首页> 外文期刊>Scientific reports. >Integrating muscle cell biochemistry and whole-body physiology in humans:31P-MRS data from the InSight trial
【24h】

Integrating muscle cell biochemistry and whole-body physiology in humans:31P-MRS data from the InSight trial

机译:整合人类的肌肉细胞生化和全身生理:InSight试验中的 31 P-MRS数据

获取原文
           

摘要

We acquired 31P-MRS data from skeletal muscle of subjects of mixed gender and ethnicity, combined with a panel of physiological characteristics, and tested several long-standing hypotheses regarding relationships between muscle cell biochemistry and whole-body physiology with unusually high statistical power. We hypothesized that i) whole-body VO2max would correlate with muscle respiratory capacity, ii) resting muscle phosphocreatine concentration ([PCr]) would negatively correlate with delta efficiency and iii) muscle mitochondrial function would positively correlate with both resting VO2 and total daily energy expenditure (TDEE). Muscle respiratory capacity explained a quarter of the variation in VO2max ( r 2 = 26, p n = 87). There was an inverse correlation between muscle [PCr] and delta efficiency ( r = ?23, p = 046, n = 87). There was also a correlation between [PCr] recovery halftime and TDEE (r = ?23, p = 035, n = 87). Our data not only provide insights into muscle cell chemistry and whole-body physiology but our mixed cohort means that our findings are broadly generalizable.
机译:我们从性别和种族混合的受试者的骨骼肌中获取了 31 P-MRS数据,结合一组生理学特征,并测试了关于肌肉细胞生化与全身之间关系的若干长期假设具有异常高的统计能力的生理学。我们假设i)全身VO 2 max与肌肉呼吸能力相关,ii)静息肌磷酸肌酸浓度([PCr])与delta效率负相关,iii)肌肉线粒体功能正相关与静息VO 2 和每日总能源消耗(TDEE)相关。肌肉呼吸能力解释了VO 2 max变化的四分之一(r 2 = 26,p n = 87)。肌肉[PCr]与效率差之间呈反比关系(r =?23,p = 046,n = 87)。 [PCr]恢复中途时间与TDEE之间也存在相关性(r =?23,p = 035,n = 87)。我们的数据不仅提供了有关肌肉细胞化学和全身生理学的见识,而且我们的混合队列意味着我们的发现可以广泛推广。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号