The amygdala plays a pivotal role in the generation of appropriate responses to emotional stimuli. In the case of emotional stressors, these responses include activation of the hypothalamic-pituitary-adrenal (HPA) axis. This effect is generally held to depend upon the central nucleus of the amygdala, but recent evidence suggests a role for the medial nucleus. In the present study, c-fos expression, amygdala lesion and retrograde tracing experiments were performed on adult rats in order to re-evaluate the role of the central as opposed to the medial amygdala in generating neuroendocrine responses to an emotional stressor. Brief restraint (15 min) was used as a representative emotional stressor and was found to elicit c-fos expression much mo...
The extended amygdala (EA) contains subpopulations of "extrahypothalamic"corticotropin-releasing fac...
The amygdala is a critical component of the neuroanatomical stress circuit. It plays a role in the g...
Three Paradigms of Emotional Learning Differentially Affect Brainstem, Hypothalamic, and Limbic Circ...
Hypothalamic-pituitary-adrenal axis activation is a hallmark of the stress response. In the case of ...
The purpose of this study was to examine the effects of bilateral electrolytic lesions of the centra...
The purpose of this study was to examine the effects of bilateral electrolytic lesions of the centra...
The experiments described in this thesis sought to test two putative functions of the amygdala. The ...
It has been hypothesized that the brain categorizes stressors and utilizes neural response pathways ...
It has been hypothesized that the brain categorizes stressors and utilizes neural response pathways ...
Both physical and psychological stressors recruit catecholamine cells (CA) located in the ventrolate...
Abstract. The autonomic nervous system, especially the sympathetic nervous system, regulates immune ...
Physical stressors such as infection, inflammation and tissue injury elicit activation of the hypoth...
The hypothalamic–pituitary–adrenal (HPA) axis is the major endocrine stress axis of the human organi...
Stress is a risk factor for depressive and anxiety disorders. Changes in lifestyle patterns that are...
Physical stressors such as infection, inflammation and tissue injury elicit activation of the hypofh...
The extended amygdala (EA) contains subpopulations of "extrahypothalamic"corticotropin-releasing fac...
The amygdala is a critical component of the neuroanatomical stress circuit. It plays a role in the g...
Three Paradigms of Emotional Learning Differentially Affect Brainstem, Hypothalamic, and Limbic Circ...
Hypothalamic-pituitary-adrenal axis activation is a hallmark of the stress response. In the case of ...
The purpose of this study was to examine the effects of bilateral electrolytic lesions of the centra...
The purpose of this study was to examine the effects of bilateral electrolytic lesions of the centra...
The experiments described in this thesis sought to test two putative functions of the amygdala. The ...
It has been hypothesized that the brain categorizes stressors and utilizes neural response pathways ...
It has been hypothesized that the brain categorizes stressors and utilizes neural response pathways ...
Both physical and psychological stressors recruit catecholamine cells (CA) located in the ventrolate...
Abstract. The autonomic nervous system, especially the sympathetic nervous system, regulates immune ...
Physical stressors such as infection, inflammation and tissue injury elicit activation of the hypoth...
The hypothalamic–pituitary–adrenal (HPA) axis is the major endocrine stress axis of the human organi...
Stress is a risk factor for depressive and anxiety disorders. Changes in lifestyle patterns that are...
Physical stressors such as infection, inflammation and tissue injury elicit activation of the hypofh...
The extended amygdala (EA) contains subpopulations of "extrahypothalamic"corticotropin-releasing fac...
The amygdala is a critical component of the neuroanatomical stress circuit. It plays a role in the g...
Three Paradigms of Emotional Learning Differentially Affect Brainstem, Hypothalamic, and Limbic Circ...