Comparison of the intramuscular circulation of the lumbar multifidus in subjects with and without low back pain in trunk extension and trunk extending exercise (koredake-exercise)

Low back pain (LBP), a common symptom experienced by all age groups, has been reported to be the primary cause of disability worldwide. The aim of this study was to investigate changes in relative circulation over time in the lumbar multifidus in different trunk extension exercises between subjects...

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Published inJournal of Spine Research Vol. 14; no. 6; pp. 945 - 952
Main Authors Sato, Naritoshi, Kitamura, Takuya, Konishi, Isamu, Watanabe, Kei, Kanda, Masaru
Format Journal Article
LanguageJapanese
Published The Japanese Society for Spine Surgery and Related Research 20.06.2023
一般社団法人 日本脊椎脊髄病学会
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ISSN1884-7137
2435-1563
DOI10.34371/jspineres.2023-0620

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Abstract Low back pain (LBP), a common symptom experienced by all age groups, has been reported to be the primary cause of disability worldwide. The aim of this study was to investigate changes in relative circulation over time in the lumbar multifidus in different trunk extension exercises between subjects with and without LBP.Twelve subjects (mean age, 21.2±0.4 years) with LBP (LBP group) for the past three months and 18 healthy subjects (mean age, 21.1±0.3 years) without LBP (non-LBP group) were recruited. They received a full explanation of the study, and all agreed to participate. Near-infrared spectroscopy (NIRS) was used to non-invasively measure oxygenated hemoglobin (Oxy-Hb), deoxygenated hemoglobin (Deoxy-Hb), and total hemoglobin (Total-Hb) of the lumbar multifidus at the L5-S1 segment. All measurements were obtained in the neutral position, at trunk extension of 20 degrees, and during trunk extending exercise while standing. The subjects were asked to move into either the trunk extended position or extending exercise movement from the starting (neutral) position in 3 seconds, timed by a metronome, and to maintain the position for 10 seconds. The angles of the extended positions were measured with a goniometer, and self-made devices were used for extending exercise movement to properly maintain these positions. All participants received education and practice time to be able to perform the proper body movements and positions prior to assessment. The measurements were obtained at −3 seconds (neutral position), 0, and 10 seconds in each extended and extending exercise position while standing and compared between the LBP and non-LBP groups.In extension, there were no significant interactions in both the LBP and non-LBP groups. In both groups, significant increases were noted in Deoxy-Hb and Total-Hb.In extending exercise, there were no significant interactions in both the LBP and non-LBP groups in Oxy-Hb and Total-Hb. In the non-LBP group, significant increases were noted in Deoxy-Hb.The results of this study showed that the intramuscular circulation of lumbar multifidus increased with trunk extension, but the circulation increased more with extending exercise in both the LBP and non-LBP groups.
AbstractList Low back pain (LBP), a common symptom experienced by all age groups, has been reported to be the primary cause of disability worldwide. The aim of this study was to investigate changes in relative circulation over time in the lumbar multifidus in different trunk extension exercises between subjects with and without LBP.Twelve subjects (mean age, 21.2±0.4 years) with LBP (LBP group) for the past three months and 18 healthy subjects (mean age, 21.1±0.3 years) without LBP (non-LBP group) were recruited. They received a full explanation of the study, and all agreed to participate. Near-infrared spectroscopy (NIRS) was used to non-invasively measure oxygenated hemoglobin (Oxy-Hb), deoxygenated hemoglobin (Deoxy-Hb), and total hemoglobin (Total-Hb) of the lumbar multifidus at the L5-S1 segment. All measurements were obtained in the neutral position, at trunk extension of 20 degrees, and during trunk extending exercise while standing. The subjects were asked to move into either the trunk extended position or extending exercise movement from the starting (neutral) position in 3 seconds, timed by a metronome, and to maintain the position for 10 seconds. The angles of the extended positions were measured with a goniometer, and self-made devices were used for extending exercise movement to properly maintain these positions. All participants received education and practice time to be able to perform the proper body movements and positions prior to assessment. The measurements were obtained at −3 seconds (neutral position), 0, and 10 seconds in each extended and extending exercise position while standing and compared between the LBP and non-LBP groups.In extension, there were no significant interactions in both the LBP and non-LBP groups. In both groups, significant increases were noted in Deoxy-Hb and Total-Hb.In extending exercise, there were no significant interactions in both the LBP and non-LBP groups in Oxy-Hb and Total-Hb. In the non-LBP group, significant increases were noted in Deoxy-Hb.The results of this study showed that the intramuscular circulation of lumbar multifidus increased with trunk extension, but the circulation increased more with extending exercise in both the LBP and non-LBP groups.
Low back pain (LBP), a common symptom experienced by all age groups, has been reported to be the primary cause of disability worldwide. The aim of this study was to investigate changes in relative circulation over time in the lumbar multifidus in different trunk extension exercises between subjects with and without LBP.Twelve subjects (mean age, 21.2±0.4 years) with LBP (LBP group) for the past three months and 18 healthy subjects (mean age, 21.1±0.3 years) without LBP (non-LBP group) were recruited. They received a full explanation of the study, and all agreed to participate. Near-infrared spectroscopy (NIRS) was used to non-invasively measure oxygenated hemoglobin (Oxy-Hb), deoxygenated hemoglobin (Deoxy-Hb), and total hemoglobin (Total-Hb) of the lumbar multifidus at the L5-S1 segment. All measurements were obtained in the neutral position, at trunk extension of 20 degrees, and during trunk extending exercise while standing. The subjects were asked to move into either the trunk extended position or extending exercise movement from the starting (neutral) position in 3 seconds, timed by a metronome, and to maintain the position for 10 seconds. The angles of the extended positions were measured with a goniometer, and self-made devices were used for extending exercise movement to properly maintain these positions. All participants received education and practice time to be able to perform the proper body movements and positions prior to assessment. The measurements were obtained at −3 seconds (neutral position), 0, and 10 seconds in each extended and extending exercise position while standing and compared between the LBP and non-LBP groups.In extension, there were no significant interactions in both the LBP and non-LBP groups. In both groups, significant increases were noted in Deoxy-Hb and Total-Hb.In extending exercise, there were no significant interactions in both the LBP and non-LBP groups in Oxy-Hb and Total-Hb. In the non-LBP group, significant increases were noted in Deoxy-Hb.The results of this study showed that the intramuscular circulation of lumbar multifidus increased with trunk extension, but the circulation increased more with extending exercise in both the LBP and non-LBP groups. 成人女性腰痛有群12名(平均年齢21.2±0.4),腰痛無群18名(平均年齢21.1±0.3)に対し,近赤外線組織血液酸素モニター装置(NIRS)を用い,腰部多裂筋の血液循環動態の測定を行った.対象者に,直立位から体幹伸展動作もしくはこれだけ体操を行わせ,その際の腰部多裂筋のOxy-Hb,Deoxy-HbおよびTotal-Hbの変化を,それぞれ直立位,動作10秒後で測定し,比較検証を行った.結果,体幹伸展動作においては,腰痛の有無において,Oxy-Hb,Deoxy-Hb,Total-Hb全てにおいて,有意な交互作用および腰痛有無の主効果を認めなかった.しかしながら,姿勢の変化による経時的変化においては,Deoxy-Hb,Total-Hbに有意な増加を認めた.これだけ体操においては,腰痛の有無において,Oxy-Hb,Total-Hbにおいて,有意な交互作用および腰痛有無の主効果を認めなかった.しかしながら,姿勢の変化による経時的変化においては,有意な増加を認めた.Deoxy-Hbにおいては,有意な交互作用を認め,腰痛無群で動作による経時的変化で有意な増加を認めた.以上のことから,立位での体幹伸展動作でも,腰痛の有無にかかわらず血流循環動態が増加を示し,これだけ体操では,腰痛の有無にかかわらず,血流循環動態がより増加を示すことが示唆された.
Author Kitamura, Takuya
Watanabe, Kei
Kanda, Masaru
Konishi, Isamu
Sato, Naritoshi
Author_FL 神田 賢
古西 勇
渡辺 慶
佐藤 成登志
Kitamura Takuya
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References 19) Sakai Y, Matsuyama Y, Ishiguro N: Intramuscular oxygenation of trunk muscle in elderly persons. J. Lumbar Spine Disord. 2005; 11: 148-156
3) Hartvigsen J, Hancock MJ, Kongsted A, et al: What low back pain is and why we need to pay attention. Lancet. 2018; 391: 2356-2367
6) Loeppke R, Hymel P: Health and productivity enhancement, Chapter 16. Effective Management of Health and Safety Programs: a Practical Guide, 3rd Edition. In Moser R Jr, ed.. Beverly Farm, MA, pp265-290, 2008
8) Matsudaira K, Palmer KT, Reading I, et al: Prevalence and correlates of regional pain and associated disability in Japanese workers. Occup Environ Med. 2011; 68: 191-196
13) 三浦 哉: 筋の代謝を測る-近赤外線分光法 筋の科学事典. 東京, 朝倉書店, pp430-435, 2003
7) Yoshimoto T, Oka H, Fujii T, et al: The Economic Burden of Lost Productivity due to Presenteeism Caused by Health Conditions Among Workers in Japan. J Occup Environ Med. 2020; 62: 883-888
11) Tonosu J, Matsudaira K, Oka H, et al: A population approach to analyze the effectiveness of a back extension exercise "One Stretch" in patient with low back pain: A replication study. J Orthop Sci. 2016; 21: 414-418
15) 松田 涼, 隅元庸夫, 世古俊明, 他: 体幹伸展運動が腰背筋群の血流循環動態および筋活動に及ぼす影響. 理学療法科学. 2017; 32: 559-562
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2) 厚生労働省: 令和2年業務上疾病発生状況等調査. [参照2023年1月10日]. Available from: https://www.mhlw.go.jp/content/11300000/000807705.pdf
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18) Ettinger SM: Muscle sympathetic nerve activity during exercise and the influences of gender. Gender Differences in Metabolism. In Tarnopolsky M, ed.. Boca Raton, CRC Press, 1999
9) 神田 賢, 北村拓也, 佐藤成登志, 他: 直立位と体幹屈曲位および伸展位における腰部多裂筋の組織血液循環動態の経時的変化-腰痛の有無での比較-. J. Spine Res. 2022; 13: 860-867
1) 厚生労働省: 令和元年国民生活基礎調査の概要 III世帯員の健康状況, 1. 自覚症状の状況. [参照2022年12月18日]. Available from: https://www.mhlw.go.jp/toukei/saikin/hw/k-tyosa/k-tyosa19/dl/04.pdf
25) 北村拓也, 神田 賢, 佐藤成登志, 他: 慢性腰痛を有する高齢脊柱変形患者に対する運動療法効果. J. Spine Res. 2020; 11: 923-930
24) Oshikawa T, Morimoto Y, Kaneoka K, et al: Lumbar lordosis angle and trunk and lower-limb electromyographic activity comparison in hip neutral position and external rotation during back squats. J. Phys. Ther. Sci. 2018; 30: 434-438
17) 原田脩平, 佐野幸子, 井上貴裕: 体組成計による筋肉量・脂肪量の測定報告. 理学療法. 2018; 25: 98-102
22) 杉 晴夫, 宮崎俊一: 人体機能生理学 改訂第4版. 東京, 南江堂, pp139, 2003
10) Matsudaira K, Hiroe M, Kikkawa M, et al: Can standing back extension exercise improve or prevent low back pain in Japanese care workers? J Man Manip Ther. 2015; 23: 205-209
21) Vera-Garcia FJ, Moreside JM, McGill SM: Abdominal muscle activation changes if the purpose is to control pelvis motion or thorax motion. J Electromyogr Kinesiol. 2011; 21: 893-903
4) Global Burden of Disease, Injury Incidence, Prevalence Collaborators: Global, regional, and national incidence, prevalence, and years lived with disability for 310 diseases and injuries, 1990-2015: a systematic analysis for the Global Burden of Disease Study 2015. Lancet. 2016; 388: 1545-1602
5) Global Burden of Disease 2015 DALYs and HALE Collaborators: Global, regional, and national disability-adjusted life-years (DALYs) for 315 diseases and injuries and healthy life expectancy (HALE), 1990-2015: a systematic analysis for the Global Burden of Disease Study 2015. Lancet. 2016; 388: 1603-1658
12) 松平 浩: 腰痛予防のエクササイズ. MB Med Reha. 2016; 198: 63-69
14) Kumamoto T, Seko T, Matsuda R, et al: Change in the circulation and activity of the lower erector spinae muscles after repeated trunk extension movement. J. Back and Musculoskeletal rehab. 2019; 32: 931-936
23) 紺野慎一, 菊地臣一: 腰椎背筋群のコンパートメント内圧上昇と腰痛. 臨整外. 1993; 28 (4): 419-426
References_xml – reference: 13) 三浦 哉: 筋の代謝を測る-近赤外線分光法 筋の科学事典. 東京, 朝倉書店, pp430-435, 2003
– reference: 6) Loeppke R, Hymel P: Health and productivity enhancement, Chapter 16. Effective Management of Health and Safety Programs: a Practical Guide, 3rd Edition. In Moser R Jr, ed.. Beverly Farm, MA, pp265-290, 2008
– reference: 4) Global Burden of Disease, Injury Incidence, Prevalence Collaborators: Global, regional, and national incidence, prevalence, and years lived with disability for 310 diseases and injuries, 1990-2015: a systematic analysis for the Global Burden of Disease Study 2015. Lancet. 2016; 388: 1545-1602
– reference: 3) Hartvigsen J, Hancock MJ, Kongsted A, et al: What low back pain is and why we need to pay attention. Lancet. 2018; 391: 2356-2367
– reference: 17) 原田脩平, 佐野幸子, 井上貴裕: 体組成計による筋肉量・脂肪量の測定報告. 理学療法. 2018; 25: 98-102
– reference: 19) Sakai Y, Matsuyama Y, Ishiguro N: Intramuscular oxygenation of trunk muscle in elderly persons. J. Lumbar Spine Disord. 2005; 11: 148-156
– reference: 25) 北村拓也, 神田 賢, 佐藤成登志, 他: 慢性腰痛を有する高齢脊柱変形患者に対する運動療法効果. J. Spine Res. 2020; 11: 923-930
– reference: 9) 神田 賢, 北村拓也, 佐藤成登志, 他: 直立位と体幹屈曲位および伸展位における腰部多裂筋の組織血液循環動態の経時的変化-腰痛の有無での比較-. J. Spine Res. 2022; 13: 860-867
– reference: 16) 沢谷洋平, 石坂正大, 久保 晃, 他: 若年健常者における性別毎の部位別筋肉量と呼吸機能および呼吸筋力の関係. 国際医療福祉大学学会誌. 2019; 24: 27-32
– reference: 24) Oshikawa T, Morimoto Y, Kaneoka K, et al: Lumbar lordosis angle and trunk and lower-limb electromyographic activity comparison in hip neutral position and external rotation during back squats. J. Phys. Ther. Sci. 2018; 30: 434-438
– reference: 1) 厚生労働省: 令和元年国民生活基礎調査の概要 III世帯員の健康状況, 1. 自覚症状の状況. [参照2022年12月18日]. Available from: https://www.mhlw.go.jp/toukei/saikin/hw/k-tyosa/k-tyosa19/dl/04.pdf
– reference: 22) 杉 晴夫, 宮崎俊一: 人体機能生理学 改訂第4版. 東京, 南江堂, pp139, 2003
– reference: 18) Ettinger SM: Muscle sympathetic nerve activity during exercise and the influences of gender. Gender Differences in Metabolism. In Tarnopolsky M, ed.. Boca Raton, CRC Press, 1999
– reference: 10) Matsudaira K, Hiroe M, Kikkawa M, et al: Can standing back extension exercise improve or prevent low back pain in Japanese care workers? J Man Manip Ther. 2015; 23: 205-209
– reference: 20) 傳法谷郁乃, 小柴朋子, 田村照子: 仰臥位における下肢の部位別圧迫が腓腹筋血流動態の及ぼす影響. 繊維製品消費科学. 2015; 56: 356-365
– reference: 12) 松平 浩: 腰痛予防のエクササイズ. MB Med Reha. 2016; 198: 63-69
– reference: 23) 紺野慎一, 菊地臣一: 腰椎背筋群のコンパートメント内圧上昇と腰痛. 臨整外. 1993; 28 (4): 419-426
– reference: 15) 松田 涼, 隅元庸夫, 世古俊明, 他: 体幹伸展運動が腰背筋群の血流循環動態および筋活動に及ぼす影響. 理学療法科学. 2017; 32: 559-562
– reference: 21) Vera-Garcia FJ, Moreside JM, McGill SM: Abdominal muscle activation changes if the purpose is to control pelvis motion or thorax motion. J Electromyogr Kinesiol. 2011; 21: 893-903
– reference: 7) Yoshimoto T, Oka H, Fujii T, et al: The Economic Burden of Lost Productivity due to Presenteeism Caused by Health Conditions Among Workers in Japan. J Occup Environ Med. 2020; 62: 883-888
– reference: 11) Tonosu J, Matsudaira K, Oka H, et al: A population approach to analyze the effectiveness of a back extension exercise "One Stretch" in patient with low back pain: A replication study. J Orthop Sci. 2016; 21: 414-418
– reference: 2) 厚生労働省: 令和2年業務上疾病発生状況等調査. [参照2023年1月10日]. Available from: https://www.mhlw.go.jp/content/11300000/000807705.pdf
– reference: 5) Global Burden of Disease 2015 DALYs and HALE Collaborators: Global, regional, and national disability-adjusted life-years (DALYs) for 315 diseases and injuries and healthy life expectancy (HALE), 1990-2015: a systematic analysis for the Global Burden of Disease Study 2015. Lancet. 2016; 388: 1603-1658
– reference: 8) Matsudaira K, Palmer KT, Reading I, et al: Prevalence and correlates of regional pain and associated disability in Japanese workers. Occup Environ Med. 2011; 68: 191-196
– reference: 14) Kumamoto T, Seko T, Matsuda R, et al: Change in the circulation and activity of the lower erector spinae muscles after repeated trunk extension movement. J. Back and Musculoskeletal rehab. 2019; 32: 931-936
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Snippet Low back pain (LBP), a common symptom experienced by all age groups, has been reported to be the primary cause of disability worldwide. The aim of this study...
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StartPage 945
SubjectTerms intramuscular circulation
lumbar multifidus
trunk extending exercise
trunk extension
これだけ体操
体幹伸展動作
腰部多裂筋
血液循環動態
Title Comparison of the intramuscular circulation of the lumbar multifidus in subjects with and without low back pain in trunk extension and trunk extending exercise (koredake-exercise)
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ispartofPNX Journal of Spine Research, 2023/06/20, Vol.14(6), pp.945-952
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