首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Accurate characterization of benign and cancerous breast tissues: Aspecific patient studies using piezoresistive microcantilevers
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Accurate characterization of benign and cancerous breast tissues: Aspecific patient studies using piezoresistive microcantilevers

机译:良性和癌性乳腺组织的准确表征:使用压阻微悬臂梁的特定患者研究

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Breast cancer is the largest detected cancer amongst women in the US. In this work, our team reports on the development of piezoresistive microcantilevers (PMCs) to investigate their potential use in the accurate detection and characterization of benign and diseased breast tissues by performing indentations on the micro-scale tissue specimens. The PMCs used in these experiments have been fabricated using laboratory-made silicon-on-insulator (SOI) substrate, which significantly reduces the fabrication costs. The PMCs are 260 mu m long, 35 mu m wide and 2 mu m thick with resistivity of order 1.316 x 10(-3) Omega cm obtained by using boron diffusion technique. For indenting the tissue, we utilized 8 mu m thick cylindrical SU-8 tip. The PMC was calibrated against a known AFM probe. Breast tissue cores from seven different specimens were indented using PMC to identify benign and cancerous tissue cores. Furthermore, field emission scanning electron microscopy (FE-SEM) of benign and cancerous specimens showed marked differences in the tissue morphology, which further validates our observed experimental data with the PMCs. While these patient aspecific feasibility studies clearly demonstrate the ability to discriminate between benign and cancerous breast tissues, further investigation is necessary to perform automated mechano-phenotyping (classification) of breast cancer: from onset to disease progression. (C) 2014 Elsevier B.V. All rights reserved.
机译:乳腺癌是美国女性中检测到的最大癌症。在这项工作中,我们的团队报告了压阻微悬臂梁(PMC)的发展,以通过在微尺度组织标本上进行压痕来研究其在准确检测和表征良性和患病乳腺组织中的潜在用途。这些实验中使用的PMC是使用实验室制造的绝缘体上硅(SOI)基板制造的,这大大降低了制造成本。 PMC长260微米,宽35微米,厚2微米,通过硼扩散技术获得的电阻率为1.316 x 10(-3)Ω厘米。为了压入组织,我们使用了8微米厚的圆柱SU-8尖端。相对于已知的AFM探头对PMC进行了校准。使用PMC对来自七个不同标本的乳房组织核心进行压痕,以识别良性和癌性组织核心。此外,良性和癌性标本的场发射扫描电子显微镜(FE-SEM)在组织形态上显示出明显差异,这进一步验证了我们用PMC观察到的实验数据。尽管这些针对患者的特殊可行性研究清楚地表明了区分良性和癌性乳腺组织的能力,但仍需要进一步研究以进行乳腺癌的自动机械表型(分类):从发病到疾病进展。 (C)2014 Elsevier B.V.保留所有权利。

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