Page 92 - AN-3-1
P. 92

Advanced Neurology                                                  Neurophysiology in hypokinetic disorders



               of different hand positions to assess upper limb rest tremor.   2021;132(10):2685-2692.
               Mov Disord. 2019;34(4):575-579.
                                                                  doi: 10.1016/j.clinph.2021.05.032
               doi: 10.1002/mds.27648
                                                               20.  Moriyasu S, Shimizu T, Honda M, Ugawa Y, Hanajima R.
            9.   Wilken M, Rossi M, Rivero AD, Hallett M, Merello M.   Motor  cortical  plasticity  and  its  correlation  with  motor
               Re-emergent tremor provocation.  Parkinsonism Relat   symptoms  in Parkinson’s disease.  ENeurologicalSci.
               Disord. 2019;66:241-244.                           2022;29:100422.
               doi: 10.1016/j.parkreldis.2019.08.015              doi: 10.1016/j.ensci.2022.100422
            10.  Wilken  M,  Rossi  MD,  Rivero  AD,  et al.  Latency  of   21.  Ginanneschi F, Messa LV, Battisti C, Rossi A. Changes in
               re-emergent tremor in Parkinson’s disease is influenced by   corticomotor pathway excitability after exercise training in
               levodopa. Parkinsonism Relat Disord. 2019;61:166-169.  Parkinson’s disease. Neurol Sci. 2021;42(8):3375-3381.
               doi: 10.1016/j.parkreldis.2018.10.019              doi: 10.1007/s10072-020-04960-y
            11.  Celicanin M, Harrison AP, Kvistgaard Olsen J, et al. Probing   22.  Tzvetanov P, Lisichkov I, Rousseff RT, Hegde V, Kostadinov S.
               motor dynamics at the muscle level-Acoustic myography in   Abnormality of contingent negative variation correlates with
               Parkinson’s disease. Physiol Rep. 2023;11(6):e15631.  parkinson’s disease severity. Clin Neurosci. 2022;19(7-9):71-76.
               doi: 10.14814/phy2.15631                        23.  Zang NA, Schneider M, Weiss D. Cortical mechanisms of
            12.  Vucic S, Stanley Chen KH, Kiernan MC,  et al. Clinical   movement recovery after freezing in Parkinson’s disease.
               diagnostic utility of transcranial magnetic stimulation   Neurobiol Dis. 2022;174:105871.
               in neurological disorders. Updated report of an IFCN      doi: 10.1016/j.nbd.2022.105871
               committee. Clin Neurophysiol. 2023;150:131-175.
                                                               24.  Karimi  F, Niu J, Gouweleeuw K, Almeida Q,  Jiang N.
               doi: 10.1016/j.clinph.2023.03.010                  Movement-related EEG signatures associated with freezing
            13.  Khedr EM, Lefaucheur JP, Hasan AM, Osama K. Are there   of gait in Parkinson’s disease: An integrative analysis. Brain
               differences in cortical excitability between akinetic-rigid   Commun. 2021;3(4):fcab277.
               and tremor-dominant subtypes of Parkinson’s disease?      doi: 10.1093/braincomms/fcab277
               Neurophysiol Clin. 2021;51(5):443-453.
                                                               25.  Betrouni N, Delval A, Chaton L, et al. Electroencephalography-
               doi: 10.1016/j.neucli.2021.08.002                  based machine learning for cognitive profiling in Parkinson’s
            14.  Leodori G, Belvisi D, De Bartolo MI,  et al. Re-emergent   disease: Preliminary results. Mov Disord. 2019;34(2):210-217.
               tremor in parkinson’s disease: the role of the motor cortex.      doi: 10.1002/mds.27528
               Mov Disord. 2020;35(6):1002-1011.
                                                               26.  Waninger S, Berka C, Stevanovic Karic M,  et al.
               doi: 10.1002/mds.28022                             Neurophysiological biomarkers of parkinson’s disease.
            15.  Leodori G, De Bartolo MI, Fabbrini A, et al. The role of the   J Parkinsons Dis. 2020;10(2):471-480.
               motor cortex in tremor suppression in parkinson’s disease.      doi: 10.3233/JPD-191844
               J Parkinsons Dis. 2022;12(6):1957-1963.
                                                               27.  Farashi S, Khazaei M. Effect of levodopa medication on human
               doi: 10.3233/JPD-223316                            brain connectome in parkinson’s disease-a combined graph
            16.  Ammann C, Dileone M, Pagge C, et al. Cortical disinhibition   theory and EEG study. Clin EEG Neurosci. 53(6):562-571.
               in Parkinson’s disease. Brain. 2020;5;143(11):3408-3421.     doi: 10.1177/15500594221085552
               doi: 10.1093/brain/awaa274                      28.  Donzuso G, Sciacca G, Rascunà C,  et al. Structural
            17.  Shirota Y, Ohminami S, Tsutsumi R, et al. Increased facilitation   MRI substrate of long-duration response to levodopa
               of the primary motor cortex in de novo Parkinson’s disease.   in parkinson’s  disease: An exploratory study.  J  Neurol.
               Parkinsonism Relat Disord. 2019;66:125-129.        2021;268(11):4258-4264.
               doi: 10.1016/j.parkreldis.2019.07.022              doi: 10.1007/s00415-021-10550-5
            18.  Guerra A, Suppa A, D’Onofrio V, et al. Abnormal cortical   29.  Quattrone A, Zappia M, Aguglia U,  et al. The subacute
               facilitation and L-dopa-induced dyskinesia in Parkinson’s   levodopa test  for evaluating  long-duration  response in
               disease. Brain Stimul. 2019;12(6):1517-1525.       Parkinson’s disease. Ann Neurol. 1995;38:389-395.
               doi: 10.1016/j.brs.2019.06.012                     doi: 10.1002/ana.410380308
            19.  Saravanamuttu J, Radhu N, Udupa K, Baarbé J, Gunraj C,   30.  Todisco M, Alfonsi E, Isaias IU,  et al. Vocal cord
               Chen R. Impaired motor cortical facilitatory-inhibitory   electromyographic correlates of stridor in multiple system
               circuit interaction in Parkinson’s disease. Clin Neurophysiol.   atrophy phenotypes. Parkinsonism Relat Disord. 2020;70:31-35.


            Volume 3 Issue 1 (2024)                         10                        https://doi.org/10.36922/an.1961
   87   88   89   90   91   92   93   94   95   96   97