TY - JOUR
T1 - Dynamic atlas-based segmentation and quantification of neuromelanin-rich brainstem structures in Parkinson disease
AU - Ariz, Mikel
AU - Abad, Ricardo C.
AU - Castellanos, Gabriel
AU - Martinez, Martin
AU - Munoz-Barrutia, Arrate
AU - Fernandez-Seara, Maria A.
AU - Pastor, Pau
AU - Pastor, Maria A.
AU - Ortiz-De-Solorzano, Carlos
N1 - Publisher Copyright:
© 1982-2012 IEEE.
PY - 2019/3
Y1 - 2019/3
N2 - We present a dynamic atlas composed of neuromelanin-enhanced magnetic resonance brain images of 40 healthy subjects. The performance of this atlas is evaluated on the fully automated segmentation of two paired neuromelanin-rich brainstem healthy structures: The substantia nigra pars compacta and the locus coeruleus. We show that our dynamic atlas requires in average 60% less images and, therefore, 60% less computation time than a static multi-image atlas while achieving a similar segmentation performance. Then, we show that by applying our dynamic atlas, composed of healthy subjects, to the segmentation and neuromelanin quantification of a set of brain images of 39 Parkinson disease patients, we are able to find significant quantitative differences in the level of neuromelanin between healthy subjects and Parkinson disease patients, thus opening the door to the use of these structures as image biomarkers in future computer aided diagnosis systems for the diagnosis of Parkinson disease.
AB - We present a dynamic atlas composed of neuromelanin-enhanced magnetic resonance brain images of 40 healthy subjects. The performance of this atlas is evaluated on the fully automated segmentation of two paired neuromelanin-rich brainstem healthy structures: The substantia nigra pars compacta and the locus coeruleus. We show that our dynamic atlas requires in average 60% less images and, therefore, 60% less computation time than a static multi-image atlas while achieving a similar segmentation performance. Then, we show that by applying our dynamic atlas, composed of healthy subjects, to the segmentation and neuromelanin quantification of a set of brain images of 39 Parkinson disease patients, we are able to find significant quantitative differences in the level of neuromelanin between healthy subjects and Parkinson disease patients, thus opening the door to the use of these structures as image biomarkers in future computer aided diagnosis systems for the diagnosis of Parkinson disease.
KW - Parkinson disease
KW - magnetic resonance imaging
KW - multi-image atlas based segmentation
KW - neural network based classifier
KW - neuromelanin
UR - https://www.scopus.com/pages/publications/85054417677
U2 - 10.1109/TMI.2018.2872852
DO - 10.1109/TMI.2018.2872852
M3 - Article
C2 - 30281440
AN - SCOPUS:85054417677
SN - 0278-0062
VL - 38
SP - 813
EP - 823
JO - IEEE Transactions on Medical Imaging
JF - IEEE Transactions on Medical Imaging
IS - 3
M1 - 8478246
ER -