• Title/Summary/Keyword: Lower extremity joint

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The Correlation between Physical Function and Lower Limb Tactile Sense in Children with Spastic Cerebral Palsy (경직형 뇌성마비 아동의 신체기능과 하지 촉각의 상관관계 연구)

  • Hye-Lyeong Yun;Na-Yeon YE;Eun-Ju Lee
    • PNF and Movement
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    • v.21 no.2
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    • pp.265-272
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    • 2023
  • Purpose: The purpose of this study was to investigate tactile sense perception of the lower extremities according to physical function in children with spastic cerebral palsy. Methods: This study was conducted on 15 children diagnosed with spastic cerebral palsy. Physical function measurement items included dynamic balance ability, gross motor function level, and lower extremity ankle spasticity. The lower extremity tactile sensation uses a monofilament to measure the sole of the first metatarsal head, the sole of the fifth metatarsal head, the heel, the anterior part of the shin midway between the patella and the ankle joint, the kneecap, the upper anterior iliac spine, and the knee. A total of six measurements were taken in the mid-femoral region of the bone. Spearman correlation analysis was performed to determine the degree of body function and lower extremity tactile perception. Results: As the physical function of children with spastic cerebral palsy deteriorated, there was a decrease in tactile sensation in the thigh area corresponding to the proximal lower extremity. (p <.05). Conclusion: Children with spastic cerebral palsy and poor physical function have sensory loss not only in the distal part but also in the proximal part, so a treatment approach that recognizes and improves it is necessary.

Muscle Activities of the Lower Extremity based on Ankle Plantar-flexion in Elderly Women (여성 노인의 발목 각도에 따른 하지근육의 근활성도 변화)

  • Cho, Yong-Ho;Choi, Jin-Ho
    • The Journal of Korean Physical Therapy
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    • v.21 no.4
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    • pp.57-63
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    • 2009
  • Purpose: To better understand falls in elderly women, we measured differences in muscle activities of 4 lower extremity muscles (tibialis anterior, soleus, rectus femoris, biceps femoris) based on angle plantar-flexion in elderly women. Methods: Subjects were 15 healthy elderly women. No subjects had musculoskeletal or nervous disorders. EMGs were used to check muscle activity of lower extremity muscles. For statistic analysis, data were expressed as a percentage of maximal voluntary isometric contraction (%MVIC). We measured %MVIC for 5 sec under 4 conditions and did not use data for the first and last second. Muscle activities of the muscles of the lower extremities were measured based on the degree of plantar-flexion of the ankle joint. The 4 conditions corresponded to different degrees of: 0, 10, 20 and 30 degrees. This was done using a 50 cm board for measuring the degrees. Results: The tibialis anterior, soleus, and bicpes femoris showed increasing muscle activity associated with increasing degree of plantar-flexion of the ankle joint. All muscles showed a significant increase in muscle activities in association with increasing degrees. Rectus femoris showed a significant increase in muscle activity for 0 degrees and for the other degrees, but there were no further changes when plantar flexion of the ankle joint was over 10 degrees. Conclusion: Activities of the muscles of the lower extremities except rectus femoris were higher with increasing degree of plantar flexion. High muscle activity may result in muscle fatigue. Thus, increasing degree of plantar flexion may be risk factors of falls in elderly women.

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The Effect of Running Speed and Slope on the Lower Extremity Biomechanics (달리기 속도와 경사가 하지관절의 생체역학에 미치는 영향)

  • Kim, Jongbin
    • Journal of Convergence for Information Technology
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    • v.10 no.4
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    • pp.160-167
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    • 2020
  • This study analyzes the effects of changes in running velocity and slope on the biomechanical factors of the lower limb joints. For this purpose, 15 adult males in their 20s ran according to changes in running speed (2.7, 3.3 m/s) and slope ( -9°, -6°, 0°, 6°, 9°) on the treadmill, and their running characteristics (stride length, stride frequency). The range of motion of the lower limb joint and the vertical ground reaction force were greater in UR (p <.05), and the moment of the lower limb joint, braking force, thrust and load factor was large in DR (p <.05). In joint power, the ankle joint was greater in DR, and hip joint was greater in the UR (p <.05). These results show that the injuries of the ankle joint will be greater than other cases when running DR at a speed of 3.3 m/s.

The Effects of a Progressive Lower-extremity Exercise Program on Pain, Self-efficacy of Exercise, and Life Satisfaction among Older Women with Total Knee Replacement Arthroplasty (TKRA) (슬관절 전치환술 후 점진적 하지운동요법이 통증, 운동자기효능감, 삶의 만족도에 미치는 효과)

  • Yang, Gui Suck;Eun, Young;Moon, Gyung Hee;Lee, Sun Kyung
    • Journal of muscle and joint health
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    • v.21 no.3
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    • pp.215-223
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    • 2014
  • Purpose: The purpose of this study was to examine the effect of a progressive lower-extremity exercise program on pain, efficacy of exercise, and the life satisfaction among older women with TKRA. Methods: This study was a nonequivalent control group non synchronized design and was conducted from 12 September 2012 to 05 February 2014 in G-university hospital located in J-city. The sample was composed of an experimental group (n=20) and a control group (n=20). The progressive lower extremity exercise program was applied to the experimental group for 13 days. NRS scale was used to measure the pain, self-efficacy of exercise was measured by Exercise Self Efficacy, and life satisfaction was measured by 8 item questionnaire. Results: The experimental group was significantly lower in the degree of pain (F=73.53, p<.001), higher in the degree of self-efficacy of exercise (F=61.42, p<.001) and life satisfaction (F=80.91, p<.001) than the control group. Conclusion: The progressive lower-extremity exercise program for TKRA patients was useful to reduce pain and improve self-efficacy of exercise and life satisfaction, To reduce the pain and th improve the life satisfaction of older women with TKRA, we need to provide the progressive exercise at bedside during the postoperative recovery phase.

Effect of Rehabilitation Exercise Program with Motion Taping on Pain, Muscle Strength, and WOMAC Index in 50s Middle Aged Women with Osteoarthritis of the Knee Joint (모션테이핑을 적용한 재활운동 프로그램이 무릎 골관절염을 가진 50대 중년여성의 통증, 근력, WOMAC index에 미치는 영향 )

  • Min-Kyu, Kim;Yong-Ho, Cho
    • Journal of the Korean Society of Physical Medicine
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    • v.17 no.4
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    • pp.85-92
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    • 2022
  • PURPOSE: This study examined the effects of motion taping during combined lower extremity exercise application on pain, ROM, muscle strength, and WOMAC index in middle-aged women with osteoarthritis of the knee joint METHODS: The subjects were 26 middle-aged women with osteoarthritis in the knee joint. Twenty-six subjects were divided into two groups. Each group contained 13 subjects. Three subjects dropped out in the middle of the experiment. The intervention was six weeks, three times a week. The control group performed traditional physical therapy and lower extremity exercise. The experimental group was motion taping applied to the lower extremity exercise. The measurement factors were knee joint pain, quadriceps muscle strength, and WOMAC index. The pain was measured using the numeric pain scale instrument (NPSI). The quadriceps strength was measured using the 1RM method. RESULTS: In both groups, pain, muscle strength, and WOMAC index showed significant improvement according to the intervention (p < .05). In comparison between groups of the change values pre-post intervention, pain and WOMAC index showed statistically significant differences between the two groups. On the other hand, there was no difference in strength between the two groups. CONCLUSION: When performing a rehabilitation exercise program for middle-aged women with osteoarthritis of the knee, motion taping has a positive effect on pain and the WOMAC index.

Effect of Static Stretching and Myofascial Release Techniques on Kinematic Factors of Lower Extremity Joints during Squat (스쿼트 동작 시 정적 스트레칭과 근막이완기법이 하지 관절의 운동학적 요인에 미치는 영향 )

  • Seung-Ki An;Moon-Seok Kwon;Jae-Woo Lee;Young-Tae Lim
    • Korean Journal of Applied Biomechanics
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    • v.34 no.2
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    • pp.53-62
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    • 2024
  • Objective: The purpose of this study was to analyze the differences in kinematic factors according to stretching treatment, myofascial release treatment, and static stretching treatment conditions during squat. Method: Twelve males with resistance training experience participated in this study. Participants performed squats without treatment (Pre-Test), and performed squats after treatment with the myofascial release technique (MRT) and static stretching (SS) on different days (post-test). Squat movements were captured using eight motion capture cameras (sampling rate: 250 Hz), and the peak joint angles of the ankle, knee, hip, and pelvis were calculated for each direction. One-way repeated ANOVA and Bonferroni post hoc analyses using SPSS 27 (IBM Corp. Armonk NY, USA) were used to compare the peak joint angle of the lower extremity joints and pelvis among the normal condition (squat without treatment), MRT condition (squat after MRT treatment) and SS condition (squat after static stretching). The statistical significance level was set at .05. Results: It was observed that the maximum ankle joint flexion angle during squats was statistically reduced under conditions of myofascial release and static stretching (p<.05), in comparison to the scenario where no stretching was performed. Furthermore, static stretching was found to enhance the maximum hip flexion angle during squat (p<.05), whereas the myofascial release stretching technique resulted in the minimal posterior pelvic tilt angle (p<.05). Conclusion: Employing myofascial release stretching as a preparatory exercise proved to be more efficacious in maintaining body stability throughout the execution of high-intensity squat movements by effectively managing the posterior tilt of the pelvis, as opposed to foregoing stretching or engaging in static stretching.

The Effects of Fibular Repositioning Taping on Joint Angle and Joint Stiffness of the Lower Extremity in Sagittal Plane during a Drop Landing (낙하 착지 시 FRT가 하지의 관절의 시상각과 강직도에 미치는 효과)

  • Jun, Hyung-pil
    • Korean Journal of Applied Biomechanics
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    • v.31 no.4
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    • pp.276-282
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    • 2021
  • Objective: To investigate effects of Fibular Repositioning Taping (FRT) on lower extremity joint stiffness and angle during drop-landing. Method: Twenty-eight participants (14 healthy, 14 with chronic ankle instability [CAI]) performed drop-landings from a 60 cm box; three were performed prior to tape application and three were performed post-FRT. Three-dimensional kinematic and kinetic data were collected using an infrared optical camera system (Vicon Motion Systems Ltd. Oxford, UK) and force-plate (AMTI, Watertown, MA). Joint stiffness and sagittal angle of the ankle, knee, and hip were analyzed. Results: The hip [Healthy: p<.05; M ± SD: 29.43 ± 11.27 (pre), 33.04 ± 12.03 (post); CAI: p<.05; M ± SD: 31.45 ± 9.70 (pre), 32.29 ± 9.85 (post)] and knee [Healthy: p<.05; M ± SD: 53.44 ± 8.09 (pre), 55.13 ± 8.36 (post); CAI: p<.05; M ± SD: 53.12 ± 8.35 (pre), 55.55 ± 9.81 (post)] joints demonstrated significant increases in sagittal angle after FRT. A significant decrease in joint angle was found at the ankle [Healthy: p<.05; M ± SD: 56.10 ± 3.71 (pre), 54.09 ± 4.31 (post); CAI: p<.05; M ± SD: 52.80 ± 6.04 (pre), 49.86 ± 10.08 (post)]. A significant decrease in hip [Healthy: p<.05; M ± SD: 1549.16 ± 517.53 (pre), 1272.48 ± 646.73 (post); CAI: p<.05; M ± SD: 1300.42 ± 595.55 (pre), 1158.27 ± 550.58 (post)] and knee [Healthy: p<.05; M ± SD: 270.12 ± 54.07 (pre), 239.13 ± 64.70 (post); CAI: p<.05; M ± SD: 241.58 ± 93.48 (pre), 214.63 ± 101.00 (post)] joint stiffness was found post-FRT application, while no difference was found at the ankle [Healthy: p>.05; M ± SD: 57.29 ± 17.04 (pre), 59.37 ± 18.30 (post); CAI: p>.05; M ± SD: 69.15 ± 17.63 (pre), 77.24 ± 35.05 (post)]. Conclusion FRT application decreased joint angle at the ankle without altering ankle joint stiffness. In contrast, decreased joint stiffness and increased joint angle was found at the hip and knee following FRT. Thus, participants utilize an altered shock absorption mechanism during drop-landings following FRT. When compared to previous research, the joint kinematics and stiffness of the lower extremity appear to be different following FRT versus traditional ankle taping.

Ultrasound Guided Nerve Block at Vertebra and Lower Extremity (초음파를 활용한 하지와 체간부위의 신경차단술)

  • Park, Hyeng-Kyu
    • Clinical Pain
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    • v.20 no.2
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    • pp.93-98
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    • 2021
  • The use of ultrasonography has recently been increasing in musculoskeletal diagnosis or intervention treatment. Ultrasound guided procedure offers a reliable alternative to fluoroscopy or computed tomography for lumbar medial branch block, facet joint block and peripheral nerves of lower extremity. Further, there is no exposure to radiation and additional equipment necessary for the protection against radiation is required. And ultrasound guided procedure needs smaller space than fluoroscopy guided procedure with real time images in the outpatient department. This article reviews ultrasound guided procedure at lumbar vertebra and peripheral nerves of lower extremity.

Comparison of Ankle Angle and Lower extremity Muscle Activities Between Forefoot Strike, Heelfoot strike During the Stair Ascent Walking (계단 오름 보행 시 전족, 후족 착지 방법에 따른 하지의 근활성도와 발목 각도 비교)

  • Jun-Su Kim;Hyun-Jun Kim;Sang-Yeol Lee
    • PNF and Movement
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    • v.22 no.1
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    • pp.31-41
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    • 2024
  • Purpose: The purpose of this study is to compare lower extremity muscle activities and ankle joint angles between different foot strike patterns (forefoot strike, heelfoot strike) during stair ascent walking. Methods: The subjects of this study were 22 males who walked in each foot strike pattern on ascent stairs at a speed of 85 beats/min. During stair walking with the two types of foot strike patterns, the muscle activities of the rectus femoris, tibialis anterior, medial gastrocnemius, hamstring, and gluteus medius were measured. Additionally, ankle joint angles for inversion, eversion, dorsi flexion, and plantar flexion were recorded. Each participant underwent the experiment three times, with the foot strike pattern randomized. Results were averaged according to the foot strike pattern. Results: Significant differences in ankle angles were observed across all phases according to foot strike pattern. Muscle activities in the lower extremities showed significant differences in all phases except the swing 1 phase. Moreover, differences in foot movement trajectory were noted depending on the foot strike pattern. Conclusion: Walking on ascent stairs elicited differences in lower extremity muscle activities and ankle joint angles based on foot strike pattern. These findings can serve as foundational data for selecting a suitable foot strike pattern tailored to individual patient conditions when training patients in walking on ascent stairs.

Joint Range of Motion Increase & Decrease Types (체형에 따른 관절운동증진 및 제한형태에 관한 연구)

  • Moon, Sang-Eun
    • Journal of Korean Physical Therapy Science
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    • v.4 no.2
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    • pp.373-382
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    • 1997
  • This study has been aimed at figuring out the fact that four kinds of body type grouped according to the tilting of scapular of upper extremity and ilium of low extremity showed the mobility increase for joint parts and the limitation. When we make a thrapy plan which should be comprehensive and general in preventative management and therapy. For the sake of patients who have spinal disabilities including low back pains, it is required for many joints distributing among upper and lower extremity to have hypermobility and hypomobility based on regulation. So, this study was conducted to establish a standard for the effective pattern of hypermobility or hypomobility. I hope that the result of this study can help support the practics of physical therapy as a part of scientic method. Especially I think it will be able to be conductive to those who major in physical therapy on the arthrogenic region.

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