Biophysical models of diffusion MRI have been developed to characterize microstructure in various tissues, but existing models are not suitable for tissue composed of permeable spherical cells. In this study we introduce Cellular Exchange Imaging (CEXI), a model tailored for permeable spherical cells, and compares its performance to a related Ball & Sphere (BS) model that neglects permeability. We generated DW-MRI signals using Monte-Carlo simulations with a PGSE sequence in numerical substrates made of spherical cells and their extracellular space for a range of membrane permeability. From these signals, the properties of the substrates were inferred using both BS and CEXI models. CEXI outperformed the impermeable model by providing mo...
Diffusion MRI is arguably the method of choice for characterizing white matter microstructure in viv...
Biophysical models of diffusion in white matter are based on what is now commonly referred to as the...
Diffusion-weighted imaging is sensitive to the movement of water molecules through the tissue micros...
Although diffusion MRI has shown promise for the characterization of breast cancer, it has low speci...
Measuring transmembrane water exchange can provide potential biomarkers for tumors and brain disorde...
Diffusion MRI is widely used to study brain structure in vivo. While this technique is often applied...
Specific parameters of the neuronal tissue microstructure, such as axonal diameters, membrane permea...
Water exchange through the cell membranes is an important feature of cells and tissues. The rate of ...
SynopsisWe performed multi-b and multi-diffusion-time DWI on aquaporin-4-expressing and non-expressi...
NMR and MRI diffusion experiments contain information describing the shape, size, abundance, and mem...
The permeability of cell membranes varies significantly across both healthy and diseased tissue, and...
Biophysical models of diffusion in white matter have been center-stage over the past two decades and...
Extraction of accurate quantitative parameters to characterize water diffusion in complex porous med...
Disabilities, diseases or disorders caused by brain damage are quite vast, ranging from simply aging...
Biophysical models of diffusion in white matter have been center-stage over the past two decades and...
Diffusion MRI is arguably the method of choice for characterizing white matter microstructure in viv...
Biophysical models of diffusion in white matter are based on what is now commonly referred to as the...
Diffusion-weighted imaging is sensitive to the movement of water molecules through the tissue micros...
Although diffusion MRI has shown promise for the characterization of breast cancer, it has low speci...
Measuring transmembrane water exchange can provide potential biomarkers for tumors and brain disorde...
Diffusion MRI is widely used to study brain structure in vivo. While this technique is often applied...
Specific parameters of the neuronal tissue microstructure, such as axonal diameters, membrane permea...
Water exchange through the cell membranes is an important feature of cells and tissues. The rate of ...
SynopsisWe performed multi-b and multi-diffusion-time DWI on aquaporin-4-expressing and non-expressi...
NMR and MRI diffusion experiments contain information describing the shape, size, abundance, and mem...
The permeability of cell membranes varies significantly across both healthy and diseased tissue, and...
Biophysical models of diffusion in white matter have been center-stage over the past two decades and...
Extraction of accurate quantitative parameters to characterize water diffusion in complex porous med...
Disabilities, diseases or disorders caused by brain damage are quite vast, ranging from simply aging...
Biophysical models of diffusion in white matter have been center-stage over the past two decades and...
Diffusion MRI is arguably the method of choice for characterizing white matter microstructure in viv...
Biophysical models of diffusion in white matter are based on what is now commonly referred to as the...
Diffusion-weighted imaging is sensitive to the movement of water molecules through the tissue micros...