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Exercise-training-induced changes in metabolic capacity with age: The role of central cardiovascular plasticity

机译:运动训练引起的代谢能力随年龄的变化:中央心血管可塑性的作用

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Although aging is typically associated with a decline in maximal oxygen consumption (VO2max), young and old subjects, of similar initial muscle metabolic capacity, increased quadriceps VO2max equally when this small muscle mass was trained in isolation. As it is unclear if this preserved exercise-induced plasticity with age is still evident with centrally challenging whole body exercise, we assessed maximal exercise responses in 13 young (24∈±∈2 years) and 13 old (60∈±∈3 years) males, matched for cycling VO2max (3.82∈±∈0.66 and 3.69∈±∈0.30 L min-1, respectively), both before and after 8 weeks of high aerobic intensity cycle exercise training. As a consequence of the training both young and old significantly improved VO 2max (13∈±∈6 vs. 6∈±∈7 %) and maximal power output (20∈±∈6 vs. 10∈±∈6 %, respectively) from baseline, however, the young exhibited a significantly larger increase than the old. Similarly, independently assessed maximal cardiac output (Q max) tended to increase more in the young (16∈±∈ 14 %) than in the old (11∈±∈12 %), with no change in a-vO 2 difference in either group. Further examination of the components of Q max provided additional evidence of reduced exercise-induced plasticity in both maximal heart rate (young -3 %, old 0 %) and stroke volume (young 19∈±∈15, old 11∈±∈11 %) in the old. In combination, these findings imply that limited central cardiovascular plasticity may be responsible, at least in part, for the attenuated response to whole body exercise training with increasing age.
机译:尽管衰老通常与最大耗氧量(VO2max)的降低有关,但是,当单独训练这小块肌肉时,具有相似初始肌肉代谢能力的年轻和老年受试者平均增加股四头肌VO2max。由于尚不清楚这种运动诱发的可塑性随年龄的增长是否仍在集中挑战性全身运动中仍然明显,因此我们评估了13位年轻(24∈±ε2岁)和13岁(60∈±ε3岁)的最大运动反应。男性,在进行高氧强度循环运动训练的8周之前和之后,均适合循环VO2max(分别为3.82ε±ε0.66和3.69ε±ε0.30L min-1)。训练的结果是,年轻人和老年人都显着改善了VO 2max(13∈±∈6vs.6∈±ε7%)和最大功率输出(分别为20∈±∈6vs.10∈±ε6%)。然而,从基线开始,年轻人的增长明显大于老年人。类似地,独立评估的最大心输出量(Q max)在年轻人(16∈±ε14%)中倾向于比在老人(11∈±ε12%)中增加更多,而两者的a-vO 2差异均无变化。组。进一步检查Q max的组成部分,可以提供最大心率(年轻-3%,老0%)和中风量(年轻19∈±∈15,老11∈±∈11%)运动引起的可塑性降低的其他证据。 )。综合起来,这些发现暗示有限的中央心血管可塑性至少部分原因是随着年龄的增长对全身运动训练的反应减弱。

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