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Updated: Aug 20, 2026

A Rat Model of Central Fatigue Using a Modified Multiple Platform Method
Published on: August 14, 2018
Complex systems model of fatigue: integrative homoeostatic control of peripheral physiological systems during
E V Lambert1, A St Clair Gibson, T D Noakes
1University of Cape Town, Research Unit for Exercise Science and Sports Medicine, Sports Science of South Africa, P O Box 115, Newlands 7725, South Africa. vlambert@sports.uct.ac.za
Abstract:
Fatigue is hypothesised as being the result of the complex interaction of multiple peripheral physiological systems and the brain. In this new model, all changes in peripheral physiological systems such as substrate depletion or metabolite accumulation act as afferent signallers which modulate control processes in the brain in a dynamic, non-linear, integrative manner.
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