178 resultados para accelerometers
Resumo:
L’obésité et la sédentarité sont considérées comme des problèmes importants de santé publique. L’augmentation de l’activité physique est une des stratégies recommandées pour obtenir un bilan énergétique positif dans les interventions de perte de poids. Deux accéléromètres, le Sensewear Armband (SWA) et l’Actical (ACT), sont des outils simples à utiliser en recherche clinique, mais à notre connaissance, aucune étude n’a évalué leur capacité à détecter des hausses de la dépense énergétique. De plus, très peu d’études, avec des résultats par ailleurs contradictoires, ont été effectuées afin de déterminer la fiabilité de ces accéléromètres pour la mesure de la dépense énergétique au repos et au cours d’une activité physique au vélo stationnaire. Ainsi, les objectifs de cette étude étaient: 1) évaluer, pendant 3 journées consécutives, la reproductibilité des valeurs de la dépense énergétique obtenues avec le SWA et l’ACT, au repos et au cours d’une activité physique de 45 minutes sur un vélo stationnaire, 2) déterminer la capacité de ces accéléromètres à détecter des hausses de 5% et 10 % de la dépense énergétique totale (DET) au moyen de la modification d’une activité physique au tapis roulant pendant 45 minutes. Cette étude transversale effectuée auprès de 20 sujets en santé, âgés de 20 à 32 ans et avec un IMC moyen de 23 kg/m2, consistait en 5 visites à la clinique. Les 3 dernières visites, sous supervision directe pendant 10 heures, comportaient des activités programmées sur le vélo stationnaire et la marche sur tapis roulant pendant 45 minutes. Les résultats montrent que le SWA et l’ACT donnent des valeurs reproductibles pour estimer la dépense énergétique au repos et la dépense énergétique au vélo (corrélations intra classe, p<0,001). Par contre, pour des hausses préétablies de la DET de 5% et 10%, les estimations respectives obtenues étaient de 1,4% et 7,8% avec le SWA et de 3,4% et 13,1% avec l’ACT. Le SWA sous-estime les hausses de 5% et de 10% et l’ACT sous-estime la hausse de 5% et surestime la hausse de 10% de la DET. Plus de recherches sont nécessaires avant de confirmer l’usage du SWA et de l’ACT dans l’estimation des hausses de la dépense énergétique totale.
Resumo:
La mesure de l’activité physique des personnes âgées dans des études populationnelles est un défi. Peu des outils de mesure trouvés dans la littérature sont jugés suffisamment valides ou fiables pour être utilisés dans une étude internationale et longitudinale sur les déterminants de perte de mobilité de personnes âgées. Une étude pilote a été conduite en 2009 pour déterminer la meilleure forme d’évaluation. Les objectifs de ce mémoire sont l’étude des validité, fiabilité et capacité prédictive des données d’un accéléromètre (gold standard), de deux questionnaires choisis (PAQ, IPAQ 7d-recall). Le but est de combiner des éléments des questionnaires dans un seul pour une étude longitudinale projetée au Canada, au Brésil et en Colombie. Le PAQ évalue la fréquence et la durée d’activités de loisirs, l’IPAQ 7d-recall évalue la durée et l’intensité perçue des activités et le temps assis. La collecte de données s’est faite auprès de participants de Saint-Bruno (n=64) et de Santa Cruz (n=60), de 65 à 74 ans. Le PAQ, l’IPAQ-7d-recall et un test de performance (SPPB) ont été complétés puis des accéléromètres remis. À Saint-Bruno, la validité de critère pour l’IPAQ et le PAQ, et la validité de construit pour l’IPAQ sont bonnes. Le refus de l’accéléromètre à Santa Cruz a empêché les analyses de validité. Le PAQ présente une bonne fiabilité mais ajoute peu d’amélioration au pouvoir de prédiction de la dépense énergétique de l’IPAQ. La recherche populationnelle, voulant estimer la dépense énergétique par l’activité physique des personnes âgées, devrait utiliser des instruments mesurant l’intensité perçue (IPAQ) plutôt que les fréquence et durée d’activités concrètes (PAQ).
Resumo:
Introduction : Les accéléromètres sont actuellement les appareils les plus utilisés pour mesurer le niveau d’activité physique, et ce, parce qu'ils évaluent les niveaux d'activité physique de façon objective. Toutefois, les mouvements humains sont difficiles à mesurer, et de nombreuses limitations doivent être prises en considération pour la bonne utilisation des accéléromètres. Les études présentées s’intéressent donc à la validité de la fonction podomètre des accéléromètres ainsi qu’à la validation de la composante accéléromètre d’un nouvel appareil multicapteur (SenseDoc). Méthode : Les sujets ayant participé à la première étude, qui consistait en la validation de la fonction podomètre des accéléromètres, ont marché sur un tapis roulant à trois vitesses différentes (2,5 km/h, 3,5 km/h et 4,8 km/h) pendant 5 minutes par palier. Un accéléromètre (ActiGraph GT3X) porté à la ceinture a enregistré le nombre de pas tandis qu'une caméra a enregistré la marche des participants. Pour la seconde étude, les participants portaient un accéléromètre Actigraph et un SenseDoc à la hanche. Les données brutes des accéléromètres et la mesure de la consommation d’oxygène par calorimétrie indirecte ont été mesurées lors de 14 activités réalisées en laboratoire allant de sédentaires à vigoureuses. Résultats : La première étude indique que les accéléromètres ont détecté seulement 53 % des pas à 2,5 km/h, 82 % à 3,5 km/h et 91 % à 4,8 km/h pour les personnes non obèses. Pour les personnes obèses, l'accéléromètre a détecté 47 % des pas à 2.5 km/h, 67 % à 3.5 km/h et 100 % à 4.8 km/h, des résultats significativement différents des personnes non obèses. La seconde étude confirme pour sa part que le SenseDoc est un outil valide de mesure du niveau d’activité physique. Les accéléromètres possèdent une bonne capacité prédictive de la dépense énergétique avec des valeurs de R carré de 0,84 et 0,80 respectivement pour l'Actigraph et le SenseDoc. Conclusion : À vitesse de marche lente, les accéléromètres sous-estiment le nombre de pas, et ce, dans une plus large mesure chez les personnes obèses que chez les personnes non obèses. Également, une méthode valide et transparente de transformation de données brutes d’accélérométrie a été divulguée dans l’étude avec le SenseDoc. Les travaux présentés dans ce mémoire visent à améliorer l’utilisation en milieu clinique et en recherche des accéléromètres et ouvrent la voie à une plus grande uniformité entre les études utilisant différents types d’accéléromètres.
Resumo:
This work presents two schemes of measuring the linear and angular kinematics of a rigid body using a kinematically redundant array of triple-axis accelerometers with potential applications in biomechanics. A novel angular velocity estimation algorithm is proposed and evaluated that can compensate for angular velocity errors using measurements of the direction of gravity. Analysis and discussion of optimal sensor array characteristics are provided. A damped 2 axis pendulum was used to excite all 6 DoF of the a suspended accelerometer array through determined complex motion and is the basis of both simulation and experimental studies. The relationship between accuracy and sensor redundancy is investigated for arrays of up to 100 triple axis (300 accelerometer axes) accelerometers in simulation and 10 equivalent sensors (30 accelerometer axes) in the laboratory test rig. The paper also reports on the sensor calibration techniques and hardware implementation.
Resumo:
Background: The high prevalence of physical inactivity worldwide calls for innovative and more effective ways to promote physical activity (PA). There are limited objective data on the effectiveness of Web-based personalized feedback on increasing PA in adults. Objective: It is hypothesized that providing personalized advice based on PA measured objectively alongside diet, phenotype, or genotype information would lead to larger and more sustained changes in PA, compared with nonpersonalized advice. Methods: A total of 1607 adults in seven European countries were randomized to either a control group (nonpersonalized advice, Level 0, L0) or to one of three personalized groups receiving personalized advice via the Internet based on current PA plus diet (Level 1, L1), PA plus diet and phenotype (Level 2, L2), or PA plus diet, phenotype, and genotype (Level 3, L3). PA was measured for 6 months using triaxial accelerometers, and self-reported using the Baecke questionnaire. Outcomes were objective and self-reported PA after 3 and 6 months. Results: While 1270 participants (85.81% of 1480 actual starters) completed the 6-month trial, 1233 (83.31%) self-reported PA at both baseline and month 6, but only 730 (49.32%) had sufficient objective PA data at both time points. For the total cohort after 6 months, a greater improvement in self-reported total PA (P=.02) and PA during leisure (nonsport) (P=.03) was observed in personalized groups compared with the control group. For individuals advised to increase PA, we also observed greater improvements in those two self-reported indices (P=.006 and P=.008, respectively) with increased personalization of the advice (L2 and L3 vs L1). However, there were no significant differences in accelerometer results between personalized and control groups, and no significant effect of adding phenotypic or genotypic information to the tailored feedback at month 3 or 6. After 6 months, there were small but significant improvements in the objectively measured physical activity level (P<.05), moderate PA (P<.01), and sedentary time (P<.001) for individuals advised to increase PA, but these changes were similar across all groups. Conclusions: Different levels of personalization produced similar small changes in objective PA. We found no evidence that personalized advice is more effective than conventional “one size fits all” guidelines to promote changes in PA in our Web-based intervention when PA was measured objectively. Based on self-reports, PA increased to a greater extent with more personalized advice. Thus, it is crucial to measure PA objectively in any PA intervention study.
Resumo:
Objective: To define and evaluate a Computer-Vision (CV) method for scoring Paced Finger-Tapping (PFT) in Parkinson's disease (PD) using quantitative motion analysis of index-fingers and to compare the obtained scores to the UPDRS (Unified Parkinson's Disease Rating Scale) finger-taps (FT). Background: The naked-eye evaluation of PFT in clinical practice results in coarse resolution to determine PD status. Besides, sensor mechanisms for PFT evaluation may cause patients discomfort. In order to avoid cost and effort of applying wearable sensors, a CV system for non-invasive PFT evaluation is introduced. Methods: A database of 221 PFT videos from 6 PD patients was processed. The subjects were instructed to position their hands above their shoulders besides the face and tap the index-finger against the thumb consistently with speed. They were facing towards a pivoted camera during recording. The videos were rated by two clinicians between symptom levels 0-to-3 using UPDRS-FT. The CV method incorporates a motion analyzer and a face detector. The method detects the face of testee in each video-frame. The frame is split into two images from face-rectangle center. Two regions of interest are located in each image to detect index-finger motion of left and right hands respectively. The tracking of opening and closing phases of dominant hand index-finger produces a tapping time-series. This time-series is normalized by the face height. The normalization calibrates the amplitude in tapping signal which is affected by the varying distance between camera and subject (farther the camera, lesser the amplitude). A total of 15 features were classified using K-nearest neighbor (KNN) classifier to characterize the symptoms levels in UPDRS-FT. The target ratings provided by the raters were averaged. Results: A 10-fold cross validation in KNN classified 221 videos between 3 symptom levels with 75% accuracy. An area under the receiver operating characteristic curves of 82.6% supports feasibility of the obtained features to replicate clinical assessments. Conclusions: The system is able to track index-finger motion to estimate tapping symptoms in PD. It has certain advantages compared to other technologies (e.g. magnetic sensors, accelerometers etc.) for PFT evaluation to improve and automate the ratings
Resumo:
Every time more we hear in our everyday statements like "I'm stressed!", "Don´t worry me more than I am." But in what sense can we use technology to combat these congestions that we deal with daily? Well, one way would be to use technology to create objects, systems or applications that can spoil us and preferably be imperceptible by the user and, for this we have the ubiquitous computing and nurturant technologies. The ubiquitous computing is increasingly discussed as well as ways to make your computer more subtle in the view of the user, which is subject of research and development. The use of technology as a source of relaxation and spoil us is a strand that is being explored in the context of nurturant technologies. Accordingly, this thesis is focused on the development of an object and several applications with which we can interact. The object and applications have the purpose to spoil us and help us relax after a long day at work or in some situation more stressful. The object developed employs technologies like the use of accelerometers and the applications developed employs communications between computers and Web cameras. This thesis begins with a brief introduction to the areas of research and others that we can include in this thesis, such as ubiquitous computing and the nurturant technologies, providing yet general information on stress and ways to mitigate it. Later is described some of the work already done and that influenced this thesis as well as the prototypes developed and the experiences performed, ending with a general conclusion and future work.
Resumo:
Present work proposed to map and features the wear mechanisms of structural polymers of engineering derived of the sliding contact with a metallic cylindrical spindle submitted to eccentricity due to fluctuations in it is mass and geometric centers. For this it was projected and makes an experimental apparatus from balancing machine where the cylindrical counterbody was supported in two bearings and the polymeric coupon was situated in a holder with freedom of displacement along counterbody. Thus, the experimental tests were standardized using two position of the two bearings (Fixed or Free) and seven different positions along the counterbody, that permit print different conditions to the stiffness from system. Others parameters as applied normal load, sliding velocity and distance were fixed. In this investigation it was used as coupon two structural polymers of wide quotidian use, PTFE (polytetrafluroethylene) and PEEK (poly-ether-ether-ketone) and the AISI 4140 alloy steel as counterbody. Polymeric materials were characterized by thermal analysis (thermogravimetric, differential scanning calorimetry and dynamic-mechanical), hardness and rays-X diffractometry. While the metallic material was submitted at hardness, mechanical resistance tests and metallographic analysis. During the tribological tests were recorded the heating response with thermometers, yonder overall velocity vibration (VGV) and the acceleration using accelerometers. After tests the wear surface of the coupons were analyzed using a Scanning Electronic Microscopy (SEM) to morphological analysis and spectroscopy EDS to microanalysis. Moreover the roughness of the counterbody was characterized before and after the tribological tests. It was observed that the tribological response of the polymers were different in function of their distinct molecular structure. It were identified the predominant wear mechanisms in each polymer. The VGV of the PTFE was smaller than PEEK, in the condition of minimum stiffness, in function of the higher loss coefficient of that polymer. Wear rate of the PTFE was more of a magnitude order higher than PEEK. With the results was possible developed a correlation between the wear rate and parameter (E/ρ)1/2 (Young modulus, E, density, ρ), proportional at longitudinal elastic wave velocity in the material.
Resumo:
Physical activity is one of the main components of a healthy lifestyle, responsible for many health benefits. Despite being considered important for both disease prevention and health promotion there is high prevalence of sedentary behavior in the elderly population. Questionnaires are practical and feasible instruments for assessing levels of physical activity. However, they may have limitations in older age ranges. Accelerometers, movement sensors that make physical activity data more objective, emerge as reliable measuring devices. Aim: Determine the validity of the International Physical Activity Questionnaire (IPAQ) adapted for elderly with accelerometry in elderly women. Methods: 57 elderly women, with mean age of 66.05 ± 5.98 years who took part in hypertension control and physical activity incentive programs were assessed in relation to objective and subjective measures of physical activity. The accelerometer was used for 07 consecutive days, 24 hours per day before the IPAQ was applied. Data were analyzed using measures of central tendency and dispersion to characterize the sample according to variables collected. To check the validity of the data we used the Spearman correlation test, considering a significance level of p <0.05. Results: With respect to the categories of physical activity obtained by IPAQ, 46.4% developed moderate physical activity, followed by a high (30.3%) and low level (23.2%). There was a negative correlation only between self-reported time spent sitting and time spent on light activities as measured by accelerometry (r = - 0.408; p = 0.003) and mean activity level (counts/min) with physical activity levels evaluated by IPAQ (r = 0.297; p = 0.036). Conclusion: The IPAQ used in elderly women shows moderate to low validity levels according to accelerometry measures. Assessment of sedentary activities exhibited acceptable levels compared to accelerometry; however, moderate (r = 0.096; p > 0.05) to vigorous (r = 0.098; p > 0.05) activities were not correlated, demonstrating the inability of IPAQ to evaluate this type of activity in elderly women
Resumo:
Fiber reinforced epoxy composites are used in a wide variety of applications in the aerospace field. These materials have high specific moduli, high specific strength and their properties can be tailored to application requirements. In order to screening optimum materials behavior, the effects of external environments on the mechanical properties during usage must be clearly understood. The environmental action, such as high moisture concentration, high temperatures, corrosive fluids or ultraviolet radiation (UV), can affect the performance of advanced composites during service. These factors can limit the applications of composites by deteriorating the mechanical properties over a period of time. Properties determination is attributed to the chemical and/or physical damages caused in the polymer matrix, loss of adhesion of fiber/resin interface, and/or reduction of fiber strength and stiffness. The dynamic elastic properties are important characteristics of glass fiber reinforced composites (GRFC). They control the damping behavior of composite structures and are also an ideal tool for monitoring the development of GFRC's mechanical properties during their processing or service. One of the most used tests is the vibration damping. In this work, the measurement consisted of recording the vibration decay of a rectangular plate excited by a controlled mechanism to identify the elastic and damping properties of the material under test. The frequency amplitude were measured by accelerometers and calculated by using a digital method. The present studies have been performed to explore relations between the dynamic mechanical properties, damping test and the influence of high moisture concentration of glass fiber reinforced composites (plain weave). The results show that the E' decreased with the increase in the exposed time for glass fiber/epoxy composites specimens exposed at 80 degrees C and 90% RH. The E' values found were: 26.7, 26.7, 25.4, 24.7 and 24.7 GPa for 0, 15, 30, 45 and 60 days of exposure, respectively. (c) 2005 Springer Science + Business Media, Inc.
Resumo:
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
Resumo:
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
Resumo:
Structural Health Monitoring (SHM) has diverse potential applications, and many groups work in the development of tools and techniques for monitoring structural performance. These systems use arrays of sensors and can be integrated with remote or local computers. There are several different approaches that can be used to obtain information about the existence, location and extension of faults by non destructive tests. In this paper an experimental technique is proposed for damage location based on an observability grammian matrix. The dynamic properties of the structure are identified through experimental data using the eigensystem realization algorithm (ERA). Experimental tests were carried out in a structure through varying the mass of some elements. Output signals were obtained using accelerometers.
Resumo:
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
Resumo:
A simple method for designing a digital state-derivative feedback gain and a feedforward gain such that the control law is equivalent to a known and adequate state feedback and feedforward control law of a digital redesigned system is presented. It is assumed that the plant is a linear controllable, time-invariant, Single-Input (SI) or Multiple-Input (MI) system. This procedure allows the use of well-known continuous-time state feedback design methods to directly design discrete-time state-derivative feedback control systems. The state-derivative feedback can be useful, for instance, in the vibration control of mechanical systems, where the main sensors are accelerometers. One example considering the digital redesign with state-derivative feedback of a helicopter illustrates the proposed method. © 2009 IEEE.