Tinbergen, N. The Study of Instinct (Oxford Univ. Press, 1951).
Klüver, H. & Bucy, P. C. Preliminary analysis of functions of the temporal lobes in monkeys. Arch. Neurol. Psychiatry 42, 979–1000 (1939).
Hess, W. R. & Brügger, M. Das subkortikale zentrum der affectiven abwehrreactionem [German]. Helv. Physiol. Acta 1, 33–52 (1943).
Canteras, N. S. The medial hypothalamic defensive system: hodological organization and functional implications. Pharmacol. Biochem. Behav. 71, 481–491 (2002).
Article CAS PubMed Google Scholar
Gross, C. T. & Canteras, N. S. The many paths to fear. Nat. Rev. Neurosci. 13, 651–658 (2012).
Article CAS PubMed Google Scholar
Silva, B. A., Gross, C. T. & Gräff, J. The neural circuits of innate fear: detection, integration, action, and memorization. Learn. Mem. 23, 544–555 (2016).
Article CAS PubMed Google Scholar
Shaikh, M. B., Brutus, M., Siegel, H. E. & Siegel, A. Topographically organized midbrain modulation of predatory and defensive aggression in the cat. Brain Res. 336, 308–312 (1985).
Article CAS PubMed Google Scholar
Gregg, T. R. & Siegel, A. Brain structures and neurotansmitters regulating aggression in cats: implications for human aggression. Prog. Neuropsychopharmacol. Biol. Psychiatry 25, 91–140 (2001).
Article CAS PubMed Google Scholar
Swanson, L. W. Anatomy of the soul as reflected in the cerebral hemispheres: neural circuits underlying voluntary control of basic motivated behaviors. J. Comp. Neurol. 493, 122–131 (2005).
Siegel, A., Roeling, T. A. P., Gregg, T. R. & Kruk, M. R. Neuropharmacology of brain-stimulation-evoked aggression. Neurosci. Biobehav. Rev. 23, 359–389 (1999).
Article CAS PubMed Google Scholar
Gräfe, S. & Stuhrmann, C. Histories of ethology: methods, sites, and dynamics of an unbound discipline. Ber. Zur. Wiss. 45, 10–29 (2022).
Thompson, R. F. Behaviorism and neuroscience. Psychol. Rev. 101, 259–265 (1994).
Article CAS PubMed Google Scholar
Blanchard, R. J., Yang, M., Li, C.-I., Gervacio, A. & Blanchard, D. C. Cue and context conditioning of defensive behaviors to cat odor stimuli. Neurosci. Biobehav. Rev. 25, 587–595 (2001).
Article CAS PubMed Google Scholar
Ribeiro-Barbosa, E. R., Canteras, N. S., Cezário, A. F., Blanchard, R. J. & Blanchard, D. C. An alternative experimental procedure for studying predator-related defensive responses. Neurosci. Biobehav. Rev. 29, 1255–1263 (2005).
Article CAS PubMed Google Scholar
Martinez, R. C., Carvalho-Netto, E. F., Ribeiro-Barbosa, É. R., Baldo, M. V. C. & Canteras, N. S. Amygdalar roles during exposure to a live predator and to a predator-associated context. Neuroscience 172, 314–328 (2011).
Article CAS PubMed Google Scholar
Silva, B. A. et al. The ventromedial hypothalamus mediates predator fear memory. Eur. J. Neurosci. 43, 1431–1439 (2016).
Cavalli, J., Bertoglio, L. J. & Carobrez, A. P. Pentylenetetrazole as an unconditioned stimulus for olfactory and contextual fear conditioning in rats. Neurobiol. Learn. Mem. 92, 512–518 (2009).
Article CAS PubMed Google Scholar
Kamikawa, K., McIlwain, J. T. & Adey, W. R. Response patterns of thalamic neurons during classical conditioning. Electroencephalogr. Clin. Neurophysiol. 17, 485–496 (1964).
Article CAS PubMed Google Scholar
Carew, T. J., Walters, E. T. & Kandel, E. R. Associative learning in Aplysia: cellular correlates supporting a conditioned fear hypothesis. Science 211, 501–504 (1981).
Article CAS PubMed Google Scholar
Applegate, C. D., Frysinger, R. C., Kapp, B. S. & Gallagher, M. Multiple unit activity recorded from amygdala central nucleus during Pavlovian heart rate conditioning in rabbit. Brain Res. 238, 457–462 (1982).
Article CAS PubMed Google Scholar
Wurtz, R. H. & Sommer, M. in Methods in Mind (eds Senior, C., Russell, T. & Gazzaniga, M. S.) 123–139 (MIT Press, 2006).
Changeux, J.-P. Discovery of the first neurotransmitter receptor: the acetylcholine nicotinic receptor. Biomolecules 10, 547 (2020).
Article CAS PubMed PubMed Central Google Scholar
Halliwell, R. F. A short history of the rise of the molecular pharmacology of ionotropic drug receptors. Trends Pharmacol. Sci. 28, 214–219 (2007).
Article CAS PubMed Google Scholar
Himanshu, Dharmila, Sarkar, D. & Nutan A review of behavioral tests to evaluate different types of anxiety and anti-anxiety effects. Clin. Psychopharmacol. Neurosci. 18, 341–351 (2020).
Article CAS PubMed Central Google Scholar
Lederhendler, I. & Schulkin, J. Behavioral neuroscience: challenges for the era of molecular biology. Trends Neurosci. 23, 451–454 (2000).
Article CAS PubMed Google Scholar
Prut, L. & Belzung, C. The open field as a paradigm to measure the effects of drugs on anxiety-like behaviors: a review. Eur. J. Pharmacol. 463, 3–33 (2003).
Article CAS PubMed Google Scholar
Bourin, M. Animal models for screening anxiolytic-like drugs: a perspective. Dialogues Clin. Neurosci. 17, 295–303 (2015).
Umezu, T. Effects of psychoactive drugs in the Vogel conflict test in mice. Jpn. J. Pharmacol. 80, 111–118 (1999).
Article CAS PubMed Google Scholar
Adhikari, A., Topiwala, M. A. & Gordon, J. A. Single units in the medial prefrontal cortex with anxiety-related firing patterns are preferentially influenced by ventral hippocampal activity. Neuron 71, 898–910 (2011).
Article CAS PubMed Google Scholar
Felix-Ortiz, A. C. et al. BLA to vHPC inputs modulate anxiety-related behaviors. Neuron 79, 658–664 (2013).
Article CAS PubMed PubMed Central Google Scholar
Tye, K. M. et al. Dopamine neurons modulate neural encoding and expression of depression-related behaviour. Nature 493, 537–541 (2013).
Article CAS PubMed Google Scholar
Olivier, B., Mos, J. & Rasmussen, D. Behavioural pharmacology of the serenic, eltoprazine. Drug. Metabol. Drug. Interact. 8, 31–83 (1990).
Article CAS PubMed Google Scholar
Takahashi, A. & Miczek, K. A. Neurogenetics of aggressive behavior — studies in rodents. Curr. Top. Behav. Neurosci. 17, 3–44 (2014).
Tulogdi, A. et al. Brain mechanisms involved in predatory aggression are activated in a laboratory model of violent intra-specific aggression. Eur. J. Neurosci. 32, 1744–1753 (2010).
Tulogdi, A. et al. Neural mechanisms of predatory aggression in rats — implications for abnormal intraspecific aggression. Behav. Brain Res. 283, 108–115 (2015).
Salomon, A. L., Lazorcheck, M.
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