• Title/Summary/Keyword: Trunk muscle activation

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Muscles Activation of Trunk and Lower-limb during Integrating Bridge Exercise Using Gym Ball in Healthy Individuals

  • Lee, Sue-Min;Oh, Duck-won;Son, Sung-Min
    • The Journal of Korean Physical Therapy
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    • 제34권4호
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    • pp.187-191
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    • 2022
  • Purpose: The purpose of our study aimed to identify the effect of static and dynamic bridge exercise with gym ball using gym ball on muscle activation of trunk and lower-limb in healthy individuals. Methods: A total of 20 healthy adults participated in this study. The individuals performed general bridge exercise, static and dynamic bridge exercise using gym ball. During the three methods of bridge exercises, electromyography (EMG) data (% maximum voluntary isometric contraction) of the rectus abdominis, erector spinae, biceps femoris, and gastrocnemius were recorded using a wireless surface EMG system. Results: Rectus abdominis activation showed significantly greater during dynamic bridge exercise compared with general bridge exercise and dynamic bridge exercise. Erector spinae, biceps femoris, and gastrocnemius were greater during static and dynamic bridge exercise compared with general bridge exercise. Conclusion: Based on our results, bridge exercise using gym ball, particularly integrating lower-limb movement, could be a useful method to enhance muscle activation of trunk and lower-limb (rectus abdominis, erector spinae, biceps femoris, and gastrocnemius).

슬관절 각도에 따른 교각운동이 체간근 활성도에 미치는 영향 (The Effect of Trunk Muscle Activity on Bridging Exercise According to the Knee Joint Angle)

  • 김경환;박래준;장준혁;이우형;기경일
    • 대한물리의학회지
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    • 제5권3호
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    • pp.405-412
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    • 2010
  • Purpose : The purpose of this study was to assess the effects of the trunk muscle activity on bridging exercise according to the knee joint angle. Methods : Twenty-five healthy adults volunteered to participate in this study. Subjects were required to complete following four bridging exercises; knee joint flexion $120^{\circ}$, $90^{\circ}$, $60^{\circ}$, $45^{\circ}$. Surface electromyography from selected trunk muscles was normalized to maximum voluntary isometric contraction. Muscle activity was measured by QEMG-4 system(LXM 3204, Laxtha Korea). A repeated measures of one-way ANOVA with post-hoc Bonferroni's correction was used to determine the influence of bridging exercise on muscle activity for each muscle and descriptive statistics was used to determine local/global muscle ratio. Results : The internal oblique of bridging exercises $120^{\circ}$, $90^{\circ}$ showed significantly(p<.05). The erctor spinae of all bridging exercises showed significant excepted between $60^{\circ}$ and $45^{\circ}$(p<.05). Median of internal oblique/rectus abdominis ratio of $120^{\circ}$ was 4.41, $90^{\circ}$ was 3.94, $60^{\circ}$ was 3.58, $45^{\circ}$ was 3.39. Median of internal oblique/external oblique ratio of $120^{\circ}$ was 2.66, $90^{\circ}$ was 2.43, $60^{\circ}$ was 2.87, $45^{\circ}$ was 2.64. Conclusion : Angular motion decreasing with knee joint flexion made erector spinae activation increase. on the other hand, as decreasing abdomen muscle activation, the more performing motor learning is required for abdomen muscle strength and co-contraction for the trunk stabilization.

뇌졸중 환자에서 수의적인 상·하지 움직임 시 선택적인 체간 근육의 선행적 자세조절 (Anticipatory Postural Adjustment in Selected Trunk Muscles Associated With Voluntary Arm and Leg Movement in the Persons With Stoke)

  • 정경심;정이정
    • 한국전문물리치료학회지
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    • 제16권2호
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    • pp.1-8
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    • 2009
  • Anticipatory postural adjustments is an example of the ability of the central nervous system to predict the consequence of the mechanical effect of movement on posture and helps minimize a forth coming disturbance. The aim of this study was to evaluate the sequence of activation of the trunk muscles during the performance of hip and shoulder movement and to determine the relationship between anticipatory activity and subjects' motor and functional status in subjects with hemiplegia post stroke. Twenty-four poststroke hemiparetic patients enrolled in this study. Electromyographic activity of the lumbar erector spinae, latissimus dorsi, and of the obliquus internus muscles was recorded bilaterally during flexion of both arm and from the rectus abdominis, obliquus externus, and obliquus internus muscles during flexion of both hip. Onset latencies of trunk muscles were partially delayed in the subjects with hemiplegia post stroke (p<.05). With upper limb flexion, the onset of erector spinae muscle and latissimus dorsi muscle activity preceded the onset of deltoid on both side respectively (p<.05). A similar sequence of activation occurred with lower limb flexion. Also the onset of external oblique muscle and rectus abdominis muscle activity preceded the onset of rectus femoris muscle on both side (p<.05). Major impairments in the activity of trunk muscles in hemiparetic subjects were manifested in delayed onset between activation of pertinent muscular pairs. These problems were associated with motor and functional deficits and warrant specific consideration during physical rehabilitation of post stroke hemiparetic patients.

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The Effects of Sling Bridging Exercise to Pain Scale and Trunk Muscle Activity in Low Back Pain Patients

  • Jeong, Eun Dong;Chae, Chang Woo;Yun, Hong Kyu;Woo, Kwang Seog;Kim, Dong Hyun;Kim, Seung Min
    • 국제물리치료학회지
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    • 제4권1호
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    • pp.523-531
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    • 2013
  • Most patients with chronic low back pain experience functional disability of trunk muscle, and limitations in physical activity. While there are many types of exercise programs available, in recent years sling exercise has been emerging as the exercise program for spinal stabilization. It has been supported by a great amount of research with positive findings on its effectiveness. This research studies the effects of bridging exercise, conducted on a sling, on pain level and trunk muscle activation in supine, sidelying, and prone positions during a 4 weeks period. 10 healthy people(normal group, n=10) and 28 patients with low back pain participated in this study. 28 patients were divided into two groups; one group participated in exercise with the sling(experimental group, n=14) and the other group exercised without the sling(control group, n=14). They were asked to use the Numerical Rating Scale(NRS) to answer to the level of their pain they felt (no pain: 0 point, severe pain: 10 points). During sling bridging exercises, the muscle activity level in each muscle measured in each position was standardized as three seconds of EMG signals during five seconds MVIC. In conclusion, the experimental group with four weeks of sling bridging exercise experienced a statistically significant reduction in the pain level(p<.05) and increase in the muscle activities of erector spinae when in supine position, internal oblique when in sidelying position, and rectus abdominis in prone position(p<.05). Regular sling bridging exercise reduces the low back pain and enhances other trunk muscle activation, thereby positively affect spinal stabilization.

체간 안정화운동이 만성 요통환자의 근력과 근활성도에 미치는 영향 (The Effects of Trunk Stabilization Exercise on the Isometric Muscle Power and Muscle Activation in Chronic Low Back Pain)

  • 김형수;형인혁;김은영
    • 한국운동역학회지
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    • 제18권4호
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    • pp.115-124
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    • 2008
  • 본 연구는 만성 요통환자의 치료적 중재에서 체간 안정화 운동의 방법 중 매트 볼 운동군, 슬링 운동이 요통장애지수, 근력, 근활성도에 미치는 영향을 알아보기 위해 수행되었다. 각 중재 군들은 6주 동안 주 5회, 운동 프로그램을 실시하였으며, 대조군은 일반적 중재를 실시하여 다음과 같은 결론을 얻었다. 1. 요통장애지수는 중재 기간에 따라 매트 볼 운동군, 슬링 운동군에서 중재 기간이 증가됨에 따라 감소하여 통증과 장애정도가 효과적으로 감소하였다. 2. 근력은 매트 볼 운동군, 슬링 운동군은 모든 각도에서 중재 6주 후에 증가하여 효과적으로 증가하였다. 3. 근활성도는 복횡근은, 내복사글 복직근은 매트 볼 운동군, 슬링 운동군에서 근력이 증진됨에 따라 근활성도는 증가하였고, 외복사근은 매트 볼 운동군에서만 증가하였다. 본 연구를 결과를 종합해 보면 요통환자의 치료적 중재에서 체간 안정화 운동은 각 기간 별로 요통장애지수, 근력과 각 근육의 근활성도에서 효율적 영향을 미치며, 보다 많은 적용을 통하여 지속적인 연구가 이루어지기를 희망한다.

The Effects of a Bridging Exercise Applying Changes in the Base of Support for the Shoulders on Trunk Muscle Activation

  • Lee, Tae-Gyu;Park, Chan-Hyun;Son, Ho-Hee
    • 대한물리의학회지
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    • 제11권3호
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    • pp.97-104
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    • 2016
  • PURPOSE: Bridge exercise is widely used in rehabilitation exercise for trunk stabilization through various applications in clinical practice. However, there is a lack of studies changing the base of support for the shoulders. The purpose of this study is to investigate the changes in the base of support for the shoulders of trunk muscle activation during bridge exercise. METHODS: 20 healthy subjects (10 men, 10 women) in their twenties were participated in this study. They performed 5 bridge exercises (bridge exercise with their shoulders on a stable table (1/2 knee height, knee height), and on a sling (1/2 knee height, knee height), conventional bridge exercise. The surface electromyography were used for rectus abdominis (RA), internal oblique (IO), external oblique (EO), and erector spinae (ES). RESULTS: During bridge exercise that their shoulders on the sling of 1/2 knee height, the RA, EO, IO muscle activities were significant increased. And during bridge exercise that their shoulders on the stable surface of knee height, the IO/RA ratio were higher than other positions but there were no significant difference between positions for EO/RA, IO/RA ratio. CONCLUSION: Based on this result, using various bases of support and changing the height of bridging exercise may be used to provide effective trunk stabilization exercises.

Trunk Muscle Activation during Bridge Exercise with Various Shoulder Supporting Surfaces

  • Son, Ho-hee
    • 대한물리의학회지
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    • 제10권3호
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    • pp.81-86
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    • 2015
  • PURPOSE: Bridge exercises are broadly used to develop trunk co-activation patterns that promote spine stability. This study was to analyze the trunk muscle activity during bridge exercise with various shoulder support surface(stable, sling, Swiss ball). METHODS: The subjects were 20 healthy subjects in their twenties. Subjects were performed bridge exercise on 4 different shoulder support surfaces using stable and labile instruments. 1) Bridge exercise on a stable surface. 2) Bridge exercise with their shoulder on a stable bench. 3) Bridge exercise with their shoulder on a sling. 4) Bridge exercise with their shoulder on a Swiss ball. Rectus abdominis, erector spinae, internal oblique, external oblique muscle activities were measured using electromyography. RESULTS: There were significant differences in RA, EO muscles between performing each of the 4 exercises(p<.05). RA and EO was recorded the highest activity during the bridge exercise with their shoulder on a sling. The lowest activity was recorded during conventional supine bridge on a stable surface. There were no differences found for the EO/RA and IO/RA ratio. The EO/RA and IO/RA ratio was the highest in the bridge exercise with their shoulders resting on a stable bench. CONCLUSION: These findings suggest that change of shoulder support surface during bridge exercise may be useful for enhancing the trunk stability.

가슴압박시 구급대원의 체간 각도와 근활성도 분석 (Analysis of trunk angle and muscle activation during chest compression in 119 EMTs)

  • 신동민;이창섭;김승용;김창국;홍은정;이영철;최가람;김경용;장문순;김정희;한붕기;이종근;탁양주
    • 한국응급구조학회지
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    • 제18권3호
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    • pp.7-18
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    • 2014
  • Purpose: We aimed to investigate trunk angle and muscle activation of the extremity and back to evaluate the effect of chest compression on work-related musculoskeletal disorders in 119 emergency medical technicians (EMTs). Methods: Eighteen 119 EMTs performed 2-minute chest compression without interruption on a cardiopulmonary resuscitation manikin, during which we measured changes in the trunk and shoulder joint angles, muscle activation (triceps brachii, biceps brachii, erector spinae, gluteus maximus, pectoralis major, rectus abdominis, and rectus femoris) and chest compression accuracy. Results: The decrease in trunk angle by trunk muscle activation was the highest in event 2, the major direction of chest compression. Both shoulder joint angles had no significant difference. Muscle activation of the triceps brachii (p < .01), biceps brachii (p < .05), rectus abdominis (p < .05) and rectus femoris (p < .01) significantly increased during the compression phase compared with the decompression phase, with the rectus femoris showing an increase of 19%. Muscle activation of the erector spinae significantly increased in the decompression phase compared with the compression phase (p < .01). Conclusion: 119 EMTs mainly use the triceps brachii, biceps brachii and pectoralis major muscles during chest compression.

전신 기울임 운동시 축 회전 유무에 따른 체간근 활성도 변화 (Changes of Muscle Activation Pattern of Trunk Muscles during Whole-body Tilts with and without Axial Rotation)

  • 김솔비;장윤희;김신기;배태수;문무성;박종철
    • 한국정밀공학회지
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    • 제29권7호
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    • pp.805-810
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    • 2012
  • Determining of the exercise intensity is very important in terms of induction of low fatigue during exercise. Little information is available on the contraction level of the trunk muscles during whole body tilts with and without axial rotation. This study was to investigate the difference muscle activation level according to axial rotation. Twenty subjects were participated. The muscle activities of the five trunk muscles were bilaterally measured at eight axial rotation angles with 12 tilt angles along $15^{\circ}$ intervals. The results showed that tilt with $45^{\circ}$ axial rotation was more balanced in the same tilt angle and was maintained approximately level of 40% MVC at over $60^{\circ}$ tilt angle with respect to co-contraction of abdominal and back muscle. Lumbar stabilization exercise using whole body tilts would be more effective with axial rotation than without axial rotation in terms of muscle co-contraction.

노인 건강 증진을 위한 호흡근 트레이닝의 코어 안정화 효과 (The core stabilization effect of respiratory muscle training to promote the health of the elderly)

  • 김지선
    • 한국응용과학기술학회지
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    • 제37권3호
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    • pp.496-508
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    • 2020
  • This study reviews studies on the core stabilization of respiratory muscle training for the elderly health. Previous research data and presenting basic literature data suggest that respiratory activation is an important mechanism for core strengthening via exercise interventions for the elderly. The review found that first, the mechanism of improving the respiratory muscles weakened by aging to address the loss of core function due to old age sarcopenia among the elderly results entails promoting the autonomic nervous system by focusing on the respiratory muscle activation pattern, the core muscle sensation mobilized for body centering. Second, nerve roots, intraperitoneal pressure, and deep muscles in the trunk of the body can be promoted while controlling respiratory stimulation with cognitive feedback. Effortful inspiration increases the activation of respiratory assistive muscles and effortless exhalation can improve the core muscle mobilization by involving abdominal muscles. Third, through respiratory muscle training, the elderly can increase their awareness of spinal centering and improve the ability to control the deep core muscles that must be mobilized for core stabilization. In conclusion, respiratory muscle training to increase the utilization of the trunk muscles seems to be a useful core stabilization exercise for the elderly with chronic tension and joint degeneration.