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Energy metabolism of the gastrocnemius and soleus muscles during isometric voluntary and electrically induced contractions in man

机译:等距自愿和电诱发的男性收缩过程中腓肠肌和比目鱼肌的能量代谢

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摘要

class="enumerated" style="list-style-type:decimal">Phosphocreatine (PCr) and intracellular pH detected by 31P NMR in the gastrocnemius and soleus muscles were evaluated in order to compare the anaerobic ATP costs of voluntary and electrically induced exercise. Continuous isometric contraction at 40 % of maximum force and repeated isometric contractions at approximately 75 % of maximum force (contraction plus relaxation period of 0.5 s plus 2 s) were studied.Anaerobic ATP turnover in soleus and gastrocnemius muscles was slower during continuous voluntary contraction than during continuous electrically induced contraction (0.36 ± 0.04 versus 0.63 ± 0.05 mmol (kg wet wt)−1 s−1, P < 0.05, in soleus; 0.19 ± 0.03 versus 1.04 ± 0.04 mmol (kg wet wt)−1 s−1, P < 0.001, in gastrocnemius).There was no significant difference in anaerobic ATP turnover between voluntary and electrically induced exercise when repeated brief contractions were performed (0.22 ± 0.05 and 0.30 ± 0.04 mmol (kg wet wt)−1 s−1, respectively, for the soleus muscle and 0.57 ± 0.03 and 0.66 ± 0.07 mmol (kg wet wt)−1 s−1, respectively, for the gastrocnemius muscle).During continuous voluntary contraction, in contrast to continuous stimulated contraction, anaerobic ATP turnover was slower (P < 0.05) in the gastrocnemius than in the soleus muscle, which also showed a higher electromyogram amplitude (41.1 ± 1.1 % of maximum) than the medial gastrocnemius muscle (21.4 ± 3.6 % of maximum, P < 0.001).Anaerobic ATP turnover was faster (P < 0.05) in the gastrocnemius than in the soleus muscle during brief voluntary and brief electrically induced contractions.The results show that the anaerobic ATP costs were higher for electrically induced exercise than for voluntary exercise when continuous submaximal contraction was performed but not when brief high-intensity contractions were performed. The gastrocnemius muscle contributes to total force production relatively less than the soleus muscle during continuous voluntary plantar flexion at 40 % of the maximum voluntary contraction.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 通过 31 P NMR检测腓肠肌和比目鱼肌中的磷酸肌酸(PCr)和细胞内pH值,以比较自愿运动和电诱导运动的无氧ATP成本。研究了最大力的40%时的连续等距收缩和最大力的约75%时的重复等距收缩(收缩加松弛期0.5 s加2 s)。 比目鱼肌和腓肠肌的无氧ATP转换在持续的自愿收缩过程中比持续的电诱导收缩过程慢(0.36±0.04对0.63±0.05 mmol(kg湿重) −1 s -1 ,P <0.05,比目鱼肌; 0.19±0.03 vs 1.04±0.04 mmol(kg湿重) −1 s −1 ,P <0.001,在腓肠肌中)。
  • 当进行反复短暂收缩(0.22±0.05和0.30±0.04 mmol(kg湿重) −1 s -]时,自愿运动和电诱导运动之间的无氧ATP转换没有显着差异。比目鱼肌分别为1 ,比目鱼肌分别为0.57±0.03和0.66±0.07 mmol(kg湿重) −1 s -1 腓肠肌)。 在持续的自愿性收缩,与持续的刺激性收缩相反,腓肠肌的厌氧ATP转换比比目鱼肌慢(P <0.05),这也显示了比内侧腓肠肌更高的肌电图振幅(最大值的41.1±1.1%) (21.4±3.6%的最大值,P <0.001)。 腓肠肌在短暂的自发性和短暂性电致收缩过程中,厌氧ATP的转换速度比比目鱼肌快(P <0.05)。
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