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运动时呼吸频率和潮气量的差异控制。

Differential control of respiratory frequency and tidal volume during exercise.

机构信息

Department of Movement, Human and Health Sciences, University of Rome "Foro Italico", Piazza Lauro De Bosis 6, 00135, Rome, Italy.

出版信息

Eur J Appl Physiol. 2023 Feb;123(2):215-242. doi: 10.1007/s00421-022-05077-0. Epub 2022 Nov 3.

Abstract

The lack of a testable model explaining how ventilation is regulated in different exercise conditions has been repeatedly acknowledged in the field of exercise physiology. Yet, this issue contrasts with the abundance of insightful findings produced over the last century and calls for the adoption of new integrative perspectives. In this review, we provide a methodological approach supporting the importance of producing a set of evidence by evaluating different studies together-especially those conducted in 'real' exercise conditions-instead of single studies separately. We show how the collective assessment of findings from three domains and three levels of observation support the development of a simple model of ventilatory control which proves to be effective in different exercise protocols, populations and experimental interventions. The main feature of the model is the differential control of respiratory frequency (f) and tidal volume (V); f is primarily modulated by central command (especially during high-intensity exercise) and muscle afferent feedback (especially during moderate exercise) whereas V by metabolic inputs. Furthermore, V appears to be fine-tuned based on f levels to match alveolar ventilation with metabolic requirements in different intensity domains, and even at a breath-by-breath level. This model reconciles the classical neuro-humoral theory with apparently contrasting findings by leveraging on the emerging control properties of the behavioural (i.e. f) and metabolic (i.e. V) components of minute ventilation. The integrative approach presented is expected to help in the design and interpretation of future studies on the control of f and V during exercise.

摘要

在运动生理学领域,人们反复认识到缺乏一个可检验的模型来解释在不同运动条件下如何调节通气。然而,这一问题与上个世纪产生的大量富有洞察力的发现形成鲜明对比,需要采用新的综合观点。在这篇综述中,我们提供了一种方法学方法,支持通过一起评估不同的研究来产生一组证据的重要性,特别是那些在“真实”运动条件下进行的研究,而不是单独评估单个研究。我们展示了如何从三个观察领域和三个观察水平来评估发现,从而支持开发一个简单的通气控制模型,该模型在不同的运动方案、人群和实验干预中都很有效。该模型的主要特点是呼吸频率(f)和潮气量(V)的差异控制;f 主要由中枢指令(尤其是在高强度运动时)和肌肉传入反馈(尤其是在中等强度运动时)调节,而 V 则由代谢输入调节。此外,V 似乎根据 f 水平进行微调,以在不同强度范围内使肺泡通气与代谢需求相匹配,甚至在逐次呼吸水平上也是如此。该模型通过利用分钟通气的行为(即 f)和代谢(即 V)成分的新兴控制特性,调和了经典的神经体液理论与明显矛盾的发现。所提出的综合方法有望有助于设计和解释未来关于运动时 f 和 V 控制的研究。

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