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61.
Zahariev A Bergouignan A Caloin M Normand S Gauquelin-Koch G Gharib C Blanc S 《European journal of applied physiology》2005,95(4):344-350
Because body composition is altered during head-down bed rest (HDBR), body mass can not be used as an index of energy balance.
Consequently diet allowances should not be based on body mass evolution but on fat mass changes. Though criticized, skinfold
thickness (ST) is the costless, easiest and fastest method to use for such an objective. The aim of this study was to compare
the percentage of body fat (%BF) estimated by ST with the isotope dilution of H218O. We compiled data from three HDBR campaigns, one on women (n=8) in November 1998 and two on the same men (n=8) in December 1997 (without countermeasure) and January 1998 (with thigh-cuffs countermeasure), according to a crossover
design. Body composition was assessed before and after 6 days of HDBR. %BF was derived from the biceps, triceps, sub-scapular
and sup-iliac ST according to Durnin and Wormersly (1974). Fat-free mass was measured on the same day by H218O dilution and fat mass was calculated by the difference with body mass and expressed as a percentage. Based on precision
tests, the minimum measurable change by ST was 1.1%BF for single measurement point. Both intercepts (F
4,30=0.89, P=0.45) and slopes (F
4,30=0.74; P=0.57) of the ST versus dilution relationships were not affected by the periods (December vs January), experimental conditions
(control vs HDBR vs HDBR + thigh cuffs) or sex allowing the derivation of a common relationship %BFst=0.94 × %BFdil (F
1,47=97.9, P<0.0001; non-significant intercept excluded) with a bias between methods of −1.7±2.0 %BF (95% CI: −5.8, 2.4 %BF). ST can be
used to measure %BF during HDBR provided great care is placed on training and changes are higher than 1.1 %BF. If the method
can be applied for in-flight energy balance monitoring given the high observed energy deficit, a tight monitoring of the individual
nutritional status as needed during simulation appears, however, dubious based on this solely method. 相似文献
62.
Nobuo Takeshima Kiyoji Tanaka Fumio Kobayashi Takemasa Watanabe Takashi Kato 《European journal of applied physiology》1993,67(2):138-143
Summary In this study we attempted to determine the effects of exercise training at the intensity corresponding to lactate threshold (Thla
–) on various health-related variables in sedentary but apparently healthy elderly subjects. Six men and five women volunteers [mean age 68.9 (SD 3.4) years] performed supervised endurance-type training on stationary cycle ergometers for 30 min and recreational activities for 30 min, 3 days a week for 12 weeks. Four men and four women served as the control group [68.8 (SD 4.4) years]. As a result of the training programme, statistically significant increases in maximal oxygen consumption (10%), oxygen consumption at Thla
–(18%), distance covered in 12-min walk, side step, and leg extensor power were found in the training group, while no changes occurred in the control group. The changes in serum cholesterol and triglyceride concentrations from the pre- to post-training period were statistically significant. High-density lipoprotein cholesterol remained unchanged, and low-density lipoprotein cholesterol tended to decrease following the training programme. These data would indicate that exercise training at the intensity corresponding to Thla
–may have favourable effects on overall physical fitness and some serum lipid variables in older individuals. 相似文献
63.
Conventional indirect haemagglutination test was performed in rhesus monkey sera (collected from Plasmodium knowlesi infected animals) with and without prior treatment of sera with 2-mercapto-ethanol (2-ME). Surprisingly, many sera samples showed significant enhancement of final titre with 2-ME. The 2-ME enhancement effect was more pronounced in the sera of hyperimmune monkeys on further injection of antigen or parasites. It was also noticeable in the sera during primary drug-suppressed P. knowlesi infection and appeared to have a bearing on the immune status of the animals to rechallenge. The use of a soluble antigen prepared from P. knowlesi infected erythrocytes was found to be essential in IHA test to demonstrate the 2-ME enhancement effect. Antigen prepared from freed parasites (commonly used) failed to show a similar effect in IHA. The possible role of certain T-lymphocyte products - antigen binding, non-agglutinating, 2-ME sensitive molecules - in malarial immunology has been proposed. 相似文献
64.
Effect of age and ambient temperature on n-pentane production in adult housefly, Musca domestica 总被引:3,自引:0,他引:3
The objective of this study was to examine the relationship between lipid peroxidation and aging in the male housefly. Metabolic rate of flies is known to be higher and life span shorter at elevated ambient temperature. Evolution of n-pentane and level of thiobarbituric acid (TBA) reactive material were used as indicators of lipid peroxidation. n-Pentane accumulated by houseflies in vivo and by whole body homogenates of houseflies, in response to tert-butyl hydroperoxide (1 mM), increased with age. n-Pentane accumulation in vivo was markedly higher at higher ambient temperature. Furthermore, n-pentane generated by flies in vivo and by fly homogenates in vitro tended to be lower in flies raised at a lower ambient temperature. TBA-reactive material, elicited by tert-butyl hydroperoxide, was augmented in older flies, but no significant difference was found between flies aged at different ambient temperatures. Analysis of fatty acids in housefly homogenates indicated an age-associated increase in the ratio of polyunsaturated to saturated fatty acids. 相似文献
65.
Cardiovascular changes associated with decreased aerobic capacity and aging in long-distance runners 总被引:1,自引:0,他引:1
T. Fuchi K. Iwaoka M. Higuchi S. Kobayashi 《European journal of applied physiology》1989,58(8):884-889
Summary Fifty-five male runners aged between 30 to 80 years were examined to determine the relative roles of various cardiovascular
parameters which may account for the decrease in maximal oxygen uptake (
) with aging. All subjects had similar body fat composition and trained for a similar mileage each week. The parameters tested
were
, maximal heart rate (HR
max), cardiac output (Q), and arteriovenous difference in oxygen concentration (C
a —C
ˉv) O2 during graded, maximal treadmill running. Average body fat and training mileage were roughly 12% and 50 km·week−1, respectively. The average 10-km runtime slowed significantly by 6.0%·decade−1 {[10-km run-time (min)=0.323 x age (years)+24.4] (n=49,r=0.692,p<0.001)}. A strong correlation was found between age and
{[
(ml·kg−1·min−1)=- 0.439xage+76.5] (n=55,r=-0.768, p<0.001)}. Thus,
decreased by 6.9%·decade−1 along with reductions ofHR
max (3.2%·decade−1, p<0.001) andQ (5.8%·decade−1, p<0.001), while no significant change with age was observed in estimated (C
a —C
ˉv) O2. It was concluded that the decline of
with aging in runners was mainly explained by the central factors (represented by the decline ofHR andQ in this study), rather than by the peripheral factor (represented by (C
a —C
ˉv) O2).
This study was supported, in part, by a Research Grant on Aging and Health, Ministry of Health and Welfare, Japan, and by
a Research Grant for young researchers, Meiji Life Foundation of Health and Welfare, Japan. 相似文献
66.
目的探讨高压氧对脑缺血再灌流脑皮层一氧化氮(NO)生成的影响及其对脑细胞的保护作用。方法采用沙土鼠双侧颈总动脉夹闭30min再灌流模型。用电化学及免疫细胞化学方法检测脑皮层一氧化氮生成、一氧化氮合酶(NOS)表达及神经细胞凋亡。结果缺血再灌流期沙土鼠脑皮层中NO的含量显著增加,3型NOS均有表达,缺血再灌流第2d,iNOS的表达最为明显,同时NO的生成达到高峰。缺血再灌流第1、2、3d,沙土鼠脑皮层均可见凋亡细胞,以第2、3d更为明显。高压氧暴露能明显抑制iNOS表达,减少NO生成,减轻神经细胞凋亡。结论高压氧能抑制沙土鼠脑缺血再灌流期脑皮层NO生成,减轻神经细胞凋亡,从而起到脑保护作用。 相似文献
67.
68.
A scheme of administration of nicotinic acid by mouth is suggested in order to prevent any increase in the free fatty acid concentration in the serum after intravenous injection of heparin or triiodothyronine, prolonged starvation, and thyroid feeding.Laboratory of Pathological Physiology, Institute of Experimental Endocrinology and Hormone Chemistry, Academy of Medical Sciences of the USSR, Moscow. (Presented by Academician of the Academy of Medical Sciences of the USSR N. A. Yudaev.) Translated from Byulleten' Éksperimental'noi Biologii i Meditsiny, Vol. 78, No. 8, pp. 122–125, August, 1974. 相似文献
69.
R. I. Salganik I. G. Shabalina N. G. Kolosova V. N. Solov'ev N. A. Solov'eva A. R. Kolpakov 《Bulletin of experimental biology and medicine》1995,119(6):605-607
Liver mitochondria of inbred W/SSM rats with inherited increased radical formation reveal the following anomalies: inhibition
of oxidative phosphorylation, a lowered transmembrane potential, and alterations in protein-lipid interaction. The membrane
viscosity and osmotic stability of mitochondria are unaffected.
Translated fromByulleten' Eksperimental'noi Biologii i Meditsiny, Vol. 119, N
o
6, pp. 628–631, June, 1995 相似文献
70.
To elevate effects of carbon dioxide (CO2) retention by way of an increased respiratory load during submaximal exercise (150 W), the concentration changes of oxy‐ (ΔHbO2) and deoxy‐haemoglobin (ΔHb) of active muscles and the brain were determined by near‐infrared spectroscopy (NIRS) in eight healthy males. During exercise, pulmonary ventilation increased to 33 (28–40) L min–1 (median with range) with no effect of a moderate breathing resistance (reduction of the pneumotach diameter from 30 to 14 and 10 mm). The end‐tidal CO2 pressure (PETCO 2) increased from 45 (42–48) to 48 (46–58) mmHg with a reduction of only 1% in the arterial haemoglobin O2 saturation (SaO 2). During control exercise (normal breathing resistance), muscle and brain ΔHbO2 were not different from the resting levels, and only the leg muscle ΔHb increased (4 (–2–10) μM , P < 0.05). Moderate resistive breathing increased ΔHbO2 of the intercostal and vastus lateralis muscles to 6 ± (–5–14) and 1 (–7–9) μM (P < 0.05), respectively, while muscle ΔHb was not affected. Cerebral ΔHbO2 and ΔHb became elevated to 6 (1–15) and 1 (–1–6) μM by resistive breathing (P < 0.05). Resistive breathing caused an increased concentration of oxygenated haemoglobin in active muscles and in the brain. The results indicate that CO2 influences blood flow to active skeletal muscle although its effect appears to be smaller than for the brain. 相似文献