Zobrazeno 1 - 10
of 4 170
pro vyhledávání: '"STRIATAL DOPAMINE"'
Autor:
Altanzul Altaisaikhan, Kazufumi Yoshihara, Tomokazu Hata, Noriyuki Miyata, Yasunari Asano, Takafumi Suematsu, Yoshihiro Kadota, Nobuyuki Sudo
Publikováno v:
Physiological Reports, Vol 11, Iss 23, Pp n/a-n/a (2023)
Abstract 1‐Kestose (KES), a dietary fiber and prebiotic carbohydrate, benefits various physiological functions. This study aimed to examine whether diets supplemented with KES over three consecutive generations could significantly affect some host
Externí odkaz:
https://doaj.org/article/e93c52d4a60f41cd8ee014b911dde78f
Akademický článek
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Autor:
Wasserman D, Bindman D, Nesbitt AD, Cash D, Milosevic M, Francis PT, Chaudhuri KR, Leschziner GD, Ferini-Strambi L, Ballard C, Eccles A, Rosenzweig I
Publikováno v:
Nature and Science of Sleep, Vol Volume 13, Pp 1-9 (2021)
Danielle Wasserman,1,2,* Dorothea Bindman,1,* Alexander D Nesbitt,1– 3 Diana Cash,4 Milan Milosevic,5 Paul T Francis,6 K Ray Chaudhuri,7 Guy D Leschziner,1,2 Luigi Ferini-Strambi,8 Clive Ballard,9 Amy Eccles,10 Ivana Rosenzweig1,2 1Sleep and Brain
Externí odkaz:
https://doaj.org/article/497189d1ec014ac4b0313b707d484b67
Autor:
Sarivin Vanan, Xiaoxia Zeng, Sook Yoong Chia, Katarina Varnäs, Mei Jiang, Ke Zhang, Wuan Ting Saw, Parasuraman Padmanabhan, Wei-Ping Yu, Zhi-Dong Zhou, Christer Halldin, Balázs Gulyás, Eng-King Tan, Li Zeng
Publikováno v:
Molecular Brain, Vol 13, Iss 1, Pp 1-15 (2020)
Abstract Vacuolar protein sorting 35 (VPS35) is a major component of the retromer complex that mediates the retrograde transport of cargo proteins from endosomes to the trans-Golgi network. Mutations such as D620N in the VPS35 gene have been identifi
Externí odkaz:
https://doaj.org/article/85c535b2d2c24c6982aab9b8d5a79aef
Publikováno v:
BMC Neurology, Vol 20, Iss 1, Pp 1-7 (2020)
Abstract Background Dopamine transporter (DAT) imaging may enable clinicians to discriminate idiopathic normal pressure hydrocephalus (iNPH) from other parkinsonian disorders. However, a specific pattern of dopaminergic loss in DAT imaging of iNPH pa
Externí odkaz:
https://doaj.org/article/4596447dd2e8477590f88cb9d3694b9a
Publikováno v:
Frontiers in Aging Neuroscience, Vol 14 (2022)
BackgroundCognitive dysfunctions have been reported in multiple system atrophy (MSA). However the underlying mechanisms remain to be elucidated. This study aimed to explore the possible cerebral metabolism associated with domain-specific cognitive pe
Externí odkaz:
https://doaj.org/article/df53f4ca733f4db2a367fd8ca9e67061
Autor:
Jessie Fanglu Fu, Tilman Wegener, Ivan S. Klyuzhin, Julia G. Mannheim, Martin J. McKeown, A. Jon Stoessl, Vesna Sossi
Publikováno v:
NeuroImage: Clinical, Vol 36, Iss , Pp 103246- (2022)
Alterations in different aspects of dopamine processing may exhibit different progressive behaviours throughout the course of Parkinson’s disease. We used a novel data-driven multivariate approach to quantify and compare spatiotemporal patterns rel
Externí odkaz:
https://doaj.org/article/2e3a0b586e1c4056a425c646d5f9a745
Akademický článek
Tento výsledek nelze pro nepřihlášené uživatele zobrazit.
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Publikováno v:
Frontiers in Neuroscience, Vol 14 (2020)
Extracts from Holothuria scabra (HS) have been shown to possess anti-inflammation, anti-oxidant and anti-cancer activities. More recently, it was shown to have neuroprotective potential in Caenorhabditis elegans PD model. Here, we assessed whether HS
Externí odkaz:
https://doaj.org/article/8f040f41e200499b844742ff6f5a2e2c
Autor:
Dong-Mei Wu, Shan Wang, Xin Wen, Xin-Rui Han, Yong-Jian Wang, Min Shen, Shao-Hua Fan, Juan Zhuang, Zi-Feng Zhang, Qun Shan, Meng-Qiu Li, Bin Hu, Chun-Hui Sun, Jun Lu, Yuan-Lin Zheng
Publikováno v:
Cellular Physiology and Biochemistry, Vol 51, Iss 4, Pp 1600-1615 (2018)
Background/Aims: Parkinson’s disease (PD) is a neurodegenerative movement disease with a high annual incidence. Accumulating evidence demonstrates that microRNAs play important roles in the pathogenesis of multiple neurological disorders, including
Externí odkaz:
https://doaj.org/article/0dca6b5fccad4edf9dfc5b6c208cc041