971 resultados para excitation sexuelle


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Thèse numérisée par la Division de la gestion de documents et des archives de l'Université de Montréal

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Il est proposé que la pléthysmographie pénienne puisse faire l’objet d’améliorations par la combinaison de la pléthysmographie pénienne et de la vidéo-oculographie lors de la présentation de stimuli générés par ordinateur (SGO). L’application de cette combinaison n’a fait l’objet d’aucune étude auprès d’agresseurs sexuels d’enfants. Cette thèse comporte trois articles empiriques qui visent respectivement à soutenir le développement d’un instrument d’évaluation basé sur l’utilisation combinée des réponses oculaires et érectiles lors de la présentation de SGO afin d’évaluer les intérêts sexuels d'agresseurs sexuels d’enfants. Pour ce faire, des hommes ayant eu (n = 26) ou non (n = 36) des comportements sexuels envers des enfants sont recrutés afin de constituer des groupes de comparaison. Le premier article représente une exploration préliminaire des données issues de caractéristiques sociodémographiques, sexuelles et criminologiques ainsi que des réponses oculaires et péniennes lors de présentations de SGO et de bandes sonores conventionnelles. Il permet d’orienter les décisions entourant la poursuite de la recherche. Le second article porte sur la comparaison des profils des réponses péniennes issues de présentations de SGO et de bandes sonores conventionnelles ainsi que sur leur capacité respective à classifier les individus selon la présence d’antécédents de comportements sexuels sur des enfants. Il permet d’établir la validité discriminante de l’utilisation de SGO et d’établir des normes d’utilisation clinique. Le troisième article vise à circonscrire une dynamique oculaire associée à l’intérêt sexuel envers l’âge d’un objet et à soutenir la contribution de la combinaison des réponses oculaires et péniennes lors de la présentation de SGO. En somme, les résultats issus de cette thèse soutiennent l’utilisation clinique de la pléthysmographie pénienne lors de la présentation de SGO. Ils permettent d’identifier la présence d’une signature oculaire spécifique aux agresseurs sexuels lors de la présentation de SGO. Ils démontrent la contribution de la combinaison des réponses oculaires et péniennes par rapport à une mesure reposant uniquement sur les réponses péniennes. Ces résultats ouvrent la voie à l’utilisation clinique de la vidéo-oculographie et de SGO et offrent non seulement des possibilités intéressantes dans le domaine de la délinquance sexuelle, mais également de la sexualité en général.

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Malgré l’engouement pour les neurosciences cognitives des émotions et les nombreuses publications des dernières décennies tentant d’élucider les bases neurobiologiques des émotions, nos connaissances sur le domaine restent embryonnaires. Plusieurs questions importantes restent toujours sans réponses incluant s’il existe ou non un système unique pour le traitement de stimuli émotionnels et s’il y a ou non des différences entre les hommes et les femmes pour le traitement de stimuli émotionnels. L’objectif de cette thèse est d’apporter certains éléments de réponses à ces questions à travers une caractérisation du substrat neurobiologique impliqué dans le traitement de stimuli émotionnels visuels et dynamiques. Ce travail a été mené via l’imagerie par résonance magnétique fonctionnelle (IRMf) cérébrale. Le premier chapitre, subdivisé en quatre sections, permet de présenter la perspective dans laquelle s’inscrit la thèse. La première section de ce chapitre sert à établir certaines balises définitionnelles liées aux émotions. La seconde section, basée sur une lecture des textes originaux, retrace les faits historiques saillants de la neurobiologie des émotions allant de Charles Darwin à Joseph Ledoux. La troisième section débute où la seconde s’arrête et continue l’histoire de la neurobiologie des émotions à travers un résumé de toutes les principales méta-analyses d’imagerie fonctionnelle cérébrale des émotions. La dernière section du chapitre permet de présenter la problématique de recherche. La recherche, à proprement parler, qui constitue le corps de la thèse est ensuite présentée sous forme de trois articles. Enfin, les résultats de cette recherche et la manière dont ils s’inscrivent dans la continuité de nos connaissances actuelles font l’objet d’une discussion générale. Le premier article (chapitre II) rapporte, chez les hommes et les femmes, les régions du cerveau qui sont plus activées lors du traitement de films érotiques que lors du traitement de films dits ‘neutres’. Un chevauchement manifeste est observé entre les hommes et les femmes. Par contre, une activation significativement plus grande est observée chez les hommes pour l’hypothalamus, une région importante pour le comportement sexuel à travers la phylogénie. De plus, chez les hommes seulement, l’activation hypothalamique est corrélée à l’excitation sexuelle subjective. Comme la recherche présentée dans le premier article se sert de conditions expérimentales relativement longues pour l’IRMf (i.e. extraits de films de 3 minutes) et que ceci peut induire une nette diminution de signal en lien avec certaines contraintes de l’IRMf, le second article (chapitre III) examine les corrélats du traitement de stimuli sexuels en utilisant, cette fois, un paradigme d’IRMf classique où plusieurs extraits de films de 33 secondes sont présentés à la place. Cette étude démontre que, pour le traitement de stimuli sexuels, ce paradigme classique d’IRMf est beaucoup plus sensible que celui du premier article. De plus, comme ce paradigme mène à une reproduction des résultats du premier papier, ce travail soutient la perspective selon laquelle les paradigmes à époques courtes sont une alternative valide aux longues époques comme méthode d’étude du traitement de stimuli émotionnels. Le troisième article (chapitre IV) capitalise sur le protocole du second article et démontre que les patrons d’activation associés au visionnement de courts extraits de films induisant du dégoût, de l’amusement, ou de l’excitation sexuelle, sont très étendus. Une analyse de conjonction formelle démontre un large chevauchent de ces patrons à travers les différents affects étudiés. Enfin, le cinquième chapitre sert de discussion générale. Les questions des différences entre les hommes et les femmes dans le traitement des émotions, de l’existence ou non d’un système général pour le traitement des émotions, ainsi que de la manière dont un tel système pourrait être conçu, sont des points saillants de la discussion. Ces points sont abordés à la lumières des connaissances actuelles et des résultats des trois articles.

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La pléthymographie pénienne est considérée comme la méthode la plus objective pour évaluer les intérêts sexuels d'hommes adultes. Par contre, un nombre grandissant de chercheurs déplorent le manque de correspondance qui existe entre les stimuli présentés dans ce type d'évaluation et la réalité. Il est proposé de tenter de remédier à cette lacune en utilisant des personnages virtuels générés par ordinateur et présentant une variété de dispositions affectives lors d'évaluations pléthysmographiques. Ces stimuli n'ont jamais été utilisés dans l'évaluation des intérêts sexuels auprès d’agresseurs sexuels d'enfants. Cette thèse est composée de deux articles qui visent à soutenir le recours à ce type de stimuli lors d'évaluations pléthysmographiques. Afin d'atteindre cet objectif, des hommes ayant eu ou non des contacts sexuels avec des enfants ont été recrutés dans le but de les comparer. Une première étude empirique est bipartite. Elle vise en premier lieu à déterminer auprès d'une population étudiante si les dispositions affectives simulées par les personnages virtuels sont identifiables. Elle cherche ensuite à déterminer la capacité des personnages virtuels à générer un profil d'excitation sexuelle propre à un groupe d'individus n'ayant pas de problématique sexuelle. La seconde étude expérimentale porte sur la comparaison des profils de réponses érectiles issus de la présentation des personnages virtuels et évalue leur capacité à discriminer les individus selon qu'ils possèdent ou non des antécédents en matière de délinquance sexuelle envers les enfants. Dans l'ensemble, les résultats soutiennent l'utilisation de ces stimuli lors d'évaluations pléthysmographiques. Ils démontrent que les personnages virtuels simulent les dispositions affectives prévues et qu'ils génèrent des profils d'excitation sexuelle et des indices de déviance permettant de discriminer entre les groupes à l'étude. Ce projet de recherche présente les avantages associés à la présentation des personnages virtuels simulant différentes dispositions affectives lors de l'évaluation des intérêts sexuels chez les agresseurs d'enfants et propose des avenues intéressantes en termes d'évaluation et de traitement auprès de cette population.

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The Raman spectra of both low- and high-defect kaolinites in the hydroxyl stretching and low-wavenumber region were obtained with excitation at three visible wavelengths of 633, 514 and 442 nm and a UV wavelength of 325 nm. The UV-excited spectra were comparable to those excited by the visible wavelengths. The Raman spectra show hydroxyl stretching bands at 3621 cm-1 attributed to the inner hydroxyl, at 3692 and 3684 cm-1 attributed to the longitudinal and transverse optic modes of the inner surface hydroxyls and at 3668 and 3653 cm-1 assigned to the out-of phase vibrations of the inner surface hydroxyls. Two bands were observed in the spectral profile at 3695 cm-1 for the high-defect kaolinite at 3698 and 3691 cm-1 and were assigned to TO/LO splitting. An increase in relative intensity of the transverse optic mode is observed with decrease in laser wavelength. The intensity of the out-of-phase vibrations at 3668 and 3653 cm-1 of the inner surface hydroxyls shows a linear relationship with the longitudinal and transverse optic modes. In the low-wavenumber region excellent correlation was found between the experimentally determined and the calculated band positions.

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Analytical and closed form solutions are presented in this paper for the vibration response of an L-shaped plate under a point force or a moment excitation. Inter-relationships between wave components of the source and the receiving plates are clearly defined. Explicit expressions are given for the quadratic quantities such as input power, energy flow and kinetic energy distributions of the L-shaped plate. Applications of statistical energy analysis (SEA) formulation in the prediction of the vibration response of finite coupled plate structures under a single deterministic forcing are examined and quantified. It is found that the SEA method can be employed to predict the frequency averaged vibration response and energy flow of coupled plate structures under a deterministic force or moment excitation when the structural system satisfies the following conditions: (1) the coupling loss factors of the coupled subsystems are known; (2) the source location is more than a quarter of the plate bending wavelength away from the source plate edges in the point force excitation case, or is more than a quarter wavelength away from the pair of source plate edges perpendicular to the moment axis in the moment excitation case due to the directional characteristic of moment excitations. SEA overestimates the response of the L-shaped plate when the source location is less than a quarter bending wavelength away from the respective plate edges owing to wave coherence effect at the plate boundary

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This paper presents the ultrasonic velocity measurement method which investigates the possible effects of high voltage high frequency pulsed power on cortical bone material elasticity. Before applying a pulsed power signal on a live bone, it is essential to determine the safe parameters of pulsed power applied on bone non-destructively. Therefore, the possible changes in cortical bone material elasticity due to a specified pulsed power excitation have been investigated. A controllable positive buck-boost converter with adjustable output voltage and frequency has been used to generate high voltage pulses (500V magnitude at 10 KHz frequency). To determine bone elasticity, an ultrasonic velocity measurement has been conducted on two groups of control (unexposed to pulse power but in the same environmental condition) and cortical bone samples exposed to pulsed power. Young’s modulus of cortical bone samples have been determined and compared before and after applying the pulsed power signal. After applying the high voltage pulses, no significant variation in elastic property of cortical bone specimens was found compared to the control. The result shows that pulsed power with nominated parameters can be applied on cortical bone tissue without any considerable negative effect on elasticity of bone material.

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Under seismic loads neither the response of the pile nor the response of ground are independent of each other, contrary what is normally assumed. In seismic design of buildings, dynamic response of a structure is determined by assuming a fixed base on sub-grade and neglecting the physical interaction between foundation and soil profile in which it is embedded. However, the seismic response of pile foundations in vibration sensitive soil profiles is significantly affected by the behaviour of supporting soil. This research uses validated Finite Element techniques to simulate the seismic behaviour of pile foundations embedded in multilayered vibration sensitive soils.

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The ability of a piezoelectric transducer in energy conversion is rapidly expanding in several applications. Some of the industrial applications for which a high power ultrasound transducer can be used are surface cleaning, water treatment, plastic welding and food sterilization. Also, a high power ultrasound transducer plays a great role in biomedical applications such as diagnostic and therapeutic applications. An ultrasound transducer is usually applied to convert electrical energy to mechanical energy and vice versa. In some high power ultrasound system, ultrasound transducers are applied as a transmitter, as a receiver or both. As a transmitter, it converts electrical energy to mechanical energy while a receiver converts mechanical energy to electrical energy as a sensor for control system. Once a piezoelectric transducer is excited by electrical signal, piezoelectric material starts to vibrate and generates ultrasound waves. A portion of the ultrasound waves which passes through the medium will be sensed by the receiver and converted to electrical energy. To drive an ultrasound transducer, an excitation signal should be properly designed otherwise undesired signal (low quality) can deteriorate the performance of the transducer (energy conversion) and increase power consumption in the system. For instance, some portion of generated power may be delivered in unwanted frequency which is not acceptable for some applications especially for biomedical applications. To achieve better performance of the transducer, along with the quality of the excitation signal, the characteristics of the high power ultrasound transducer should be taken into consideration as well. In this regard, several simulation and experimental tests are carried out in this research to model high power ultrasound transducers and systems. During these experiments, high power ultrasound transducers are excited by several excitation signals with different amplitudes and frequencies, using a network analyser, a signal generator, a high power amplifier and a multilevel converter. Also, to analyse the behaviour of the ultrasound system, the voltage ratio of the system is measured in different tests. The voltage across transmitter is measured as an input voltage then divided by the output voltage which is measured across receiver. The results of the transducer characteristics and the ultrasound system behaviour are discussed in chapter 4 and 5 of this thesis. Each piezoelectric transducer has several resonance frequencies in which its impedance has lower magnitude as compared to non-resonance frequencies. Among these resonance frequencies, just at one of those frequencies, the magnitude of the impedance is minimum. This resonance frequency is known as the main resonance frequency of the transducer. To attain higher efficiency and deliver more power to the ultrasound system, the transducer is usually excited at the main resonance frequency. Therefore, it is important to find out this frequency and other resonance frequencies. Hereof, a frequency detection method is proposed in this research which is discussed in chapter 2. An extended electrical model of the ultrasound transducer with multiple resonance frequencies consists of several RLC legs in parallel with a capacitor. Each RLC leg represents one of the resonance frequencies of the ultrasound transducer. At resonance frequency the inductor reactance and capacitor reactance cancel out each other and the resistor of this leg represents power conversion of the system at that frequency. This concept is shown in simulation and test results presented in chapter 4. To excite a high power ultrasound transducer, a high power signal is required. Multilevel converters are usually applied to generate a high power signal but the drawback of this signal is low quality in comparison with a sinusoidal signal. In some applications like ultrasound, it is extensively important to generate a high quality signal. Several control and modulation techniques are introduced in different papers to control the output voltage of the multilevel converters. One of those techniques is harmonic elimination technique. In this technique, switching angles are chosen in such way to reduce harmonic contents in the output side. It is undeniable that increasing the number of the switching angles results in more harmonic reduction. But to have more switching angles, more output voltage levels are required which increase the number of components and cost of the converter. To improve the quality of the output voltage signal with no more components, a new harmonic elimination technique is proposed in this research. Based on this new technique, more variables (DC voltage levels and switching angles) are chosen to eliminate more low order harmonics compared to conventional harmonic elimination techniques. In conventional harmonic elimination method, DC voltage levels are same and only switching angles are calculated to eliminate harmonics. Therefore, the number of eliminated harmonic is limited by the number of switching cycles. In the proposed modulation technique, the switching angles and the DC voltage levels are calculated off-line to eliminate more harmonics. Therefore, the DC voltage levels are not equal and should be regulated. To achieve this aim, a DC/DC converter is applied to adjust the DC link voltages with several capacitors. The effect of the new harmonic elimination technique on the output quality of several single phase multilevel converters is explained in chapter 3 and 6 of this thesis. According to the electrical model of high power ultrasound transducer, this device can be modelled as parallel combinations of RLC legs with a main capacitor. The impedance diagram of the transducer in frequency domain shows it has capacitive characteristics in almost all frequencies. Therefore, using a voltage source converter to drive a high power ultrasound transducer can create significant leakage current through the transducer. It happens due to significant voltage stress (dv/dt) across the transducer. To remedy this problem, LC filters are applied in some applications. For some applications such as ultrasound, using a LC filter can deteriorate the performance of the transducer by changing its characteristics and displacing the resonance frequency of the transducer. For such a case a current source converter could be a suitable choice to overcome this problem. In this regard, a current source converter is implemented and applied to excite the high power ultrasound transducer. To control the output current and voltage, a hysteresis control and unipolar modulation are used respectively. The results of this test are explained in chapter 7.

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A "self-exciting" market is one in which the probability of observing a crash increases in response to the occurrence of a crash. It essentially describes cases where the initial crash serves to weaken the system to some extent, making subsequent crashes more likely. This thesis investigates if equity markets possess this property. A self-exciting extension of the well-known jump-based Bates (1996) model is used as the workhorse model for this thesis, and a particle-filtering algorithm is used to facilitate estimation by means of maximum likelihood. The estimation method is developed so that option prices are easily included in the dataset, leading to higher quality estimates. Equilibrium arguments are used to price the risks associated with the time-varying crash probability, and in turn to motivate a risk-neutral system for use in option pricing. The option pricing function for the model is obtained via the application of widely-used Fourier techniques. An application to S&P500 index returns and a panel of S&P500 index option prices reveals evidence of self excitation.

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Pavlovian auditory fear conditioning involves the integration of information about an acoustic conditioned stimulus (CS) and an aversive unconditioned stimulus in the lateral nucleus of the amygdala (LA). The auditory CS reaches the LA subcortically via a direct connection from the auditory thalamus and also from the auditory association cortex itself. How neural modulators, especially those activated during stress, such as norepinephrine (NE), regulate synaptic transmission and plasticity in this network is poorly understood. Here we show that NE inhibits synaptic transmission in both the subcortical and cortical input pathway but that sensory processing is biased toward the subcortical pathway. In addition binding of NE to β-adrenergic receptors further dissociates sensory processing in the LA. These findings suggest a network mechanism that shifts sensory balance toward the faster but more primitive subcortical input

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This paper proposes a new controller for the excitation system to improve rotor angle stability. The proposed controller uses energy function to predict desired flux for the generator to achieve improved first swing stability and enhanced system damping. The controller is designed through predicting the desired value of flux for the future step of the system and then obtaining appropriate supplementary control input for the excitation system. The simulations are performed on Single-Machine-Infinite-Bus system and the results verify the efficiency of the controller. The proposed method facilitates the excitation system with a feasible and reliable controller for severe disturbances.

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We investigated the effects of handling and fixation processes on the two-photon fluorescence spectroscopy of endogenous fluorophors in mouse skeletal muscle. The skeletal muscle was handled in one of two ways: either sectioned without storage or sectioned following storage in a freezer. The two-photon fluorescence spectra measured for different storage or fixation periods show a differential among those samples that were stored in water or were fixed either in formalin or methanol. The spectroscopic results indicate that formalin was the least disruptive fixative, having only a weak effect on the two-photon fluorescence spectroscopy of muscle tissue, whereas methanol had a significant influence on one of the autofluorescence peaks. The two handling processes yielded similar spectral information, indicating no different effects between them.

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We report on the measurement of second-harmonic signals from hyperplastic parenchyma and stroma in malignant human prostate tissue under femtosecond pulsed illumination in the wavelength range from 730 to 870 nm. In particular, the relationship of the second-harmonic generation to the excitation wavelength is measured. The result in these two regions behaves considerably differently and thus provides a possible indicator for identifying tissue components and malignancy.

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The dependence of second harmonic generation (SHG) from hyperplastic parenchyma and stroma in maligant human prostate tissue on excitation wavelengths was measured. A femtosecond pulsed laser, a scanning microscope and a spectrograph were used to perform the measurements. The spectra were measured under excitation power of 10 mW at excitation wavelengths of 730 nm, 750 nm, 800 nm, 850 nm and 890 nm. Analysis suggested that the SHG in prostate tissue is highly structured and wavelength dependent signifying its ability to be used as an indicator for recognizing tissue components, ultrastructures, micro-environments and diseases.