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Reactive oxygen species (ROS) production pathways during physical exercise are outlined, illustrating how aerobic metabolism generates oxidative byproducts. The balance between ROS generation and antioxidant defense capacity is a key determinant of exercise adaptation.

Figure 1

Diagram

Source Paper

Antioxidants and Sports Performance.

Nutrients (2023)

PMID: 37242253

DOI: 10.3390/nu15102371

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![Figure 1: Reactive oxygen species (ROS) production pathways during physical exercise are outlined, illustrating how aerobic metabolism generates oxidative byproducts. The balance between ROS generation and antioxidant defense capacity is a key determinant of exercise adaptation.]()

> Source: Vicente Javier Clemente-Suárez et al. "Antioxidants and Sports Performance.." *Nutrients*, 2023. PMID: [37242253](https://pubmed.ncbi.nlm.nih.gov/37242253/)
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  <img src="" alt="Reactive oxygen species (ROS) production pathways during physical exercise are outlined, illustrating how aerobic metabolism generates oxidative byproducts. The balance between ROS generation and antioxidant defense capacity is a key determinant of exercise adaptation." />
  <figcaption>Figure 1. Reactive oxygen species (ROS) production pathways during physical exercise are outlined, illustrating how aerobic metabolism generates oxidative byproducts. The balance between ROS generation and antioxidant defense capacity is a key determinant of exercise adaptation.<br>  Source: Vicente Javier Clemente-Suárez et al. "Antioxidants and Sports Performance.." <em>Nutrients</em>, 2023. PMID: <a href="https://pubmed.ncbi.nlm.nih.gov/37242253/">37242253</a></figcaption>
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