All Relations between olfactory and amygdala

Publication Sentence Publish Date Extraction Date Species
Barbara Cerf-Ducastel, Claire Murph. FMRI brain activation in response to odors is reduced in primary olfactory areas of elderly subjects. Brain research. vol 986. issue 1-2. 2003-12-15. PMID:12965228. activation was seen in similar areas in old subjects but the degree of activation was significantly lower in regions receiving primary olfactory projections (piriform cortex, entorhinal cortex, and amygdala). 2003-12-15 2023-08-12 human
Miguel Condés-Lara, Carlos Paz, Javier Rodríguez Jiménez, Gema Martínez, Guadalupe Martínez-Lorenzana, Jorge Larriva-Sah. Electrophysiological responses of interfascicular neurons of the rat anterior commissure to activation from the anterior olfactory nucleus, medial frontal cortex, and posterior nucleus of the amygdala. Brain research. vol 982. issue 2. 2003-12-01. PMID:12915264. electrophysiological responses of interfascicular neurons of the rat anterior commissure to activation from the anterior olfactory nucleus, medial frontal cortex, and posterior nucleus of the amygdala. 2003-12-01 2023-08-12 rat
Julie Hudry, Fabien Perrin, Philippe Ryvlin, François Mauguière, Jean-Pierre Roye. Olfactory short-term memory and related amygdala recordings in patients with temporal lobe epilepsy. Brain : a journal of neurology. vol 126. issue Pt 8. 2003-09-16. PMID:12805107. olfactory short-term memory and related amygdala recordings in patients with temporal lobe epilepsy. 2003-09-16 2023-08-12 human
S Deschamps, B Woodside, C-D Walke. Pups presence eliminates the stress hyporesponsiveness of early lactating females to a psychological stress representing a threat to the pups. Journal of neuroendocrinology. vol 15. issue 5. 2003-08-07. PMID:12694374. we hypothesize that the amygdala, because of its ability to process olfactory stimuli and stimuli with affective properties, might play an essential role in 'gating' the neuroendocrine response to stress during lactation. 2003-08-07 2023-08-12 Not clear
E A Rybnikova, M Pelto-Huikko, V V Rakitskaya, V G Shalyapin. Localization of corticoliberin receptors in the rat brain. Neuroscience and behavioral physiology. vol 33. issue 4. 2003-06-23. PMID:12774843. intense expression of cl-r2 mrna was observed in structures of the olfactory system, corticomedial parts of the amygdala, fields ca1-ca4 of the hippocampus, the ventromedial hypothalamus, and several brain stem nuclei. 2003-06-23 2023-08-12 rat
J V Trinh, D L Nehrenberg, J P R Jacobsen, M G Caron, W C Wetse. Differential psychostimulant-induced activation of neural circuits in dopamine transporter knockout and wild type mice. Neuroscience. vol 118. issue 2. 2003-06-16. PMID:12699766. in wt mice, methylphenidate induced fos-like immunoreactivity (fos-li) in the mesostriatal and mesolimbocortical da pathways that included the anterior olfactory nucleus, frontal association cortex, orbitofrontal cortex, cingulate cortex, caudate-putamen, globus pallidus, claustrum, lateral septum, nucleus accumbens, basolateral and central nuclei of the amygdala, bed nucleus of stria terminalis, subthalamic nucleus, substantia nigra, ventral tegmental area, and dorsal raphe. 2003-06-16 2023-08-12 mouse
J V Trinh, D L Nehrenberg, J P R Jacobsen, M G Caron, W C Wetse. Differential psychostimulant-induced activation of neural circuits in dopamine transporter knockout and wild type mice. Neuroscience. vol 118. issue 2. 2003-06-16. PMID:12699766. while the mutants showed little response in most of these same areas, the anterior olfactory nucleus, caudal caudate-putamen, lateral septum, basolateral and central nuclei of the amygdala, and bed nucleus of stria terminalis were activated. 2003-06-16 2023-08-12 mouse
Lisa Kilpatrick, Larry Cahil. Modulation of memory consolidation for olfactory learning by reversible inactivation of the basolateral amygdala. Behavioral neuroscience. vol 117. issue 1. 2003-05-20. PMID:12619920. the role of the basolateral amygdala (bla) in the consolidation of an association between an olfactory stimulus and footshock was investigated with a reversible lesion technique of post-training intra-bla infusions of tetrodotoxin. 2003-05-20 2023-08-12 rat
Claire Murphy, Terry L Jernigan, Christine Fennema-Notestin. Left hippocampal volume loss in Alzheimer's disease is reflected in performance on odor identification: a structural MRI study. Journal of the International Neuropsychological Society : JINS. vol 9. issue 3. 2003-04-29. PMID:12666770. the study investigated correlations between volumetric measures of hippocampus, the parahippocampal gyrus and the amygdala, and the psychophysical measures of olfactory function. 2003-04-29 2023-08-12 human
Yoshiko Fukuda, Jun-ichi Yamamura, Teruko Uwano, Hisao Nishijo, Masahiko Kurokawa, Masaji Fukuda, Taketoshi Ono, Kimiyasu Shirak. Regulated transgene delivery by ganciclovir in the brain without physiological alterations by a live attenuated herpes simplex virus vector. Neuroscience research. vol 45. issue 2. 2003-04-10. PMID:12573470. on 14 days after inoculation without gcv-treatment, beta-gal activity localized in the anterior olfactory nucleus, frontal, insular, orbital, parietal, perirhinal, piriform cortices and the temporal region including the amygdala. 2003-04-10 2023-08-12 rat
Monique Caillol, Josiane Aïoun, Christine Baly, Marie-Annick Persuy, Roland Saless. Localization of orexins and their receptors in the rat olfactory system: possible modulation of olfactory perception by a neuropeptide synthetized centrally or locally. Brain research. vol 960. issue 1-2. 2003-03-28. PMID:12505657. using immunocytochemistry, we showed that both orexin-a and -b as well as their receptors were present at different levels of the olfactory system, from the nasal mucosa to nuclei of the amygdala. 2003-03-28 2023-08-12 rat
Monique Caillol, Josiane Aïoun, Christine Baly, Marie-Annick Persuy, Roland Saless. Localization of orexins and their receptors in the rat olfactory system: possible modulation of olfactory perception by a neuropeptide synthetized centrally or locally. Brain research. vol 960. issue 1-2. 2003-03-28. PMID:12505657. orexin receptors were present in mitral-tufted cells of the bulb and in many neuronal perikarya in the anterior olfactory nuclei, piriform cortex and amygdala nuclei. 2003-03-28 2023-08-12 rat
Catherine Vilpoux, Céline Carpentier, Isabelle Leroux-Nicollet, Laurent Naudon, Jean Costenti. Differential effects of chronic antidepressant treatments on micro- and delta-opioid receptors in rat brain. European journal of pharmacology. vol 443. issue 1-3. 2003-01-27. PMID:12044796. moclobemide increased it in hippocampus (4 days) and decreased it in anterior olfactory nucleus, frontal cortex, amygdala and hypothalamus (21 days). 2003-01-27 2023-08-12 rat
Masayuki Kobayashi, Tetsuya Sasabe, Masaki Takeda, Yusuke Kondo, Shin-Ichi Yoshikubo, Kazuyuki Imamura, Hirotaka Onoe, Tohru Sawada, Yasuyoshi Watanab. Functional anatomy of chemical senses in the alert monkey revealed by positron emission tomography. The European journal of neuroscience. vol 16. issue 5. 2002-12-09. PMID:12372035. olfactory or flavour stimulation with acetic acid or apple increased rcbf in the prepyriform area, substantia innominata and amygdala. 2002-12-09 2023-08-12 human
Ronit Sharon, Rene Abramovitz, Ruth Miski. Plasminogen mRNA induction in the mouse brain after kainate excitation: codistribution with plasminogen activator inhibitor-2 (PAI-2) mRNA. Brain research. Molecular brain research. vol 104. issue 2. 2002-12-04. PMID:12225871. the results indicated that plg mrna was undetectable in the normal brain, but after kainate injection it was induced in neuronal cells in multiple, but specific areas, including layers ii-iii of the neocortex; the olfactory bulb, anterior olfactory nucleus, and the piriform cortex; the caudate/putamen and accumbens nucleus shell; throughout the amygdaloid complex; and in the cai/ca3 subfields of the hippocampus. 2002-12-04 2023-08-12 mouse
Nancy J Rutkoski, Anna A Lerant, Christopher M Nolte, Jenne Westberry, Cathy W Levenso. Regulation of neuropeptide Y in the rat amygdala following unilateral olfactory bulbectomy. Brain research. vol 951. issue 1. 2002-11-26. PMID:12231458. regulation of neuropeptide y in the rat amygdala following unilateral olfactory bulbectomy. 2002-11-26 2023-08-12 rat
Asha L Bhakar, Laura-Lee Tannis, Christine Zeindler, Maria Pia Russo, Christian Jobin, David S Park, Sandra MacPherson, Philip A Barke. Constitutive nuclear factor-kappa B activity is required for central neuron survival. The Journal of neuroscience : the official journal of the Society for Neuroscience. vol 22. issue 19. 2002-10-24. PMID:12351721. intriguingly, nf-kappab activity was also prominent in the cns throughout development, especially within neocortex, olfactory bulbs, amygdala, and hippocampus. 2002-10-24 2023-08-12 mouse
David H Zald, José V Pard. The neural correlates of aversive auditory stimulation. NeuroImage. vol 16. issue 3 Pt 1. 2002-09-11. PMID:12169258. previous neuroimaging studies indicate that the human amygdala activates during exposure to aversive visual, olfactory and gustatory stimuli. 2002-09-11 2023-08-12 human
Gwendolyn D Fewell, Michael Meredit. Experience facilitates vomeronasal and olfactory influence on Fos expression in medial preoptic area during pheromone exposure or mating in male hamsters. Brain research. vol 941. issue 1-2. 2002-08-14. PMID:12031551. regions counted included main and accessory olfactory bulbs, corticomedial amygdala, bed nucleus stria terminalis and medial preoptic area. 2002-08-14 2023-08-12 Not clear
Pascal Bonaventure, Diane Nepomuceno, Annette Kwok, Wenying Chai, Xavier Langlois, Rene Hen, Kimberly Stark, Nicholas Carruthers, Timothy W Lovenber. Reconsideration of 5-hydroxytryptamine (5-HT)(7) receptor distribution using [(3)H]5-carboxamidotryptamine and [(3)H]8-hydroxy-2-(di-n-propylamino)tetraline: analysis in brain of 5-HT(1A) knockout and 5-HT(1A/1B) double-knockout mice. The Journal of pharmacology and experimental therapeutics. vol 302. issue 1. 2002-07-12. PMID:12065723. in contrast to the low densities of [(3)h]5-ct binding sites, high-to-moderate densities of [(3)h]8-oh-dpat binding sites (10 nm) were found throughout the brain of 5-ht(1a) and 5-ht(1a/1b) knockout mice (olfactory system, septum, thalamus, hypothalamus, amygdala, ca3 field of the hippocampus, cortical mantle, and central gray). 2002-07-12 2023-08-12 mouse