Force curves from Fig. S6a, Efremov, Y.M., Bagrov, D.V., Kirpichnikov, M.P., Shaitan, K.V., 2015. Application of the Johnson–Kendall–Roberts model in AFM-based mechanical measurements on cells and gel. Colloids Surfaces B Biointerfaces 134, 131–139. doi:10.1016/j.colsurfb.2015.06.044
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Force curves from Fig. S6a, Efremov, Y.M., Bagrov, D.V., Kirpichnikov, M.P., Shaitan, K.V., 2015. Application of the Johnson–Kendall–Roberts model in AFM-based mechanical measurements on cells and gel. Colloids Surfaces B Biointerfaces 134, 131–139. doi:10.1016/j.colsurfb.2015.06.044<br>Parameters:InvOLS: 61 nm/nACantilever spring constant: 0.055 nN/nmTip radius: 4500 nm
图S6a中的力曲线,源自Efremov Y.M.、Bagrov D.V.、Kirpichnikov M.P.、Shaitan K.V.等人于2015年发表的研究:《约翰逊-肯德尔-罗伯茨(Johnson-Kendall-Roberts, JKR)模型在基于原子力显微镜(Atomic Force Microscopy, AFM)的细胞与凝胶力学测量中的应用》,发表于《胶体与界面科学B:生物界面》第134卷,第131–139页,DOI:10.1016/j.colsurfb.2015.06.044 参数:反演普通最小二乘法(InvOLS, Inverse Ordinary Least Squares):61 nm/nA;悬臂梁弹簧常数:0.055 nN/nm;探针尖端半径:4500 nm
创建时间:
2020-02-17



