Effects of artificial CO2-rich cold-water immersion on repeated-cycling work efficiency

Res Sports Med. 2022 Mar-Apr;30(2):215-227. doi: 10.1080/15438627.2020.1860048. Epub 2020 Dec 10.

Abstract

We investigated the acute effects of cold-water immersion (20°C) with higher CO2 concentration (CCWI) following a high-intensity Wingate anaerobic exercise test (WAnT) on subjects' sublingual temperature (Tsub), blood lactate ([La]b), heart rate (HR), and aerobic cycling work efficiency (WE) compared to cold tap-water immersion (20°C; CWI) and passive recovery (PAS). Fifteen subjects completed three testing sessions at 1-week intervals. Each trial consisted of a first WE and WAnT, and a 20-min recovery intervention (randomized: CCWI, CWI, and PAS) before repeating a second WE and WAnT. The WE was measured by the metabolic demand during 50% V.O2max exercise. HR, Tsub, and [La]b were recorded throughout the testing sessions. There was a significant decline in the WE from 1st bout to 2nd bout at each recovery intervention. The WAnT was also significantly reduced at 2nd bout. Significantly reduced [La]b was achieved at CCWI compared to PAS, but not to the CWI. Likewise, the reduction in HR following immersion was the largest at CCWI compared to the other conditions. These findings indicate that CCWI is an effective intervention for maintaining repeated cycling work efficiency, which might be associated with reduced [La]b and HR.

Keywords: Cold water; Wingate test; carbon dioxide; heart rate; lactate; work efficiency.

Publication types

  • Randomized Controlled Trial

MeSH terms

  • Athletic Performance*
  • Carbon Dioxide*
  • Cold Temperature
  • Humans
  • Immersion
  • Recovery of Function
  • Water

Substances

  • Water
  • Carbon Dioxide