• Title/Summary/Keyword: soleus

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Effect of endurance exercise during acute stage on hindlimb muscles of stroke induced rat (지구력 운동이 급성기 뇌졸중 쥐의 뒷다리근 질량에 미치는 영향)

  • An, Gyeong-Ju;Lee, Yoon-Kyong;Im, Ji-Hae;Choi, S-Mi;Choe, Myoung-Ae
    • Journal of Korean Biological Nursing Science
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    • v.2 no.2
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    • pp.67-80
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    • 2000
  • The purpose of this study was to identify hindlimb muscle atrophy in stroke induced rat and determine the effect of endurance exercise on body weight, weight of hindlimb muscle during 7 days after stroke induction. Thirty four male Sprague-Dawley rats with 200-270g body weight were divided into four groups : control, control+exercise(Con+Ex), stroke, and exercise after stroke(St+Ex) group. The control group and Con+Ex group received sham operation and the stroke group and St+Ex group received right MCA occlusion operation by using silicon-coated probe. The Con+Ex and St+Ex groups ran on a treadmill for 20min/day at 10m/min and $10^{\circ}grade$. Daily body weight and diet intake were measured every morning for 7 days. Cerebral infarction of stroke and St+Ex groups were identified by staining with TCC for 30minutes. The data were analyzed by Kruskal-Wallis test and Mann-Whitney U test using the SPSSWIN 9.0 program. Body weight of the control group at the 7th day increased by 18.3% significantly from the first day of experiment, that of the stroke group at the 7th day decreased by 6.7% significantly compared to the day of receiving right MCA occlusion operation. Body weight of the Con+Ex group at the 7th day increased by 10.3% significantly form the first day of experiment, that of St+Ex group at the 7th day also increased by 13.4% significantly compared to the day of receiving right MCA occlusion operation. The total amount of diet in stroke group decreased significantly compared to that of St+Ex and that of control group. In stroke group the wet weight of both sides of soleus, plantaris, and gastrocnemius muscles decreased significantly compared to that of control group. The relative weight of affected(left) plantaris and gastrocnemius muscles decreased significantly compared to that of the control group. The difference between the weight of affected and unaffected soleus, plantaris, and gastrocnemius muscles were not significant in stroke group. The wet weight of right gastrocnemius muscles in Con+Ex group increased compared to that of control group. The relative weight of right gastrocnemius muscle increased significantly compared to that of the control group. The wet weight of St+Ex group increased significantly compared to that of the stroke group in both sides of soleus, plantaris, and gastrocnemius muscles. The relative weight of affected plantaris muscle increased significantly compared to that of the stroke group. The difference between the weight of affected and unaffected soleus, plantaris, and gastrocnemius muscles were not significant in St+Ex group. Body weight and wet weight of soleus, plantaris, and gastrocnemius muscles in the St+Ex group did not recover to the values of control group. Based on these results, it can be suggested that endurance exercise during acute stage of stroke can reduce muscle atrophy related to denervation, inactivity and undernutrition.

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Effects of Leucine on in Vivo Protein Synthesis in Skeletal Muscles of Fed and Food-Deprived Rats (Leucine이 정상 또는 굶게 된 쥐의 골격근육의 단백질 생합성에 미치는 영향)

  • 장순옥
    • Journal of Nutrition and Health
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    • v.21 no.4
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    • pp.242-252
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    • 1988
  • In vivo effects of leucine on skeletal muscle protein synthesis in fed and I-day food deprived young rats were examined. Animals assigned to leucine group were given a single i.p. injection of 80 or 160flmoles of leucine while control group animals were saline sham injected. The rate of protein synthesis was measured by the amount of $^{14}\textrm{C} incorporated into muscle protein after a single injection of $^{14}\textrm{C}-tyrosine, IO$\mu$ Ci/l00g B.W. Examined muscles were two different types of hind limb muscles. the oxidative solues and the glycolytic EDL and plantaris. Administered leucine elevated the concentration of free leucine in soleus muscles by 4-6.8 times the normal level. A massive dose of leucine, 160 flmoles, stimulated protein synthesis in the EDL and plantaris by 24 %, 29 % respectively of straved rats. The soleus of I-day food deprived rats and both types of muscles in fed rats did not respond to the injected leucine. The synthesis rate of the EDL and plantaris was supressed to one-half of the normal while the soleus that was not stimulated by leucine maintained a relatively normal rate, 78 %, of protein synthesis after I-day of food deprivation. Thus, in vivo stimulatory effect of leucine appears to be not a general phenomenon but to be related to the degree of catabolic condition developed by stress such as food deprivation. Although anabolic effects of leucine observed in this study was limited, any applicability of this special property of leucine to human subjects for the purpose of protein sparing in skeletal muscles remains to be examined.

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Effect of Hematoxylin on Glucose Metabolism in Soleus Muscle of Streptozotocin-Induced Diabetic Rats

  • Moon, Chang-Kju;Chung, Yi-Sook;Hwang, Gwi-Seo
    • Journal of Food Hygiene and Safety
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    • v.7 no.1
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    • pp.53-58
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    • 1992
  • Hypoglycemic effect of hematoxylin was observed in streptozotocin-induced diabetic rats, of which plasma insulin levels were not affected. Investigation of hypoglycemic mechanism showed that hematoxylin stimulated glucose oxidation and glycogen synthesis in soleus muscle from diabetic rats in both basal and insulin stimulated state.

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Effect of Ankle Stabilization Training Using Biofeedback on Balance Ability and Lower Limb Muscle Activity in Football Players with Functional Ankle Instability

  • Kim, Je-Ho;Uhm, Yo-Han
    • The Journal of Korean Physical Therapy
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    • v.28 no.3
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    • pp.189-194
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    • 2016
  • Purpose: This study focuses on influence of ankle stabilization training on balance ability and lower limb muscle activation of soccer player with functional ankle instability. Methods: Subjects were grouped into ankle stabilization training group using biofeedback comprised of 15 subjects and general exercise group of 15. The training was conducted for 30 minutes, 3 times a week for 8 weeks in total. All 30 football players conducted plyometric training for 30 minutes before main training. To evaluate balance ability, biorescure was used to measure whole path length and surface area and surface electromyography (EMG) system was used to measure tibialis anterior, tibialis posterior, and soleus to evaluate lower limb muscle activation. Results: The experiment group showed significant difference to the comparison group in regard of whole path length and surface area which represents balancing capability and muscle activation of tibialis anterior, tibialis posterior, and soleus. Conclusion: Therefore, ankle stabilization training using biofeedback is more effective in enhancing balance ability and lower limb muscle activation than general exercise.

Comparison of Hypertrophic Effects of Low-Intensity Exercise on Rat Hindlimb Muscles between Every Other Day Exercise and Everyday Exercise (저강도 격일 운동과 매일 운동이 쥐 뒷다리근에 미치는 근 비대 효과 비교)

  • Choe, Myoung-Ae;Go, Jong-Jin;Kwak, Hyun-Kyung;Baek, Ji-Hyun;Jung, Jin-Yung;Song, Yeon-Jeong;An, Gyeong-Ju
    • Journal of Korean Biological Nursing Science
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    • v.13 no.1
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    • pp.1-7
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    • 2011
  • Purpose: The purpose of this study was to compare the hypertrophic effects of low-intensity exercise on weight, myofibrillar protein content and Type I, II fiber cross-sectional area of hindlimb muscles of rats between every other day exercise and every day exercise. Methods: Adult male Sprague-Dawley rats were assigned to 1 of 3 groups: control group (C, n=6), experimental group 1 (E1, n=7) and experimental group 2 (E2, n=7). Rats in E1 group had 7 sessions (every other day) and those in E2 group had 14 sessions (every day) of exercise in which they ran on a treadmill for 30 min/day at 10 m/min. Results: Muscle weight, cross-sectional area of type I fiber and myofibrillar protein content of soleus and myofibrillar protein content of plantaris in E1 group, and myofibrillar protein content of soleus and cross-sectional area of type I fiber of plantaris in E2 group were greater than those in C group. Cross-sectional area of type I fiber of soleus of E1 group was higher than E2 group while cross-sectional area of type I fiber of plantaris of E2 group was higher than E1 group. Conclusion: Hypertrophy of hindlimb muscles occurs from every other day exercise similar to every day exercise.

Insulin Resistance of Skeletal Muscle was Recovered by Leptin Injection in vivo, but not in vitro, in High-fat Diet Fed Rats

  • Doh, Kyung-Oh;Park, Jeong-Oak;Jeon, Jeong-Ryne;Kim, Jong-Yeon
    • The Korean Journal of Physiology and Pharmacology
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    • v.9 no.2
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    • pp.125-130
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    • 2005
  • We examined the effect of leptin on the insulin resistance in skeletal muscles by measuring the glucose transport. Male Wistar rats were fed with chow or high-fat diets for 30 days. Three days before sacrifice, high-fat fed rats were subcutaneously injected with leptin (1 mg/kg body weight) for 3 days. The glucose transports in the epitrochlearis and soleus muscle were not different among the experimental groups under basal state, however these were decreased significantly in the high fat-diet rats under insulin-stimulation (p<0.01). Leptin treatment recovered the decreased glucose transport in the epitrochlearis (p<0.05) and soleus (p=0.08). Triglyceride concentration in the soleus muscle was increased significantly in the high fat-fed rats, compared to chow diet rats (p<0.01), and it was decreased significantly by leptin treatment (p<0.01). The glucose transport was measured under basal and $60{\mu}u/ml$ of insulin with or without 50 ng/ml of leptin. Leptin had no direct stimulatory effect on glucose transport under both basal and insulin-stimulated conditions in vitro. These results demonstrate that leptin injection to high fat diet fed rats recovered impaired insulin responsiveness of the skeletal muscles and muscle triglyceride concentration. However, there was no direct stimulatory effect of leptin on insulin sensitivity of the skeletal muscle in vitro.

Electromyographic analysis according to shoe weight during ambulation

  • Lee, Eunsang;Lee, Byunghoon;Cho, Juchul;Lee, Yongwoo;Lee, Seungwon
    • Physical Therapy Rehabilitation Science
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    • v.4 no.2
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    • pp.115-120
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    • 2015
  • Objective: To examine the effects of different shoe weights on lower leg muscle fatigue when walking by electromyographic (EMG) analysis due to the most effective weight for loading not being established. Design: Cross-sectional study. Methods: Thirty healthy university students (15 male, 15 female) were enrolled and randomly assigned into three conditions, which included wearing athletic shoes with an addition of 300 g, 500 g, and 1,000 g weights respectively. Prior to walking, all subjects were instructed to sit in a chair for 10 minutes. All subjects walked at a speed of 3.6 m/s on a treadmill for 20 minutes without rest. EMG measurements were taken using the median power frequency to assess for the effect of the different weight of shoes on muscle fatigue of the soleus, gastrocnemius, and tibialis anterior while walking on a treadmill in an upright posture. EMG measurements were taken during the first and last 30 seconds of walking. Results: In terms of muscle fatigue, for the soleus, the median power frequency was significantly lower with 1,000 g compared with 300 g and 500 g (p<0.05). For the tibialis anterior, the median power frequency was significantly lower with 1,000 g than 300 g and 500 g (p<0.05). For the gastrocnemius, the median power frequency was significantly lower with 1,000 g compared with 300 g (p<0.05). Conclusions: Increased shoe weight increases soleus, gastrocnemius, and tibialis anterior muscle fatigue during ambulation.

Effect of Puerariae Radix on Hind Limb Muscle Atrophy of Sciatic Nerve Transectioned Rats (갈근(葛根)이 좌골신경 손상 흰쥐의 후지 근육위축에 미치는 영향)

  • Jang, Sung-Wook;Kim, Youn-Sub
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.23 no.2
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    • pp.405-411
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    • 2009
  • This study evaluated the effects of Puerariae Radix on the skeletal muscle atrophy, Muscle atrophy was induced by the sciatic nerve transection in Sprague-Dawley rats, then aqueous-extract of Puerariae Radix was administered for 12 days, Muscle wet weight was measured in soleus, plantaris, and medial gastrocnemius. Muscle fiber type was classified by MHCf immunohistochemistry. Muscle fiber type proportion and cross section area of muscle fiber also was observed in medial gastrocnemius. Bax and Bcl-2 expressions in medial gastrocnemius of the damaged hind limb were evaluated with immunohistochemistry. The results are as follows; Puerariae Radix attenuated muscle atrophy in soleus of the sciatic nerve transectioned rats, but there was statistic significance. Puerariae Radix attenuated significantly atrophy in plantaris at 12 days and in medial gastrocnemius at 8 days and 12 days. Puerariae Radix improved histology of the atrophic changes and increased significantly cross section areas of type-I and type-II muscle fibers in medial gastrocnemius of the sciatic nerve transectioned rats. Puerariae Radix did not affect to muscle fiber type proportion in medial gastrocnemius of the sciatic nerve transectioned rats. Puerariae Radix attenuated significantly Bax positive nuclei but did not affect to Bcl-2 positive muscle fibers in medial gastrocnemius of the sciatic nerve transectioned rats.According to above results, Puerariae Radix may have an anti-atrophy effect on the denervated skeletal muscle through anti-apoptotic effects on muscle fibers.

Comparison of Muscle Atrophy Induced by Cast Fixation, Denervation and Suspension of Rat Hindlimb (흰쥐의 후지 석고 고정, 탈신경 및 부유에 의한 근위축의 비교)

  • Yoon, Bum-Chul;Lee, Myoung-Hwa;Kim, Nan-Soo;Hong, Hye-Jung;Yu, Byong-Kyu
    • The Journal of Korean Physical Therapy
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    • v.13 no.3
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    • pp.665-675
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    • 2001
  • The aim of this study was to compare features of muscle atrophy induced by cast fixation. denervation and suspension of rat hindimb. Muscle mass and glycogen of the soleus and plantaris muscles were studied after 3, 7, or 14 days of cast fixation, denervation and suspension. The results as follows: 1. Body weight of rats decreased significantly after 3 days and showed gradually increase after 7 and 14 days of hindlimb cast fixation, denervation and suspension. Particularly hindlimb suspended rats showed a rapid decrease after 3 days in body weight. 2. Relative weight of soleus and plantaris musclcs decreased significantly by hindlimb cast fixation, denervation and suspension, particularly after 7 days. The decrease rate was the lowest in suspended rats. 3. Glycogen content of soleus muscle decreased significantly after 14 days of hindlimb cast fixation, denervation and suspension. Also glycogen content of plantaris muscle decreased significantly after 14 days of hindlimb cast fixation and denervation, but not significantly after hindlimb suspension. These results indicate that suspension of hindlimb muscles causes less atropy than cast fixation or denervation, likely due to maintainment a few activities during hindlimb suspension. We concluded that the decrease in mechanical strains imposed on the muscle during inactivity was the main factor for the development of atrophy. These basic data suggest that some experimental conditions such as electrostimulation or stretching, participate in countermeasure programmes.

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