Purpose: To investigate intercenter agreement of brain volume (change) measurement in multiple sclerosis (MS) using structural image evaluation using normalization of atrophy (SIENA) and the cross-sectional version of SIENA (SIENAX) with additional manual editing to correct for inadequate brain extraction. Materials and Methods: Baseline and follow-up T1-weighted MR images of 20 MS patients were dispatched to five centers. Each center performed fully-automated and manually-edited analyses for SIENAX, yielding normalized brain volume (NBV), and SIENA, yielding percentage brain volume change (PBVC). Intercenter agreement was assessed with the concordance correlation coefficient (CCC). Results: Intercenter agreement was perfect for fully autom...
Background: Progressive brain atrophy in multiple sclerosis ( MS) may reflect neuroaxonal and myelin...
Introduction Despite the recognized importance of atrophy in multiple sclerosis (MS), methods for i...
SienaX and Siena are widely used and fully automated algorithms for measuring whole brain volume and...
PURPOSE: To investigate intercenter agreement of brain volume (change) measurement in multiple scler...
PURPOSE: To investigate intercenter agreement of brain volume (change) measurement in multiple scle...
PURPOSE: To investigate intercenter agreement of brain volume (change) measurement in multiple scle...
PURPOSE: To investigate intercenter agreement of brain volume (change) measurement in multiple scle...
PURPOSE: To investigate intercenter agreement of brain volume (change) measurement in multiple scle...
BACKGROUND AND PURPOSE: Brain atrophy is a proposed marker of disease progression in multiple sclero...
Background: Whole brain atrophy (WBA) estimates in multiple sclerosis (MS) correlate more robustly w...
Magnetic resonance imaging is an important method to diagnose and evaluate the progression of MS. SI...
Introduction Despite the recognized importance of atrophy in multiple sclerosis (MS), methods for it...
Comparing baseline and follow-up time point images using SIENA, there was no significant difference ...
BACKGROUND: Progressive brain atrophy in multiple sclerosis (MS) may reflect neuroaxonal and myelin ...
BACKGROUND: Progressive brain atrophy in multiple sclerosis (MS) may reflect neuroaxonal and myelin ...
Background: Progressive brain atrophy in multiple sclerosis ( MS) may reflect neuroaxonal and myelin...
Introduction Despite the recognized importance of atrophy in multiple sclerosis (MS), methods for i...
SienaX and Siena are widely used and fully automated algorithms for measuring whole brain volume and...
PURPOSE: To investigate intercenter agreement of brain volume (change) measurement in multiple scler...
PURPOSE: To investigate intercenter agreement of brain volume (change) measurement in multiple scle...
PURPOSE: To investigate intercenter agreement of brain volume (change) measurement in multiple scle...
PURPOSE: To investigate intercenter agreement of brain volume (change) measurement in multiple scle...
PURPOSE: To investigate intercenter agreement of brain volume (change) measurement in multiple scle...
BACKGROUND AND PURPOSE: Brain atrophy is a proposed marker of disease progression in multiple sclero...
Background: Whole brain atrophy (WBA) estimates in multiple sclerosis (MS) correlate more robustly w...
Magnetic resonance imaging is an important method to diagnose and evaluate the progression of MS. SI...
Introduction Despite the recognized importance of atrophy in multiple sclerosis (MS), methods for it...
Comparing baseline and follow-up time point images using SIENA, there was no significant difference ...
BACKGROUND: Progressive brain atrophy in multiple sclerosis (MS) may reflect neuroaxonal and myelin ...
BACKGROUND: Progressive brain atrophy in multiple sclerosis (MS) may reflect neuroaxonal and myelin ...
Background: Progressive brain atrophy in multiple sclerosis ( MS) may reflect neuroaxonal and myelin...
Introduction Despite the recognized importance of atrophy in multiple sclerosis (MS), methods for i...
SienaX and Siena are widely used and fully automated algorithms for measuring whole brain volume and...