Scanning Electron Microscopy (SEM) is a powerful, high-resolution imaging technique widely used to analyze the structure of fibrin networks. Currently, structural features, such as fiber diameter, length, density, and porosity, are mostly analyzed manually, which is tedious and may introduce user bias. A reliable, automated structural image analysis method would mitigate these drawbacks. We evaluated the performance of DiameterJ (an ImageJ plug-in) for analyzing fibrin fiber diameter by comparing automated DiameterJ outputs with manual diameter measurements in four SEM data sets with different imaging parameters. We also investigated correlations between biophysical fibrin clot properties and diameter, and between clot permeability and Diam...
Recent evidence demonstrates the ability to change cell function by altering the physical properties...
Blood vessels mimics (BVMs) are tissue-engineered blood vessels used to test vascular devices in an ...
Turbidimetry is used to characterize fibrin clot properties. In purified systems, maximum absorbance...
Scanning Electron Microscopy (SEM) is a powerful, high‐resolution imaging technique widely used to a...
Fibrous networks are essential structural components of biological and engineered materials. Accordi...
Fiber materials offer a high potential for improving the surface characteristics of medical implants...
Due to the high surface area, porosity, and rigidity, applications of nanofibers and nanosurfaces ha...
An estimated $7.1 billion dollars a year is spent due to irreproducibility in pre-clinical data from...
Injectable, biodegradable scaffolds that mimic local tissue properties have great potential for aidi...
Fibrin polymerizes to produce branching fibers forming a three-dimensional network, which has been d...
Fibrin polymerizes to produce branching fibers forming a three-dimensional network, which has been d...
Recent evidence demonstrates the ability to change cell function by altering the physical properties...
<p><b>A</b> Over two hundred single fibers were imaged on the SEM. Fiber diameters were measured at ...
Recent evidence demonstrates the ability to change cell function by altering the physical properties...
Background: Characterization of acute ischemic stroke (AIS) clots has typically focused on two dimen...
Recent evidence demonstrates the ability to change cell function by altering the physical properties...
Blood vessels mimics (BVMs) are tissue-engineered blood vessels used to test vascular devices in an ...
Turbidimetry is used to characterize fibrin clot properties. In purified systems, maximum absorbance...
Scanning Electron Microscopy (SEM) is a powerful, high‐resolution imaging technique widely used to a...
Fibrous networks are essential structural components of biological and engineered materials. Accordi...
Fiber materials offer a high potential for improving the surface characteristics of medical implants...
Due to the high surface area, porosity, and rigidity, applications of nanofibers and nanosurfaces ha...
An estimated $7.1 billion dollars a year is spent due to irreproducibility in pre-clinical data from...
Injectable, biodegradable scaffolds that mimic local tissue properties have great potential for aidi...
Fibrin polymerizes to produce branching fibers forming a three-dimensional network, which has been d...
Fibrin polymerizes to produce branching fibers forming a three-dimensional network, which has been d...
Recent evidence demonstrates the ability to change cell function by altering the physical properties...
<p><b>A</b> Over two hundred single fibers were imaged on the SEM. Fiber diameters were measured at ...
Recent evidence demonstrates the ability to change cell function by altering the physical properties...
Background: Characterization of acute ischemic stroke (AIS) clots has typically focused on two dimen...
Recent evidence demonstrates the ability to change cell function by altering the physical properties...
Blood vessels mimics (BVMs) are tissue-engineered blood vessels used to test vascular devices in an ...
Turbidimetry is used to characterize fibrin clot properties. In purified systems, maximum absorbance...