为病理学家快速处理和评估胰腺癌活检的混合弹性成像-微流控装置的可行性。

Ronnie Das, Thu-Mai Nguyen, Saniel D Lim, Matt O'Donnell, Ruikang K Wang, Eric J Seibel
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引用次数: 1

摘要

在这项研究中,我们的合作研究小组探索了将超声弹性成像技术与微流体装置相结合的可能性,该装置旨在制备细针芯活检(CBs;L=0.5-2.0 cm, D=0.4-1.2 mm)用于胰腺癌诊断。首次采用弹性成像技术测量新鲜(3.7 m/s)和福尔马林固定(14.7 m/s)胰腺CBs的横波速度。无论固定标本是自由放置在显微镜载玻片上,还是被限制在玻璃微流体通道内,剪切波速都没有变化:11.5±1.9 vs . 11.8±2.1 m/s。4%琼脂糖包体也被包埋在1%琼脂糖水凝胶中,以模拟CBs内的囊肿、肿瘤或坏死组织。利用光学相干弹性成像成功地对夹杂物进行了可视化和测量。这些初步的实验以一种基本的方式表明,胰腺CBs的弹性测量可以与我们的微流体装置相结合。CB刚度的快速映射可以为病理学家提供定性的空间信息,以确定更准确的患者诊断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Feasibility of a hybrid elastographic-microfluidic device to rapidly process and assess pancreatic cancer biopsies for pathologists.

Feasibility of a hybrid elastographic-microfluidic device to rapidly process and assess pancreatic cancer biopsies for pathologists.

Feasibility of a hybrid elastographic-microfluidic device to rapidly process and assess pancreatic cancer biopsies for pathologists.

Feasibility of a hybrid elastographic-microfluidic device to rapidly process and assess pancreatic cancer biopsies for pathologists.

In this study, our collaborative research group explored the possibility of incorporating ultrasound elastography technology with a microfluidic device that is designed to prepare fine needle core biopsies (CBs; L=0.5-2.0 cm, D=0.4-1.2 mm) for pancreatic cancer diagnosis. For the first time, elastographic techniques were employed to measure shear wave velocity in fresh (3.7 m/s) and formalin-fixed (14.7 m/s) pancreatic CBs. Shear wave velocity did not vary whether fixed specimens were free on a microscope slide, or constrained within glass microfluidic channels: 11.5±1.9 v. 11.8±2.1 m/s. 4% agarose inclusions were also embedded within 1% agarose hydrogels to simulate cysts, neoplastic, or necrotic tissue within CBs. Inclusions were successfully visualized and measured using optical coherence elastography. These preliminary experiments demonstrate in a rudimentary fashion that elastographic measurements of pancreatic CBs may be incorporated with our microfluidic device. The rapid mapping of CB stiffness may provide qualitative spatial information for pathologists to determine a more accurate diagnosis for patients.

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