• Title/Summary/Keyword: Muscular hypertrophy

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Low Intensity Resistance Exercise Training with Blood Flow Restriction: Insight into Cardiovascular Function, and Skeletal Muscle Hypertrophy in Humans

  • Park, Song-Young;Kwak, Yi Sub;Harveson, Andrew;Weavil, Joshua C.;Seo, Kook E.
    • The Korean Journal of Physiology and Pharmacology
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    • v.19 no.3
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    • pp.191-196
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    • 2015
  • Attenuated functional exercise capacity in elderly and diseased populations is a common problem, and stems primarily from physical inactivity. Decreased function and exercise capacity can be restored by maintaining muscular strength and mass, which are key factors in an independent and healthy life. Resistance exercise has been used to prevent muscle loss and improve muscular strength and mass. However, the intensities necessary for traditional resistance training to increase muscular strength and mass may be contraindicated for some at risk populations, such as diseased populations and the elderly. Therefore, an alternative exercise modality is required. Recently, blood flow restriction (BFR) with low intensity resistance exercise (LIRE) has been used for such special populations to improve their function and exercise capacity. Although BFR+LIRE has been intensively studied for a decade, a comprehensive review detailing the effects of BFR+LIRE on both skeletal muscle and vascular function is not available. Therefore, the purpose of this review is to discuss previous studies documenting the effects of BFR+LIRE on hormonal and transcriptional factors in muscle hypertrophy and vascular function, including changes in hemodynamics, and endothelial function.

Neurogenic muscle hypertrophy: a case report

  • Shin, Hyun Ho;Jeon, Young Hoon;Jang, Seung Won;Kim, Sae Young
    • The Korean Journal of Pain
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    • v.29 no.4
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    • pp.270-273
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    • 2016
  • Muscular hypertrophy is caused mainly due to myopathic disorder. But, it is also rarely produced by neurogenic disorder. A 74-year-old woman complained of right calf pain with hypertrophy for several years. Recent lumbar spine magnetic resonance imaging (MRI) showed central and lateral canal narrowing at the L4-L5 intervertebral space. Lower extremity MRI revealed fatty change of right medial head of the gastrocnemius and soleus, causing right calf hypertrophy. Electrodiagnostic examinations including electromyography and nerve conduction velocity testing demonstrated $5^{th}$ lumbar and $1^{st}$ sacral polyradiculopathy. Integrating all the results, the diagnosis was neurogenic muscle hypertrophy. Neurogenic muscle hypertrophy is very rare, but we recommend that clinicians consider this problem when a patient complains of lower limb hypertrophy and pain.

Congenital Hemihypertrophy of Upper Extremity (A Case Report) (좌측상지에 발생한 선천성편비대 1례보고(증례보고))

  • Choi Chang-Hyuk;Kwun Koing-Woo;Kim Shin-Kun;Lee Sang-Wook;Kim Kyung-Ho;Park Jae-Bok
    • Clinics in Shoulder and Elbow
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    • v.1 no.1
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    • pp.139-145
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    • 1998
  • This report describes a rare, congenital hypertrophy of the left upper extremity that appeared after compressive bandage of right arm at the age of two. He is eighteen years old, and hypertrophy was aggravated for about 2 years since he started weight training exercise. Recently, skin turgor changed and he visited the Dermatology department. Skin biopsy revealed increased thickness of the dermis. On Orthopaedic examination, the left arm showed non­specific neuro-muscular changes other than easy fatigability a.nd increased skin consistency after exercise, compared to the right arm. The differences of circumference were 2.5 to 4cm according to the level of the upper limb. But the relative proportion of hypertrophy of the limb was balanced., On X-ray examination, bony changes were not shown. Through the MRI, we could find edematous changes of subcutaneous fatty tissue. Muscular structures showed unremarkable changes. Through the endurance test of both arms, we could find a decrease in endurance of the left upper arm musculatures. On histologic examination, infrequent focal necrosis and peri fascicular degeneration of the muscle fiber were present.

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A Case of Becker's Type Congenital Myotonia (Becker형 선천성 근긴장증 1례)

  • Yun, Sung-Hwan;Hah, Jung-Sang;Lee, Jun
    • Journal of Yeungnam Medical Science
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    • v.16 no.1
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    • pp.125-130
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    • 1999
  • Congenital myotonia is a hereditary disorder of the skeletal muscle. The most characteristic features of the disease are myotonia and variable muscular hypertrophy. Molecular biologic investigations have revealed that mutations in the gene of the human skeletal muscle chloride ion channel protein are a cause of the disease. The Becker's type congenial myotonia is clinically similar to the autosomal dominantly inherited congenital myotonia (Thomsen's disease). Both disorders are characterized electrophysiologically by increased excitability of muscle fibers. reflected in clinical myotonia. In general, Becker's type congenital myotonia is more severe than Thomsen's disease in muscular hypertrophy and weakness. The authors recently experienced a 25-year-old female patient who has no family-related disease history and who has conspicuous muscular hypertrophy and the stiffness with muscles which occurred from the age of 3 or 4. Clinically she showed the authors a percussion myotonia. On electrophysiological study, exercise and repetitive stimulation of the abductor digiti quinti muscle disclosed a decline in the compound muscle action potential. Biopsy of biceps muscle revealed enlargement of muscle fibers with marked nuclear internalization. After the oral taking the Mexiletine, the patient showed a favorable turn a little with her stiffness of muscles. So we authors are reporting one case of Becker's type congenital myotonia with review of literatures.

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A Comparative Study of the Prolonged Effect with Neurectomy & Botox Injection Method on the Gastrocnemius Muscle Hypertrophy (비복근비대의 치료 방법인 신경절단술과 보톡스 주사법의 지속효과 비교에 대한 실험적 연구)

  • Kwan, Sung Tak;Joo, Chun Seung
    • Archives of Plastic Surgery
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    • v.35 no.1
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    • pp.56-61
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    • 2008
  • Purpose: There was no controlled study on botox injection and neurectomy for treatments of muscle hypertrophy. Although many studies have shown the clinical effects of each treatment, it was not able to evaluate and compare the effects of each treatment because there was no comparison of the two treatments under the same experimental condition. Hence, the aim of this study is to com Methods: The study was carried out on 21 rabbits. 9 rabbits received botox injection(botox injection group), and neurectomy was performed to another 9 rabbits (neurectomy group). 3 rabbits did not receive any treatment(control group). To compare and analyze the effects of muscular atrophy, muscle was stained with NADH-TR, and the changes in size of the muscle fiber were examined. And the electromyography was examined. In each group, muscle fiber was stained and electromyography was performed 2, 3, and 6 months after injection or operation. Results: In histological test and electromyography, in the neurectomy group, the size of muscular fiber and amplitude of electromyography decreased until 2 months after neurectomy. And decreased results were maintained with the passage of time. It showed irreversible aspect. On the other hand, in the botox injection group, the decrease in the size of muscular fiber and amplitude of electromyography was observed until 2 months after injection. In 3 months after the injection, it was slowly getting back to original size and had almost recovered by 6 months after the injection. It showed reversible aspect. Conclusion: This study shows researches about clinical effect of botox injection and neurectomy coincide with the results of experiment under the same experimental condition.

Effects of Phenoxybenzamine and Propranolol on Monocrotaline Induced Pulmonary Vascular Lesion and Right Ventricular Hypertrophy (Phenoxybenzamine 과 Propranolol 이 Monocrotaline 에 의한 백서 폐동맥 및 우심실벽의 비후성 변화에 미치는 효과)

  • 이성광
    • Journal of Chest Surgery
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    • v.19 no.1
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    • pp.1-11
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    • 1986
  • Using an experimental model of pulmonary hypertension, the effects of anticonstrictive drugs on the development of pulmonary vascular remodeling and right ventricular hypertrophy were studied. Male Sprague-Dawley rats weighing 200~250 gm were used. For the experimental model of pulmonary hypertension, a group of animal was given by a subcutaneous injection of monocrotaline on a dose of 20mg, 40mg, or 60mg per kg of body weight. After 4 weeks of injection, all animals were sacrificed. Another group of animal was given by a subcutaneous injection of monocrotaline in a dose of 40 mg per kg of body weight. The animals were sacrificed, in which they were kept alive for 1, 2, 3 and 4 weeks, respectively. For the effects of anticonstrictive drugs on the development of pulmonary vascular remodeling and right ventricular hypertrophy, the animals treated with monocrotaline were given daily by an intraperitoneal injection of phenoxybenzamine in a dose of 1.3mg/kg of body weight, and were given propranolol via their drinking water at a concentration of 400mg/liter. The animals were sacrificed after 4 weeks of administration. The hearts and lungs were examined histopathologically and morphometrically. The results obtained were summarized as follows: 1. The rats treated with monocrotaline showed an interstitial pneumonitis, medial thickening of the pulmonary small arteries and hypertrophy of the right ventricular wall. 2. The medial thickening of the pulmonary arteries in rats treated with monocrotaline was due to muscular hypertrophy and hyperplasia, and the right ventricular hypertrophy was due to hypertrophy of cardiac muscles. Both medial thickening of the pulmonary arteries and hypertrophy of right ventricular wall were more marked with time and with dose. 3. The daily intraperitoneal injection of phenoxybenzamine suppressed significantly the percentage medial thickness of pulmonary small arteries and the index of right ventricular hypertrophy in rats given a single subcutaneous injection of monocrotaline, but propranolol has shown no protective effect on the development of medial thickening of pulmonary arteries and right ventricular hypertrophy in treated with monocrotaline. The results described above suggested that monocrotaline is an alkaloid selectively inducing pulmonary hypertension and that a-adrenergic receptor is responsible for the pathogenesis of monocrotaline induced pulmonary hypertension in rat.

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A case Report of Esophageal Stricture after Esophagogastric Anastomosis with EEA Stapler in a patient of Idiopathic Muscular Hypertrophy of Esophagus (특발성 식도비후환자에서 EEA Stapler를 사용한 식도위문합 후에 발생한 식도협착 -1례 보고-)

  • Kim, Jeong-Taek;Jeong, Gyeong-Yeong;Lee, Du-Yeon
    • Journal of Chest Surgery
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    • v.23 no.3
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    • pp.550-555
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    • 1990
  • Since Steichen and Ravich`s pioneer work in 1972 proved that staples reduced anastomotic leaks and operative time, the use of EEA stapler`s in esophagogastrostomy have gained acceptance and popularity. But overriding these benefits are the high stricture rate, which leads to the reappearance of dysphagia. The mechanism for the development of stricture in stapled anastomosis is likely to be due to the lack of mucosa to mucosa apposition and presence of necrotic tissue between the luminal edge and the rows of the stapler. All strictures were easily dilated. Recently, we encountered a patient who suffered from an esophageal stricture that slowly developed 10 months after an esophagogastric anastomosis with a EEA 425 was performed due to severe muscular hypertrophy of esophagus. Because the stricture failed to respond to the Bougienage, we reoperated using a EEA 28 this time. We feel that this case review helps to show that despite the very low leakage rate in small size EEA stapler, there is also a very high risk of stricture.

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Effects of Varied Resistance Training Intensities and Rest Intervals Between Sets on iEMG, Repetition Rate, and Total Work (저항운동의 운동 강도별 세트 간 휴식시간 차이가 근수축력, 반복횟수 및 총운동량에 미치는 영향)

  • Song, Sang-Hyup;Lee, Young-Soo;Han, Aleum;Kim, Si-Young;Go, Sung-Sik
    • 한국체육학회지인문사회과학편
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    • v.51 no.5
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    • pp.639-647
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    • 2012
  • The purpose of this study was to examine the effects of varied resistance training intensities and rest intervals between training sets on integral electromyography (iEMG), repetition rate, and total work. All subjects, 14 college students, were tested one repetition maximum (1RM). Then, all subjects were weekly tested with 9 practice procedures, composed of diverse intensities (60, 75, 90% of 1RM) and rest intervals (1, 3, 5 min). As results show, to maintain the same load and target repetition maximum for an untrained person, muscular power training (90% of 1RM), muscular hypertrophy training (75% of 1RM), and muscular endurance training (60% of 1RM) should be applied with 5 min or longer rest interval periods for 3 training sets. In addition, 2 training sets with 3 min rest intervals and a set with an 1 min rest interval were capable by the subjects. Thus, at least 3 min or longer rest intervals should be applied to maintain multiple training sets. In case for muscular endurance training, which requires shorter rest intervals, the intensity of exercise should be adjusted to 60% of 1RM or less. In conclusion, depending on diverse purposes of resistance training such as improving muscular power, muscular hypertrophy, or muscular endurance, appropriate exercise intensity and rest intervals should be applied.

Dual effect of Low- frequency Electromagnetic Field on Muscle Histopathology of Caspian Sea Cyprinus carpio

  • Samiee, Farzaneh;Samiee, Keivandokht
    • Journal of fish pathology
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    • v.30 no.1
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    • pp.51-61
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    • 2017
  • The effect of electromagnetic field on aquatic organisms has received little attention. In the current study, the effect of 50Hz electromagnetic field on muscle histopathology of Caspian Sea Cyprinus carpio, a species of economic importance, was investigated. A total of 120 healthy fish were used in this study. They were classified randomly in one of two groups as follows: Control or unexposed EMF group and experimental group with 5 different magnetic field intensities (0.1, 1, 3, 5 and 7mT) at 2 different exposure times including 30 and 60 minutes. Fish in the experimental group were exposed only once. Two weeks after exposure, dorsal muscles sectioned transversely, stained and were examined using a light microscope. Histopathologic assessments showed significant difference between control and EMF exposed groups at both 30 min. (p<0.01) and 60 min. (p<0.001) exposure times. We report for the first time that electromagnetic field in interaction with muscular tissue of Cyprinus carpio exhibits a dual effect which depends on the field intensity, and exposure time. At short exposure time (30 min.), EMF stimulates muscle growth process. At longer exposure time (60 min.), EMF can damage muscle tissue and result in muscle necrosis. More research is required to elucidate precise mechanisms involved in muscle hypertrophy and pathologic changes.

Ginsenoside Rb1 and Rb2 upregulate Akt/mTOR signaling-mediated muscular hypertrophy and myoblast differentiation

  • Go, Ga-Yeon;Jo, Ayoung;Seo, Dong-Wan;Kim, Woo-Young;Kim, Yong Kee;So, Eui-Young;Chen, Qian;Kang, Jong-Sun;Bae, Gyu-Un;Lee, Sang-Jin
    • Journal of Ginseng Research
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    • v.44 no.3
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    • pp.435-441
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    • 2020
  • Background: As a process of aging, skeletal muscle mass and function gradually decrease. It is reported that ginsenoside Rb1 and Rb2 play a role as AMP-activated protein kinase activator, resulting in regulating glucose homeostasis, and Rb1 reduces oxidative stress in aged skeletal muscles through activating the phosphatidylinositol 3-kinase/Akt/Nrf2 pathway. We examined the effects of Rb1 and Rb2 on differentiation of the muscle stem cells and myotube formation. Methods: C2C12 myoblasts treated with Rb1 and/or Rb2 were differentiated and induced to myotube formation, followed by immunoblotting for myogenic marker proteins, such as myosin heavy chain, MyoD, and myogenin, or immunostaining for myosin heavy chain or immunoprecipitation analysis for heterodimerization of MyoD/E-proteins. Results: Rb1 and Rb2 enhanced myoblast differentiation through accelerating MyoD/E-protein heterodimerization and increased myotube hypertrophy, accompanied by activation of Akt/mammalian target of rapamycin signaling. In addition, Rb1 and Rb2 induced the MyoD-mediated transdifferentiation of the rhabdomyosarcoma cells into myoblasts. Furthermore, co-treatment with Rb1 and Rb2 had synergistically enhanced myoblast differentiation through Akt activation. Conclusion: Rb1 and Rb2 upregulate myotube growth and myogenic differentiation through activating Akt/mammalian target of rapamycin signaling and inducing myogenic conversion of fibroblasts. Thus, our first finding indicates that Rb1 and Rb2 have strong potential as a helpful remedy to prevent and treat muscle atrophy, such as age-related muscular dystrophy.