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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Odor hedonics: processing of male pheromones in the female mouse brain

DiBenedictis, Brett 12 March 2016 (has links)
Female mice exhibit a hardwired preference to investigate pheromones released by male conspecifics. The neural pathways that convey pheromonal inputs to brain regions controlling motivated behaviors remain largely unknown. One brain region known to process pheromonal information conveyed via main- and accessory olfactory bulb inputs is the Medial Amygdala (Me), a limbic structure comprised of anterior (MeA) and posterior (MeP) subdivisions. Electrolytic lesions of the MeP blocked the normal preference of estrous female mice to investigate urinary odors emitted from breeding as opposed to castrated males whereas lesions of either the MeA or MeP significantly reduced females' display of the receptive lordosis posture in response to male mounts. Quantitative analysis of synaptic puncta in the efferent projection targets of these two amygdaloid subregions, visualized using fluorescent anterograde tract tracing techniques, revealed that the MeA and MeP differentially innervate several forebrain regions. The medial olfactory tubercle (mOT; a component of the ventral striatum) receives dense monosynaptic input from the MeA and responds selectively to breeding male (but not female) soiled bedding volatiles, indexed by augmented FOS expression. Using injections of the retrograde tracer, cholera toxin B (CTb), neurons were identified in the MeA and ventral tegmental area (VTA) that projected to the mOT in female mice and which also co-expressed FOS after exposure to breeding male, but not female, soiled bedding/urinary volatiles. This suggests that the MeA and VTA convey opposite-sex (male) pheromonal information to the mOT. Bilateral dopaminergic lesions of the anteromedial VS (a region which includes the mOT) eliminated females' preference for breeding male vs. female urinary pheromones, suggesting that dopaminergic modulation in the VS is necessary for the display of these behaviors. Lastly, bilateral silencing of mOT neuronal firing by the activation of the inhibitory DREADD receptor, hM4Di, induced by intraperitoneal injection of its ligand (CNO), also disrupted females' preference to investigate urinary odors from breeding males; this deficit was reversed when saline was administered instead of CNO. The Me, VTA, and mOT are essential segments of a neural reward circuit that motivates estrous female mice to seek out male pheromones, thereby facilitating mate recognition and reproductive success.
2

INVESTIGATION OF THE ELECTROPHYSIOLOGICAL PROPERTIES OF THE MAJOR CELL TYPES IN THE RAT OLFACTORY TUBERCLE

Chiang, Elizabeth C. January 2008 (has links)
No description available.
3

Organização das projeções da área tegmental ventral para o estriado. Um estudo no rato com a técnica de rastreamento anterógrado da leucoaglutina do Phaseolus vulgaris / Organization of ventral tegmental area projections to the striatum: an anterograde tracing study in the rat with the Phaseolus vulgaris leucoagglutinin technique

Lima, Leandro Bueno 14 April 2010 (has links)
A área tegmental ventral (VTA) contém neurônios dopaminérgicos do grupamento A10 e envia projeções muito densas para o estriado ventral. Esta circuitaria está crucialmente envolvida em mecanismos de recompensa. Recentemente, a organização destas projeções foi reexaminada por Ikemoto S. (Brain Res. Rev., 56:27-78, 2007), em um estudo de rastreamento retrógrado minucioso, sendo proposto a subdivisão destas projeções em um sistema dopaminérgico mesoestriatal ventromedial que inerva a concha medial do accumbens e o tubérculo olfatório medial, e um sistema dopaminérgico mesoestriatal ventrolateral que inerva o cerne e a concha lateral do accumbens e o tubéculo olfatório lateral. Afim de complementar o conhecimento destas projeções, no presente estudo elas foram examinadas com a técnica anterógrada da leucoaglutinina do Phaseolus vulgaris. Nossos resultados indicam que há um extenso embricamento dos campos terminais estriatais inervados por diferentes setores/núcleos da VTA e reforçam a noção de que as eferências da VTA podem ser subdivididas em um sistema mesoestriatal ventromedial e um sistema mesoestriatal ventrolateral. Eles revelam ainda que as projeções da VTA para o estriado ventral têm uma organização topográfica médio-lateral mais complexa do que previamente reconhecido, a faixa médio-lateral do estriado ventral inervada depende de uma combinação da região médio-lateral e dorsoventral da VTA. Assim, as regiões mais ventrais e mediais da VTA (correspondendo ao núcleo interfascicular) inervam os distritos mais mediais do estriado ventral (a concha dorsomedial do accumbens e a extremidade medial do tubérculo olfatório), e as regiões mais dorsais e laterais da VTA (correspondendo à região dorsolateral do núcleo parabraquial pigmentoso) se projetam para os distritos mais laterais do estriado ventral (o cerne lateral e a concha lateral do accumbens, o caudado-putâmen ventral e o tubérculo olfatório lateral). Por outro lado, as projeções da VTA para o estriado ventral não possuem uma organização topográfica rostrocaudal. Outro fato a ser destacado é que a organização das projeções mesoestriatais da VTA lembra o padrão das projeções córticoestriatais, sendo observado no estriado, além de um campo terminal principal, pequenos focos isolados de marcação. / The ventral tegmental area (VTA) contains dopaminergic neurons of the A10 group and sends dense projections to the ventral striatum. This circuitry is critically involved in reward mechanisms. Recently, the organization of these projections was reexamined by Ikemoto S. (Brain Res. Rev., 56:27-78, 2007) in a detailed retrograde tracing study, being proposed that these projections can be subdivided into two main systems, a ventromedial mesostriatal dopaminergic system that innervates the medial shell of the accumbens and medial olfactory tubercle, and a ventrolateral mesostriatal dopaminergic system that targets the core and lateral shell of the accumbens and lateral olfactory tubercle. In order to complement these data, in the present study the VTA mesostriatal projections were examined with a sensitive anterograde tracing technique using the Phaseolus vulgaris leucoaglutinin. Our results indicate that there is an extensive overlap of terminal fields innervated by different sectors / nuclei of the VTA and reinforce the notion that VTA efferents can be subdivided into a ventromedial and a ventrolateral mesostriatal system. They also show that the VTA projections to the ventral striatum have a mediolateral topographical organization more complex than previously acknowledged. In fact, projections along the mediolateral dimension of the ventral striatum depends on a combination of the mediolateral and dorsoventral axis of the VTA. In other words, the most ventral and medial parts of the VTA (corresponding to the interfascicular nucleus) innervates the most medial districts of the ventral striatum (corresponding to the dorsomedial shell of the accumbens and medial tip of the olfactory tubercle), and the most dorsal and lateral parts of the VTA (corresponding to the dorsolateral region of the parabrachial pigmented nucleus) project to the most lateral districts of the ventral striatum (lateral core and lateral shell of the accumbens, ventral caudate-putamen and lateral olfactory tubercle). Moreover, VTA projections to the ventral striatum do not seem to have a rostrocaudal topographical organization. It is also of note that the organization of the VTA mesostriatal projections shares features with cortico-striatal projections, in the sense that both fiber systems have a main terminal field and also give rise to small, scattered isolated foci of terminal labeling.
4

Organização das projeções da área tegmental ventral para o estriado. Um estudo no rato com a técnica de rastreamento anterógrado da leucoaglutina do Phaseolus vulgaris / Organization of ventral tegmental area projections to the striatum: an anterograde tracing study in the rat with the Phaseolus vulgaris leucoagglutinin technique

Leandro Bueno Lima 14 April 2010 (has links)
A área tegmental ventral (VTA) contém neurônios dopaminérgicos do grupamento A10 e envia projeções muito densas para o estriado ventral. Esta circuitaria está crucialmente envolvida em mecanismos de recompensa. Recentemente, a organização destas projeções foi reexaminada por Ikemoto S. (Brain Res. Rev., 56:27-78, 2007), em um estudo de rastreamento retrógrado minucioso, sendo proposto a subdivisão destas projeções em um sistema dopaminérgico mesoestriatal ventromedial que inerva a concha medial do accumbens e o tubérculo olfatório medial, e um sistema dopaminérgico mesoestriatal ventrolateral que inerva o cerne e a concha lateral do accumbens e o tubéculo olfatório lateral. Afim de complementar o conhecimento destas projeções, no presente estudo elas foram examinadas com a técnica anterógrada da leucoaglutinina do Phaseolus vulgaris. Nossos resultados indicam que há um extenso embricamento dos campos terminais estriatais inervados por diferentes setores/núcleos da VTA e reforçam a noção de que as eferências da VTA podem ser subdivididas em um sistema mesoestriatal ventromedial e um sistema mesoestriatal ventrolateral. Eles revelam ainda que as projeções da VTA para o estriado ventral têm uma organização topográfica médio-lateral mais complexa do que previamente reconhecido, a faixa médio-lateral do estriado ventral inervada depende de uma combinação da região médio-lateral e dorsoventral da VTA. Assim, as regiões mais ventrais e mediais da VTA (correspondendo ao núcleo interfascicular) inervam os distritos mais mediais do estriado ventral (a concha dorsomedial do accumbens e a extremidade medial do tubérculo olfatório), e as regiões mais dorsais e laterais da VTA (correspondendo à região dorsolateral do núcleo parabraquial pigmentoso) se projetam para os distritos mais laterais do estriado ventral (o cerne lateral e a concha lateral do accumbens, o caudado-putâmen ventral e o tubérculo olfatório lateral). Por outro lado, as projeções da VTA para o estriado ventral não possuem uma organização topográfica rostrocaudal. Outro fato a ser destacado é que a organização das projeções mesoestriatais da VTA lembra o padrão das projeções córticoestriatais, sendo observado no estriado, além de um campo terminal principal, pequenos focos isolados de marcação. / The ventral tegmental area (VTA) contains dopaminergic neurons of the A10 group and sends dense projections to the ventral striatum. This circuitry is critically involved in reward mechanisms. Recently, the organization of these projections was reexamined by Ikemoto S. (Brain Res. Rev., 56:27-78, 2007) in a detailed retrograde tracing study, being proposed that these projections can be subdivided into two main systems, a ventromedial mesostriatal dopaminergic system that innervates the medial shell of the accumbens and medial olfactory tubercle, and a ventrolateral mesostriatal dopaminergic system that targets the core and lateral shell of the accumbens and lateral olfactory tubercle. In order to complement these data, in the present study the VTA mesostriatal projections were examined with a sensitive anterograde tracing technique using the Phaseolus vulgaris leucoaglutinin. Our results indicate that there is an extensive overlap of terminal fields innervated by different sectors / nuclei of the VTA and reinforce the notion that VTA efferents can be subdivided into a ventromedial and a ventrolateral mesostriatal system. They also show that the VTA projections to the ventral striatum have a mediolateral topographical organization more complex than previously acknowledged. In fact, projections along the mediolateral dimension of the ventral striatum depends on a combination of the mediolateral and dorsoventral axis of the VTA. In other words, the most ventral and medial parts of the VTA (corresponding to the interfascicular nucleus) innervates the most medial districts of the ventral striatum (corresponding to the dorsomedial shell of the accumbens and medial tip of the olfactory tubercle), and the most dorsal and lateral parts of the VTA (corresponding to the dorsolateral region of the parabrachial pigmented nucleus) project to the most lateral districts of the ventral striatum (lateral core and lateral shell of the accumbens, ventral caudate-putamen and lateral olfactory tubercle). Moreover, VTA projections to the ventral striatum do not seem to have a rostrocaudal topographical organization. It is also of note that the organization of the VTA mesostriatal projections shares features with cortico-striatal projections, in the sense that both fiber systems have a main terminal field and also give rise to small, scattered isolated foci of terminal labeling.
5

Signatures neurales de la perception hédonique des odeurs chez la souris / Neural bases of odor hedonics in mice

Midroit, Maellie 26 January 2018 (has links)
Chez l'homme comme chez l'animal, les odeurs guident le comportement et motivent à agir. La valeur hédonique (le caractère plus ou moins plaisant) est la dimension olfactive principale et est généralement utilisée pour décider d'approcher ou fuir la source odorante. Bien que cette attractivité soit façonnée par l'expérience, certaines odeurs non-familières sont spontanément attractives ou répulsives. Le caractère plus ou moins plaisant d'une odeur serait, du moins en partie, inné. Il existerait ainsi une signature neurale spécifique de la valeur hédonique des odeurs, et c'est ce que cette thèse s'emploie à identifier.Après sélection d'odorants spontanément plus ou moins attractifs (plaisant et déplaisants respectivement), nous avons recherché les bases neurales qui sous-tendent ces comportements. Nous avons tout d'abord cartographié (expression de Zif268) puis manipulé (optogénétique) l'activité neuronale du bulbe olfactif en réponse à ces odorants, et avons révélé une signature neurale bulbaire de la valeur hédonique des odeurs le long de l'axe antéro-postérieur.Puis, afin d'analyser comment le message hédonique était interprété par les aires olfactives et associatives supérieures, nous avons développé une méthode de recalage de l'activité cérébrale dans un atlas de référence, assurant une cartographie rapide, précise et fiable de cette activité. Enfin, en combinant cette méthode à des approches comportementales, électrophysiologiques et pharmacologiques, nous avons montré un rôle du système de la récompense dans le codage de la valeur hédonique des odeurs et qu'une odeur peut être perçue comme une récompense, motivant alors les comportements d'approche et de retrait / In humans and animals, odors guide behavior and motivate action. The hedonic value (that is the pleasantness) is the main olfactory dimension and is generally used to decide to approach the odor source or move away. While this attractiveness is shaped by experience, some unfamiliar odors are spontaneously attractive or repulsive. The pleasantness of an odor would be, at least in part, innate, and suggest a specific neural signature of the hedonic value of odors. The global aim of this thesis is to decipher neuronal mechanisms underlying the hedonic value of odors.After having selected odorants with various level of attraction (pleasant and unpleasant), we have deciphered the neural bases that underlie these behaviors.We first mapped (expression of Zif268) and then manipulated (optogenetic) the neuronal activity of the olfactory bulb in response to these odors, and have revealed a bulbar neural signature of the hedonic value of odors along the antero-posterior axis.Then, in order to analyze how the hedonic information was interpreted by the higher olfactory and associative areas, we developed a method allowing the registration of brain activity in a reference atlas, that ensure a fast, accurate and reliable mapping of this activity. Finally, by combining this method with behavioral, electrophysiological and pharmacological approaches, we have shown a role of the reward system in the coding of odor hedonics and that an odor can act as a reward, thus motivating behavior, approach and withdrawal

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