Neurosci biobehav rev impact factor

    • Dysfunction of left hemisphere reward circuitry in humans ...

      Neurosci Biobehav Rev 27:45-55. 17. Pryce CR, Dettling AC, Spengler M, Schnell CR, Feldon J (2004): Deprivation of parenting disrupts development of homeostatic and reward systems in …


    • www.researchgate.net

      Nat Rev Neurosci. 2018; 19:701-710. Recent consensus paper that provides consensus definitions for reserve, maintenance, and compensation as they apply to the study of cognitive aging.


    • [DOC File]Theranostics

      https://info.5y1.org/neurosci-biobehav-rev-impact-factor_1_a79259.html

      Default-mode brain dysfunction in mental disorders: a systematic review. Neurosci Biobehav Rev. 2009; 33: 279-96. Yin Y, Wang Z, Zhang Z, Yuan Y. Aberrant topographical organization of the default mode network underlying the cognitive impairment of remitted late-onset depression. Neurosci Lett. 2016; 629: 26 …


    • [DOC File]Nature Research

      https://info.5y1.org/neurosci-biobehav-rev-impact-factor_1_524727.html

      Neurosci Biobehav Rev 2010; 35(2): 157-171. 26. Xu X, Mill J, Zhou K, Brookes K, Chen CK, Asherson P. Family-based association study between brain-derived neurotrophic factor gene polymorphisms and attention deficit hyperactivity disorder in UK and Taiwanese samples. Am J Med Genet B Neuropsychiatr Genet 2007; 144B(1): 83-86. 27.


    • [DOC File]LARRY’S EDITION # 1

      https://info.5y1.org/neurosci-biobehav-rev-impact-factor_1_3a55df.html

      17. Trevarthen C. Lateral asymmetries in infancy: implications for the development of the hemispheres. Neurosci Biobehav. Rev. 1996;20:571-586. 18. Matsuzawa J, Matsui M, Konishi T, Noguchi K, Gur RC, Bilker W, Miyawaki T. Age-related changes of brain gray and white matter in healthy infants and children. Cerebral Cortex. 2001;11:335-342. 19.


    • [DOC File]Depression/Anxiety

      https://info.5y1.org/neurosci-biobehav-rev-impact-factor_1_beb863.html

      Miret M, Ayuso-Mateos JL Sanchez-Moreno J, E. Vieta. Depressive disorders and suicide: epidemiology, risk factors, and burden. Neurosci Biobehav Rev. 2013; 37: 2372-74. Slavich GM, Irwin MR. From stress to inflammation and major depressive disorder: a social signal transduction theory of depression. Psychol Bull. 2014 ;140:774-815.


    • [DOCX File]STANDAARD CURRICULUM VITAE UNIVERSITAIR MEDISCH …

      https://info.5y1.org/neurosci-biobehav-rev-impact-factor_1_f0ebc0.html

      Impact Factor: 5.1. Brockhaus-Dumke A, Schultze-Lutter F, Bechdolf A, Mueller R, Tendolkar I, Pukrop R, Klosterkoetter J, Ruhrmann S. Sensory gating in schizophrenia: P50 and N100 gating in unmedicated subjects at risk, first-episode and chronic patients. Biological Psychiatry 2008;64(5):376-84. Impact Factor: 9.5. Tendolkar I


    • Universiteit Utrecht

      Neurosci Biobehav Rev 36:1107-1118, 2012. Fjell AM, Walhovd KB: Structural brain changes in aging: courses, causes and cognitive consequences. Rev Neurosci 21(3):187-221, 2010.


    • Concept, Diagnostic Criteria and Classification of ...

      Concept, Diagnostic Criteria and Classification of Autistic Disorders: A Proposed New Model. Dr Khalid A Mansour د. خالد عبد العظيم منصور


    • [DOC File]BDNF genotype modulates resting functional connectivity in ...

      https://info.5y1.org/neurosci-biobehav-rev-impact-factor_1_5219d6.html

      Brain-derived neutrophic factor. Mol Psychiatry 7, 579-593. Stoop, R., Poo, M.M., (1996). Synaptic modulation by neurotrophic factors: differential and synergistic effects of brain-derived neurotrophic factor and ciliary neurotrophic factor. J Neurosci 16, 3256-3264.


Nearby & related entries: