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Daniel J Astridge

Showing results (1-10 of 7) with videos related to

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European Journal of Applied Physiology|March 25, 2024
Haemoglobin mass responses and performance outcomes among high-performance swimmers following a 3-week live-high, train-high camp at 2320 mDaniel J Astridge, Michael McKenna, Adrian Campbell, et al.
International Journal of Sports Physiology and Performance|August 21, 2024
Powering Toward Los Angeles: Comparing Power Output and Pacing Approach Between Maximal 2000- and 1500-m On-Water Racing in Elite RowersDaniel J Astridge, Peter Peeling, Paul S R Goods, et al.
International Journal of Sports Physiology and Performance|February 6, 2026
Rowing at the 2028 Los Angeles Olympic Games: 1500-m Versus 2000-m Performance and the Predictive Accuracy of a Critical Speed ModelDaniel J Astridge, Peter Peeling, Paul S R Goods, et al.
International Journal of Sports Physiology and Performance|September 11, 2025
Critical-Speed Modeling Using Familiar Performance Tests Can Accurately Predict 1500-m Rowing-Ergometer Performance CapabilityDaniel J Astridge, Jason C Bartam, Peter Peeling, et al.
Journal of Sports Sciences|December 19, 2025
Maximal peak power from a reliable and race-specific protocol is associated with both 2000 m and 1500 m elite rowing performanceDaniel J Astridge, Gareth N Sandford, Peter Peeling, et al.
International Journal of Sports Physiology and Performance|November 30, 2022
Rowing in Los Angeles: Performance Considerations for the Change to 1500 m at the 2028 Olympic GamesDaniel J Astridge, Peter Peeling, Paul S R Goods, et al.
International Journal of Sports Physiology and Performance|November 28, 2023
Shifting the Energy Toward Los Angeles: Comparing the Energetic Contribution and Pacing Approach Between 2000- and 1500-m Maximal Ergometer RowingDaniel J Astridge, Peter Peeling, Paul S R Goods, et al.
Pageof 1

Showing results (1-10 of 7) with videos related to

Sort By:
Pageof 1
European Journal of Applied Physiology|March 25, 2024
Haemoglobin mass responses and performance outcomes among high-performance swimmers following a 3-week live-high, train-high camp at 2320 mDaniel J Astridge, Michael McKenna, Adrian Campbell, et al.
International Journal of Sports Physiology and Performance|August 21, 2024
Powering Toward Los Angeles: Comparing Power Output and Pacing Approach Between Maximal 2000- and 1500-m On-Water Racing in Elite RowersDaniel J Astridge, Peter Peeling, Paul S R Goods, et al.
International Journal of Sports Physiology and Performance|February 6, 2026
Rowing at the 2028 Los Angeles Olympic Games: 1500-m Versus 2000-m Performance and the Predictive Accuracy of a Critical Speed ModelDaniel J Astridge, Peter Peeling, Paul S R Goods, et al.
International Journal of Sports Physiology and Performance|September 11, 2025
Critical-Speed Modeling Using Familiar Performance Tests Can Accurately Predict 1500-m Rowing-Ergometer Performance CapabilityDaniel J Astridge, Jason C Bartam, Peter Peeling, et al.
Journal of Sports Sciences|December 19, 2025
Maximal peak power from a reliable and race-specific protocol is associated with both 2000 m and 1500 m elite rowing performanceDaniel J Astridge, Gareth N Sandford, Peter Peeling, et al.
International Journal of Sports Physiology and Performance|November 30, 2022
Rowing in Los Angeles: Performance Considerations for the Change to 1500 m at the 2028 Olympic GamesDaniel J Astridge, Peter Peeling, Paul S R Goods, et al.
International Journal of Sports Physiology and Performance|November 28, 2023
Shifting the Energy Toward Los Angeles: Comparing the Energetic Contribution and Pacing Approach Between 2000- and 1500-m Maximal Ergometer RowingDaniel J Astridge, Peter Peeling, Paul S R Goods, et al.
Pageof 1