52 resultados para maximal clique

em Scielo Saúde Pública - SP


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Mudanças no estímulo auditivo afetam os potenciais evocados do BERA e ajudam no diagnóstico, principalmente em indivíduos com neuropatia auditiva. Alguns pacientes com neuropatia auditiva perdem as emissões otoacústicas evocadas e, nestes casos, a comparação das respostas obtidas com cliques rarefeitos e condensados e a redução da freqüência de apresentação deste clique podem mostrar um microfonismo coclear alargado ou uma melhor captação do potencial elétrico. OBJETIVO: Analisar o efeito destas mudanças sobre os potenciais captados em pacientes com deficiência auditiva, como forma de melhorar o diagnóstico. FORMA DO ESTUDO: Clínico prospectivo. MATERIAL E MÉTODO: 59 pacientes com deficiência auditiva foram submetidos à captação do BERA usando cliques rarefeitos e condensados apresentados a uma freqüência de 27,7/seg. e cliques rarefeitos apresentados a uma freqüência de 3,3/seg. Os resultados foram comparados com as emissões otoacústicas evocadas. RESULTADOS: Oito (13,53%) pacientes apresentaram alterações nos resultados do BERA com as mudanças nas características do clique, como microfonismo coclear alargado, ou uma melhora no traçado. Cinco não apresentavam emissões otoacústicas evocadas. CONCLUSÃO: Mudanças nas características do clique podem melhorar o diagnóstico topográfico de perda auditiva, principalmente no grupo de indivíduos com neuropatia auditiva e ausência de emissões otoacústicas, onde muitas vezes somente desta forma é possível o diagnóstico.

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The strength of the respiratory muscles can be evaluated from static measurements (maximal inspiratory and expiratory pressures, MIP and MEP) or inferred from dynamic maneuvers (maximal voluntary ventilation, MVV). Although these data could be suitable for a number of clinical and research applications, no previous studies have provided reference values for such tests using a healthy, randomly selected sample of the adult Brazilian population. With this main purpose, we prospectively evaluated 100 non-smoking subjects (50 males and 50 females), 20 to 80 years old, selected from more than 8,000 individuals. Gender-specific linear prediction equations for MIP, MEP and MVV were developed by multiple regression analysis: age and, secondarily, anthropometric measurements explained up to 56% of the variability of the dependent variables. The most cited previous studies using either Caucasian or non-Caucasian samples systematically underestimated the observed values of MIP (P<0.05). Interestingly, the self-reported level of regular physical activity and maximum aerobic power correlates strongly with both respiratory and peripheral muscular strength (knee extensor peak torque) (P<0.01). Our results, therefore, provide a new frame of reference to evaluate the normalcy of some useful indexes of respiratory muscle strength in Brazilian males and females aged 20 to 80.

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The maximal lactate steady state (MLSS) is the highest blood lactate concentration that can be identified as maintaining a steady state during a prolonged submaximal constant workload. The objective of the present study was to analyze the influence of the aerobic capacity on the validity of anaerobic threshold (AT) to estimate the exercise intensity at MLSS (MLSS intensity) during cycling. Ten untrained males (UC) and 9 male endurance cyclists (EC) matched for age, weight and height performed one incremental maximal load test to determine AT and two to four 30-min constant submaximal load tests on a mechanically braked cycle ergometer to determine MLSS and MLSS intensity. AT was determined as the intensity corresponding to 3.5 mM blood lactate. MLSS intensity was defined as the highest workload at which blood lactate concentration did not increase by more than 1 mM between minutes 10 and 30 of the constant workload. MLSS intensity (EC = 282.1 ± 23.8 W; UC = 180.2 ± 24.5 W) and AT (EC = 274.8 ± 24.9 W; UC = 187.2 ± 28.0 W) were significantly higher in trained group. However, there was no significant difference in MLSS between EC (5.0 ± 1.2 mM) and UC (4.9 ± 1.7 mM). The MLSS intensity and AT were not different and significantly correlated in both groups (EC: r = 0.77; UC: r = 0.81). We conclude that MLSS and the validity of AT to estimate MLSS intensity during cycling, analyzed in a cross-sectional design (trained x sedentary), do not depend on the aerobic capacity.

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We evaluated vascular reactivity after a maximal exercise test in order to determine whether the effect of exercise on the circulation persists even after interruption of the exercise. Eleven healthy sedentary volunteers (six women, age 28 ± 5 years) were evaluated before and after (10, 60, and 120 min) a maximal exercise test on a treadmill. Forearm blood flow (FBF) was measured by venous occlusion plethysmography before and during reactive hyperemia (RH). Baseline FBF, analyzed by the area under the curve, increased only at 10 min after exercise (P = 0.01). FBF in response to RH increased both at 10 and 60 min vs baseline (P = 0.004). Total excess flow for RH above baseline showed that vascular reactivity was increased up to 60 min after exercise (mean ± SEM, before: 526.4 ± 48.8; 10 min: 1053.0 ± 168.2; 60 min: 659.4 ± 44.1 ml 100 ml-1 min-1 . s; P = 0.01 and 0.02, respectively, vs before exercise). The changes in FBF were due to increased vascular conductance since mean arterial blood pressure did not change. In a time control group (N = 5, 34 ± 3 years, three women) that did not exercise, FBF and RH did not change significantly (P = 0.07 and 0.7, respectively). These results suggest that the increased vascular reactivity caused by chronic exercise may result, at least in part, from a summation of the subacute effects of successive exercise bouts.

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Increased heart rate variability (HRV) and high-frequency content of the terminal region of the ventricular activation of signal-averaged ECG (SAECG) have been reported in athletes. The present study investigates HRV and SAECG parameters as predictors of maximal aerobic power (VO2max) in athletes. HRV, SAECG and VO2max were determined in 18 high-performance long-distance (25 ± 6 years; 17 males) runners 24 h after a training session. Clinical visits, ECG and VO2max determination were scheduled for all athletes during thew training period. A group of 18 untrained healthy volunteers matched for age, gender, and body surface area was included as controls. SAECG was acquired in the resting supine position for 15 min and processed to extract average RR interval (Mean-RR) and root mean squared standard deviation (RMSSD) of the difference of two consecutive normal RR intervals. SAECG variables analyzed in the vector magnitude with 40-250 Hz band-pass bi-directional filtering were: total and 40-µV terminal (LAS40) duration of ventricular activation, RMS voltage of total (RMST) and of the 40-ms terminal region of ventricular activation. Linear and multivariate stepwise logistic regressions oriented by inter-group comparisons were adjusted in significant variables in order to predict VO2max, with a P < 0.05 considered to be significant. VO2max correlated significantly (P < 0.05) with RMST (r = 0.77), Mean-RR (r = 0.62), RMSSD (r = 0.47), and LAS40 (r = -0.39). RMST was the independent predictor of VO2max. In athletes, HRV and high-frequency components of the SAECG correlate with VO2max and the high-frequency content of SAECG is an independent predictor of VO2max.

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Skeletal muscle force production following repetitive contractions is preferentially reduced when muscle is evaluated with low-frequency stimulation. This selective impairment in force generation is called low-frequency fatigue (LFF) and could be dependent on the contraction type. The purpose of this study was to compare LFF after concentric and eccentric maximal and submaximal contractions of knee extensor muscles. Ten healthy male subjects (age: 23.6 ± 4.2 years; weight: 73.8 ± 7.7 kg; height: 1.79 ± 0.05 m) executed maximal voluntary contractions that were measured before a fatigue test (pre-exercise), immediately after (after-exercise) and after 1 h of recovery (after-recovery). The fatigue test consisted of 60 maximal (100%) or submaximal (40%) dynamic concentric or eccentric knee extensions at an angular velocity of 60°/s. The isometric torque produced by low- (20 Hz) and high- (100 Hz) frequency stimulation was also measured at these times and the 20:100 Hz ratio was calculated to assess LFF. One-way ANOVA for repeated measures followed by the Newman-Keuls post hoc test was used to determine significant (P < 0.05) differences. LFF was evident after-recovery in all trials except following submaximal eccentric contractions. LFF was not evident after-exercise, regardless of exercise intensity or contraction type. Our results suggest that low-frequency fatigue was evident after submaximal concentric but not submaximal eccentric contractions and was more pronounced after 1-h of recovery.

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During cardiopulmonary exercise testing (CPET), stroke volume can be indirectly assessed by O2 pulse profile. However, for a valid interpretation, the stability of this variable over time should be known. The objective was to analyze the stability of the O2 pulse curve relative to body mass in elite athletes. VO2, heart rate (HR), and relative O2 pulse were compared at every 10% of the running time in two maximal CPETs, from 2005 to 2010, of 49 soccer players. Maximal values of VO2 (63.4 ± 0.9 vs 63.5 ± 0.9 mL O2•kg-1•min-1), HR (190 ± 1 vs188 ± 1 bpm) and relative O2 pulse (32.9 ± 0.6 vs 32.6 ± 0.6 mL O2•beat-1•kg-1) were similar for the two CPETs (P > 0.05), while the final treadmill velocity increased from 18.5 ± 0.9 to 18.9 ± 1.0 km/h (P < 0.01). Relative O2 pulse increased linearly and similarly in both evaluations (r² = 0.64 and 0.63) up to 90% of the running time. Between 90 and 100% of the running time, the values were less stable, with up to 50% of the players showing a tendency to a plateau in the relative O2 pulse. In young healthy men in good to excellent aerobic condition, the morphology of the relative O2 pulse curve is consistent up to close to the peak effort for a CPET repeated within a 1-year period. No increase in relative O2pulse at peak effort could represent a physiologic stroke volume limitation in these athletes.

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To determine the hemodynamic mechanisms responsible for the attenuated blood pressure response to mental stress after exercise, 26 healthy sedentary individuals (age 29 ± 8 years) underwent the Stroop color-word test before and 60 min after a bout of maximal dynamic exercise on a treadmill. A subgroup (N = 11) underwent a time-control experiment without exercise. Blood pressure was continuously and noninvasively recorded by infrared finger photoplethysmography. Stroke volume was derived from pressure signals, and cardiac output and peripheral vascular resistance were calculated. Perceived mental stress scores were comparable between mental stress tests both in the exercise (P = 0.96) and control (P = 0.24) experiments. After exercise, the blood pressure response to mental stress was attenuated (pre: 10 ± 13 vs post: 6 ± 7 mmHg; P < 0.01) along with lower values of systolic blood pressure (pre: 129 ± 3 vs post: 125 ± 3 mmHg; P < 0.05), stroke volume (pre: 89.4 ± 3.5 vs post: 76.8 ± 3.8 mL; P < 0.05), and cardiac output (pre: 7.00 ± 0.30 vs post: 6.51 ± 0.36 L/min; P < 0.05). Except for heart rate, the hemodynamic responses and the mean values during the two mental stress tests in the control experiment were similar (P > 0.05). In conclusion, a single bout of maximal dynamic exercise attenuates the blood pressure response to mental stress in healthy subjects, along with lower stroke volume and cardiac output, denoting an acute modulatory action of exercise on the central hemodynamic response to mental stress.

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The purpose of this study was to analyze the relationship between the anaerobic components of the maximal accumulated oxygen deficit (MAOD) and of the 30-second Wingate anaerobic test (30-WAnT). Nine male physical education students performed: a) a maximal incremental exercise test; b) a supramaximal constant workload test to determine the anaerobic components of the MAOD; and c) a 30-WAnT to measure the peak power (PP) and mean power (MP). The fast component of the excess post-exercise oxygen consumption and blood lactate accumulation were measured after the supramaximal constant workload test in order to determine the contributions made by alactic (ALMET) and lactic (LAMET) metabolism. Significant correlations were found between PP and ALMET (r=0.71; P=0.033) and between MP and LAMET(r=0.72; P=0.030). The study results suggested that the anaerobic components of the MAOD and of the 30-WAnT are similarly applicable in the assessment of ALMET and LAMET during high-intensity exercise.

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This study aimed to verify the association between the contribution of energy systems during an incremental exercise test (IET), pacing, and performance during a 10-km running time trial. Thirteen male recreational runners completed an incremental exercise test on a treadmill to determine the respiratory compensation point (RCP), maximal oxygen uptake (V˙O2max), peak treadmill speed (PTS), and energy systems contribution; and a 10-km running time trial (T10-km) to determine endurance performance. The fractions of the aerobic (WAER) and glycolytic (WGLYCOL) contributions were calculated for each stage based on the oxygen uptake and the oxygen energy equivalents derived by blood lactate accumulation, respectively. Total metabolic demand (WTOTAL) was the sum of these two energy systems. Endurance performance during the T10-km was moderately correlated with RCP, V˙O2maxand PTS (P<@0.05), and moderate-to-highly correlated with WAER, WGLYCOL, and WTOTAL (P<0.05). In addition, WAER, WGLYCOL, and WTOTAL were also significantly correlated with running speed in the middle (P<0.01) and final (P<0.01) sections of the T10-km. These findings suggest that the assessment of energy contribution during IET is potentially useful as an alternative variable in the evaluation of endurance runners, especially because of its relationship with specific parts of a long-distance race.

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Os Potenciais Auditivos Evocados (PEA) constituem uma fonte rica e complexa de informações sobre as vias do sistema nervoso central e de estruturas ativadas por estimulação auditiva. Devido ao escasso número de trabalhos existentes correlacionando Resposta de Latência Média com diferentes estímulos sonoros, surgiu o interesse em se realizar esse estudo. OBJETIVO: Verificar o Potencial Evocado Auditivo de Média Latência (PEAML) em adultos normo-ouvintes frente à estimulação por clique e com música contralateral. FORMA DE ESTUDO: coorte contemporânea com corte transversal. MÉTODO: Foram realizadas as avaliações de PEAML em 10 sujeitos utilizando cliques na intensidade de 70dBnNA bilateralmente e posteriormente com estímulo musical, sendo que as latências e amplitudes foram medidas. Foi realizada a comparação da amplitude da onda Pa em relação ao eletrodo C3 e C4 e em relação à orelha direita e esquerda na presença e ausência de estímulo musical. RESULTADOS: todos os sujeitos apresentaram PEAML dentro dos limites de normalidade em ambas as orelhas e na avaliação com estímulo musical e clique foi observada uma diminuição das amplitudes na orelha contralateral a apresentação do estímulo musical em todas as posições do eletrodo, embora esta diferença não tenha sido estatisticamente significante. CONCLUSÃO: Sugere-se que o estímulo musical influencia na amplitude do PEAML, uma vez que houve diminuição da amplitude da onda Pa frente a esta estimulação.

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Os potenciais de média latência são potenciais auditivos que ocorrem entre 10ms a 80ms, formados por ondas polifásicas positivas e negativas denominadas de N0, P0, Na, Pa, Nb e Pb. O logon é um estímulo acústico que permite eliciar respostas de média latência ativando regiões específicas da cóclea. Sua vantagem sobre o clique é a possibilidade avaliar as áreas de baixa freqüência (abaixo de 1kHz). OBJETIVO: O objetivo deste trabalho foi verificar a resposta eletrofisiológica das MLR estimulados por logon nas freqüências de 500, 1000 e 2000 Hz. CASUÍSTICA E MÉTODO: Forma de estudo prospectivo e descritivo de uma amostra de 14 voluntárias do sexo feminino, normais dos pontos de vista otológico e audiológico convencional. O estímulo foi monoaural e ipsilateral à derivação de captação dos potenciais (Cz/A1-2). RESULTADOS: O complexo NaPa foi o mais facilmente identificado e esteve presente em 100% dos exames realizados a 2000 Hz e em 96,4% a 500 e 1000 Hz. CONCLUSÕES: As MLR podem se eliciadas pelo logon nas freqüências de 500, 1000 e 2000 Hz; o complexo NaPa foi o evento prevalente das MLR e o estímulo logon a 2000 Hz eliciou maior número de respostas do que as outras freqüências.

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Os Potenciais Evocados Auditivos de Tronco Encefálico (PEATE) são considerados potenciais exógenos, ou seja, as respostas obtidas são altamente dependentes da característica do estímulo utilizado para evocá-los. OBJETIVO: Averiguar a influência da polaridade do estímulo clique na pesquisa dos PEATE em diferentes intensidades, utilizando-se fone de inserção. FORMA DE ESTUDO: Clínico. MATERIAL E MÉTODO: 33 indivíduos, idade entre 18 e 28 anos, sem alteração auditiva foram submetidos à pesquisa dos PEATE, com estímulo clique nas polaridades de rarefação, condensação e alternada, em diferentes intensidades. RESULTADOS: As latências absolutas da onda V mostraram-se menores na polaridade de rarefação quando comparadas às demais e na intensidade de 80 dBnHL houve diferença significante entre a rarefação e as demais polaridades para as latências interpicos III-V e I-V. Houve alta correlação entre as polaridades de condensação e alternada para as latências absolutas e interpicos na intensidade de 80 dBnHL. CONCLUSÃO: A polaridade do estímulo clique influência significativamente nos PEATE. Na rotina em que se utiliza o fone TDH 39, com apresentação de polaridade alternada, sugere-se que o uso da polaridade de condensação seja mais adequado para efeitos de comparação padronizada, devido à maior semelhança das latências encontradas nesse estudo com fone de inserção.

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O objetivo central do presente estudo consistiu em explorar o compartilhamento de signifi cados atribuídos à mudança organizacional no interior de redes informais intra-organizacionais. O estudo foi conduzido em um setor de uma empresa petroquímica de grande porte no Pólo Petroquímico de Camaçari (BA), que passara pelo processo de privatização. Foram aplicados questionários a uma amostra de 52 trabalhadores que levantavam as relações de amizade, confiança e informação constituintes das suas re-des informais. Itens abertos levantaram cognições sobre o processo de mudança em curso na empresa. As redes foram identificadas utilizando-se os softwares Ucinet e Net Draw, caracterizando-se suas dimensões macro e microestruturais. Os dados sobre as percepções da mudança foram analisados qualitativamente, criando-se categorias descritivas. Os resultados revelam uma visão predominantemente positiva da mudança e níveis reduzidos de densidade e coesão das redes informais. No único clique identifi cado, observou-se maior compartilhamento do significado atribuído à mudança. Além de mostrar as relações investigadas, o estudo fornece uma estratégia metodológica que pode se revelar heurística para novas pesquisas embasadas em uma perspectiva cognitivista.