Atomic Force Microscopy (AFM) has the unique capability of probing the nanoscale mechanical properties of biological systems that affect and are affected by the occurrence of many pathologies, including cancer. This capability has triggered growing interest in the translational process of AFM from physics laboratories to clinical practice. A factor still hindering the current use of AFM in diagnostics is related to the complexity of AFM data analysis, which is time-consuming and needs highly specialized personnel with a strong physical and mathematical background. In this work, we demonstrate an operator-independent neural-network approach for the analysis of surgically removed brain cancer tissues. This approach allowed us to distinguish -...
Recent advances in artificial intelligence, particularly in the field of deep learning, have enabled...
The computational power and advantages of the Finite Element Method (FEM) are noticeable. When deali...
In this paper, we have described about the obtaining of high resolution image of abnormal cells and ...
Atomic Force Microscopy (AFM) has the unique capability of probing the nanoscale mechanical properti...
A novel method based on atomic force microscopy (AFM) working in Ringing mode (RM) to distinguish be...
The mechanical properties of living cells and tissues are important for a variety of functional proc...
Atomic force microscopy (AFM) provides a platform for high-resolution topographical imaging and the ...
Current cancer diagnosis employs various nuclear morphometric measures. While these have allowed acc...
In this work, we presented a method of finding and characterising transmembrane porous structures, c...
Tumors have posed a serious threat to human life and health. Researchers can determine whether or no...
Atomic Force Microscopy (AFM) force measurements are a powerful tool for the nano-scale characteriza...
Copyright © 2013 Marlene Huml et al. This is an open access article distributed under the Creative C...
Atomic Force Microscopy (AFM) is a powerful technique widely employed in biophysics, for instance to...
Investigating the physics in tumor development and progression has been recognized as a promising wa...
Investigating the physics in tumor development and progression has been recognized as a promising wa...
Recent advances in artificial intelligence, particularly in the field of deep learning, have enabled...
The computational power and advantages of the Finite Element Method (FEM) are noticeable. When deali...
In this paper, we have described about the obtaining of high resolution image of abnormal cells and ...
Atomic Force Microscopy (AFM) has the unique capability of probing the nanoscale mechanical properti...
A novel method based on atomic force microscopy (AFM) working in Ringing mode (RM) to distinguish be...
The mechanical properties of living cells and tissues are important for a variety of functional proc...
Atomic force microscopy (AFM) provides a platform for high-resolution topographical imaging and the ...
Current cancer diagnosis employs various nuclear morphometric measures. While these have allowed acc...
In this work, we presented a method of finding and characterising transmembrane porous structures, c...
Tumors have posed a serious threat to human life and health. Researchers can determine whether or no...
Atomic Force Microscopy (AFM) force measurements are a powerful tool for the nano-scale characteriza...
Copyright © 2013 Marlene Huml et al. This is an open access article distributed under the Creative C...
Atomic Force Microscopy (AFM) is a powerful technique widely employed in biophysics, for instance to...
Investigating the physics in tumor development and progression has been recognized as a promising wa...
Investigating the physics in tumor development and progression has been recognized as a promising wa...
Recent advances in artificial intelligence, particularly in the field of deep learning, have enabled...
The computational power and advantages of the Finite Element Method (FEM) are noticeable. When deali...
In this paper, we have described about the obtaining of high resolution image of abnormal cells and ...