Representation and control of pain and itch by distinct prefrontal neural ensembles
暂无分享,去创建一个
Tian-Le Xu | Zilong Gao | Ming-Gang Liu | Ji Hu | Ming Chen | Xin-Yu Su | Su-Shan Guo | Qian Pan | Qi Wang
[1] Yong-Jing Gao,et al. Excitatory Projections from the Prefrontal Cortex to Nucleus Accumbens Core D1-MSNs and κ Opioid Receptor Modulate Itch-Related Scratching Behaviors , 2023, The Journal of Neuroscience.
[2] Fengyu Liu,et al. A nociceptive neuronal ensemble in the dorsomedial prefrontal cortex underlies pain chronicity. , 2022, Cell reports.
[3] Zoutao Zhang,et al. Distinct neural networks derived from galanin-containing nociceptors and neurotensin-expressing pruriceptors , 2022, Proceedings of the National Academy of Sciences of the United States of America.
[4] S. Jiang,et al. Itch-specific neurons in the ventrolateral orbital cortex selectively modulate the itch processing , 2022, Science advances.
[5] A. Patapoutian,et al. PIEZO1 transduces mechanical itch in mice , 2022, Nature.
[6] Lung-Chuang Wang,et al. Spinal ascending pathways for somatosensory information processing , 2022, Trends in Neurosciences.
[7] Andrew M. Bell,et al. Grpr expression defines a population of superficial dorsal horn vertical cells that have a role in both itch and pain , 2022, Pain.
[8] L. Mei,et al. A novel spinal neuron connection for heat sensation , 2022, Neuron.
[9] Q. Ma,et al. A functional subdivision within the somatosensory system and its implications for pain research , 2022, Neuron.
[10] V. Gradinaru,et al. Glutamate in primary afferents is required for itch transmission , 2021, Neuron.
[11] Peng Liu,et al. Modulation of itch and pain signals processing in ventrobasal thalamus by thalamic reticular nucleus , 2021, iScience.
[12] C. Stucky,et al. Innovations and advances in modelling and measuring pain in animals , 2021, Nature Reviews Neuroscience.
[13] Qiaosheng Zhang,et al. Disrupted population coding in the prefrontal cortex underlies pain aversion , 2021, Cell reports.
[14] Zhou-Feng Chen. A neuropeptide code for itch , 2021, Nature Reviews Neuroscience.
[15] M. Bruchas,et al. Pain induces adaptations in ventral tegmental area dopamine neurons to drive anhedonia-like behavior , 2021, Nature Neuroscience.
[16] D. Ginty,et al. The cellular and molecular basis of somatosensory neuron development , 2021, Neuron.
[17] K. Deisseroth,et al. Genetically identified amygdala-striatal circuits for valence-specific behaviors , 2021, Nature Neuroscience.
[18] Nivanthika K. Wimalasena,et al. Dissecting the precise nature of itch-evoked scratching , 2021, Neuron.
[19] L. L. Tan,et al. Neocortical circuits in pain and pain relief , 2021, Nature Reviews Neuroscience.
[20] R. Palmiter,et al. Intercalated amygdala clusters orchestrate a switch in fear state , 2021, Nature.
[21] Wen-Qi Shan,et al. New Insight into the Origins of Itch and Pain: How are Itch and Pain Signals Coded and Discriminated by Primary Sensory Neurons? , 2021, Neuroscience Bulletin.
[22] M. Bruchas,et al. Cellular, circuit and transcriptional framework for modulation of itch in the central amygdala , 2021, bioRxiv.
[23] R. Malenka,et al. Anterior cingulate inputs to nucleus accumbens control the social transfer of pain and analgesia , 2021, Science.
[24] Yan Dong,et al. Neuropathic pain generates silent synapses in thalamic projection to anterior cingulate cortex. , 2020, Pain.
[25] Shiaoching Gong,et al. Parallel ascending spinal pathways for affective touch and pain , 2020, Nature.
[26] Li Ye,et al. Cortical Representations of Conspecific Sex Shape Social Behavior , 2020, Neuron.
[27] Yan-Gang Sun,et al. Central circuit mechanisms of itch , 2020, Nature Communications.
[28] Patrick L. Sheets,et al. Sex-Specific Disruption of Distinct mPFC Inhibitory Neurons in Spared-Nerve Injury Model of Neuropathic Pain. , 2020, Cell reports.
[29] H. Flor,et al. The revised International Association for the Study of Pain definition of pain: concepts, challenges, and compromises. , 2020, Pain.
[30] P. Séguéla,et al. Differential Coding of Itch and Pain by a Subpopulation of Primary Afferent Neurons , 2020, Neuron.
[31] Shengli Zhao,et al. General Anesthetics Activate a Potent Central Pain-Suppression Circuit in the Amygdala , 2020, Nature Neuroscience.
[32] Qiaosheng Zhang,et al. Mapping Cortical Integration of Sensory and Affective Pain Pathways , 2020, Current Biology.
[33] Zhou-Feng Chen,et al. Exploration of sensory and spinal neurons expressing gastrin-releasing peptide in itch and pain related behaviors , 2020, Nature Communications.
[34] Xinzhong Dong,et al. Neural Mechanisms of Itch. , 2020, Annual review of neuroscience.
[35] Xiangning Li,et al. Prefrontal Cortex Corticotropin-Releasing Factor Neurons Control Behavioral Style Selection under Challenging Situations , 2020, Neuron.
[36] F. Cevikbas,et al. Physiology and Pathophysiology of Itch. , 2019, Physiological reviews.
[37] K. Deisseroth,et al. A neuronal circuit for activating descending modulation of neuropathic pain , 2019, Nature Neuroscience.
[38] A. Basbaum,et al. Microcircuit Mechanisms through which Mediodorsal Thalamic Input to Anterior Cingulate Cortex Exacerbates Pain-Related Aversion , 2019, Neuron.
[39] Wenzhi Sun,et al. Central Processing of Itch in the Midbrain Reward Center , 2019, Neuron.
[40] T. Hashimoto,et al. A Subpopulation of Amygdala Neurons Mediates the Affective Component of Itch , 2019, The Journal of Neuroscience.
[41] A. Oswald,et al. Divergent Neural Pathways Emanating from the Lateral Parabrachial Nucleus Mediate Distinct Components of the Pain Response , 2019, Neuron.
[42] Wenzhi Sun,et al. Reward Inhibits Paraventricular CRH Neurons to Relieve Stress , 2019, Current Biology.
[43] E. Platonova,et al. Dorsal Horn Gastrin-Releasing Peptide Expressing Neurons Transmit Spinal Itch But Not Pain Signals , 2019, The Journal of Neuroscience.
[44] Li Zhou,et al. Tac1-Expressing Neurons in the Periaqueductal Gray Facilitate the Itch-Scratching Cycle via Descending Regulation , 2019, Neuron.
[45] R. LaMotte,et al. Identifying the pathways required for coping behaviours associated with sustained pain , 2018, Nature.
[46] R. Gereau,et al. Cell type-specific modulation of sensory and affective components of itch in the periaqueductal gray , 2018, Nature Communications.
[47] Kay M. Tye,et al. Neural Circuit Motifs in Valence Processing , 2018, Neuron.
[48] T. Netoff,et al. Responses of thalamic neurons to itch- and pain-producing stimuli in rats. , 2018, Journal of neurophysiology.
[49] Qiaosheng Zhang,et al. Scaling Up Cortical Control Inhibits Pain , 2018, Cell reports.
[50] Edward M. Callaway,et al. Genetic Dissection of Neural Circuits: A Decade of Progress. , 2018, Neuron.
[51] P. Zheng,et al. ACC to Dorsal Medial Striatum Inputs Modulate Histaminergic Itch Sensation , 2018, The Journal of Neuroscience.
[52] Liqun Luo,et al. Temporal Evolution of Cortical Ensembles Promoting Remote Memory Retrieval , 2018, Nature Neuroscience.
[53] Benjamin F. Grewe,et al. An amygdalar neural ensemble that encodes the unpleasantness of pain , 2018, Science.
[54] Herta Flor,et al. A pathway from midcingulate cortex to posterior insula gates nociceptive hypersensitivity , 2017, Nature Neuroscience.
[55] William E. Allen,et al. Thirst-associated preoptic neurons encode an aversive motivational drive , 2017, Science.
[56] Qian Xu,et al. Leaky Gate Model: Intensity-Dependent Coding of Pain and Itch in the Spinal Cord , 2017, Neuron.
[57] Yong Ho Kim,et al. SHANK3 Deficiency Impairs Heat Hyperalgesia and TRPV1 Signaling in Primary Sensory Neurons , 2016, Neuron.
[58] Liam Paninski,et al. Efficient and accurate extraction of in vivo calcium signals from microendoscopic video data , 2016, eLife.
[59] Zizhen Zhang,et al. Role of Prelimbic GABAergic Circuits in Sensory and Emotional Aspects of Neuropathic Pain. , 2015, Cell reports.
[60] Chen Su,et al. Activation of Corticostriatal Circuitry Relieves Chronic Neuropathic Pain , 2015, The Journal of Neuroscience.
[61] V. Tiwari,et al. Tmem100 Is a Regulator of TRPA1-TRPV1 Complex and Contributes to Persistent Pain , 2015, Neuron.
[62] E. Carstens,et al. Role of spinal bombesin-responsive neurons in nonhistaminergic itch. , 2014, Journal of neurophysiology.
[63] Xinzhong Dong,et al. Itch mechanisms and circuits. , 2014, Annual review of biophysics.
[64] G. Giesler,et al. Characterization of pruriceptive trigeminothalamic tract neurons in rats. , 2014, Journal of neurophysiology.
[65] Chih-Hung Lee,et al. Analysis for Distinctive Activation Patterns of Pain and Itchy in the Human Brain Cortex Measured Using Near Infrared Spectroscopy (NIRS) , 2013, PloS one.
[66] Xiao Xiao,et al. Estrogen in the anterior cingulate cortex contributes to pain-related aversion. , 2013, Cerebral cortex.
[67] David P. Roberson,et al. Activity-dependent silencing reveals functionally distinct itch-generating sensory neurons , 2013, Nature Neuroscience.
[68] R. Ji,et al. New insights into the mechanisms of itch: are pain and itch controlled by distinct mechanisms? , 2013, Pflügers Archiv - European Journal of Physiology.
[69] Yiyuan Cui,et al. A subpopulation of nociceptors specifically linked to itch , 2012, Nature Neuroscience.
[70] S. E. Ross. Pain and itch: insights into the neural circuits of aversive somatosensation in health and disease , 2011, Current Opinion in Neurobiology.
[71] Xinzhong Dong,et al. Itch: Cells, Molecules, and Circuits. , 2011, ACS chemical neuroscience.
[72] Q. Ma. Labeled lines meet and talk: population coding of somatic sensations. , 2010, The Journal of clinical investigation.
[73] Charles N Serhan,et al. Resolvins RvE1 and RvD1 attenuate inflammatory pain via central and peripheral actions , 2010, Nature Medicine.
[74] David Julius,et al. Cellular and Molecular Mechanisms of Pain , 2009, Cell.
[75] Zhou-Feng Chen,et al. Cellular Basis of Itch Sensation , 2009, Science.
[76] R. LaMotte,et al. Behavioral differentiation between itch and pain in mouse , 2008, PAIN.
[77] Yan-Gang Sun,et al. A gastrin-releasing peptide receptor mediates the itch sensation in the spinal cord , 2007, Nature.
[78] Norihiro Sadato,et al. Neural correlates of perceptual difference between itching and pain: A human fMRI study , 2007, NeuroImage.
[79] R. Paus,et al. Frontiers in pruritus research: scratching the brain for more effective itch therapy. , 2006, The Journal of clinical investigation.
[80] Hermann O. Handwerker,et al. Specific C-Receptors for Itch in Human Skin , 1997, The Journal of Neuroscience.
[81] A. Craig,et al. Spinothalamic lamina I neurons selectively sensitive to histamine: a central neural pathway for itch , 2001, Nature Neuroscience.