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ORIGINAL RESEARCH

Alterations of Regional Homogeneity in Parkinson’s Disease with Rapid Eye Movement Sleep Behavior Disorder

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Pages 2967-2978 | Received 17 Aug 2022, Accepted 06 Dec 2022, Published online: 19 Dec 2022

References

  • Sateia MJ. International classification of sleep disorders-third edition: highlights and modifications. Chest. 2014;146(5):1387–1394. doi:10.1378/chest.14-0970
  • Patriat R, Pisharady PK, Amundsen-Huffmaster S, et al. White matter microstructure in Parkinson’s disease with and without elevated rapid eye movement sleep muscle tone. Brain Commun. 2022;4(2):fcac027. doi:10.1093/braincomms/fcac027
  • Pagano G, De Micco R, Yousaf T, Wilson H, Chandra A, Politis MJN. REM behavior disorder predicts motor progression and cognitive decline in Parkinson disease. Neurology. 2018;91(10):e894–e905. doi:10.1212/WNL.0000000000006134
  • Bjørnarå K, Dietrichs E, Toft M. Longitudinal assessment of probable rapid eye movement sleep behaviour disorder in Parkinson’s disease. Eur J Neurol. 2015;22(8):1242–1244. doi:10.1111/ene.12723
  • Fereshtehnejad S, Romenets S, Anang J, Latreille V, Gagnon J, Postuma R. New clinical subtypes of Parkinson disease and their longitudinal progression: a prospective cohort comparison with other phenotypes. JAMA Neurol. 2015;72(8):863–873. doi:10.1001/jamaneurol.2015.0703
  • Liu Y, Lawton M, Lo C, et al. Longitudinal changes in Parkinson’s disease symptoms with and without rapid eye movement sleep behavior disorder: the oxford discovery cohort study. Mov Disord. 2021;36(12):2821–2832. doi:10.1002/mds.28763
  • Trout J, Christiansen T, Bulkley M, et al. Cognitive impairments and self-reported sleep in early-stage Parkinson’s disease with versus without probable REM sleep behavior disorder. Brain Sci. 2019;10(1):9.
  • Jiang X, Wu Z, Zhong M, et al. Abnormal gray matter volume and functional connectivity in Parkinson’s disease with rapid eye movement sleep behavior disorder. Parkinsons Dis. 2021;2021:8851027. doi:10.1155/2021/8851027
  • Iranzo A. The REM sleep circuit and how its impairment leads to REM sleep behavior disorder. Cell Tissue Res. 2018;373(1):245–266. doi:10.1007/s00441-018-2852-8
  • Roguski A, Rayment D, Whone AL, Jones MW, Rolinski M. A neurologist’s guide to REM sleep behavior disorder. Front Neurol. 2020;11:610. doi:10.3389/fneur.2020.00610
  • Matzaras R, Shi K, Artemiadis A, et al. Brain neuroimaging of rapid eye movement sleep behavior disorder in Parkinson’s disease: a systematic review. J Parkinsons Dis. 2022;12(1):69–83. doi:10.3233/JPD-212571
  • Li J, Zeng Q, Zhou W, et al. Altered brain functional network in Parkinson disease with rapid eye movement sleep behavior disorder. Front Neurol. 2020;11:563624. doi:10.3389/fneur.2020.563624
  • Li D, Huang P, Zang Y, et al. Abnormal baseline brain activity in Parkinson’s disease with and without REM sleep behavior disorder: a resting-state functional MRI study. JMRI. 2017;46(3):697–703. doi:10.1002/jmri.25571
  • Guo T, Guan X, Zeng Q, et al. Alterations of brain structural network in Parkinson’s disease with and without rapid eye movement sleep behavior disorder. Front Neurol. 2018;9:334. doi:10.3389/fneur.2018.00334
  • Vincent J, Patel G, Fox M, et al. Intrinsic functional architecture in the anaesthetized monkey brain. Nature. 2007;447(7140):83–86. doi:10.1038/nature05758
  • Kawabata K, Watanabe H, Bagarinao E, et al. Cerebello-basal ganglia connectivity fingerprints related to motor/cognitive performance in Parkinson’s disease. Parkinsonism Relat Disord. 2020;80:21–27. doi:10.1016/j.parkreldis.2020.09.005
  • Liu Q, Shi Z, Wang K, et al. Treatment enhances betweenness centrality of fronto-parietal network in Parkinson’s patients. Front Comput Neurosci. 2022;16:891384. doi:10.3389/fncom.2022.891384
  • Zang Y, Jiang T, Lu Y, He Y, Tian LJN. Regional homogeneity approach to fMRI data analysis. Neuro Image. 2004;22(1):394–400. doi:10.1016/j.neuroimage.2003.12.030
  • Choe I, Yeo S, Chung K, Kim S, Lim S. Decreased and increased cerebral regional homogeneity in early Parkinson’s disease. Brain Rese. 2013;1527:230–237. doi:10.1016/j.brainres.2013.06.027
  • Yue Y, Jiang Y, Shen T, Pu J, Lai HY, Zhang B. ALFF and ReHo mapping reveals different functional patterns in early- and late-onset Parkinson’s disease. Front Neurosci. 2020;14:141. doi:10.3389/fnins.2020.00141
  • Harrington DL, Shen Q, Castillo GN, et al. Aberrant intrinsic activity and connectivity in cognitively normal Parkinson’s disease. Front Aging Neurosci. 2017;9:197. doi:10.3389/fnagi.2017.00197
  • Liu Y, Li M, Chen H, et al. Alterations of regional homogeneity in Parkinson’s disease patients with freezing of gait: a resting-state fMRI study. Front Aging Neurosci. 2019;11:276. doi:10.3389/fnagi.2019.00276
  • Li J, Yuan Y, Wang M, et al. Alterations in regional homogeneity of resting-state brain activity in fatigue of Parkinson’s disease. J Neural Transm. 2017;124(10):1187–1195. doi:10.1007/s00702-017-1748-1
  • Hughes A, Daniel S, Kilford L, AJJon L. neurosurgery, psychiatry. Accuracy of clinical diagnosis of idiopathic Parkinson’s disease: a clinico-pathological study of 100 cases. J Neural Transm Neurosurg Psych. 1992;55(3):181–184. doi:10.1136/jnnp.55.3.181
  • American Psychiatric Association. Diagnostic and Statistical Manual of Mental Disorders: DSM-5. Washington, D.C.: American Psychiatric Association; 2013.
  • Tomlinson C, Stowe R, Patel S, Rick C, Gray R, Clarke CJM. Systematic review of levodopa dose equivalency reporting in Parkinson’s disease. Movement Dis. 2010;25(15):2649–2653. doi:10.1002/mds.23429
  • Goetz CG, Tilley BC, Shaftman SR, et al. Movement disorder society-sponsored revision of the unified Parkinson’s disease rating scale (MDS-UPDRS): scale presentation and clinimetric testing results. Mov Disorders. 2008;23(15):2129–2170. doi:10.1002/mds.22340
  • Hoehn M, Yahr MJN. Parkinsonism: onset. Progres Mortal. 1967;17(5):427–442.
  • Dalrymple-Alford J, MacAskill M, Nakas C, et al. The MoCA: well-suited screen for cognitive impairment in Parkinson disease. Neurology. 2010;75(19):1717–1725. doi:10.1212/WNL.0b013e3181fc29c9
  • Miyasaki JM, Shannon K, Voon V, et al. Practice Parameter: evaluation and treatment of depression, psychosis, and dementia in Parkinson disease (an evidence-based review): [RETIRED]. Neurology. 2006;66(7):996–1002. doi:10.1212/01.wnl.0000215428.46057.3d
  • Montplaisir J, Gagnon J, Fantini M, et al. Polysomnographic diagnosis of idiopathic REM sleep behavior disorder. Movement Dis. 2010;25(13):2044–2051. doi:10.1002/mds.23257
  • Li Z, Chen J, Lin Y, et al. Reduced regional activity and functional connectivity within sensorimotor network in Parkinson’s patients with restless legs syndrome. Mol Pain. 2019;15:1744806919882272. doi:10.1177/1744806919882272
  • Shang S, Zhang H, Feng Y, et al. Region-specific neurovascular decoupling associated with cognitive decline in Parkinson’s disease. Front Aging Neurosci. 2021;13:770528. doi:10.3389/fnagi.2021.770528
  • Power JD, Barnes KA, Snyder AZ, Schlaggar BL, Petersen SE. Spurious but systematic correlations in functional connectivity MRI networks arise from subject motion. Neuroimage. 2012;59(3):2142–2154. doi:10.1016/j.neuroimage.2011.10.018
  • Jia X, Fan W, Wang Z, et al. Progressive prefrontal cortex dysfunction in Parkinson’s disease with probable REM sleep behavior disorder: a 3-year longitudinal study. Front Aging Neurosci. 2021;13:750767. doi:10.3389/fnagi.2021.750767
  • Dauvilliers Y, Schenck CH, Postuma RB, et al. REM sleep behaviour disorder. Nat Rev Dis Primers. 2018;4(1):19. doi:10.1038/s41572-018-0016-5
  • Lövdén M, Fratiglioni L, Glymour M, Lindenberger U, Tucker-Drob EJP. Education and cognitive functioning across the life span. Psychol Sci Public Int. 2020;21(1):6–41. doi:10.1177/1529100620920576
  • Rahayel S, Gaubert M, Postuma RB, et al. Brain atrophy in Parkinson’s disease with polysomnography-confirmed REM sleep behavior disorder. Sleep. 2019;42(6). doi:10.1093/sleep/zsz062
  • Shen C, Wang J, Ma G, et al. Waking-hour cerebral activations in nightmare disorder: a resting-state functional magnetic resonance imaging study. Psychiatry Clin Neurosci. 2016;70(12):573–581. doi:10.1111/pcn.12455
  • Manni R, Terzaghi M, Glorioso M. Motor-behavioral episodes in REM sleep behavior disorder and phasic events during REM sleep. Sleep. 2009;32(2):241–245. doi:10.1093/sleep/32.2.241
  • Boucetta S, Salimi A, Dadar M, Jones BE, Collins DL, Dang-Vu TT. Structural brain alterations associated with rapid eye movement sleep behavior disorder in Parkinson’s Disease. Sci Rep. 2016;6:26782. doi:10.1038/srep26782
  • Eichenlaub JB, van Rijn E, Gaskell MG, et al. Incorporation of recent waking-life experiences in dreams correlates with frontal theta activity in REM sleep. Soc Cogn Affect Neurosci. 2018;13(6):637–647. doi:10.1093/scan/nsy041
  • Sunwoo JS, Cha KS, Byun JI, et al. Abnormal activation of motor cortical network during phasic REM sleep in idiopathic REM sleep behavior disorder. Sleep. 2019;42:2. doi:10.1093/sleep/zsy227
  • De Cock VC, Vidailhet M, Leu S, et al. Restoration of normal motor control in Parkinson’s disease during REM sleep. Brain. 2007;130(Pt 2):450–456. doi:10.1093/brain/awl363
  • Albin RL, Koeppe RA, Chervin RD, et al. Decreased striatal dopaminergic innervation in REM sleep behavior disorder. Neurology. 2000;55(9):1410–1412. doi:10.1212/WNL.55.9.1410
  • Park KM, Lee HJ, Lee BI, Kim SE. Alterations of the brain network in idiopathic rapid eye movement sleep behavior disorder: structural connectivity analysis. Sleep Breath. 2019;23(2):587–593. doi:10.1007/s11325-018-1737-0
  • Alexander GE, Crutcher MD. Functional architecture of basal ganglia circuits: neural substrates of parallel processing. Trends Neurosci. 1990;13(7):266–271. doi:10.1016/0166-2236(90)90107-L
  • Arnaldi D, De Carli F, Picco A, et al. Nigro-caudate dopaminergic deafferentation: a marker of REM sleep behavior disorder? Neurobiol Aging. 2015;36(12):3300–3305. doi:10.1016/j.neurobiolaging.2015.08.025
  • Arnaldi D, Morbelli S, Brugnolo A, et al. Functional neuroimaging and clinical features of drug naive patients with de novo Parkinson’s disease and probable RBD. Parkinsonism Relat Disord. 2016;29:47–53. doi:10.1016/j.parkreldis.2016.05.031
  • Garcia-Diaz AI, Segura B, Baggio HC, et al. Cortical thinning correlates of changes in visuospatial and visuoperceptual performance in Parkinson’s disease: a 4-year follow-up. Parkinsonism Relat Disord. 2018;46:62–68. doi:10.1016/j.parkreldis.2017.11.003
  • Wu L, Liu FT, Ge JJ, et al. Clinical characteristics of cognitive impairment in patients with Parkinson’s disease and its related pattern in (18) F-FDG PET imaging. Hum Brain Mapp. 2018;39(12):4652–4662. doi:10.1002/hbm.24311
  • Schott BH, Wüstenberg T, Lücke E, et al. Gradual acquisition of visuospatial associative memory representations via the dorsal precuneus. Hum Brain Mapp. 2019;40(5):1554–1570. doi:10.1002/hbm.24467
  • Tanglay O, Young IM, Dadario NB, et al. Anatomy and white-matter connections of the precuneus. Brain Imaging Behav. 2021;16(2):574–586.
  • Campabadal A, Inguanzo A, Segura B, et al. Cortical gray matter progression in idiopathic REM sleep behavior disorder and its relation to cognitive decline. Neuroimage Clin. 2020;28:102421. doi:10.1016/j.nicl.2020.102421
  • Oltra J, Campabadal A, Segura B, et al. Disrupted functional connectivity in PD with probable RBD and its cognitive correlates. Sci Rep. 2021;11(1):24351. doi:10.1038/s41598-021-03751-5
  • Tafuri B, Lombardi A, Nigro S, et al. The impact of harmonization on radiomic features in Parkinson’s disease and healthy controls: a multicenter study. Front Neurosci. 2022;16:1012287. doi:10.3389/fnins.2022.1012287
  • Guo X, Tinaz S, Dvornek NC. Characterization of early stage Parkinson’s disease from resting-state fMRI data using a long short-term memory network. Paper presented at: Frontiers in Neuroimaging; 2022.
  • Dvornek N, Ventola P, Pelphrey K, Duncan JJM. Identifying autism from resting-state fMRI using long short-term memory networks. Med Image. 2017;10541:362–370.