Resistance exercise increases postexercise oxygen consumption in nonexercising muscle

This study examined the effect of knee extension resistance exercise on muscle oxygen consumption in nonexercising forearm flexor muscles after exercise. Seven healthy male subjects were performed six sets of unilateral knee extension exercise until exhaustion at 40, 60, and 80% of 1 repetition maxi...

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Published inEuropean journal of applied physiology Vol. 104; no. 6; pp. 1053 - 1059
Main Author Nagasawa, Takeshi
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer-Verlag 01.12.2008
Springer Nature B.V
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Abstract This study examined the effect of knee extension resistance exercise on muscle oxygen consumption in nonexercising forearm flexor muscles after exercise. Seven healthy male subjects were performed six sets of unilateral knee extension exercise until exhaustion at 40, 60, and 80% of 1 repetition maximum (RM) on separate days. The values at rest, at the end of exercise, and during recovery after exercise were measured by near-infrared spectroscopy. The at the end of exercise was significantly ( P  < 0.05) increased by 1.8 ± 0.2, 1.7 ± 0.2, and 1.4 ± 0.3 fold over resting value at 40, 60 and 80% 1RM, respectively. returned to the resting values after 1–5 min of recovery and then showed no further significant change for all exercise intensities. This study suggests that knee extension resistance exercise at 40, 60 and 80% 1RM induced an increase in and that the increase of after exercise returned to resting value in several minutes.
AbstractList This study examined the effect of knee extension resistance exercise on muscle oxygen consumption in nonexercising forearm flexor muscles after exercise. Seven healthy male subjects were performed six sets of unilateral knee extension exercise until exhaustion at 40, 60, and 80% of 1 repetition maximum (RM) on separate days. The values at rest, at the end of exercise, and during recovery after exercise were measured by near-infrared spectroscopy. The at the end of exercise was significantly ( P  < 0.05) increased by 1.8 ± 0.2, 1.7 ± 0.2, and 1.4 ± 0.3 fold over resting value at 40, 60 and 80% 1RM, respectively. returned to the resting values after 1–5 min of recovery and then showed no further significant change for all exercise intensities. This study suggests that knee extension resistance exercise at 40, 60 and 80% 1RM induced an increase in and that the increase of after exercise returned to resting value in several minutes.
(ProQuest: ... denotes formulae and/or non-USASCII text omitted; see image).This study examined the effect of knee extension resistance exercise on muscle oxygen consumption in nonexercising forearm flexor muscles ... after exercise. Seven healthy male subjects were performed six sets of unilateral knee extension exercise until exhaustion at 40, 60, and 80% of 1 repetition maximum (RM) on separate days. The ... values at rest, at the end of exercise, and during recovery after exercise were measured by near-infrared spectroscopy. The ... at the end of exercise was significantly (P < 0.05) increased by 1.8 plus or minus 0.2, 1.7 plus or minus 0.2, and 1.4 plus or minus 0.3 fold over resting value at 40, 60 and 80% 1RM, respectively. ... returned to the resting values after 1-5 min of recovery and then showed no further significant change for all exercise intensities. This study suggests that knee extension resistance exercise at 40, 60 and 80% 1RM induced an increase in ... and that the increase of ... after exercise returned to resting value in several minutes.
This study examined the effect of knee extension resistance exercise on muscle oxygen consumption in nonexercising forearm flexor muscles (nonexV(O)(2mus)) after exercise. Seven healthy male subjects were performed six sets of unilateral knee extension exercise until exhaustion at 40, 60, and 80% of 1 repetition maximum (RM) on separate days. The nonexV(O)(2mus) values at rest, at the end of exercise, and during recovery after exercise were measured by near-infrared spectroscopy. The nonexV(O)(2mus) at the end of exercise was significantly (P < 0.05) increased by 1.8 +/- 0.2, 1.7 +/- 0.2, and 1.4 +/- 0.3 fold over resting value at 40, 60 and 80% 1RM, respectively. NonexV(O)(2mus) returned to the resting values after 1-5 min of recovery and then showed no further significant change for all exercise intensities. This study suggests that knee extension resistance exercise at 40, 60 and 80% 1RM induced an increase in nonexV(O)(2mus) and that the increase of nonexV(O)(2mus) after exercise returned to resting value in several minutes.This study examined the effect of knee extension resistance exercise on muscle oxygen consumption in nonexercising forearm flexor muscles (nonexV(O)(2mus)) after exercise. Seven healthy male subjects were performed six sets of unilateral knee extension exercise until exhaustion at 40, 60, and 80% of 1 repetition maximum (RM) on separate days. The nonexV(O)(2mus) values at rest, at the end of exercise, and during recovery after exercise were measured by near-infrared spectroscopy. The nonexV(O)(2mus) at the end of exercise was significantly (P < 0.05) increased by 1.8 +/- 0.2, 1.7 +/- 0.2, and 1.4 +/- 0.3 fold over resting value at 40, 60 and 80% 1RM, respectively. NonexV(O)(2mus) returned to the resting values after 1-5 min of recovery and then showed no further significant change for all exercise intensities. This study suggests that knee extension resistance exercise at 40, 60 and 80% 1RM induced an increase in nonexV(O)(2mus) and that the increase of nonexV(O)(2mus) after exercise returned to resting value in several minutes.
This study examined the effect of knee extension resistance exercise on muscle oxygen consumption in nonexercising forearm flexor muscles (nonex[V dotted]O^sub 2mus^) after exercise. Seven healthy male subjects were performed six sets of unilateral knee extension exercise until exhaustion at 40, 60, and 80% of 1 repetition maximum (RM) on separate days. The nonex[V dotted]O^sub 2mus^ values at rest, at the end of exercise, and during recovery after exercise were measured by near-infrared spectroscopy. The nonex[V dotted]O^sub 2mus^ at the end of exercise was significantly (P < 0.05) increased by 1.8 +/- 0.2, 1.7 +/- 0.2, and 1.4 +/- 0.3 fold over resting value at 40, 60 and 80% 1RM, respectively. nonex[V dotted]O^sub 2mus^ returned to the resting values after 1-5 min of recovery and then showed no further significant change for all exercise intensities. This study suggests that knee extension resistance exercise at 40, 60 and 80% 1RM induced an increase in nonex[V dotted]O^sub 2mus^ and that the increase of nonex[V dotted]O^sub 2mus^ after exercise returned to resting value in several minutes.
This study examined the effect of knee extension resistance exercise on muscle oxygen consumption in nonexercising forearm flexor muscles (nonexV(O)(2mus)) after exercise. Seven healthy male subjects were performed six sets of unilateral knee extension exercise until exhaustion at 40, 60, and 80% of 1 repetition maximum (RM) on separate days. The nonexV(O)(2mus) values at rest, at the end of exercise, and during recovery after exercise were measured by near-infrared spectroscopy. The nonexV(O)(2mus) at the end of exercise was significantly (P < 0.05) increased by 1.8 +/- 0.2, 1.7 +/- 0.2, and 1.4 +/- 0.3 fold over resting value at 40, 60 and 80% 1RM, respectively. NonexV(O)(2mus) returned to the resting values after 1-5 min of recovery and then showed no further significant change for all exercise intensities. This study suggests that knee extension resistance exercise at 40, 60 and 80% 1RM induced an increase in nonexV(O)(2mus) and that the increase of nonexV(O)(2mus) after exercise returned to resting value in several minutes.
Author Nagasawa, Takeshi
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  organization: Department of Health Science, Hiroshima Institute of Technology
BackLink https://www.ncbi.nlm.nih.gov/pubmed/18758802$$D View this record in MEDLINE/PubMed
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CitedBy_id crossref_primary_10_1111_j_1475_097X_2011_01073_x
crossref_primary_10_1088_1361_6579_ac9452
crossref_primary_10_1136_jramc_2014_000312
crossref_primary_10_5432_ijshs_IJSHS20080358
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Keywords Muscle oxygen consumption
Recovery
Knee extension exercise
Near-infrared spectroscopy
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730585 - J Appl Physiol Respir Environ Exerc Physiol. 1978 Dec;45(6):835-9
10589865 - Med Sci Sports Exerc. 1999 Nov;31(11):1613-8
1605041 - Acta Physiol Scand Suppl. 1992;605:1-70
1273497 - Scand J Clin Lab Invest. 1976 Mar;36(2):193-201
10916704 - Exerc Sport Sci Rev. 2000 Jul;28(3):123-7
16497096 - Physiol Res. 2007;56(1):57-65
1184510 - J Appl Physiol. 1975 Nov;39(5):718-23
17595156 - Sports Med. 2007;37(7):615-24
3284382 - Am J Physiol. 1988 May;254(5 Pt 1):E555-61
2360695 - Am J Physiol. 1990 Jun;258(6 Pt 2):R1486-94
6369064 - Med Sci Sports Exerc. 1984;16(1):29-43
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Snippet This study examined the effect of knee extension resistance exercise on muscle oxygen consumption in nonexercising forearm flexor muscles after exercise. Seven...
This study examined the effect of knee extension resistance exercise on muscle oxygen consumption in nonexercising forearm flexor muscles (nonexV(O)(2mus))...
This study examined the effect of knee extension resistance exercise on muscle oxygen consumption in nonexercising forearm flexor muscles (nonex[V dotted]O^sub...
(ProQuest: ... denotes formulae and/or non-USASCII text omitted; see image).This study examined the effect of knee extension resistance exercise on muscle...
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SubjectTerms Aerobics
Biomedical and Life Sciences
Biomedicine
Exercise - physiology
Exercise intensity
Forearm - physiology
Hemoglobins - metabolism
Human Physiology
Humans
Knee - physiology
Male
Muscle, Skeletal - physiology
Myoglobin - metabolism
Occupational Medicine/Industrial Medicine
Original Article
Oxygen Consumption - physiology
Physical fitness
Resistance Training
Rest
Spectroscopy, Near-Infrared
Spectrum analysis
Sports Medicine
Time Factors
Young Adult
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Title Resistance exercise increases postexercise oxygen consumption in nonexercising muscle
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