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Research:
Stress and pain-induced behavior is controlled by specific neurotransmitters and their signaling partners in the central and peripheral nervous systems. Many of these signals are conveyed through activation of neuropeptide and monoamine receptor systems. These receptors are seven transmembrane spanning G-protein coupled receptors (GPCR, also called 7 transmembrane receptors) and they engage a variety of signaling cascades following neurotransmitter release and receptor binding. To expand our knowledge of the inner workings of the brain and to identify treatments for psychiatric diseases, the Bruchas laboratory aims to dissect how GPCR systems function in the contexts of stress, depression, addiction, and pain. We strive for a greater understanding of these receptors in real time, within intact systems, and biologically relevant models of behavior. We utilize pharmacological, optogenetic, genetic, viral, imaging, behavioral, and cutting-edge engineering approaches to uncover the specific role of GPCRs and their endogenous transmitters within in vivo neural circuits that modulate affective behavior.
Stress and pain-induced behavior is controlled by specific neurotransmitters and their signaling partners in the central and peripheral nervous systems. Many of these signals are conveyed through activation of neuropeptide and monoamine receptor systems. These receptors are seven transmembrane spanning G-protein coupled receptors (GPCR, also called 7 transmembrane receptors) and they engage a variety of signaling cascades following neurotransmitter release and receptor binding. To expand our knowledge of the inner workings of the brain and to identify treatments for psychiatric diseases, the Bruchas laboratory aims to dissect how GPCR systems function in the contexts of stress, depression, addiction, and pain. We strive for a greater understanding of these receptors in real time, within intact systems, and biologically relevant models of behavior. We utilize pharmacological, optogenetic, genetic, viral, imaging, behavioral, and cutting-edge engineering approaches to uncover the specific role of GPCRs and their endogenous transmitters within in vivo neural circuits that modulate affective behavior.
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论文共 240 篇作者统计合作学者相似作者
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crossref(2024)
bioRxiv : the preprint server for biology (2024)
Jingyi Chen,Leandra Mangieri, Sophia Mar,Sean Piantadosi,David Marcus, Phoenix Davis, Bennett Anger,Benjamin B Land,Michael R Bruchas
bioRxiv : the preprint server for biology (2024)
Chunyang Dong,Raajaram Gowrishankar, Yihan Jin,Xinyi Jenny He,Achla Gupta,Huikun Wang,Niluefer Sayar-Atasoy,Rodolfo J. Flores,Karan Mahe,Nikki Tjahjono,Ruqiang Liang,Aaron Marley,Grace Or Mizuno, Darren K. Lo,Qingtao Sun,Jennifer L. Whistler,Bo Li,Ivone Gomes,Mark Von Zastrow,Hugo A. Tejeda,Deniz Atasoy,Lakshmi A. Devi,Michael R. Bruchas,Matthew R. Banghart,Lin Tian
Nature neuroscienceno. 9 (2024): 1844-1857
bioRxiv the preprint server for biology (2024)
Qingtao Sun, Mingzhe Liu, Wuqiang Guan,Xiong Xiao,Chunyang Dong,Michael R Bruchas, Larry S Zweifel,Yulong Li,Lin Tian,Bo Li
bioRxiv the preprint server for biology (2024)
Sean C Piantadosi,Min-Kyu Lee,Mingzheng Wu, Huong Huynh,Raudel Avila,Carina Pizzano,Catalina A Zamorano,Yixin Wu, Rachael Xavier, Maria Stanslaski, Jiheon Kang, Sarah Thai, Youngdo Kim, Jinglan Zhang,Yonggang Huang,Yevgenia Kozorovitskiy,Cameron H Good,Anthony R Banks,John A Rogers,Michael R Bruchas
bioRxiv : the preprint server for biology (2024)
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作者统计
#Papers: 253
#Citation: 13472
H-Index: 54
G-Index: 115
Sociability: 7
Diversity: 3
Activity: 108
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