The locus coeruleus‐dorsal hippocampal CA1 pathway is involved in depression‐induced perioperative neurocognitive disorders in adult mice
暂无分享,去创建一个
Kai Zhang | Ran Ding | Qianqian Chang | Yong-Hao Yu | Feixiang Li | Yun Li
[1] Zhuo Yang,et al. DFO treatment protects against depression-like behaviors and cognitive impairment in CUMS mice , 2022, Brain Research Bulletin.
[2] A. Asakawa,et al. Postoperative Delirium in Lung Cancer Anatomical Resection—Analysis of Risk Factors and Prognosis , 2022, World Journal of Surgery.
[3] C. Soriano-Mas,et al. The Role of the Locus Coeruleus in Pain and Associated Stress-Related Disorders , 2021, Biological Psychiatry.
[4] Guang Yang,et al. Testosterone attenuates sevoflurane-induced tau phosphorylation and cognitive impairment in neonatal male mice. , 2021, British journal of anaesthesia.
[5] A. Pertovaara,et al. Pain and depression comorbidity causes asymmetric plasticity in the locus coeruleus neurons , 2021, Brain : a journal of neurology.
[6] Haixia Gong,et al. Participation of Mind Bomb-2 in Sevoflurane Anesthesia Induces Cognitive Impairment in Aged Mice via Modulating Ferroptosis. , 2021, ACS chemical neuroscience.
[7] P. Collins,et al. COVID-19 and global mental health , 2021, The Lancet Psychiatry.
[8] R. C. S. R. Danduga,et al. Protective effects of duloxetine against chronic immobilisation stress-induced anxiety, depression, cognitive impairment and neurodegeneration in mice. , 2021, The Journal of pharmacy and pharmacology.
[9] B. Luna,et al. Increased Functional Coupling between VTA and Hippocampus during Rest in First-Episode Psychosis , 2021, eNeuro.
[10] K. Lange. Coronavirus disease 2019 (COVID-19) and global mental health , 2021, Global Health Journal.
[11] Zhi-qiang Zhou,et al. Resveratrol ameliorates sevoflurane-induced cognitive impairment by activating the SIRT1/NF-κB pathway in neonatal mice. , 2020, The Journal of nutritional biochemistry.
[12] Hui Shen,et al. Sleep Deprivation Aggravates Cognitive Impairment by the Alteration of Hippocampal Neuronal Activity and the Density of Dendritic Spine in Isoflurane-Exposed Mice , 2020, Frontiers in Behavioral Neuroscience.
[13] Hualong Bai,et al. Chronic social defeat stress mouse model: Current view on its behavioral deficits and modifications. , 2020, Behavioral neuroscience.
[14] Cunming Liu,et al. Perioperative neurocognitive dysfunction: thinking from the gut? , 2020, Aging.
[15] Guang Yang,et al. Tau Contributes to Sevoflurane-induced Neurocognitive Impairment in Neonatal Mice , 2020, Anesthesiology.
[16] Zongze Zhang,et al. Methylene Blue Protects Against Sevoflurane-Induced Cognitive Dysfunction by Suppressing Drp1 deSUMOylation in Aged Mice , 2020, Neurochemical Research.
[17] Heather A. Mitchell,et al. Rigor and reproducibility in rodent behavioral research , 2019, Neurobiology of Learning and Memory.
[18] Ping Zhong,et al. Ahnak scaffolds p11/Anxa2 complex and L-type voltage-gated calcium channel and modulates depressive behavior , 2019, Molecular Psychiatry.
[19] Cailian Cui,et al. Dentate gyrus μ-opioid receptor-mediated neurogenic processes are associated with alterations in morphine self-administration , 2019, Scientific Reports.
[20] R. Johns,et al. Nitric Oxide Donor Prevents Neonatal Isoflurane-induced Impairments in Synaptic Plasticity and Memory , 2019, Anesthesiology.
[21] A. Luo,et al. Postoperative cognitive dysfunction in the aged: the collision of neuroinflammaging with perioperative neuroinflammation , 2019, Inflammopharmacology.
[22] Jeffrey N. Browndyke,et al. Recommendations for the nomenclature of cognitive change associated with anaesthesia and surgery—2018 , 2018, Anesthesiology.
[23] R. Eckenhoff,et al. Recommendations for the nomenclature of cognitive change associated with anaesthesia and surgery—2018 , 2018, Canadian Journal of Anesthesia/Journal canadien d'anesthésie.
[24] F. Dal-Pizzol,et al. Oxidative stress and mitochondrial dysfunction contributes to postoperative cognitive dysfunction in elderly rats , 2018, Brain, Behavior, and Immunity.
[25] W. Liu,et al. Inflammation caused by peripheral immune cells across into injured mouse blood brain barrier can worsen postoperative cognitive dysfunction induced by isoflurane , 2018, BMC Cell Biology.
[26] Z. Xia,et al. SIRT3 activator honokiol ameliorates surgery/anesthesia‐induced cognitive decline in mice through anti‐oxidative stress and anti‐inflammatory in hippocampus , 2018, CNS neuroscience & therapeutics.
[27] Jian Lu,et al. A Visual-Cue-Dependent Memory Circuit for Place Navigation , 2018, Neuron.
[28] T. Takeuchi,et al. Locus Coeruleus and Dopamine-Dependent Memory Consolidation , 2017, Neural plasticity.
[29] Eduardo E. Benarroch,et al. Locus coeruleus , 2017, Cell and Tissue Research.
[30] W. Jacob-Filho,et al. Association between delirium superimposed on dementia and mortality in hospitalized older adults: A prospective cohort study , 2017, PLoS medicine.
[31] E. Kandel,et al. Dopamine release from the locus coeruleus to the dorsal hippocampus promotes spatial learning and memory , 2016, Proceedings of the National Academy of Sciences.
[32] F. Frihagen,et al. Increased CSF levels of aromatic amino acids in hip fracture patients with delirium suggests higher monoaminergic activity , 2016, BMC Geriatrics.
[33] R. Morris,et al. Locus coeruleus and dopaminergic consolidation of everyday memory , 2016, Nature.
[34] L. Luo,et al. Organization of the Locus Coeruleus-Norepinephrine System , 2015, Current Biology.
[35] A. Perruccio,et al. Health economic implications of perioperative delirium in older patients after surgery for a fragility hip fracture. , 2015, The Journal of bone and joint surgery. American volume.
[36] D. Dupret,et al. Dopaminergic neurons promote hippocampal reactivation and spatial memory persistence , 2014, Nature Neuroscience.
[37] Owen Whooley. Diagnostic and Statistical Manual of Mental Disorders (DSM) , 2014 .
[38] J. Roiser,et al. Cognitive impairment in depression: a systematic review and meta-analysis , 2013, Psychological Medicine.
[39] D. Palomba,et al. Preexisting depressive symptoms are associated with long-term cognitive decline in patients after cardiac surgery. , 2013, General hospital psychiatry.
[40] I. Liberzon,et al. Altered locus coeruleus–norepinephrine function following single prolonged stress , 2013, The European journal of neuroscience.
[41] G. Aghajanian,et al. Synaptic Dysfunction in Depression: Potential Therapeutic Targets , 2012, Science.
[42] S. Leiser,et al. Predator stress engages corticotropin-releasing factor and opioid systems to alter the operating mode of locus coeruleus norepinephrine neurons , 2012, Neuropharmacology.
[43] H. Schächinger,et al. Relevance of Stress and Female Sex Hormones for Emotion and Cognition , 2011, Cellular and Molecular Neurobiology.
[44] S. Russo,et al. A standardized protocol for repeated social defeat stress in mice , 2011, Nature Protocols.
[45] K. Heilman,et al. Predictors of Cognitive Dysfunction after Major Noncardiac Surgery , 2008, Anesthesiology.
[46] Mark G. Packard,et al. The dopaminergic mesencephalic projections to the hippocampal formation in the rat , 1997, Progress in Neuro-Psychopharmacology and Biological Psychiatry.