TY - JOUR
T1 - Automatic quantification of REM sleep without atonia reliably identifies patients with REM sleep behavior disorder
T2 - a possible screening tool?
AU - Mancini, Raffaele
AU - Mattioli, Pietro
AU - Famà, Francesco
AU - Giorgetti, Laura
AU - Calizzano, Francesco
AU - Nikolic, Miki
AU - Frandsen, Rune
AU - Jennum, Poul
AU - Morbelli, Silvia
AU - Pardini, Matteo
AU - Arnaldi, Dario
N1 - © 2024. The Author(s).
PY - 2024
Y1 - 2024
N2 - BACKGROUND: REM Sleep Behavior Disorder (RBD) is characterized by absence of physiological muscle atonia during REM sleep (REM sleep without atonia, RWA). Nigro-striatal dopaminergic impairment is a feature of Parkinson disease (PD) and can be identified in prodromal stages as well, such as idiopathic RBD (iRBD). Aims of this study are to explore the efficacy of an automatic RWA quantification in identifying RBD patients and the correlation between RWA and nigro-striatal dopaminergic function.METHODS: Forty-five iRBD, 46 PD with RBD, 24 PD without RBD patients and 11 healthy controls were enrolled in the Genoa Center (group A) and 25 patients with iRBD (group B) were enrolled in the Danish Center. Group A underwent brain [123I]FP-CIT-SPECT and group B underwent brain [18F]PE2I-PET as measures of nigro-striatal dopaminergic function. Chin muscle activity was recorded in all subjects and analyzed by applying a published automatic algorithm. Correlations between RWA and nigro-striatal dopaminergic function were explored.RESULTS: The automatic quantification of RWA significantly differentiated RBD from non-RBD subjects (AUC = 0.86), although with lower accuracy compared with conventional visual scoring (AUC = 0.99). No significant correlation was found between RWA and nigro-striatal dopaminergic function.CONCLUSION: The automatic quantification of RWA is a reliable tool to identify subjects with RBD and may be used as a first-line screening tool, but without correlations with nigro-striatal dopaminergic functioning.
AB - BACKGROUND: REM Sleep Behavior Disorder (RBD) is characterized by absence of physiological muscle atonia during REM sleep (REM sleep without atonia, RWA). Nigro-striatal dopaminergic impairment is a feature of Parkinson disease (PD) and can be identified in prodromal stages as well, such as idiopathic RBD (iRBD). Aims of this study are to explore the efficacy of an automatic RWA quantification in identifying RBD patients and the correlation between RWA and nigro-striatal dopaminergic function.METHODS: Forty-five iRBD, 46 PD with RBD, 24 PD without RBD patients and 11 healthy controls were enrolled in the Genoa Center (group A) and 25 patients with iRBD (group B) were enrolled in the Danish Center. Group A underwent brain [123I]FP-CIT-SPECT and group B underwent brain [18F]PE2I-PET as measures of nigro-striatal dopaminergic function. Chin muscle activity was recorded in all subjects and analyzed by applying a published automatic algorithm. Correlations between RWA and nigro-striatal dopaminergic function were explored.RESULTS: The automatic quantification of RWA significantly differentiated RBD from non-RBD subjects (AUC = 0.86), although with lower accuracy compared with conventional visual scoring (AUC = 0.99). No significant correlation was found between RWA and nigro-striatal dopaminergic function.CONCLUSION: The automatic quantification of RWA is a reliable tool to identify subjects with RBD and may be used as a first-line screening tool, but without correlations with nigro-striatal dopaminergic functioning.
KW - Aged
KW - Brain/diagnostic imaging
KW - Female
KW - Humans
KW - Male
KW - Middle Aged
KW - Parkinson Disease/diagnosis
KW - Polysomnography/methods
KW - Positron-Emission Tomography
KW - REM Sleep Behavior Disorder/diagnosis
KW - Sleep, REM/physiology
KW - Tomography, Emission-Computed, Single-Photon
KW - Tropanes
UR - https://www.scopus.com/pages/publications/85193804403
U2 - 10.1007/s10072-024-07532-6
DO - 10.1007/s10072-024-07532-6
M3 - Journal article
C2 - 38775861
SN - 1590-1874
VL - 45
SP - 4837
EP - 4846
JO - Neurological Sciences
JF - Neurological Sciences
IS - 10
ER -