962 resultados para Neuromuscular Blockade
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The present study examined a wrist extension-to-flexion contraction pattern that was theorized to result in proprioceptive neuromuscular facilitation. However, the “reversal of antagonists” contraction pattern may have, alternatively, interfered with motor learning-related increases in strength. Participants (N=24) were matched on predicted strength and randomly assigned to either the control or experimental group. Training occurred during three test sessions within a one-week period. Retention and transfer (crossed-condition) tests were administered during a fourth test session two- weeks later. Both groups exhibited comparable increases in strength (20.2%) and decreases in muscle coactivation (35.2%), which were retained and transferred. Decreases in error and variability of the torque traces were associated with parallel decreases in variability of muscle activity. The reversal of antagonists technique did not interfere with motor learning-related increases in strength and decreases in variability. However, the more complex contraction pattern failed to result in proprioceptive neuromuscular facilitation of strength.
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Neuropeptides can modulate physiological properties of neurons in a cell-specific manner. The present work examines whether a neuropeptide can also modulate muscle tissue in a cell-specific manner, using identified muscle cells in third instar larvae of fruit flies. DPKQDFMRFa, a modulatory peptide in the fruit fly Drosophila melanogaster, has been shown to enhance transmitter release from motor neurons and to elicit contractions by a direct effect on muscle cells. We report that DPKQDFMRFa causes a nifedipine-sensitive drop in input resistance in some muscle cells (6 and 7) but not others (12 and 13). The peptide also increased the amplitude of nerve-evoked contractions and compound excitatory junctional potentials (EJPs) to a greater degree in muscle cells 6 and 7 than 12 and 13. Knocking down FMRFa receptor (FR) expression separately in nerve and muscle indicate that both presynaptic and postsynaptic FR expression contributed to the enhanced contractions, but EJP enhancement was due mainly to presynaptic expression. Muscle-ablation showed that DPKQDFMRFa induced contractions and enhanced nerve-evoked contractions more strongly in muscle cells 6 and 7 than cells 12 and 13. In situ hybridization indicated that FR expression was significantly greater in muscle cells 6 and 7 than 12 and 13. Taken together, these results indicate that DPKQDFMRFa can elicit cell-selective effects on muscle fibres. The ability of neuropeptides to work in a cell-selective manner on neurons and muscle cells may help explain why so many peptides are encoded in invertebrate and vertebrate genomes.
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The capacity for all living cells to sense and interact with their environment is a necessity for life. In highly evolved, eukaryotic species, like humans, signalling mechanisms are necessary to regulate the function and survival of all cells in the organism. Synchronizing systemic signalling systems at the cellular, organ and whole-organism level is a formidable task, and for most species requires a large number of signalling molecules and their receptors. One of the major types of signalling molecules used throughout the animal kingdom are modulatory substances (e.x. hormones and peptides). Modulators can act as chemical transmitters, facilitating communication at chemical synapses. There are hundreds of circulating modulators within the mammalian system, but the reason for so many remains a mystery. Recent work with the fruit fly, Drosophila melanogaster demonstrated the capacity for peptides to modulate synaptic transmission in a neuron-specific manner, suggesting that peptides are not simply redundant, but rather may have highly specific roles. Thus, the diversity of peptides may reflect cell-specific functions. The main objective of my doctoral thesis was to examine the extent to which neuromodulator substances and their receptors modulate synaptic transmission at a cell-specific level using D. melanogaster. Using three different modulatory substances, i) octopamine - a biogenic amine released from motor neuron terminals, ii) DPKQDFMRFa - a neuropeptide secreted into circulation, and iii) Proctolin - a pentapeptide released both from motor neuron terminals and into circulation, I was able to investigate not only the capacity of these various substances to work in a cell-selective manner, but also examine the different mechanisms of action and how modulatory substances work in concert to execute systemic functionality . The results support the idea that modulatory substances act in a circuit-selective manner in the central nervous system and in the periphery in order to coordinate and synchronize physiologically and behaviourally relevant outputs. The findings contribute as to why the nervous system encodes so many modulatory substances.
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Although reductions in cerebral blood flow (CBF) may be implicated in the development of central fatigue during environmental stress, the contribution from hypocapnia-induced reductions in CBF versus reductions in CBF per se has yet to be isolated. The current research program examined the influence of CBF, with and without consequent hypocapnia, on neuromuscular responses during hypoxia and passive heat stress. To this end, neuromuscular responses, as indicated by motor evoked potentials (MEP), maximal M-wave (Mmax) and cortical voluntary activation (cVA) of the flexor carpi radialis muscle during isometric wrist flexion, was assessed in three separate projects: 1) hypocapnia, independent of concomitant reductions in CBF; 2) altered CBF during severe hypoxia and; 3) thermal hyperpnea-mediated reductions in CBF, independent of hypocapnia. All projects employed a custom-built dynamic end-tidal forcing system to control end-tidal PCO2 (PETCO2), independent of the prevailing environmental conditions, and cyclooxygenase inhibition using indomethacin (Indomethacin, 1.2 mg·Kg-1) to selectively reduce CBF (estimated using transcranial Doppler ultrasound) without changes in PETCO2. A primary finding of the present research program is that the excitability of the corticospinal tract is inherently sensitive to changes in PaCO2, as demonstrated by a 12% increase in MEP amplitude in response to moderate hypocapnia. Conversely, CBF mediated reductions in cerebral O2 delivery appear to decrease corticospinal excitability, as indicated by a 51-64% and 4% decrease in MEP amplitude in response to hypoxia and passive heat stress, respectively. The collective evidence from this research program suggests that impaired voluntary activation is associated with reductions in CBF; however, it must be noted that changes in cVA were not linearly correlated with changes in CBF. Therefore, other factors independent of CBF, such as increased perception of effort, distress or discomfort, may have contributed to the reductions in cVA. Despite the functional association between reductions in CBF and hypocapnia, both variables have distinct and independent influence on the neuromuscular system. Therefore, future studies should control or acknowledge the separate mechanistic influence of these two factors.
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This study examined the effect of 8-weeks of resistance (RT) and plyometric (PLYO) training on maximal strength, power and jump performance compared with no added training (CON), in young male soccer players. Forty-one 11-13 year-old soccer players were divided into three groups (RT, PLYO, CON). All participants completed 5 isometric knee extensions at 90° and 5 isokinetic knee extensions at 240°/s pre- and post-training. Peak torque (PT), peak rate of torque development (pRTD), electromechanical-day (EMD), rate of muscle activation (Q30), muscle cross-sectional area (mCSA) and jump performance were examined. Both RT and PLYO resulted in significant (p < 0.05) increases in PT, pRTD and jump performance. RT resulted in significantly greater increases in both isometric and isokinetic PT, while PLYO resulted in significantly greater increases in isometric pRTD and jump performance compared with CON (p < 0.05). Q30 increased to a greater extent in PLYO (20%) compared with RT (5%) and CON (-5%) (p = 0.1). In conclusion, 8-weeks of RT and PLYO resulted in significant improvements in muscle strength and jump performance. RT appears to be more effective at eliciting increases in maximal strength while PLYO appears to enhance explosive strength, mediated by possible increases in the rate of muscle activation.
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La plasticité synaptique est une importante propriété du système nerveux, impliquée dans l’intégration de l’information. Cette plasticité a généralement été décrite par des changements aux niveaux pré et postsynaptiques. Notamment, l’efficacité présynaptique, soit la probabilité de libération de neurotransmetteurs associée au contenu quantique d’une synapse, peut être augmentée ou diminuée selon l’activité antérieure de la synapse. Malgré cette caractérisation, les mécanismes à l’origine de la détermination de l’efficacité présynaptique demeurent obscurs. Également, la plasticité synaptique reste encore mal définie au niveau glial, limitant, de ce fait, notre compréhension de l’intégration de l’information. Pourtant, la dernière décennie a mené à une redéfinition du rôle des cellules gliales. Autrefois reléguées à un rôle de support passif aux neurones, elles sont désormais reconnues comme étant impliquées dans la régulation de la neurotransmission. Notamment, à la jonction neuromusculaire (JNM), les cellules de Schwann périsynaptiques (CSPs) sont reconnues pour moduler l’efficacité présynaptique et les phénomènes de plasticité. Un tel rôle actif dans la modulation de la neurotransmission implique cependant que les CSPs soient en mesure de s’adapter aux besoins changeants des JNMs auxquelles elles sont associées. La plasticité synaptique devrait donc sous-tendre une forme de plasticité gliale. Nous savons, en effet, que la JNM est capable de modifications tant morphologiques que physiologiques en réponse à des altérations de l'activité synaptique. Par exemple, la stimulation chronique des terminaisons nerveuses entraîne une diminution persistante de l’efficacité présynaptique et une augmentation de la résistance à la dépression. À l’opposé, le blocage chronique des récepteurs nicotiniques entraîne une augmentation prolongée de l’efficacité présynaptique. Aussi, compte tenu que les CSPs détectent et répondent à la neurotransmission et qu’elles réagissent à certains stimuli environnementaux par des changements morphologiques, physiologiques et d’expression génique, nous proposons que le changement d'efficacité présynaptique imposé à la synapse, soit par une stimulation nerveuse chronique ou par blocage chronique des récepteurs nicotiniques, résulte en une adaptation des propriétés des CSPs. Cette thèse propose donc d’étudier, en parallèle, la plasticité présynaptique et gliale à long-terme, en réponse à un changement chronique de l’activité synaptique, à la JNM d’amphibien. Nos résultats démontrent les adaptations présynaptiques de l’efficacité présynaptique, des phénomènes de plasticité à court-terme, du contenu mitochondrial et de la signalisation calcique. De même, ils révèlent différentes adaptations gliales, notamment au niveau de la sensibilité des CSPs aux neurotransmetteurs et des propriétés de leur réponse calcique. Les adaptations présynaptiques et gliales sont discutées, en parallèle, en termes de mécanismes et de fonctions possibles dans la régulation de la neurotransmission. Nos travaux confirment donc la coïncidence de la plasticité présynaptique et gliale et, en ce sens, soulèvent l’importance des adaptations gliales pour le maintien de la fonction synaptique.
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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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Objetivo: Comparar la variabilidad en el tiempo de acción clínicamente efectivo (definido como el tiempo de aparición del T125% al estímulo por tren de cuatro) y la recuperación de la función neuromuscular luego de la administración de un bolo de 3 ED95 de cisatracurio o 2 ED95 de rocuronio en pacientes mayores de 65 años sometidos a cirugía. Materiales y Métodos: se incluyeron para este estudio pacientes mayores de 65 años de ambos sexos programados para cirugía electiva que requirieran de anestesia general, quienes durante la valoración preanestésica se incluyeran dentro de la clasificación de ASA 1, 2 o 3. Los pacientes requieren de haber firmado el consentimiento anestésicos, y no presentar alteración de la función renal, antecedente de disfunción hepática, enfermedad cardiovascular no compensada, enfermedad neurológica o neuromuscular, desequilibrio acido-base o estar bajo tratamiento con medicamentos que interactúen con los relajantes. Los pacientes fueron aleatorizados mediante un método de bloques permutados en dos grupos: GRUPO 1: Relajación muscular con cisatracurio 0.15 mg/kg IV y GRUPO 2: Relajación muscular con rocuronio 0.6 mg/kg IV. Se incluyeron 68 pacientes a los cuales se le cuantificaron mediante la utilización del dispositivo TOF-Watch SX los siguientes tiempos: T0, T125%, T4/T1=80% y T4/T1=90%. Con base en estas mediciones se obtuvieron las medidas de tendencia central y de dispersión, posteriormente se realizó un análisis de varianza y /o pruebas no paramétricas dependiendo de la distribución para determinar la variabilidad entre los tiempos obtenidos en cada grupo. Resultados: los grupos eran comparables desde el punto de vista de edad, sexo, número de pacientes (p>0.05). Se obtuvo como resultado final que el cisatracurio es menos variable que el rocuronio para cada una de las variables T0, T125%, T4/T1=80% y T4/T1=90% (p<0.01) en pacientes ancianos llevados a cirugía mayor de 90 minutos que requiera relajación neuromuscular. Conclusión: el cisatracurio es menos variable que el rocuronio cuando se utiliza en pacientes ancianos sometidos a cirugía mayor de 90 minutos que requiera relajación neuromuscular, pudiendo ser el cisatracurio un medicamento mas predecible en su tiempo de acción, con lo cual la probabilidad de asociarse a efectos por relajación neuromuscular residual es menor.
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El desacondicionamiento muscular que frecuentemente se observa en las unidades de cuidado intensivo pediátrico (UCIP) en pacientes relajados por más de 7 días, se debe en gran parte al relajante neuromuscular utilizado para facilitar la ventilación mecánica del niño crítico. El desconocimiento de las dosis óptimas es el incentivo principal para la realización de este estudio.
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Resumen tomado del autor
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En este capítulo se describen las enfermedades de la placa neuromuscular, su epidemiología, hallazgos clínicos, métodos diagnósticos y tratamiento de cada una de ellas
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The kinesio taping is a technique that was created in 1979 by Doctor Kenzo Kase I’m looking through it that could generate a new therapeutic option to control pain, improve athletic performance and reduce the impact of musculoskeletal disorders. From the Sydney 2000 Olympic Games, this technique as a therapeutic alternative PTO and is composed of health professionals in the field of sport and physical rehabilitation. Objetive: This article aims to identify theoretical approaches on the bandage neuromuscular. Material and methods: held today, for which conducted a literature search of databases such as como Proquest, Ovid, Cochraine, PEDro, Journal ofOrthopedic and Sports Physical, Sciencedirect, Pubmed y Literatura Latinoamericana y del Caribe en Ciencias de la Salud (Lilacs). The paper proposes a scheme of contextualization of the current landscape of the use and effects of kinesio taping in the management of different pathologies of the musculo-skeletal system in sports. Conclusion: it is concluded that currently many health professionals, and take the neuromuscular bandage a good therapeutic option in the management of diseases affecting the human body is investigated and every day more about the subject, which makes these new therapeutic methods to acquire a scientific value and transcends knowledge.
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Durante los últimos años, el vendaje neuromuscular, un aplicativo terapéutico creado en 1979 por el doctor Kenzo Kase, ha venido introduciéndose en el manejo de muchas alteraciones del sistema musculo-esquelético y más aún en el tratamiento de trastornos neurológicos; esta herramienta terapéutica que consiste en un vendaje elástico autoadhesivo permite la recuperación de la parte lesionada sin disminuir su función corporal. De acuerdo con la literatura existente sobre los efectos fisiológicos producidos por este aplicativo terapéutico en el organismo, se podría decir que existe consenso. Sin embargo, en este artículo la autora quiere destacar el significativo aunque poco resaltado papel que juegan las fascias en los efectos terapéuticos del vendaje neuromuscular, analizando desde una perspectiva reflexiva el efecto analgésico, neuromecánico y circulatorio, como efectos fundamentales del vendaje neuromuscular y la función de las fascias en los mismos, con lo que intenta aportar un entendimiento global en la manera como se relacionan todos los tejidos conectivos, aspectos que son de gran importancia tanto para la evaluación de alteraciones como para la prescripción adecuada del vendaje neuromuscular.
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Resumen tomado de la publicación
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Resumen basado en el de la publicaci??n