Lee Won Gu, Bang Hyunwoo, Yun Hoyoung, Lee Joonmo, Park Junha, Kim Jung Kyung, Chung Seok, Cho Keunchang, Chung Chanil, Han Dong-Chul, Chang Jun Keun
School of Mechanical and Aerospace Engineering, Seoul National University, San 56-1 Shinlim, Kwanak, Seoul 151-742, South Korea.
Lab Chip. 2007 Apr;7(4):516-9. doi: 10.1039/b614912j. Epub 2007 Feb 1.
This paper presents a novel method for an on-chip erythrocyte deformability test under optical pressure, especially to enhance the level of sensitivity with respect to the detection of cancerous diseases. To demonstrate the performance and sensitivity of the combined method, we introduce the concept of transit velocity, a modified elongation index, and shape recovery time of individual erythrocytes in a strictly confined region (2 microm deep, 4 microm wide, and 100 microm long). Finally, we investigate a synergy or convergence effect due to the combination of these parameters for in situ detection of cancerous diseases under optical pressure.
本文提出了一种在光压力下进行片上红细胞变形性测试的新方法,特别是为了提高对癌症疾病检测的灵敏度。为了证明该组合方法的性能和灵敏度,我们引入了迁移速度、修正伸长指数以及单个红细胞在严格受限区域(深2微米、宽4微米、长100微米)内的形状恢复时间的概念。最后,我们研究了这些参数组合在光压力下原位检测癌症疾病时产生的协同或收敛效应。