Purpose: This prospective study evaluated the use of vascular, extracellular and restricted diffusion for cytometry in tumours (VERDICT) MRI to investigate the tissue microstructure in glioma. VERDICT-derived parameters were correlated with both histological features and tumour subtype and were also used to explore the peritumoural region. Methods: Fourteen consecutive treatment-naïve patients (43.5 years ± 15.1 years, six males, eight females) with suspected glioma underwent diffusion-weighted imaging including VERDICT modelling. Tumour cell radius and intracellular and combined extracellular/vascular volumes were estimated using a framework based on linearisation and convex optimisation. An experienced neuroradiologist outlined ...
Background/Aim. Magnetic resonance imaging (MRI) is a key modality not only for lesion diagnosis,...
BACKGROUND AND PURPOSE: Numerous different parameters measured by perfusion MR imaging can be used f...
BACKGROUND AND PURPOSE: MR imaging can measure tissue perfusion and the integrity of the blood-brain...
Purpose: This prospective study evaluated the use of vascular, extracellular and restricted diffusio...
PURPOSE: This prospective study evaluated the use of vascular, extracellular and restricted diffusio...
PURPOSE: This prospective study evaluated the use of vascular, extracellular and restricted diffusio...
The goal of this research was to elucidate the relationship between WHO 2016 molecular classificatio...
The goal of this research was to elucidate the relationship between WHO 2016 molecular classificatio...
Gliomas constitute 36% of all primary brain tumors and 81% of all primary malignant brain tumors. Th...
Cancer cells differ in size from those of their host tissue and are known to change in size during t...
OBJECTIVE: The aim of this study was to demonstrate the feasibility of the recently introduced Vascu...
Gliomas are extremely heterogeneous, both morphologically and biologically, which contributes to a v...
Objective: To evaluate the potential of diffusional variance decomposition (DIVIDE) for grading, mol...
Objective: To evaluate the potential of diffusional variance decomposition (DIVIDE) for grading, mol...
Gliomas constitute 36% of all primary brain tumors and 81% of all primary malignant brain tumors. Th...
Background/Aim. Magnetic resonance imaging (MRI) is a key modality not only for lesion diagnosis,...
BACKGROUND AND PURPOSE: Numerous different parameters measured by perfusion MR imaging can be used f...
BACKGROUND AND PURPOSE: MR imaging can measure tissue perfusion and the integrity of the blood-brain...
Purpose: This prospective study evaluated the use of vascular, extracellular and restricted diffusio...
PURPOSE: This prospective study evaluated the use of vascular, extracellular and restricted diffusio...
PURPOSE: This prospective study evaluated the use of vascular, extracellular and restricted diffusio...
The goal of this research was to elucidate the relationship between WHO 2016 molecular classificatio...
The goal of this research was to elucidate the relationship between WHO 2016 molecular classificatio...
Gliomas constitute 36% of all primary brain tumors and 81% of all primary malignant brain tumors. Th...
Cancer cells differ in size from those of their host tissue and are known to change in size during t...
OBJECTIVE: The aim of this study was to demonstrate the feasibility of the recently introduced Vascu...
Gliomas are extremely heterogeneous, both morphologically and biologically, which contributes to a v...
Objective: To evaluate the potential of diffusional variance decomposition (DIVIDE) for grading, mol...
Objective: To evaluate the potential of diffusional variance decomposition (DIVIDE) for grading, mol...
Gliomas constitute 36% of all primary brain tumors and 81% of all primary malignant brain tumors. Th...
Background/Aim. Magnetic resonance imaging (MRI) is a key modality not only for lesion diagnosis,...
BACKGROUND AND PURPOSE: Numerous different parameters measured by perfusion MR imaging can be used f...
BACKGROUND AND PURPOSE: MR imaging can measure tissue perfusion and the integrity of the blood-brain...