Page 93 - AN-3-1
P. 93
Advanced Neurology Neurophysiology in hypokinetic disorders
doi: 10.1016/j.parkreldis.2019.11.025 Transm (Vienna). 2022;129(12):1427-1433.
31. Todisco M, Cosentino G, Scardina S, et al. Diagnostic and doi: 10.1007/s00702-022-02557-7
prognostic value of external anal sphincter EMG patterns in 40. Sciacca G, Nicoletti A, Mostile G, et al. Blink reflex recovery
multiple system atrophy. Mov Disord. 2022;37(5):1069-1074.
cycle to differentiate progressive supranuclear palsy from
doi: 10.1002/mds.28938 corticobasal syndrome. Eur J Neurol. 2018;25(8):1100-e85.
32. Shirota Y, Hanajima R, Shimizu T, Terao Y, Tsuji S, Ugawa Y. doi: 10.1111/ene.13673
Quantitative evaluation of cerebellar function in multiple 41. Valls-Sole J, Valldeoriola F, Tolosa E, Marti MJ. Distinctive
system atrophy with transcranial magnetic stimulation. abnormalities of facial reflexes in patients with progressive
Cerebellum. 2022;21:219-224.
supranuclear palsy. Brain. 1997;120:1877-1883.
doi: 10.1007/s12311-021-01293-0
doi: 10.1093/brain/120.10.1877
33. Honda M, Shimizu T, Moriyasu S, et al. Impaired long-term 42. Kızıltan ME, Gunduz A, Kızıltan G, Tekeoğlu A,
potentiation-like motor cortical plasticity in progressive Sohtaoğlu M. Brainstem and spinal reflex studies in patients
supranuclear palsy. Clin Neurophysiol. 2023;155:99-106.
with primary progressive freezing of gait. J Neurol Sci.
doi: 10.1016/j.clinph.2023.07.011 2014;343:51-55.
34. Fisicaro F, Lanza G, Cantone M, et al. Clinical and doi: 10.1016/j.jns.2014.05.018
electrophysiological hints to TMS in de novo patients with 43. Szmidt-Salkowska E, Gawel M, Jamrozik Z, Salkowska-
parkinson’s disease and progressive supranuclear palsy. Wanat J, Gawel D, Kaminska A. Diagnostic value of blink
J Pers Med. 2020;12;10(4):274.
reflex in multisystem atrophy, progressive supranuclear
doi: 10.3390/jpm10040274 palsy, and Parkinson disease. Neurol Neurochir Pol.
2016;50:336-341.
35. Di Stasio F, Suppa A, Marsili L, et al. Corticobasal syndrome:
Neuroimaging and neurophysiological advances. Eur J doi: 10.1016/j.pjnns.2016.06.001
Neurol. 2019;26(5):701-e52.
44. Chen CC, Yeh CH, Chan HL, et al. Subthalamic nucleus
doi: 10.1111/ene.13928 oscillations correlate with vulnerability to freezing of
gait in patients with Parkinson’s disease. Neurobiol Dis.
36. Barcelon EA, Mukaino T, Yokoyama J, et al. Grand total EEG
score can differentiate parkinson’s disease from parkinson- 2019;132:104605.
related disorders. Front Neurol. 2019;10:398. doi: 10.1016/j.nbd.2019.104605
doi: 10.3389/fneur.2019.00398 45. Muthukrishnan N, Abbas JJ, Shill HA, Krishnamurthi N.
Cueing paradigms to improve gait and posture in Parkinson’s
37. Sciacca G, Mostile G, Nicoletti A, et al. Cut-off scores of blink
reflex recovery cycle to differentiate atypical parkinsonisms. disease: A narrative review. Sensors (Basel). 2019;9(24):5468.
Eur J Neurol. 2020;27(11):e68. doi: 10.3390/s19245468
doi: 10.1111/ene.14392 46. Zampogna A, Mileti I, Martelli F, et al. Early balance impairment
in Parkinson’s Disease: Evidence from robot-assisted axial
38. Sciacca G, Mostile G, Disilvestro I, et al. Asymmetry index
of blink reflex recovery cycle differentiates parkinson’s rotations. Clin Neurophysiol. 2021;132:2422-2430.
disease from atypical parkinsonian syndromes. J Neurol. doi: 10.1016/j.clinph.2021.06.023
2020;267(6):1859-1863.
47. Di Biase L, Raiano L, Caminiti ML, Pecoraro PM, Di
doi: 10.1007/s00415-020-09900-6 Lazzaro V. Parkinson’s disease wearable gait analysis:
Kinematic and dynamic markers for diagnosis. Sensors
39. Donzuso G, Sciacca G, Luca A, et al. Corticobasal syndrome
and Parkinson’s disease at the beginning: Asymmetrical (Basel). 2022;22(22):8773.
patterns of MRI and blink reflex for early diagnosis. J Neural doi: 10.3390/s22228773
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