1. Physical exercise prevents memory impairment in an animal model of hypertension through modulation of CD39 and CD73 activities and A2A receptor expression
    Andréia Machado Cardoso et al, 2019, Journal of Hypertension CrossRef
  2. Microarray expression profiles of genes in lung tissues of rats subjected to focal cerebral ischemia-induced lung injury following bone marrow-derived mesenchymal stem cell transplantation
    Yue Hu et al, 2017, International Journal of Molecular Medicine CrossRef
  3. RatDEGdb: a knowledge base of differentially expressed genes in the rat as a model object in biomedical research
    I. V. Chadaeva et al, 2023, Vavilov Journal of Genetics and Breeding CrossRef
  4. Analysis of genes linked to depressive‑like behaviors in interleukin‑18‑deficient mice: Gene expression profiles in the brain
    Kyosuke Yamanishi et al, 2019, Biomedical Reports CrossRef
  5. Effects of Piper sarmentosum on Metabolic Syndrome and Its Related Complications: A Review of Preclinical Evidence
    Sophia Ogechi Ekeuku et al, 2021, Applied Sciences CrossRef
  6. MicroRNA network changes in the brain stem underlie the development of hypertension
    Danielle DeCicco et al, 2015, Physiological Genomics CrossRef
  7. Host genetics and diet composition interact to modulate gut microbiota and predisposition to metabolic syndrome in spontaneously hypertensive stroke‐prone rats
    Arashdeep Singh et al, 2019, The FASEB Journal CrossRef
  8. Transcriptomic Profiling Reveals the Antiapoptosis and Antioxidant Stress Effects of Fos in Ischemic Stroke
    Qiancheng Mu et al, 2021, Frontiers in Neurology CrossRef
  9. The alternative 3′ splice site of GPNMB may promote neuronal survival after neonatal hypoxic–ischemic encephalopathy injury
    Guo‐Jiao Chen et al, 2022, Ibrain CrossRef
  10. The risk factors of 9-year follow-up on hypertension in middle-aged people in Tujia-Nationality settlement of China
    X Liu et al, 2017, Journal of Human Hypertension CrossRef
  11. Taurine reduces hyperactive behavior in SHR rats through upregulating the proportion of CD4+CD25+Foxp3+ regulatory T cells
    Vincent Chin-Hung Chen et al, 2019, Journal of Functional Foods CrossRef
  12. Dynamic dysregulation of transcriptomic networks in brainstem autonomic nuclei during hypertension development in the female spontaneously hypertensive rat
    Alison Moss et al, 2024, Physiological Genomics CrossRef
  13. miR‑126a‑5p‑Dbp and miR‑31a‑Crot/Mrpl4 interaction pairs crucial for the development of hypertension and stroke
    Qini Zhao et al, 2019, Molecular Medicine Reports CrossRef
  14. Transcriptional networks in rodent models support a role for gut-brain communication in neurogenic hypertension: a review of the evidence
    Jasenka Zubcevic et al, 2017, Physiological Genomics CrossRef
  15. Blowing up Neural Repair for Stroke Recovery
    Nick S. Ward et al, 2020, Stroke CrossRef
  16. An integrative analysis of transcriptome-wide association study and mRNA expression profile identified candidate genes for attention-deficit/hyperactivity disorder
    Xin Qi et al, 2019, Psychiatry Research CrossRef
  17. Genome-Wide Expression Profiles for Ischemic Stroke: A Meta-Analysis
    Carlos E. Moreno-Ramírez et al, 2018, Journal of Stroke and Cerebrovascular Diseases CrossRef
  18. Transcriptome Analysis Reveals Downregulation of Urocortin Expression in the Hypothalamo-Neurohypophysial System of Spontaneously Hypertensive Rats
    Andrew Martin et al, 2021, Frontiers in Physiology CrossRef
  19. Unraveling the Role of miR-200b-3p in Attention-Deficit/Hyperactivity Disorder (ADHD) and Its Therapeutic Potential in Spontaneously Hypertensive Rats (SHR)
    Tung-Ming Chang et al, 2024, Biomedicines CrossRef
  20. Genetic analysis of genes causing hypertension and stroke in spontaneously hypertensive rats: Gene expression profiles in the kidneys
    YUKO WATANABE et al, 2015, International Journal of Molecular Medicine CrossRef
  21. The Ties That Bind: Glial Transplantation in White Matter Ischemia and Vascular Dementia
    S. Thomas Carmichael et al, 2023, Neurotherapeutics CrossRef