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Atomic Force Stiffness Imaging: Capturing differences in mechanical properties to identify and localize areas of prostate cancer tissue

机译:原子力刚度成像:捕获机械性能差异以识别和定位前列腺癌组织区域

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Prostate cancer is now the most commonly diagnosed cancer in men in western countries. Due to the difficulty for early detection, there are an estimated 10000 deaths a year in the UK from prostate cancer alone; whereby the only curative option is interventional treatment that aims to excise all diseased cells while preserving the neurovascular bundle. To date, several studies have shown that the mechanical properties of cancer cells and tissues i.e. adhesion, stiffness, roughness and viscoelasticity are significantly different from benign cells and regions of tissue that are healthy. Building upon these results, we believe novel methods of imaging the mechanical properties of prostate cancer samples can provide new surgical intervention opportunities beyond what is possible through vision alone. In this paper, we used an Atomic Force Microscope (AFM) to measure the stiffness and topography variations correlating to regions of prostate cancer at the surface of an excised sample at a cellular level. Preliminary results show that by using an AFM we can detect structural differences in non-homogeneous tissue samples, confirming previous results that cancerous tissues appear stiffer than benign areas. Through these results, we aim to develop a stiffness imaging protocol to aid the early detection of prostate cancer, in addition to force sensing surgical tools.
机译:在西方国家,前列腺癌现在是男性中最常被诊断出的癌症。由于难以及早发现,仅在英国,每年估计有10,000人死于前列腺癌;因此,唯一的治疗选择是旨在切除所有患病细胞同时保留神经血管束的介入治疗。迄今为止,数项研究表明癌细胞和组织的机械性能,即粘附性,刚度,粗糙度和粘弹性与健康的良性细胞和组织区域显着不同。基于这些结果,我们相信对前列腺癌样品的机械性能进行成像的新颖方法可以提供新的手术干预机会,而这仅凭视觉是不可能的。在本文中,我们使用原子力显微镜(AFM)在细胞水平上测量与切除样品表面上前列腺癌区域相关的硬度和形貌变化。初步结果表明,通过使用原子力显微镜,我们可以检测出非均质组织样品中的结构差异,从而证实了先前的结果,即癌组织比良性区域更硬。通过这些结果,我们旨在开发一种刚度成像协议,除了力感测外科手术工具以外,还有助于早期检测前列腺癌。

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