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Emphasizing Task-Specific Hypertrophy to Enhance Sequential Strength and Power Performance

机译:强调任务特异性的肥大以提高顺序强度和功率性能

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摘要

While strength is indeed a skill, most discussions have primarily considered structural adaptations rather than ultrastructural augmentation to improve performance. Altering the structural component of the muscle is often the aim of hypertrophic training, yet not all hypertrophy is equal; such alterations are dependent upon how the muscle adapts to the training stimuli and overall training stress. When comparing bodybuilders to strength and power athletes such as powerlifters, weightlifters, and throwers, while muscle size may be similar, the ability to produce force and power is often inequivalent. Thus, performance differences go beyond structural changes and may be due to the muscle’s ultrastructural constituents and training induced adaptations. Relative to potentiating strength and power performances, eliciting specific ultrastructural changes should be a variable of interest during hypertrophic training phases. By focusing on task-specific hypertrophy, it may be possible to achieve an optimal amount of hypertrophy while deemphasizing metabolic and aerobic components that are often associated with high-volume training. Therefore, the purpose of this article is to briefly address different types of hypertrophy and provide directions for practitioners who are aiming to achieve optimal rather than maximal hypertrophy, as it relates to altering ultrastructural muscular components, to potentiate strength and power performance.
机译:虽然实力确实是技能,但大多数讨论主要被认为是结构适应而不是超微结构的增强,以提高性能。改变肌肉的结构部件往往是肥厚训练的目的,但并非所有的肥大相等;这种改变取决于肌肉如何适应训练刺激和整体训练压力。将健美运动员与Powerlife和Powerlife的力量运动员进行比较时,肌肉尺寸可能相似,产生力和力量的能力通常不等效。因此,性能差异超出了结构性变化,可能是由于肌肉的超微结构成分和训练诱导的适应。相对于增强强度和功率性能,引发特定的超微结构变化应该是肥厚训练阶段的感兴趣的变量。通过专注于任务特异性的肥大,可以实现最佳的肥大,同时深入化通常与大容量训练相关的代谢和有氧组分。因此,本文的目的是简要解决不同类型的肥大,并为旨在实现最佳而不是最大肥大的从业者提供指示,因为它涉及改变超微结构肌肉组件,以提高强度和功率性能。

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