In patients with temporal lobe epilepsy (TLE), presurgical magnetic resonance imaging (MRI) often reveals hippocampal atrophy, while neuropathological assessment indicates the different types of hippocampal sclerosis (HS). Different HS types are not discriminated in MRI so far. We aimed to define the volume of each hippocampal subfield on MRI manually and to compare automatic and manual segmentations for the discrimination of HS types. The T2-weighted images from 14 formalin-fixed age-matched control hippocampi were obtained with 4.7T MRI to evaluate the volume of each subfield at the anatomical level of the hippocampal head, body, and tail. Formalin-fixed coronal sections at the level of the body of 14 control cases, as well as tissue samp...
Hippocampal subfields are differentially sensitive in development, aging, and neurodegenerative dise...
Spurred by availability of automatic segmentation software, in vivo MRI investigations of human hipp...
Purpose: Quantitative measurement of hippocampal volume using structural magnetic resonance imaging...
In patients with temporal lobe epilepsy (TLE), presurgical magnetic resonance imaging (MRI) often re...
In patients with temporal lobe epilepsy (TLE), presurgical magnetic resonance imaging (MRI) often re...
In patients with temporal lobe epilepsy (TLE), presurgical magnetic resonance imaging (MRI) often re...
In patients with temporal lobe epilepsy (TLE), presurgical magnetic resonance imaging (MRI) often re...
INTRODUCTION Hippocampal sclerosis is the most frequent pathological substrate in drug resistant ...
INTRODUCTION Hippocampal sclerosis is the most frequent pathological substrate in drug resistant ...
INTRODUCTION Hippocampal sclerosis is the most frequent pathological substrate in drug resistant ...
Background and purpose: Automated subfield volumetry of hippocampus is desirable for use in temporal...
While the etiology of hippocampal sclerosis (HS) in epilepsy patients remains unknown, distinct phen...
Spurred by availability of automatic segmentation software, in vivo MRI investigations of human hipp...
Spurred by availability of automatic segmentation software, in vivo MRI investigations of human hipp...
Background Temporal lobe epilepsy (TLE) is the most common drug-resistant epilepsy in adults. Hippo...
Hippocampal subfields are differentially sensitive in development, aging, and neurodegenerative dise...
Spurred by availability of automatic segmentation software, in vivo MRI investigations of human hipp...
Purpose: Quantitative measurement of hippocampal volume using structural magnetic resonance imaging...
In patients with temporal lobe epilepsy (TLE), presurgical magnetic resonance imaging (MRI) often re...
In patients with temporal lobe epilepsy (TLE), presurgical magnetic resonance imaging (MRI) often re...
In patients with temporal lobe epilepsy (TLE), presurgical magnetic resonance imaging (MRI) often re...
In patients with temporal lobe epilepsy (TLE), presurgical magnetic resonance imaging (MRI) often re...
INTRODUCTION Hippocampal sclerosis is the most frequent pathological substrate in drug resistant ...
INTRODUCTION Hippocampal sclerosis is the most frequent pathological substrate in drug resistant ...
INTRODUCTION Hippocampal sclerosis is the most frequent pathological substrate in drug resistant ...
Background and purpose: Automated subfield volumetry of hippocampus is desirable for use in temporal...
While the etiology of hippocampal sclerosis (HS) in epilepsy patients remains unknown, distinct phen...
Spurred by availability of automatic segmentation software, in vivo MRI investigations of human hipp...
Spurred by availability of automatic segmentation software, in vivo MRI investigations of human hipp...
Background Temporal lobe epilepsy (TLE) is the most common drug-resistant epilepsy in adults. Hippo...
Hippocampal subfields are differentially sensitive in development, aging, and neurodegenerative dise...
Spurred by availability of automatic segmentation software, in vivo MRI investigations of human hipp...
Purpose: Quantitative measurement of hippocampal volume using structural magnetic resonance imaging...