<p>MDA-MB-468 cell surfaces without (left column) or with treatment by miR-142-3p (right column) were imaged by Atomic Force Microscopy (AFM) at nanometer resolution. Shown are (a) representative height profiles, (b) topography raw data of a (10 μm)<sup>2</sup> scan, (c) protruding structure elements (green), (d) the overlay of (a) and (b) in a 3D-map and (e) the number values for the object count and the total volume (given as the sum of individual sizes (LDVs, local deviational volumes) per image). Shown are the mean values ± SD per image for n = 5, ***P<0.001.</p
Atomic Force Microscopy (AFM) has a great potential as a tool to characterize me-chanical and morpho...
Cell substrate interactions play an important role in regulating cellular physiological and patholog...
Cell substrate interactions play an important role in regulating cellular physiological and patholog...
<p>For morphological phenotyping of endothelial cell surfaces (HUVEC) were recorded by atomic force ...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
<p>(A) Atomic force microscopy of Caco-2 cells without and with green labels of the automated detect...
A comprehensive method consisting of theoretical modeling and experimental atomic force microscopy (...
The nanoscale surface analysis of microbial cells represents a significant challenge of current micr...
<p>A high density domain (patch) is encircled in white. Scan size 4.5×4.5 µm with vertical scale of ...
Surface characteristics such as topography and critical dimensions serve as important indicators of ...
Accurate mechanical characterization by the atomic force microscope at the highest spatial resolutio...
In this study, atomic force microscopy (AFM) tip profile was introduced and examined on carbon nano...
In this study, atomic force microscopy (AFM) tip profile was introduced and examined on carbon nano...
Atomic Force Microscopy (AFM) has a great potential as a tool to characterize me-chanical and morpho...
Cell substrate interactions play an important role in regulating cellular physiological and patholog...
Cell substrate interactions play an important role in regulating cellular physiological and patholog...
<p>For morphological phenotyping of endothelial cell surfaces (HUVEC) were recorded by atomic force ...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
<p>(A) Atomic force microscopy of Caco-2 cells without and with green labels of the automated detect...
A comprehensive method consisting of theoretical modeling and experimental atomic force microscopy (...
The nanoscale surface analysis of microbial cells represents a significant challenge of current micr...
<p>A high density domain (patch) is encircled in white. Scan size 4.5×4.5 µm with vertical scale of ...
Surface characteristics such as topography and critical dimensions serve as important indicators of ...
Accurate mechanical characterization by the atomic force microscope at the highest spatial resolutio...
In this study, atomic force microscopy (AFM) tip profile was introduced and examined on carbon nano...
In this study, atomic force microscopy (AFM) tip profile was introduced and examined on carbon nano...
Atomic Force Microscopy (AFM) has a great potential as a tool to characterize me-chanical and morpho...
Cell substrate interactions play an important role in regulating cellular physiological and patholog...
Cell substrate interactions play an important role in regulating cellular physiological and patholog...