positive tumor margins. Here, we utilize photoacoustic tomography (PAT), ultrasound (US), and inverted Selective Plane Illumination Microscopy (iSPIM) to assess breast tumor margins in eight human breast biopsies. Our PAT/US system consists of a tunable Nd:YAG laser (NT 300, EKSPLA) coupled with a 40MHz central frequency US probe (Vevo2100, FUJIFILM Visual Sonics). This system allows for the delivery of 10Hz, 5ns pulses with fluence of 40mJ/cm~2 to the tissue with PAT and US axial resolutions of 125μm and 40μm, respectively. For this study, we used a linear stepper motor to acquire volumetric PAT/US images of the breast biopsies using 1100nm light to identify blood-rich "tumor" regions and 1210nm light to identify lipid-rich "healthy" regions. iSPIM (Applied Scientific Instrumentation) is an advanced microscopy technique with lateral resolution of 1.5μm and axial resolution of 7μm. We used 488nm laser excitation and acridine orange as a general comprehensive histology stain. Our results show that PAT/US can be used to identify lipid-rich regions, dense areas of arterioles and arteries, and other internal structures such as ducts. iSPIM images correlate well with histopathology slides and can verify nuclear features, cell type and density, stromal features, and microcalcifications. Together, this multimodality approach has the potential to improve tumor margin detection with a high degree of sensitivity and specificity.
机译:当前用于乳腺肿瘤边缘检测的方法是侵入性的,费时的,并且通常导致超过25%的再手术率。这标志着临床上显然需要开发改进的工具,以在术中区分阴性和阳性肿瘤切缘。在这里,我们利用光声断层扫描(PAT),超声(US)和倒置选择性平面照明显微镜(iSPIM)来评估8例人类乳腺活检中的乳腺肿瘤切缘。我们的PAT / US系统由可调谐Nd:YAG激光器(NT 300,EKSPLA)和40MHz中心频率US探头(Vevo2100,FUJIFILM Visual Sonics)组成。该系统允许以40μJ/ cm〜2的通量向组织输送10Hz,5ns的脉冲,PAT和US轴向分辨率分别为125μm和40μm。对于本研究,我们使用线性步进电机来获取乳房活检的体积PAT / US图像,其中使用1100nm的光来识别富含血液的“肿瘤”区域,并使用1210nm的光来识别富含脂质的“健康”区域。 iSPIM(应用科学仪器公司)是一种先进的显微镜技术,其横向分辨率为1.5μm,轴向分辨率为7μm。我们使用488nm激光激发和a啶橙作为一般的综合组织学染色剂。我们的结果表明,PAT / US可用于识别脂质丰富的区域,小动脉和动脉的密集区域以及其他内部结构(例如导管)。 iSPIM图像与组织病理学幻灯片有很好的相关性,可以验证核特征,细胞类型和密度,基质特征和微钙化。总之,这种多模态方法具有以高度的敏感性和特异性改善肿瘤切缘检测的潜力。

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