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      Effects of Low Intensity Blood Flow Restriction Training on Brain Motor Area Activation

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      https://www.riss.kr/link?id=A108247587

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      다국어 초록 (Multilingual Abstract)

      Purpose: The purpose of this study was to identify the effects of low intensity blood flow restriction training (LBFR) on the central nervous system of healthy adults. Methods: Ten healthy right-handed adults (eight males and two females, mean age of ...

      Purpose: The purpose of this study was to identify the effects of low intensity blood flow restriction training (LBFR) on the central nervous system of healthy adults.
      Methods: Ten healthy right-handed adults (eight males and two females, mean age of 28.6 ± 2.87 years) were selected as study subjects. Functional magnetic resonance imaging (fMRI) was conducted to measure brain activation (BA) following LBFR and non-LBFR. The primary motor area, premotor area, and supplementary motor area, which are closely related to exercise, were set as the regions of interest.
      Results: The BA recorded during the LBFR condition was 931.7 ± 302.44 voxel, and the BA recorded during the non-LBFR condition was 1,510.9 ± 353.47 voxel.
      Conclusion: BA was lower during LBFR than during non-LBFR.

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      참고문헌 (Reference)

      1 김종순, "가압훈련의 혈류 압박 정도에 따른 복합근 활동전위의 변화" 대한고유수용성신경근촉진법학회 18 (18): 393-401, 2020

      2 Sato Y, "The history and future of kaatsu training" 1 (1): 1-5, 2005

      3 Oldfield RC, "The assessment and analysis of handedness : The edinburgh inventory" 9 (9): 97-113, 1971

      4 Abe T, "Skeletal muscle size and circulating igf-1 are increased after two weeks of twice daily “kaatsu” resistance training" 1 (1): 6-12, 2005

      5 DeLorme TL, "Restoration of muscle power by heavy-resistance exercises" 27 (27): 645-667, 1945

      6 Takarada Y, "Rapid i ncrease in plasma growth hormone after low-intensity resistance exercise with vascular occlusion" 88 (88): 61-65, 2000

      7 Purves D, "Neurosciences" De Boeck Supérieur 2019

      8 Manini TM, "Myogenic and proteolytic mrna expression following blood flow restricted exercise" 201 (201): 255-263, 2011

      9 Abe T, "Muscle size and strength are increased following walk training with restricted venous blood flow from the leg muscle, kaatsu-walk training" 100 (100): 1460-1466, 2006

      10 Tanimoto M, "Muscle oxygenation and plasma growth hormone concentration during and after resistance exercise: Comparison between “kaatsu” and other types of regimen" 1 (1): 51-56, 2005

      1 김종순, "가압훈련의 혈류 압박 정도에 따른 복합근 활동전위의 변화" 대한고유수용성신경근촉진법학회 18 (18): 393-401, 2020

      2 Sato Y, "The history and future of kaatsu training" 1 (1): 1-5, 2005

      3 Oldfield RC, "The assessment and analysis of handedness : The edinburgh inventory" 9 (9): 97-113, 1971

      4 Abe T, "Skeletal muscle size and circulating igf-1 are increased after two weeks of twice daily “kaatsu” resistance training" 1 (1): 6-12, 2005

      5 DeLorme TL, "Restoration of muscle power by heavy-resistance exercises" 27 (27): 645-667, 1945

      6 Takarada Y, "Rapid i ncrease in plasma growth hormone after low-intensity resistance exercise with vascular occlusion" 88 (88): 61-65, 2000

      7 Purves D, "Neurosciences" De Boeck Supérieur 2019

      8 Manini TM, "Myogenic and proteolytic mrna expression following blood flow restricted exercise" 201 (201): 255-263, 2011

      9 Abe T, "Muscle size and strength are increased following walk training with restricted venous blood flow from the leg muscle, kaatsu-walk training" 100 (100): 1460-1466, 2006

      10 Tanimoto M, "Muscle oxygenation and plasma growth hormone concentration during and after resistance exercise: Comparison between “kaatsu” and other types of regimen" 1 (1): 51-56, 2005

      11 Yasuda T, "Muscle fiber cross-sectional area is increased after two weeks of twice daily kaatsu-resistance training" 1 (1): 65-70, 2005

      12 Nee RJ, "Management of peripheral neuropathic pain : Integrating neurobiology, neurodynamics, and clinical evidence" 7 (7): 36-49, 2006

      13 Lundborg G, "Intraneural microcirculation" 19 (19): 1-12, 1988

      14 Suga T, "Intramuscular metabolism during low-intensity resistance exercise with blood flow restriction" 106 (106): 1119-1124, 2009

      15 Staron RS, "Influence of resistance training on serum lipid and lipoprotein concentrations in young men and women" 14 (14): 37-44, 2000

      16 Yetkin FZ, "Functional magnetic resonance imaging mapping of the sensorimotor cortex with tactile stimulation" 36 (36): 921-925, 1995

      17 Takarada Y, "Effects of resistance exercise combined with vascular occlusion on muscle function in athletes" 86 (86): 308-314, 2002

      18 Yasuda T, "Effects of low-intensity bench press training with restricted arm muscle blood flow on chest muscle hypertrophy : A pilot study" 30 (30): 338-343, 2010

      19 Morita T, "Effects of blood flow restriction on cerebral blood flow during a single arm-curl resistance exercise" 6 (6): 9-12, 2010

      20 박재철 ; 문달주 ; 최석주, "Effects of Blood Flow Restriction Exercise on Leg Muscle Thickness and Balance in Elderly Women with Sarcopenia" 대한고유수용성신경근촉진법학회 20 (20): 1-8, 2022

      21 Suga T, "Dose effect on intramuscular metabolic stress during low-intensity resistance exercise with blood flow restriction" 108 (108): 1563-1567, 2010

      22 Yoo SW, "Comparison between the effects of blood flow restricted training and resistance training on muscle function" University of Seoul 2015

      23 Kim LJ, "Changes of compound muscle action potential after low-intensity exercise with transient restriction of blood flow : A randomized, placebo-controlled trial" 21 (21): 361-366, 2009

      24 Rowell L, "Cardiovascular responses to muscle ischemia in humans" 48 (48): I37-, 1981

      25 Bodine SC, "Akt/mtor pathway is a crucial regulator of skeletal muscle hypertrophy and can prevent muscle atrophy in vivo" 3 (3): 1014-1019, 2001

      26 Bickler PE, "Acute radial nerve injury from use of an automatic blood pressure monitor" 73 (73): 186-188, 1990

      27 Medicine ACoS, "Acsm’s guidelines for exercise testing and prescription" 2013

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