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Journal of Alzheimers Disease & Parkinsonism received 3123 citations as per Google Scholar report
Articles published in Journal of Alzheimers Disease & Parkinsonism have been cited by esteemed scholars and scientists all around the world. Journal of Alzheimers Disease & Parkinsonism has got h-index 25, which means every article in Journal of Alzheimers Disease & Parkinsonism has got 25 average citations.
Following are the list of articles that have cited the articles published in Journal of Alzheimers Disease & Parkinsonism.
2023 | 2022 | 2021 | 2020 | 2019 | 2018 | 2017 | 2016 | |
---|---|---|---|---|---|---|---|---|
Year wise published articles |
36 | 33 | 60 | 30 | 45 | 44 | 107 | 89 |
Year wise citations received |
123 | 389 | 489 | 425 | 374 | 263 | 237 | 253 |
Journal total citations count | 3123 |
Journal impact factor | 2.04 |
Journal 5 years impact factor | 3.14 |
Journal cite score | 10.01 |
Journal h-index | 25 |
Journal h-index since 2018 | 22 |
KoÅosowska, K., Maciejak, P., Szyndler, J., TurzyÅska, D., Sobolewska, A., & PÅaźnik, A. (2016). The role of IL-1β and glutamate in the effects of lipopolysaccharide on the hippocampal electrical kindling of seizures. Journal of Neuroimmunology, 298, 146-152. |
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Hopp, S. C., Royer, S. E., D’Angelo, H. M., Kaercher, R. M., Fisher, D. A., & Wenk, G. L. (2015). Differential neuroprotective and anti-inflammatory effects of L-type voltage dependent calcium channel and ryanodine receptor antagonists in the substantia nigra and locus coeruleus. Journal of Neuroimmune Pharmacology, 10(1), 35-44. |
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Gallart-Palau, X., Serra, A., Qian, J., Chen, C. P., Kalaria, R. N., & Sze, S. K. (2015). Temporal lobe proteins implicated in synaptic failure exhibit differential expression and deamidation in vascular dementia. Neurochemistry international, 80, 87-98. |
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Schreiner, S. J., Liu, X., Gietl, A. F., Wyss, M., Steininger, S. C., Gruber, E., ... & Buck, A. (2014). Regional Fluid-Attenuated Inversion Recovery (FLAIR) at 7 Tesla correlates with amyloid beta in hippocampus and brainstem of cognitively normal elderly subjects. Frontiers in aging neuroscience, 6. |
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Wu, L., Walas, S., Leung, W., Sykes, D. B., Wu, J., Lo, E. H., & Lok, J. (2015). Neuregulin1-β decreases IL-1β-induced neutrophil adhesion to human brain microvascular endothelial cells. Translational stroke research, 6(2), 116-124. |
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Bardou, I., Kaercher, R. M., Brothers, H. M., Hopp, S. C., Royer, S., & Wenk, G. L. (2014). Age and duration of inflammatory environment differentially affect the neuroimmune response and catecholaminergic neurons in the midbrain and brainstem. Neurobiology of aging, 35(5), 1065-1073. |
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Singhal, G., Jaehne, E. J., Corrigan, F., Toben, C., & Baune, B. T. (2014). Inflammasomes in neuroinflammation and changes in brain function: a focused review. |
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ALa, N., JCNa, A., DSb, N., TILa, A., & ETa, K. Research & Reviews: Journal of Medical and Health Sciences. |
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Clionsky, M., & Clionsky, E. (2014). Psychometric equivalence of a paper-based and computerized (iPad) version of the memory orientation screening test (MOST®). The Clinical Neuropsychologist, 28(5), 747-755. |
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Bandopadhyay, S. A concise overview of the role played by Reactive Oxygen Species in Alzheimer’s disease. |
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Jarvela, T. S., Lam, H. A., Helwig, M., Lorenzen, N., Otzen, D. E., McLean, P. J., ... & Lindberg, I. (2016). The neural chaperone proSAAS blocks α-synuclein fibrillation and neurotoxicity. Proceedings of the National Academy of Sciences, 113(32), E4708-E4715. |
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Garcia-Huerta, P., Bargsted, L., Rivas, A., Matus, S., & Vidal, R. L. (2016). ER chaperones in neurodegenerative disease: Folding and beyond. Brain research, 1648, 580-587. |
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Oroz, J., Kim, J. H., Chang, B. J., & Zweckstetter, M. (2017). Mechanistic basis for the recognition of a misfolded protein by the molecular chaperone Hsp90. Nature Structural & Molecular Biology. |
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Dobrowsky, R. T. (2016). Targeting the Diabetic Chaperome to Improve Peripheral Neuropathy. Current Diabetes Reports, 16(8), 1-10. |
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Sundarraj, K., Raghunath, A., Panneerselvam, L., & Perumal, E. (2017). Iron oxide nanoparticles modulate heat shock proteins and organ specific markers expression in mice male accessory organs. Toxicology and Applied Pharmacology. |
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R Woodford, M., M Dunn, D., G Ciciarelli, J., Beebe, K., Neckers, L., & Mollapour, M. (2016). Targeting Hsp90 in Non-Cancerous Maladies. Current topics in medicinal chemistry, 16(25), 2792-2804. |
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ALa, N., JCNa, A., DSb, N., TILa, A., & ETa, K. Research & Reviews: Journal of Medical and Health Sciences. |
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Inda, C., Bolaender, A., Wang, T., R Gandu, S., & Koren, I. I. I. (2016). Stressing Out Hsp90 in Neurotoxic Proteinopathies. Current topics in medicinal chemistry, 16(25), 2829-2838. |
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Singh, B. M., Mohanvir, K., Nishit, G., & Kumar, B. V. RESEARCH AND REVIEWS: JOURNAL OF MEDICAL AND HEALTH SCIENCES. |
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Bolshette, N., Thakur, K. K., Trandafir, C., & Istrate, A. (2016). The ubiquitin proteasomal system: a potential target for the management of Alzheimer's. |
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