Related Experiment Video For Atomic Force Microscopy
Updated: Mar 25, 2026

Micro-Mechanical Characterization of Lung Tissue Using Atomic Force Microscopy
Published on: August 28, 2011
Quantification of effects of cancer on elastic properties of breast tissue by Atomic Force Microscopy
Arian Ansardamavandi1, Mohammad Tafazzoli-Shadpour1, Ramin Omidvar1
1Faculty of Biomedical Engineering, Amirkabir University of Technology, Tehran, Iran.
Abstract:
Different behaviors of cells such as growth, differentiation and apoptosis widely differ in case of diseases. The mechanical properties of cells and tissues can be used as a clue for diagnosis of pathological conditions. Here, we implemented Atomic Force Microscopy to evaluate the extent of alteration in mechanical stiffness of tissue layers from patients affected by breast cancer and investigated how data can be categorized based on pathological observations. To avoid predefined categories, Fuzzy-logic algorithm as a novel method was used to divide and categorize the derived Young׳s modulus coefficients (E). Such algorithm divides data among groups in such way that data of each group are mostly similar while dissimilar with other groups. The algorithm was run for different number of categories. Results showed that three (followed by two with small difference) groups categorized data best. Three categories were defined as (E<3000Pa, 3000

