Citations Report

Journal of Experimental Stroke & Translational Medicine : Citations & Metrics Report

Articles published in Journal of Experimental Stroke & Translational Medicine have been cited by esteemed scholars and scientists all around the world.

Journal of Experimental Stroke & Translational Medicine has got h-index 14, which means every article in Journal of Experimental Stroke & Translational Medicine has got 14 average citations.

Following are the list of articles that have cited the articles published in Journal of Experimental Stroke & Translational Medicine.

  2022 2021 2020 2019 2018

Total published articles

20 36 94 0 2

Citations received as per Google Scholar, other indexing platforms and portals

135 136 85 89 73
Journal total citations count 1012
Journal impact factor 4.88
Journal 5 years impact factor 3.35
Journal cite score 3.28
Journal h-index 14
Journal h-index since 2019 11
Journal Impact Factor 2020 formula
IF= Citations(y)/{Publications(y-1)+ Publications(y-2)} Y= Year
Journal 5-year Impact Factor 2020 formula
Citations(2016 + 2017 + 2018 + 2019 + 2020)/
{Published articles(2016 + 2017 + 2018 + 2019 + 2020)}
Journal citescore
Citescorey = Citationsy + Citationsy-1 + Citationsy-2 + Citations y-3 / Published articlesy + Published articlesy-1 + Published articlesy-2 + Published articles y-3
  • Olson DM, Kofke WA, O’Phelan K, Gupta PK, Figueroa SA et al(2015 ) Second Neurocritical Care Research Conference Investigators. Global monitoring in the neurocritical care unit. Neurocritical care. Jun 1;22(3):337-47. View at Publisher | View at Google Scholar
  • Hossmann KA (2010)The bistable network model of brain ischemia. J. Exp, Stroke Transl. Med 3:56-8. View at Publisher | View at Google Scholar
  • Koncz I, Szász BK, Szabó SI, Kiss JP, Mike Á, et al(2014 ) The tricyclic antidepressant desipramine inhibited the neurotoxic, kainate-induced [Ca 2+] i increases in CA1 pyramidal cells in acute hippocampal slices. Brain research bulletin. 104:42-51. View at Publisher | View at Google Scholar
  • DeGracia DJ, Tri Anggraini F, Taha DT, Huang ZF(2014). Inductive and Deductive Approaches to Acute Cell Injury. International Scholarly Research Notices. View at Publisher | View at Google Scholar
  • Cala S, Chen X. Carol Brenner(2010 ) Circ Res 106(9):1468-78. View at Publisher | View at Google Scholar
  • Wells A, Abou-Hamden A(2015) Neurosurgery Neurosurgery in Ischemic Stroke. PanVascular Medicine. :2771-98. View at Publisher | View at Google Scholar
  • Wellsa A, Abou-Hamdenb A(2010) Neurosurgery in Ischemic Stroke. View at Publisher | View at Google Scholar
  • Lambertsen KL, Biber K, Finsen B (2012 )Inflammatory cytokines in experimental and human stroke. Journal of Cerebral Blood Flow & Metabolism. 32(9):1677-98. View at Publisher | View at Google Scholar
  • Belayev L, Khoutorova L, Atkins KD, Eady TN, Hong S et al(2011 )Docosahexaenoic acid therapy of experimental ischemic stroke. Translational stroke research. 2(1):33-41. View at Publisher | View at Google Scholar
  • Guo RB, Wang GF, Zhao AP, Gu J, Sun XL et al (2012 ) Paeoniflorin protects against ischemia-induced brain damages in rats via inhibiting MAPKs/NF-κB-mediated inflammatory responses. PLoS One 7(11):e49701. View at Publisher | View at Google Scholar
  • Guo RB, Wang GF, Zhao AP, Gu J, Sun XLet al (2012) Paeoniflorin protects against ischemia-induced brain damages in rats via inhibiting MAPKs/NF-κB-mediated inflammatory responses. PLoS One 7(11):e49701. View at Publisher | View at Google Scholar
  • Moxon-Emre I, Schlichter LC(2011 ) Neutrophil depletion reduces blood-brain barrier breakdown, axon injury, and inflammation after intracerebral hemorrhage. Journal of Neuropathology & Experimental Neurology 70(3):218-35. View at Publisher | View at Google Scholar
  • T Ronaldson P, P Davis T(2012 ) Blood-brain barrier integrity and glial support: mechanisms that can be targeted for novel therapeutic approaches in stroke. Current pharmaceutical design. 18(25):3624-44. View at Publisher | View at Google Scholar
  • da Fonseca AC, Matias D, Garcia C, Amaral R, Geraldo LH, Freitas C, Lima FR(2014 ) The impact of microglial activation on blood-brain barrier in brain diseases. Frontiers in cellular neuroscience 8. View at Publisher | View at Google Scholar
  • Coultrap SJ, Vest RS, Ashpole NM, Hudmon A, Bayer KU(2011 ) CaMKII in cerebral ischemia. Acta pharmacologica Sinica 32(7):861-72. View at Publisher | View at Google Scholar
  • Dhami KS, Churchward MA, Baker GB, Todd KG (2013 )Fluoxetine and citalopram decrease microglial release of glutamate and D-serine to promote cortical neuronal viability following ischemic insult. Molecular and Cellular Neuroscience. 56:365-74. View at Publisher | View at Google Scholar
  • Ronaldson PT, Davis TP (2013 )Targeted drug delivery to treat pain and cerebral hypoxia. Pharmacological reviews. 65(1):291-314. View at Publisher | View at Google Scholar
  • Thompson BJ, Ronaldson PT (2014 )Chapter Six-Drug Delivery to the Ischemic Brain. Advances in Pharmacology 71:165-202. View at Publisher | View at Google Scholar
  • View at Publisher | View at Google Scholar
  • Low PC, Manzanero S, Mohannak N, Narayana VK, Nguyen TH (2014 ) PI3Kδ inhibition reduces TNF secretion and neuroinflammation in a mouse cerebral stroke model. Nature communications. 5. View at Publisher | View at Google Scholar
  • Hossain MI, Kamaruddin MA, Cheng HC(2012 ) Aberrant regulation and function of Src family tyrosine kinases: Their potential contributions to glutamate‐induced neurotoxicity. Clinical and Experimental Pharmacology and Physiology. 39(8):684-91. View at Publisher | View at Google Scholar
  • Mu S, OuYang L, Liu B, Zhu Y, Li K et al(2011 ) Protective effect of melatonin on 3-NP induced striatal interneuron injury in rats. Neurochemistry international. 59(2):224-34. View at Publisher | View at Google Scholar
  • Watts LT, Lloyd R, Garling RJ, Duong T(2013 ) Stroke neuroprotection: targeting mitochondria. Brain science 3(2):540-60. View at Publisher | View at Google Scholar
  • Ma Y, Feng Q, Ma J, Feng Z, Zhan M, et al(2013 ) Melatonin ameliorates injury and specific responses of ischemic striatal neurons in rats. Journal of Histochemistry & Cytochemistry. 61(8):591-605. View at Publisher | View at Google Scholar
  • Thompson BJ, Sanchez-Covarrubias L, Slosky LM, Zhang Y, Laracuente ML (2014 ) Hypoxia/reoxygenation stress signals an increase in organic anion transporting polypeptide 1a4 (Oatp1a4) at the blood–brain barrier: relevance to CNS drug delivery. Journal of Cerebral Blood Flow & Metabolism. 34(4):699-707. View at Publisher | View at Google Scholar
  • Arsene D, Vasilescu F, Toader C, Balan A, Popa C, Ardeleanu C(2011 ) Clinico-pathological correlations in fatal ischemic stroke. An immunohistochemical study of human brain penumbra. Rom J Morphol Embryol. 52(1):29-38. View at Publisher | View at Google Scholar
  • Mu S, OuYang L, Liu B, Zhu Y, Li K et al(2011 ) Preferential interneuron survival in the transition zone of 3‐NP‐induced striatal injury in rats. Journal of neuroscience research. 89(5):744-54. View at Publisher | View at Google Scholar
  • Kaur P, Liu F, Tan JR, Lim KY, Sepramaniam S, Karolina DS, Armugam A, Jeyaseelan K(2013 ) Non-coding RNAs as potential neuroprotectants against ischemic brain injury. Brain sciences. 3(1):360-95. View at Publisher | View at Google Scholar
  • Medvedeva EV, Dmitrieva VG, Povarova OV, Limborska SA, Skvortsova VI, Myasoedov NF, Dergunova LV(2014 )The peptide semax affects the expression of genes related to the immune and vascular systems in rat brain focal ischemia: genome-wide transcriptional analysis. BMC genomics 15(1):228. View at Publisher | View at Google Scholar
  • Gaire BP, Kwon OW, Park SH, Chun KH, Kim SY, Shin DY, Choi JW(2015 ) Neuroprotective effect of 6-paradol in focal cerebral ischemia involves the attenuation of neuroinflammatory responses in activated microglia. PloS one 10(3):e0120203. View at Publisher | View at Google Scholar
  • Semple BD, Trivedi A, Gimlin K, Noble-Haeusslein LJ(2015 ) Neutrophil elastase mediates acute pathogenesis and is a determinant of long-term behavioral recovery after traumatic injury to the immature brain. Neurobiology of disease. 74:263-80. View at Publisher | View at Google Scholar
  • Frosini M, Contartese A, Zanardi I, Travagli V, Bocci V(2012 ) Selective ozone concentrations may reduce the ischemic damage after a stroke. Free radical research. 46(5):612-8. View at Publisher | View at Google Scholar
  • Medvedeva EV, Dmitrieva VG, Povarova OV, Limborska SA, Skvortsova VI,et al (2013 ) Effect of semax and its C-terminal fragment Pro-Gly-Pro on the expression of VEGF family genes and their receptors in experimental focal ischemia of the rat brain. Journal of Molecular Neuroscience 49(2):328-33. View at Publisher | View at Google Scholar
  • Medvedeva EV, Dmitrieva VG, Povarova OV, Limborska SA, Skvortsova VI,et al (2013 ) Effect of semax and its C-terminal fragment Pro-Gly-Pro on the expression of VEGF family genes and their receptors in experimental focal ischemia of the rat brain. Journal of Molecular Neuroscience 49(2):328-33. View at Publisher | View at Google Scholar
  • Rennie K, Haukenfrers J, Ribecco-Lutkiewicz M, Ly D, Jezierski A et al (2013 )Therapeutic potential of amniotic fluid-derived cells for treating the injured nervous system. Biochemistry and Cell Biology. 91(5):271-86. View at Publisher | View at Google Scholar
  • Kasinathan N, Jagani HV, Alex AT, Volety SM, Rao JV(2015 ) Strategies for drug delivery to the central nervous system by systemic route. Drug delivery 22(3):243-57. View at Publisher | View at Google Scholar
  • Lekic T, Krafft PR, Coats JS, Obenaus A, Tang J, Zhang JH(2011 ) Infratentorial strokes for posterior circulation folks: clinical correlations for current translational therapeutics. Translational stroke research. 2(2):144-51. View at Publisher | View at Google Scholar
  • Belayev L(2012 ) Overcoming barriers to translation from experimental stroke models. InTranslational Stroke Research View at Publisher | View at Google Scholar
  • Wei N, Xiao L, Xue R, Zhang D, Zhou J, et al(2016 ) MicroRNA-9 mediates the cell apoptosis by targeting Bcl2l11 in ischemic stroke. Molecular neurobiology. 53(10):6809-17. View at Publisher | View at Google Scholar
  • Cui W, Liu R, Jin H, Lv P, Sun Y, et al (2016 ) pH gradient difference around ischemic brain tissue can serve as a trigger for delivering polyethylene glycol-conjugated urokinase nanogels. Journal of Controlled Release. 225:53-63. View at Publisher | View at Google Scholar
  • Xiong D, Deng Y, Huang B, Yin C, Liu B,(2016 )Icariin attenuates cerebral ischemia–reperfusion injury through inhibition of inflammatory response mediated by NF-κB, PPARα and PPARγ in rats. International immunopharmacology. 30:157-62. View at Publisher | View at Google Scholar
  • Zhang Y, Li H, Huang M, Chu K, Xu W,(2014 ) Neuroprotective effects of Gualou Guizhi decoction in vivo and in vitro. Journal of ethnopharmacology. Dec 2;158:76-84. View at Publisher | View at Google Scholar
  • Guo Xiaoming, Ke Kaifu(2011) Evaluation of ischemic penumbra in patients with acute stroke. International Journal of Cerebrovascular Diseases 19 (9): 682-6. View at Publisher | View at Google Scholar
  • Expression of VEGF in Brain Cells of Neonatal Rats with Hypoxic-ischemic Brain Injury and Its Relationship with Apoptosis. Journal of China Medical University. 40 (6): 524-7. View at Publisher | View at Google Scholar
  • Adesanya TA, Sullivan RC, Stawicki SP, Evans DC(2014) Nutrition in Traumatic Brain Injury: Focus on the Immune Modulating Supplements. View at Publisher | View at Google Scholar
  • Mannava RS, Murta V. THE STUDY OF GLIAL SCAR FORMATION AFTER BRAIN ISCHEMIA USING IN VITRO STRATEGIES. View at Publisher | View at Google Scholar
  • Lie JD(2016;1)Early Management of Acute Ischemic Stroke: Focus on IV tPA and Timely Reperfusion. US Pharm. 1:20. View at Publisher | View at Google Scholar
  • Moxon-Emre I. White matter damage and inflammation in rat models of ischemic and hemorrhagic stroke (Doctoral dissertation, University of Toronto). View at Publisher | View at Google Scholar
  • Salomão Macedo Salinet A. The natural history of the cerebral blood flow regulation after acute ischaemic stroke (Doctoral dissertation, University of Leicester). View at Publisher | View at Google Scholar
  • Thompson B (2014)Hypoxia/Reoxygenation Stress Modulates Atorvastatin Transport at the Blood-Brain Barrier: A Role for Organic Anion Transporting Polypeptide. View at Publisher | View at Google Scholar