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131.
夏豪  胡波  周桃  谭安安 《微循环学杂志》2007,17(3):48-49,52
目的:观察盐酸替罗非班对平板运动试验中ST段抬高患者TIMI血流分级的影响。方法:将平板运动试验ST段抬高患者35例按就诊顺序随机双盲分为受试组(n=18)和对照组(n=17),受试组在对照组给予阿司匹林、氯吡格雷、肝素等基础治疗上加用盐酸替罗非班,所有患者疗程结束后均行选择性冠状动脉血管造影(SCA)检查,观察两组患者治疗后TIMI血流情况。结果:与对照组相比,受试组应用盐酸替罗非班后TIMI血流分级提高,达2级血流者比例高于对照组(44.44%比11.76%,P<0.05);受试组完全闭塞者比例明显低于对照组(5.56%比35.29%,P<0.05)。结论:盐酸替罗非班可以改善平板运动试验中ST段抬高患者TIMI血流分级。  相似文献   
132.
Summary The effects of two levels of protein intake on muscle performance and energy metabolism were studied in humans submitted to repeated daily sessions of prolonged exercise at moderate altitude. For this purpose, 29 healthy males, were exposed to seven successive stages of ski-mountaineering at altitudes between 2500 and 3 800 m, and to an isocaloric diet (4000 kcal·day–1, 16760 kJ·day–1) with either 1.5g·kg–1·day–1 (C group,n =14), or 2.5 g·kg–1·day–1 (PR group,n =15) protein intake. Measurements made after the ski-mountaineering programme did not show any change in body mass. The peak torque during maximal isometric voluntary contraction (MVC) of the quadriceps muscle was unaffected by the repeated exercises, whereas the endurance time at 50% MVC was decreased in PR subjects (–26.8%,P<0.001). Increased levels of both free fatty acids (+147%,P<0.001) and glycerol (+170%,P<0.001) observed in C subjects would suggest that lipolysis was enhanced after the repeated exercise. The plasma amino acid pattern was altered after completion of the ski-mountaineering programme; the plasma concentration of the three branched-chain amino acids (BCAA) was significantly decreased in C subjects, whereas the higher level of protein intake (PR group) greatly minimized the exercise-induced decrease in serum BCAA.  相似文献   
133.
探讨数值模拟不同运动强度对因废用引起的骨质疏松的影响。依据骨的功能适应性和力学调控系统理论,遵循骨重建的生理过程,建立了一个带有时间历程的描述松质骨骨质疏松过程的计算模型,用C语言编制程序。得到了不同运动负荷对因废用引起的骨质疏松(孔隙率)的影响曲线。结果表明:较大的运动强度可以减缓因废用引起的骨质疏松。这对于运动防治骨质疏松有一定的参考价值。  相似文献   
134.
Summary Activities of glycolytic enzymes in the aorta were investigated in female Wistar rats. There were two groups of rats; one served as the control (sedentary rats), while the other group was forced to run on a treadmill for 10 weeks. In the control animals, the activities of hexokinase, phosphofructokinase and aldolase were relatively lower than those of the other glycolytic enzymes (phosphoglucose isomerase, lactate dehydrogenase and pyruvate kinase). After exercise, the activity of phosphofructokinase increased by 15%, whereas the other enzymatic activities were much the same as in the controls. Within the limits of the experiments, the increased percentage of phosphofructokinase was statistically significant (p<0.05). Since phosphofructokinase is a putative rate limiting enzyme, this enzymatic activation may indicate that glycolytic activity in the rat aorta is enhanced during and after running exercise.  相似文献   
135.
Non‐exercise activity thermogenesis (NEAT) is the energy expenditure of all physical activities other than volitional sporting‐like exercise. NEAT includes all those activities that render us vibrant, unique and independent beings such as going to work, playing guitar, toe‐tapping and dancing. The factors that account for the 2000 kcal day?1 variability of NEAT can be categorized as environmental or biological. The environmental determinants of NEAT can be view using one of two models. In the egocentric model we consider a single person as the focus, e.g. ‘my job’. In the geocentric model we consider the ‘environment’ as the focus, e.g. well‐lit and safe walk ways. These models provide us with a theoretical framework to understand NEAT and how best to intervene to promote NEAT. As well as environmental effectors of NEAT, there are also biological regulatory mechanisms that enable us to account for three‐quarters of the biological variance in susceptibility and resistance to fat gain with human over‐feeding. NEAT is likely to be regulated through a central mechanism that integrates NEAT with energy intake and energy stores so that NEAT is activated with over‐feeding and suppressed with under‐feeding. In conclusion, NEAT is likely to serve as a crucial thermoregulatory switch between energy storage and dissipation that is biologically regulated and influenced, and perhaps over‐ridden, by environment. Deciphering the role of NEAT may lead to a better understanding of the pathogenesis, prevention and treatment of obesity.  相似文献   
136.
This study investigated the effects of 12 weeks of aerobic exercise plus voluntary food restriction on the body composition, resting metabolic rate (RMR) and aerobic fitness of mildly obese middle-aged women. The subjects were randomly assigned to exercise/diet (n = 17) or control (n = 15) groups. The exercise/diet group participated in an aerobic training programme, 45–60 min · day –1 at 50%–60% of maximal oxygen uptake (VO2max), 3–4 days · week–1, and also adopted a self-regulated energy deficit relative to predicted energy requirements (–1.05 MJ · day –1 to –1.14 MJ · day –1 ). After the regimen had been followed for 12 weeks, the body mass of the subjects had decreased by an average of 4.5 kg, due mainly to fat loss, with little change of fat free mass (m ff). The absolute RMR did not change, but the experimental group showed significant increases in the RMR per unit of body mass (10%) and the RMR per unit of m ff (4%). The increase in RMR/m ff was not correlated with any increase in VO2max/m ff. The resting heat production per unit of essential body mass increased by an average of 21%, but the resting heat production rate per unit of fat tissue mass remained unchanged. We concluded that aerobic exercise enhances the effect of moderate dietary restriction by augmenting the metabolic activity of lean tissue.  相似文献   
137.
We measured the aerobic capacity, sweat rate and fluid intake of trained athletes during outdoor exercise and examined the relationship between aerobic capacity and thermoregulatory responses at high ambient temperatures. The maximal aerobic capacity ( ) of the subjects, nine male baseball players of college age, was determined by maximal exercise tests on a cycle ergometer. The subjects practised baseball regularly without drinking fluids from 1330 to 1530 hours. After 30 min rest, they played a baseball game with free access to a sports drink at 15°C from 1600 to 1830 hours. At a mean ambient temperature of 36.7 (SEM 0.2)°C, the mean percentage of body mass loss (m b) and increase of oral temperature (T o) from 1330 to 1530 hours was 3.47 (SEM 0.12)% and 0.81 (SEM 0.14)°C, respectively. The sweat loss from 1330 to 1830 hours was 56.53 (SEM 1.56)ml · kg–1 of body mass (M b) while the mean fluid consumption was 44.78 (SEM 2.39)ml · kg–1 ofm b, with recovery of 76.08 (SEM 2.81)% of sweat loss. The was significantly inversely correlated withm b, fluid intake and rehydration amount, but showed no correlation withT o. These results would suggest that at a given exercise intensity in subjects with a higher aerobic capacity body temperature is maintained with a lower sweating rate than that in subjects with a lower aerobic capacity.  相似文献   
138.
Summary The purpose of this study was to evaluate the role of knit structure in underwear on thermoregulatory responses. Underwear manufactured from 100% polypropylene fibres in five different knit structures (1-by-1 rib, fleece, fishnet, interlock, double-layer rib) was evaluated. All five underwear prototypes were tested as part of a prototype clothing system. Measured on a thermal manikin these clothing systems had total thermal resistances of 0.243, 0.268, 0.256, 0.248 and 0.250 m2 · K · W–1, respectively (including a value for the thermal resistance of the ambient environment of 0.104 m2 · K · W–1). Human testing was done on eight male subjects and took place at ambient temperature (T a)=5°C, dew point temperature (T dp)=–3.5° C and air velocity (V a)=0.32 m · s–1. The test comprised a repeated bout of 40-min cycle exercise (315 W · m–2; 52%, SD 4.9% maximal oxygen uptake) followed by 20 min of rest (62 W · m–2). The oxygen uptake, heart rate, oesophageal temperature, skin temperature,T a,T dp at the skin and in the ambient air, onset of sweating, evaporation rate, non-evaporated sweat accumulated in the clothing and total evaporative loss of mass were measured. Skin wettedness was calculated. The differences in knit structure of the underwear in the clothing systems resulted in significant differences in mean skin temperature, local and average skin wettedness, non-evaporated and evaporated sweat during the course of the intermittent exercise test. No differences were observed over this period in the core temperature measurements.The views, opinions and/or findings in this report are those of the authors and should not be construed as an official Department of the Army position, policy, or decision, unless so designated by other official documentation  相似文献   
139.
The main purpose of the study was to compare the efficiency of the Fishbein and Ajzen and the Triandis models to predict (1) the intention to participate regularly in some physical activities during free time within a 3-week period and (2) the exercise behavior within these 3 weeks among a group of 166 subjects, aged 22 to 65 years. Our results show that the Triandis model was as efficient as the Fishbein and Ajzen model in predicting the exercise behavior. However, the results obtained from the Triandis model demonstrate the importance of the habit of exercising in predicting the exercise behavior. Moreover, the Triandis model was superior to the Fishbein and Ajzen model in explaining behavioral intention. Of particular interest was the salience of the affective, social, and personal belief components of the Triandis model. In addition, from a practical perspective, this comparative study showed that (1) to exercise regularly is perceived as hard work, and (2) individuals believe that it is their own responsibility to exercise or not to exercise.  相似文献   
140.
Duchenne’s muscular dystrophy (DMD) is a fatal disease caused by mutations in the DMD gene that lead to quantitative and qualitative disturbances in dystrophin expression. Dystrophin is a member of the spectrin superfamily of proteins. Dystrophin itself is closely related to three proteins that constitute a family of dystrophin‐related proteins (DRPs): the chromosome 6‐encoded DRP or utrophin, the chromosome‐X encoded, DRP2 and the chromosome‐18 encoded, dystrobrevin. These proteins share sequence similarity and functional motifs with dystrophin. Current attempts at somatic gene therapy of DMD face numerous technical problems. An alternative strategy for DMD therapy, that circumvents many of these problems, has arisen from the demonstration that the DRP utrophin can functionally substitute for the missing dystrophin and its overexpression can rescue dystrophin‐deficient muscle. Currently, a promising avenue of research consists of identifying molecules that would increase the expression of utrophin and the delivery of these molecules to dystrophin‐deficient tissues as a means of DMD therapy. In this review, we will focus on DRPs from the perspective of strategies and issues related to upregulating utrophin expression for DMD therapy. Additionally, we will address the techniques used for anatomical, biochemical and physiological evaluation of the potential benefits of this and other forms of DMD therapy in dystrophin‐deficient animal models.  相似文献   
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