Page 44 - AN-2-4
P. 44
Advanced Neurology Evoked potential response in parkinsonian syndromes
https://doi.org/10.1016/j.visres.2004.06.009 https://doi.org/10.1034/j.1600-0404.2000.101002111.x
12. Savy C, Simon A, Nguyenlegros J, 1991, Spatial geometry 24. Gibb WR, Luthert PJ, Marsden CD, 1989, Corticobasal
of the dopamine innervation in the avascular area of the degeneration, Brain, 112: 1171–1192.
human fovea, Visual Neurosci, 7: 487–498.
https://doi.org/10.1093/brain/awq173
https://doi.org/10.1017/S0952523800009779
25. Bak TH, Caine D, Hearn VC, et al., 2006, Visuospatial
13. Harnois C, Di PT, 1990, Decreased dopamine in the retinas functions in atypical Parkinsonian syndromes, J Neurol
of patients with Parkinson’s disease, Invest Ophthalmol Neurosurg Psychiatry, 77: 454–456.
Visual Sci, 31: 2473–2475. https://doi.org/10.1136/jnnp.2005.068239
14. Miri S, Glazman S, Mylin L, et al., 2016, A combination 26. Hassan DM, Shalash A, 2017, Auditory brainstem evoked
of retinal morphology and visual electrophysiology responses and vestibular evoked myogenic potentials:
testing increases diagnostic yield in Parkinson’s disease, Potential biomarkers in Parkinson’s disease, Egypt J
Parkinsonism Relat Disord, 1:134–137. Otolaryngol, 33: 508–517.
https://doi.org/10.1016/j.parkreldis.2015.09.015 https://doi.org/10.4103/1012-5574.206023
15. Mart´ıneznavarrete GC, Mart´ınnieto J, Esteverudd J, et al., 27. Shalash AS, Hassan DM, Elrassas HH, et al., 2017, Auditory-
2007, Alpha synuclein gene expression profile in the retina and vestibular-evoked potentials correlate with motor and
of vertebrates, Mol Vis, 13: 949–961. non-motor features of Parkinson’s disease, Front Neurol,
16. Ma X, Li S, Zheng B, et al., 2023, Retinal structure 8: 55.
abnormalities in Parkinson’s disease and atypical https://doi.org/10.3389/fneur.2017.00055
parkinsonism, Biomolecules, 13: 218.
28. Alexa D, Alexa L, Popa L, et al., 2013, Brainstem auditory
https://doi.org/10.3390/biom13020218 evoked potentials in Parkinson’s disease, Rom J Neurol, 12:
17. Ortuño-Lizarán I, Sánchez-Sáez X, Lax P, et al., 2020, 198–201.
Dopaminergic retinal cell loss and visual dysfunction in https://doi.org/10.37897/RJN.2013.4.7
Parkinson’s disease, Ann Neurol, 88: 893–906.
29. Venhovens J, Meulstee J, Bloem BR, et al., 2016,
https://doi.org/10.1002/ana.25897 Neurovestibular analysis and falls in Parkinson’s disease and
18. Ahn J, Lee JY, Kim TW, et al., 2018, Retinal thinning atypical parkinsonism, Eur J Neurosci, 43: 1636–1646.
associates with nigral dopaminergic loss in de novo https://doi.org/10.1111/ejn.13253
Parkinson’s disease, Neurology, 91: e1003–12.
30. Akil CM, Weber SN, Park SN, et al., 2008, Localization
https://doi.org/10.1212/WNL.0000000000006157 of synucleins in the mammalian cochlea, J Assoc Res
19. Murueta-Goyena A, Del Pino R, Galdós M, et al., 2021, Otoloaryngol, 9: 452–463.
Retinal thickness predicts the risk of cognitive decline in htttps://doi.org/10.1007/s10162-008-0134-y
Parkinson’s disease, Ann Neurol, 89: 165–176.
31. Carpenter M, 1985, Core Text of Neuroanatomy, Baltimore,
https://doi.org/10.1002/ana.25944 MD: Williams and Wilkins, p137–149.
20. Zhou Y, Zhao J, Hou Y, et al., 2019, Dopaminergic pathway 32. Yeterian EH, Pandya DN, 1998, Corticostriatal connections
and primary visual cortex are involved in the freezing of gait of the superior temporal region in rhesus monkeys, J Comp
in Parkinson’s disease: A PET-CT study, Neuropsychiatr Dis Neurol, 399: 384–402.
Treat, 15: 1905–1914.
https://doi.org/10.1002/(SICI)1096-9861(19980928)
https://doi.org/10.2147/NDT.S197879 399:3<384:AID-CNE7>3.0.CO;2-X
21. Kawabata K, Ohdake R, Watanabe H, et al., 2020, 33. Selemon LD, Goldman-Rakic PS, 1985, Longitudinal
Visuoperceptual disturbances in Parkinson’s disease, Clin topography and interdigitation of corticostriatal projections
Park Relat Disord, 3: 100036. in the rhesus monkey, J Neurosci, 5: 776–794.
https://doi.org/10.1016/j.prdoa.2020.100036 https://doi.org/10.1523/JNEUROSCI.05-03-00776.1985
22. Weil RS, Schrag AE, Warren JD, et al., 2016, Visual 34. Shammah-Lagnado SJ, Alheid GF, Heimer L, 1996, Efferent
dysfunction in Parkinson’s disease, Brain, 139: 2827–2843. connections of the caudal part of the globus pallidus in the
rat, J Comp Neurol, 376: 489–507.
https://doi.org/10.1093/brain/aww175
23. Abele M, Schulz JB, Bu¨rk K, et al., 2000, Evoked potentials https://doi.org/10.1002/(SICI)1096-9861(19961216)
in multiple system atrophy (MSA), Acta Neurol Scand, 376:3<489:AID-CNE10>3.0.CO;2-H
101: 111–115. 35. Uematsu D, Hamada J, Gotoh F, 1987, Brainstem auditory
Volume 2 Issue 4 (2023) 13 https://doi.org/10.36922/an.1907

