The basal forebrain to lateral habenula circuitry mediates social behavioral maladaptation
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DOI: 10.1038/s41467-024-48378-y
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- Li Shen & Guang-Wei Zhang & Can Tao & Michelle B. Seo & Nicole K. Zhang & Junxiang J. Huang & Li I. Zhang & Huizhong W. Tao, 2022. "A bottom-up reward pathway mediated by somatostatin neurons in the medial septum complex underlying appetitive learning," Nature Communications, Nature, vol. 13(1), pages 1-15, December.
- Philip Tovote & Maria Soledad Esposito & Paolo Botta & Fabrice Chaudun & Jonathan P. Fadok & Milica Markovic & Steffen B. E. Wolff & Charu Ramakrishnan & Lief Fenno & Karl Deisseroth & Cyril Herry & S, 2016. "Midbrain circuits for defensive behaviour," Nature, Nature, vol. 534(7606), pages 206-212, June.
- Sam A. Golden & Mitra Heshmati & Meghan Flanigan & Daniel J. Christoffel & Kevin Guise & Madeline L. Pfau & Hossein Aleyasin & Caroline Menard & Hongxing Zhang & Georgia E. Hodes & Dana Bregman & Lena, 2016. "Basal forebrain projections to the lateral habenula modulate aggression reward," Nature, Nature, vol. 534(7609), pages 688-692, June.
- Mario A. Penzo & Vincent Robert & Jason Tucciarone & Dimitri De Bundel & Minghui Wang & Linda Van Aelst & Martin Darvas & Luis F. Parada & Richard D. Palmiter & Miao He & Z. Josh Huang & Bo Li, 2015. "The paraventricular thalamus controls a central amygdala fear circuit," Nature, Nature, vol. 519(7544), pages 455-459, March.
- Fabricio H. Do-Monte & Kelvin Quiñones-Laracuente & Gregory J. Quirk, 2015. "A temporal shift in the circuits mediating retrieval of fear memory," Nature, Nature, vol. 519(7544), pages 460-463, March.
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