| Literature DB >> 32792555 |
Kuei-Yu Chien1, Nai-Wen Kan2, Yi-Hung Liao3, Wen-Ting Yang4, Yong Yang5.
Abstract
Muscle oxygenation (MO) status is the dynamic balance between O2 utilization and O2 delivery. Low-impact high-intensity interval exercise MO responses in the exercise and recovery stage are still unclear. We compared the differences in MO and physiological parameters between high-intensity interval water-based exercise (WHIIE) and high-intensity interval land bike ergonomic exercise (LBEHIIE) in postmenopausal women. Eleven postmenopausal women completed WHIIE or LBEHIIE in counter-balanced order. Eight sets were performed and each exercise set included high intensity with 80% heart rate reserve (HRR) in 30 s and dynamic recovery with 50% HRR in 90 s. Muscle tissue oxygen saturation index (TSI), total hemoglobin (tHb), oxy-hemoglobin (O2Hb), and deoxy-hemoglobin (HHb) were recorded. Blood lactate, heart rate and rating of perceived exertion (RPE) were measured at pre and post-exercise. Under similar exercise intensity, RPE in WHIIE was lower than that in LBEHIIE. The heart rate in WHIIE was lower than that in LBEHIIE at 1 and 2 min post-exercise. During the dynamic recovery, TSI, tHb, and O2Hb in water were higher than on land. A negative correlation was found between the change in TSI and lactate concentration (r = - 0.664). WHIIE produced greater muscle oxygenation during dynamic recovery. Muscle TSI% was inversely related to blood lactate concentration during exercise in water.Entities:
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Year: 2020 PMID: 32792555 PMCID: PMC7426831 DOI: 10.1038/s41598-020-70599-6
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
The heart rate and RPE responses following high-intensity interval exercise.
| WHIIE | LBEHIIE | ||
|---|---|---|---|
| HR | 78.0 (74.7, 83.8)* | 68.0 (66.3, 74.3) | 0.003 |
| RPE | 8.0 (7.2, 9.0) | 7.0 (7.0, 8.1) | 0.084 |
| HRR (%) | 73.5 (68.8, 77.2) | 71.4 (68.7, 76.5) | 0.594 |
| RPE | 12.4 (11.1, 13.3)* | 13.9 (12.6, 14.7) | 0.011 |
| HRR (%) | 45.9 (44.2, 48.3) | 45.1 (42.2, 48.7) | 0.182 |
| RPE | 11.0 (10.1, 12.1) | 11.8 (10.5, 12.8) | 0.327 |
| HRR (%) | 74.0 (67.1, 82.2) | 80.0 (68.0, 86.7) | 0.207 |
| RPE | 12.0 (11.2, 14.1)* | 14.0 (12.1, 15.3) | 0.025 |
| HRR (%) | 35.0 (28.6, 42.7)* | 49.0 (43.2, 63.6) | 0.006 |
| RPE | 11.0 (10.2, 12.7) | 13.0 (10.5, 14.0) | 0.215 |
| HRR (%) | 25.0 (18.4, 33.4)* | 37.0 (33.0, 51.0) | 0.005 |
| RPE | 10.0 (9.5, 11.4) | 11.0 (9.2, 12.4) | 0.670 |
| HRR (%) | 28.0 (20.2, 32.0) | 32.0 (25.2, 43.1) | 0.103 |
| RPE | 9.0 (7.7, 9.1)* | 10.0 (8.2, 11.2) | 0.028 |
HR, heart rate; BPM, beats per minutes; RPE, rating of perceived exertion; WHIIE, water high-intensity interval exercise; LBEHIIE, land bike ergonomic high-intensity interval exercise; HRR, heart rate reserve.
*Significantly from LBEHIIE (p < 0.05).
Muscle oxygenation related parameters in various exercise stage.
| WHIIE | LBEHIIE | ||
|---|---|---|---|
| TSI (%) | 73.8 (70.4, 75.2) | 74.1 (70.5, 77.1) | 0.424 |
| tHb (µM) | 16.3 (9.9, 22.3) | 8.7 (3.6, 22.8) | 0.182 |
| O2Hb (µM) | 7.6 (3.4, 10.6) | 4.2 (0.4, 12.9) | 0.286 |
| HHb (µM) | 8.0 (5.8, 12.3) | 2.4 (2.5, 10.6) | 0.131 |
| TSI (%) | 72.1 (67.6, 78.3) | 71.9 (66.3, 81.5) | 0.722 |
| tHb (µM) | 10.5 (3.0, 18.9) | 6.1 (1.9, 15.0) | 0.155 |
| O2Hb (µM) | 3.1 (− 0.5, 8.9) | 2.1 (0.9, 5.1) | 0.999 |
| HHb (µM) | 6.3 (2.2, 11.3) | 2.7 (0.4, 10.4) | 0.328 |
| TSI (%) | 79.0 (77.8, 81.6)* | 78.0 (73.3, 80.1) | 0.010 |
| tHb (µM) | 18.5 (12.1, 26.5)* | 9.7 (5.9, 19.5) | 0.013 |
| O2Hb (µM) | 14.9 (9.6, 18.6)* | 9.1 (4.7, 11.7) | 0.003 |
| HHb (µM) | 4.2 (2.4, 8.0) | 1.4 (0.7, 8.4) | 0.594 |
| TSI (%) | 73.7 (69.3, 76.7) | 69.8 (65.8, 79.0) | 0.594 |
| tHb (µM) | 14.1 (8.8, 24.8) | 11.8 (5.4, 27.7) | 0.722 |
| O2Hb (µM) | 7.8 (5.8, 14.1) | 3.6 (2.3, 14.1) | 0.248 |
| HHb (µM) | 5.0 (2.7, 11.1) | 4.8 (2.1, 14.6) | 0.213 |
| TSI (%) | 82.3 (80.2, 85.5) | 80.4 (77.3, 83.6) | 0.169 |
| tHb (µM) | 20.4 (14.1, 27.6) | 21.3 (11.8, 28.7) | 0.756 |
| O2Hb (µM) | 18.7 (13.7, 22.0) | 17.4 (10.8, 21.2) | 0.266 |
| HHb (µM) | 1.7 (0.1, 6.0) | 3.0 (0.6, 7.9) | 0.423 |
WHIIE, water high-intensity interval exercise; LBEHIIE, land bikeergonomic high-intensity interval exercise; TSI, tissue saturation index; tHb, total hemoglobin; OHb, oxy-hemoglobin; HHb, deoxy-hemoglobin.
*Significantly from LBEHIIE (p < 0.05).
The lactate concentration responses in various stages.
| WHIIE | LBEHIIE | ||
|---|---|---|---|
| Pre exercise (mmol/L) | 1.7 (1.4, 1.8) | 1.3 (1.3, 1.6) | 0.180 |
| Post exercise (mmol/L) | 5.7 (4.8, 6.2) | 6.9 (5.3, 7.8) | 0.062 |
| Post 10 min exercise (mmol/L) | 3.9 (2.7, 5.3) | 5.7 (3.9, 7.5) | 0.062 |
| CPEI (%) | 235.7 (189.1, 327.8) | 338.5 (265.1, 453.6) | 0.110 |
| CP10E (%) | 146.7 (84.2, 232.0) | 277.8 (168.5, 463.7) | 0.062 |
WHIIE, water high-intensity interval exercise; LBEHIIE, land bike ergonomic high-intensity interval exercise; CPEI, the change of post exercise, (Post exercise − Pre exercise)/Pre exercise*100; CP10E, the change in post 10 min exercise, (Post 10 min exercise − Pre exercise)/Pre exercise*100.
*Significantly from LBEHIIE (p < 0.05).
Figure 1The correlation between the percentage changes in TSI and lactate concentration during dynamic recovery. (A) Water high-intensity interval exercise. (B) Land high-intensity interval exercise.
Figure 2The proceeding measurement. ○ The HR and RPE measurements; ● the HR, RPE time and lactate concentration measurements; WHIIE, water high intensity interval exercise; LBEHIIE, land bike high intensity interval exercise; Pre, pre-testing; Post, post-testing.
Figure 3A representative participant’s quadriceps muscle oxygenation response in water-based and on land ergometer intermittent exercise test (1 set of main exercise and dynamic recovery). (a) Water high-intensity interval exercise. (b) Land high-intensity interval exercise. OHb, oxy-hemoglobin; HHb, deoxy-hemoglobin; tHb, total hemoglobin.