Methods for creating speckle patterns on mouse arteries for use in deformation and strain field measurements in a stereomicroscope digital image correlation (DIC) system are described. Both fluorescent microsphere binding and ethidium bromide (EB) nuclear staining were used to generate high contrast, random patterns on mouse carotid arteries. To quantify the quality of each pattern, several metrics are used including (a) histogram distribution for each intensity pattern and (b) pixel-level variance in intensity pattern noise. Results demonstrate that both approaches provide sufficient pattern contrast for use in image-based methods to measure deformations in soft tissue. While fluorescent nuclear staining generates higher pixel-level intens...
The design of football helmets to mitigate traumatic brain injury due to blunt impact is not possibl...
Abstract The digital image correlation (DIC) tech-nique is successfully applied across multiple leng...
The quality of strain measurements by digital image correlation (DIC) strongly depends on the qualit...
Methods for creating speckle patterns on mouse arteries for use in deformation and strain field meas...
BackgroundDigital image correlation (DIC) methods are increasingly used for non-contact optical asse...
Digital image correlation (DIC) is an optical technique for contactless displacement and strain meas...
Measurement of full-field cardiac strain using optical methods has potential application to validate...
Digital image correlation (DIC) is being introduced to the biomechanical field. However, as DIC reli...
International audienceHigh-fidelity biomechanical models usually involve the mechanical characteriza...
Digital image correlation (DIC) is an optical technique for full field deformation measurement. The ...
To perform digital image correlation (DIC), each image is divided into groups of pixels known as sub...
peer reviewedDigital Image Correlation (DIC) – also referred to as white light speckle technique – i...
Digital image correlation (DIC) is an optical–numerical full-field displacement measuring technique...
Non-contacting measurements of deformation and strain fields are of great importance in experimental...
The full potential of computational models of arterial wall mechanics has yet to be realized primari...
The design of football helmets to mitigate traumatic brain injury due to blunt impact is not possibl...
Abstract The digital image correlation (DIC) tech-nique is successfully applied across multiple leng...
The quality of strain measurements by digital image correlation (DIC) strongly depends on the qualit...
Methods for creating speckle patterns on mouse arteries for use in deformation and strain field meas...
BackgroundDigital image correlation (DIC) methods are increasingly used for non-contact optical asse...
Digital image correlation (DIC) is an optical technique for contactless displacement and strain meas...
Measurement of full-field cardiac strain using optical methods has potential application to validate...
Digital image correlation (DIC) is being introduced to the biomechanical field. However, as DIC reli...
International audienceHigh-fidelity biomechanical models usually involve the mechanical characteriza...
Digital image correlation (DIC) is an optical technique for full field deformation measurement. The ...
To perform digital image correlation (DIC), each image is divided into groups of pixels known as sub...
peer reviewedDigital Image Correlation (DIC) – also referred to as white light speckle technique – i...
Digital image correlation (DIC) is an optical–numerical full-field displacement measuring technique...
Non-contacting measurements of deformation and strain fields are of great importance in experimental...
The full potential of computational models of arterial wall mechanics has yet to be realized primari...
The design of football helmets to mitigate traumatic brain injury due to blunt impact is not possibl...
Abstract The digital image correlation (DIC) tech-nique is successfully applied across multiple leng...
The quality of strain measurements by digital image correlation (DIC) strongly depends on the qualit...