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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.
171

Development and application of an olfactory discrimination paradigm for Asian elephants (Elephas maximus)

Arvidsson, Josefin January 2011 (has links)
The sense of smell plays an important role in regulating the behavior of Asian elephants but until now, no behavioral test to systematically assess the olfactory capabilities of this species existed. Using a voluntary, food-rewarded two-alternative operant conditioning procedure, three female Asian elephants were successfully taught to discriminate between rewarded and unrewarded odors and also succeeded in intramodal stimulus transfer tasks in which either the rewarded odor, or the unrewarded odor, or both odors were exchanged simultaneously for new odors. The animals readily mastered the initial task within only 120 stimulus contacts, demonstrating rapid olfactory learning and performing at least as good as rodents and dogs and even better than other species, including nonhuman primates, tested in similar studies before. When presented with pairs of structurally related odorants, the discrimination performance of the elephants decreased with increasing structural similarity of the odorants, but the animals still significantly discriminated between aliphatic acetic esters even when they only differed by one carbon chain length. The elephants also demonstrated an excellent long-term odor memory and successfully remembered the reward value of previously learned odor stimuli after two, four, eight and even 16 weeks of recess in testing. The paradigm developed and applied in the present study proved to be useful to assess the olfactory capabilities in Asian elephants.
172

Disturbances of autonomic functions in spinal cord injury: autonomic dysreflexia and thermoregulation

Kalincik, Tomas, Medical Sciences, Faculty of Medicine, UNSW January 2009 (has links)
Disorders of the autonomic nervous system constitute serious complications of spinal cord injury (SCI) and their treatment is usually highly prioritised by spinal patients. Among these, autonomic dysreflexia and impaired thermoregulation are potentially life threatening conditions and require effective management. Olfactory ensheathing cells (OECs), progenitor cells and polymeric scaffolds have been tested in animal models of SCI and some of them have been considered for clinical trials. However, evaluation of the effect of such interventions on autonomic functions has received only rudimentary attention and would require a more thorough experimental assessment before the methods are utilised in human patients. This thesis tested two potential therapeutic strategies for autonomic dysreflexia and examined disorders of thermoregulatory functions in a rat model of spinal cord transection. Magnitude and duration of autonomic dysreflexia were evaluated with radio telemetry in spinalised animals treated with (i) implants of OECs and olfactory neurosphere-derived cells seeded in poly(lactic co glycolic) porous scaffolds or with (ii) transplants of OECs alone. (iii) Effects of SCI and of OECs on the morphology of sympathetic preganglionic neurons (SPNs; which are involved in pathogenesis of autonomic dysreflexia) stained for NADPH diaphorase were examined. (iv) Doppler ultrasonography and infrared thermography were used to assess responses of tail blood flow and surface temperature to cold. Transplants of OECs alone, but not in combination with olfactory neurosphere-derived cells and polymeric scaffolds, resulted in significantly shortened episodes of autonomic dysreflexia. This may be attributed to the alterations to the morphology of SPNs adjacent to the lesion: a transient increase in the morphometric features of the SPNs was evoked by spinal cord transection and this was further altered by transplantation of OECs. The thesis also showed that local responses of tail blood flow and temperature to cold were not abolished by complete SCI suggesting that temperature homeostasis could still be maintained in response to cold. It is hypothesised that OECs facilitate improved recovery from autonomic dysreflexia through alteration of the morphology of SPNs. Furthermore, it is suggested that the role of the tail in heat conservation can be regulated by mechanisms that are independent of the descendent neural control from supraspinal centres.
173

Analíse da expressão do receptor olfativo M93 em sistemas heterólogos / Analysis of the M93 olfactory receptor expression in heterologous systems

Guilherme Louzada Silva Meira 13 December 2004 (has links)
O sistema olfatório de mamífero pode discriminar milhares de odores presentes no meio ambiente. Aproximadamente 1000 diferentes receptores olfatórios (ORs) são expressos no epitélio olfatório (OE) do nariz, Os ORs detectam os odores e transmitem os sinais resultantes para o bulbo olfatório (OB) no cérebro. Os ORs pertencem a super família dos receptores acoplados a proteína G (GPCR) e apresentam sete domínios transmembrânicos putativos. Por razões desconhecidas, os ORs são retidos no retículo endoplasmático quando expressos em linhagens de células de mamíferos heterólogas. Provavelmente, proteínas acessórias sejam requeridas para o endereçamento dos Ors para a superficie celular. No presente estudo, utilizamos o OR M93 para estudar os mecanismos de expressão de um ORo A dissertação teve como objetivos específicos: (l) construção de um vetor para expressão do OR M93 em fusão com GFP em levedura e análise de sua localização celular; (2) identificar proteínas expressas no epitélio olfatório de camundongo que interajam com os ORs. A análise por microscopia de fluorescência revelou que a expressão do OR M93 fusionado a GFP demonstrou um padrão de fluorescência que sugere a retenção do OR M93 no retículo endoplasmático. Nós utilizamos o sistema de duplo híbrido em levedura para varrer uma biblioteca de cDNA de epitélio olfatório de camundongo com uma isca correspondente à região N-terminal do OR M93. Quatro proteínas candidatas foram identificadas: HLA-B associado ao transcrito 3 (BAT-3/ Scythe), superfamília transmembrana 4 (membro CD82), superfamília transmembrana 4 (membro OAP-I) e sindecan (membro SDC2) (\"GenBank accession numbers\": BC026647, D14883, BC0430n e BC047144). A análise da hibridação in situ destas proteínas, revelou que a proteína OAP-1 é a melhor candidata a interação com OR M93. Dessa maneira, nós indicamos a proteína OAP-1 como possível proteína candidata a auxiliar o OR a ser expresso de maneira funcional em sistemas heterólogos. / The mammalian olfactory system can discrim inate thousands of odorants present in the environrnent. Approximately 1000 different olfactory receptors (ORs) are expressed in the olfactory epithelium (OE) of the nose. The ORs detect odorants and transmit the resulting signals to the olfactory bulb (OB) of the brain. ORs belong to the G-protein-coupled receptor (GPCR) super family and have seven putative transmembrane domains. For unknown reasons, the ORs are retained in the endoplasmatic reticulum when expressed in heterologous mammalian cell lines. Probably accessory proteins are required for the sorting of the ORs to the cell surface. In the present work, we used the OR M93 to study the mechanisms of OR expression. Our goals were to (1) construct an expression vector for OR M93 in fusion with GFP in yeast and (2) to identify proteins expressed in the mouse OE that interact with ORs. The analysis by fluorescence microscopy suggested that OR M93 in fusion with GFP was retained in the endoplasmic reticulum (ER) of yeast. We used the yeast two-hybrid system to screen a mouse OE cDNA library with a bait corresponding to the N-terminal region ofthe üR M93. Four potential candidates were identified: HLA-B associated transcript 3 (BAT-3/Scythe), transmembrane 4 superfamily (CD82 member), transmembrane 4 superfamily (TSPN-3 member) and syndecan (SDC2). In situ hybridization analysis suggests that OAP-l protein represents the best candidate for interaction with OR M93. We suggest the OAP-l protein could be an accessory protein required for the sorting of the ORs to the cell surface in heterologous cell lines.
174

Souvislost čichových schopností, vzrušivosti a orgasmicity žen / Association between olfactory abilities, arousal and orgasmicity in women

Hájková, Martina January 2012 (has links)
Olfaction plays an important role in human mate selection or in ratings of sexual attractiveness of potential mates. Many studies suggest that olfaction is associated with human sexuality and arousal as well, especially in women, for whom the perception of odors is an important aspect not only in mate selection, but also in sexual context. There are steroids called 16-androstenes, which have an unique importance in this issue. These steroids, produced by the apocrine glands, are compounds of human body odor. The aim of the empirical part of this thesis is to research the associations between olfactory abilities and sexual function in women, especially with particular focus on the association of olfactory sensitivity (particularly to androstadienone as well as in general), orgasmicity and arousal, which are two major domains of sexual function. Participants were 90 heterosexual and coupled female students aged 21-30. All participants were tested during the follicular phase of their menstrual cycle. The Sniffin Sticks olfactory test was employed to assess the general olfactory functions. Among others, olfactory sensitivity to androstadienone was measured, as well as the perceived intensity and hedonicity of androstenone, androstenol and andostadienone. Participants filled out set of questionnaires...
175

Eine histologische Charakterisierung des menschlichen olfaktorischen Riechepithels sowie des olfaktorischen Bulbus mit einem Fokus auf altersabhängige Unterschiede

Fitzek, Mira Pauline 01 July 2024 (has links)
Das menschliche olfaktorische Epithel ist dank Stamm- und Vorläuferzellen innerhalb der Basalzellpopulation, die mit einer erhöhten Mitoserate und Regeneration von Epithelzellkomponenten auf Verletzungen oder neuronalen Verlust reagieren, zu lebenslanger Regeneration befähigt. Nichtsdestotrotz ist eine Beeinträchtigung des Geruchssinns im Alter und bei Demenzerkrankungen häufig. Etwa 80 % der über 80-jährigen und etwa 85 % der Patienten mit Alzheimer-Demenz im Frühstadium weisen eine Geruchsstörung auf. Diese ist mit einer Reduktion der allgemeinen Lebensqualität sowie gesteigerter Mortalität und psychischen Erkrankungen wie Depression und Angststörungen assoziiert. Veränderungen des histologischen Aufbaus der zugrunde liegenden anatomischen Strukturen sind anzunehmen und vorrangig für das olfaktorische Epithel (OE) weniger den olfaktorischen Bulbus (OB) beschrieben. Das Wissen über den Aufbau des menschlichen Geruchssystems und seine Veränderungen im Alter beruht jedoch auf Ergebnissen weniger deskriptiver Studien menschlicher Gewebeproben und überwiegend auf Erkenntnissen aus dem Modelltier Maus. Wenngleich murine Studien maßgeblich zu einem besseren Verständnis des Geruchssystems beigetragen haben, weist die Maus als Modelltier deutliche strukturelle Unterschiede zum Menschen auf. Detaillierte quantitative Analysen des menschlichen Geruchssystems fehlen weitestgehend. Das Ziel dieser Arbeit war es, das menschliche Geruchssystem durch eine umfangreiche qualitative und quantitative Analyse menschlicher Autopsiepräparate des olfaktorischen Epithels (OE) und olfaktorischen Bulbus (OB) zu charakterisieren und histopathologische Veränderungen über die Lebensspanne und bei Demenzerkrankungen zu beschreiben.
176

Diversity of transduction mechanisms in receptor neurons of the main olfactory epithelium in <i>Xenopus laevis</i> tadpoles / Vielfalt von Transduktionsmechanismen in Rezeptorzellen des olfaktorischen Epithels der Hauptkammer von larvalen <i>Xenopus laevis</i>

Manzini, Ivan 29 January 2003 (has links)
No description available.
177

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
178

Neural Circuit Analyses of the Olfactory System in Drosophila: Input to Output: A Dissertation

DasGupta, Shamik 17 September 2009 (has links)
This thesis focuses on several aspects of olfactory processing in Drosophila. In chapter I and II, I will discuss how odorants are encoded in the brain. In both insects and mammals, olfactory receptor neurons (ORNs) expressing the same odorant receptor gene converge onto the same glomerulus. This topographical organization segregates incoming odor information into combinatorial maps. One prominent theory suggests that insects and mammals discriminate odors based on these distinct combinatorial spatial codes. I tested the combinatorial coding hypothesis by engineering flies that have only one class of functional ORNs and therefore cannot support combinatorial maps. These files can be taught to discriminate between two odorants that activate the single functional class of ORN and identify an odorant across a range of concentrations, demonstrating that a combinatorial code is not required to support learned odor discrimination. In addition, these data suggest that odorant identity can be encoded as temporal patterns of ORN activity. Behaviors are influenced by motivational states of the animal. Chapter III of this thesis focuses on understanding how motivational states control behavior. Appetitive memory in Drosophilaprovides an excellent system for such studies because the motivational state of hunger promotes reliance on learned appetitive cues whereas satiety suppresses it. We found that activation of neuropeptide F (dNPF) neurons in fed flies releases appetitive memory performance from satiety-mediated suppression. Through a GAL4 screen, we identified six dopaminergic neurons that are a substrate for dNPF regulation. In satiated flies, these neurons inhibit mushroom body output, thereby suppressing appetitive memory performance. Hunger promotes dNPF release, which blocks the inhibitory dopaminergic neurons. The motivational drive of hunger thus affects behavior through a hierarchical inhibitory control mechanism: satiety inhibits memory performance through a subset of dopaminergic neurons, and hunger promotes appetitive memory retrieval via dNPF-mediated disinhibition of these neurons. The aforementioned studies utilize sophisticated genetic tools for Drosophila. In chapter IV, I will talk about two new genetic tools. We developed a new technique to restrict gene expression to different subsets of mushroom body neurons with unprecedented precision. We also adapted the light-activated adenylyl cyclase (PAC) from Euglena gracilis as a light-inducable cAMP system for Drosophila. This system can be used to induce cAMP synthesis in targeted neurons in live, behaving preparations.
179

Bases cellulaires et moléculaires de l’apprentissage et de la mémorisation dans le bulbe olfactif de souris / Cellular and molecular bases of learning and memory in the mouse olfactory bulb

Busto, Germain 22 June 2009 (has links)
Durant ma thèse, j’ai étudié dans le bulbe olfactif (BO) de souris adulte, les mécanismes cellulaires et moléculaires impliqués dans l’apprentissage et de la mémorisation olfactive. Le BO est le premier relai central de l’information olfactive. A ce niveau, des phénomènes de plasticité locaux interviendraient dans la conservation d’une trace mnésique de l’apprentissage. J’ai tout d’abord évalué, dans la couche granulaire, les conséquences d’un apprentissage olfactif associatif sur l’expression de l’IEG Zif268 induite par une stimulation odorante. Les souris ayant une expérience préalable avec l’odorant ne présentent pas d’augmentation de l’expression de Zif268. Cependant, le patron d’expression cellulaire de Zif268 est modifié par l’apprentissage. J’ai ensuite isolé par microdissection laser, à partir des patrons d’expression de Zif268, les populations de cellules de la couche granulaire impliquées dans le traitement de l’odorant suite à l’apprentissage. Dans ces régions, l’étude de l’expression des gènes à large échelle m’a permis de mettre en évidence que la voie des neurotrophines était modulée dans la phase précoce de l’apprentissage alors que les acteurs de la LTP étaient modulés lors de la phase tardive. Enfin, j’ai montré que des souris inactivées pour zif268 présentaient des déficits d’acquisition et de consolidation de l’apprentissage olfactif ainsi que de discrimination d’odorants perceptivement proches. Ces résultats indiquent que l’acquisition par l’odorant d’une signification lors d’un apprentissage olfactif modifie son traitement dans le BO. D’autre part, des acteurs moléculaires potentiellement impliqués dans ces modifications cellulaires ont été identifiés. / My research was about cellular and molecular mechanisms implicated in olfactory learning and memory in the adult mouse olfactory bulb (OB). The OB is the first relay of olfactory information in the central nervous system. At this level, phenomenon of local plasticity could be involved in the conservation of a memory trace associated with learning process. First, I evaluated in the granule cell layer, the consequences of an olfactory associative learning on the IEG Zif268 odour-induced expression. Mice with a prior behavioural experience with the odour do not show increase in Zif268 expression. However, the specific odour-induced Zif268 expression pattern is modified by learning. Then, I isolated using laser capture microdissection activated cell populations of the granule cell layer, based on Zif268 expression patterns, after an olfactory associative learning. In those regions, I studied gene expression at a large scale. I found that neurotrophine pathway was modulated during the early phase of learning process whereas molecular actors of LTP are modulated during the consolidation phase. Finally, I showed that Zif268 knock-out mice exhibit associative learning and memory deficits. Those mice also present deficits to discriminate between closely related odorants. Those results indicate that acquisition by odorant of a behavioural meaning during olfactory learning modify odorant processing at the level of OB. Moreover we identified candidate genes that could be implicated in the cellular modifications.
180

Porovnání úrovně čichového vnímání u osob s vrozeným či získaným těžkým zrakovým postižením / Comparing the level of olfactory perception among persons with congenital or acquired severe visual impairment

Kopsová, Tereza January 2011 (has links)
Univerzita Karlova v Praze, Pedagogická fakulta, Katedra speciální pedagogiky, DIPLOMOVÁ PRÁCE Comparing the level of olfactory perception among persons with congenital or acquired severe visual impairment Autor: Tereza Kopsová, Vedoucí práce: Mgr. Pavlína Šumníková, Ph.D., Praha 2010 ANNOTATION: The work deals with identifying the level of olfactory perception among people with severe visual impairment. The aim is to compare the function of olfactory discrimination and olfactory threshold sensitivity among persons with congenital or acquired visual handicap. The theoretical section presents the basic anatomical and physiological characteristics of the olfactory system, the list of disorders of smell and olfactory testing methods in clinical practice, and a brief account of visual impairments. The empirical investigation is carried out using standardized tests, olfactory discrimination function is measured by a test of the University of Pennsylvania Smell Identification Test (UPSIT), olfactory perception threshold using the Smell Threshold Test (STT). The thesis describes in detail both the methods and characteristics of groups of test subjects. In the analytical part it focuses on the comparison of test results among persons with congenital or acquired severe visual impairment.

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