• Title/Summary/Keyword: Skeletal Muscles

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Muscle Deformation Model for Real-Time Skin Deformation Control (실시간 피부 변형 제어를 위한 근육 변형 모델)

  • Jin, Jung-Hwan;Kim, Jong-Hyuk;Choi, Jung-Ju
    • Journal of the Korea Computer Graphics Society
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    • v.16 no.3
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    • pp.21-30
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    • 2010
  • We present a real-time simulation method for muscles which are actuated by skeletal structure based on anatomical properties of the muscles. Muscles are designed by their two endpoints attached to either bones or other muscles and their volume are preserved approximately during the deformation. Skin deformation animation is obtained by a simple skinning due to the muscle deformation. We present also the performance data for a human-like multi-linked character which has bones, muscles, and skin. According to our experimental result, we can get skin deformation animation with a few tens of muscles in real-time. The method proposed in this paper can be applied to obtain skin deformation animation for multi-linked characters appear frequently in real-time environments such as games.

Ishige okamurae reduces blood glucose levels in high-fat diet mice and improves glucose metabolism in the skeletal muscle and pancreas

  • Yang, Hye-Won;Son, Myeongjoo;Choi, Junwon;Oh, Seyeon;Jeon, You-Jin;Byun, Kyunghee;Ryu, Bo Mi
    • Fisheries and Aquatic Sciences
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    • v.23 no.9
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    • pp.24.1-24.9
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    • 2020
  • Brown alga (Ishige okamurae; IO) dietary supplements have been reported to possess anti-diabetic properties. However, the effects of IO supplements have not been evaluated on glucose metabolism in the pancreas and skeletal muscle. C57BL/6 N male mice (age, 7 weeks) were arranged in five groups: a chow diet with 0.9% saline (NFD/saline group), high-fat diet (HFD) with 0.9% saline (HFD/saline group). high-fat diet with 25 mg/kg IO extract (HFD/25/IOE). high-fat diet with 50 mg/kg IO extract (HFD/50/IOE), and high-fat diet with 75 mg/kg IO extract (HFD/75/IOE). After 4 weeks, the plasma, pancreas, and skeletal muscle samples were collected for biochemical analyses. IOE significantly ameliorated glucose tolerance impairment and fasting and 2 h blood glucose level in HFD mice. IOE also stimulated the protein expressions of the glucose transporters (GLUTs) including GLUT2 and GLUT4 and those of their related transcription factors in the pancreases and skeletal muscles of HFD mice, enhanced glucose metabolism, and regulated blood glucose level. Our results suggest Ishige okamurae extract may reduce blood glucose levels by improving glucose metabolism in the pancreas and skeletal muscle in HFD-induced diabetes.

Surgical Applications of Thoracic Skeletal Muscle Transposition (골격근의 전위술의 흉부외과적 적용)

  • Jo, Gyu-Cheol;Park, Ju-Cheol;Yu, Se-Yeong
    • Journal of Chest Surgery
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    • v.28 no.4
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    • pp.376-380
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    • 1995
  • We experienced 17 skeletal muscle transpositions in chest surgery during the past 8 years. There were 3 female and 14 male patients with ranging from 5 to 71 years of age [ average 47.3 Seventeen patients underwent 27 musele flaps : 11 latissimus dorsi, 6 pectoralis major, 6 serratus anterior and 4 other muscles. An average of 2.0 previous operations was performed. Hospitalization averaged 24 days.Follow up ranged from 7 days to 45 months;There were two postoperative deaths; one, 20 days after from operation due to pneumonia and the other, 130 days after from operation due to cor pulmonale.Fifteen patients who were alive after operation had good results at the time of last follow up.

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The Review of Breathing Pattern Training for The Spinal Stabilization. (척추 안정화를 위한 호흡패턴 훈련에 대한 고찰)

  • Park, Min-Chull;Goo, Bong-Oh;Bae, Sung-Soo
    • Journal of the Korean Society of Physical Medicine
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    • v.2 no.2
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    • pp.173-182
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    • 2007
  • Purpose : The purpose of this study was carried out to review for the importance of breathing pattern training for the spinal stabilization. Methods : This is a literature study with books and thesis. Results : Breathing with normal respiratory mechanics has a potent role in neuro-musculo-skeletal system. The evaluation of respiratory mechanics should be a routine part of every physical examination. And respiratory mechanics must be intact for both normal posture and spinal stabilization to be possible. Conclusion : The spinal stabilization exercise with the breathing pattern training is more efficient therapeutic exercise program for the patient with neuro-musculo-skeletal system disorder.

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Trigger Point Injection for Myofascial Pain Syndrome (근막 통증 증후군의 통증 유발점 주사)

  • Kim, Chul-Hong;Park, Jin-Woo
    • The Journal of Korean Orthopaedic Ultrasound Society
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    • v.7 no.2
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    • pp.127-131
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    • 2014
  • Skeletal muscles which are the largest part of human body may develop pain and dysfunction. The myofascial pain syndrome that has trigger points as a unique characteristic is a major cause of morbidity. Trigger points are focal, hyperirritable painful areas located in a taut band of skeletal muscle. They produce local area pain and a referred pattern pain and often accompany chronic joint dysfunction. Various modalities are used to inactivate trigger points in myofascial pain syndrome. Trigger-point injection has been shown to be one of the most effective treatment modality to provide prompt relief of symptoms. This review article presents general concept of myofascial pain syndrome and technique of trigger point injection.

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What is the Key Step in Muscle Fatty Acid Oxidation after Change of Plasma Free Fatty Acids Level in Rats?

  • Doh, Kyung-Oh;Suh, Sang-Dug;Kim, Jong-Yeon
    • The Korean Journal of Physiology and Pharmacology
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    • v.9 no.3
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    • pp.173-177
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    • 2005
  • The purpose of this study was to discern the critical point in skeletal muscle fatty acid oxidation by changing plasma free fatty acids (FFA) level in rat. In the study, 3 key steps in lipid oxidation were examined after changing plasma FFA level by acipimox. The rates of both palmitate and palmitoylcarnitine oxidation were decreased by decrease of plasma FFA level, however, carnitine palmitoyl transferase (CPT) 1 activity was not changed, suggesting CPT1 activity may not be involved in the fatty acid oxidation at the early phase of plasma FFA change. In the fasted rats, ${\beta}-hydroxy$ acyl-CoA dehydrogenase (${\beta}$-HAD) activity was depressed to a similar extent as palmitate oxidation by a decrease of plasma FFA level. This suggested that ${\beta}-oxidation$ might be an important process to regulate fatty acid oxidation at the early period of plasma FFA change. Citrate synthase activity was not altered by the change of plasma FFA level. In conclusion, the critical step in fatty acids oxidation of skeletal muscles by the change of plasma FFA level by acipimox in fasting rats might be the ${\beta}-oxidation$ step rather than CPT1 and TCA cycle pathways.

Postnatal Expression of Growth/Differentiation Factor-8 (GDF-8) Gene in European and Asian Pigs

  • Lin, C.S.;Wu, Y.C.;Sun, Y.L.;Huang, M.C.
    • Asian-Australasian Journal of Animal Sciences
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    • v.15 no.9
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    • pp.1244-1249
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    • 2002
  • Myostatin (growth differentiation factor (GDF)-8), is one member of the transforming growth factor $\beta$ superfamily. Investigations of GDF-8 null mice and double-muscled cattle revealed that GDF-8 has a profound influence upon skeletal muscle growth. Therefore, the GDF-8 effect upon the productive performance of pigs is worth exploring. In the present study, the nucleotide sequences and expression levels of GDF-8 genes in European pigs (Landrace and Duroc) and Asian pigs (Taoyuan and Small-ear) were evaluated. Based upon their genetic background these breeds possess significantly distinct growth rate and muscle productionphenotypes. Our sequence data showed that the nucleotide sequences of European and Asian pigs were 100% similar. Postnatal expression of GDF-8 gene in skeletal muscles, from birth to 12 mo of age, among different breeds was measured. GDF-8 expression levels in the longissimus muscle of neonatal European breed littermates were the highest, however it declined significantly (p<0.05) at 1 and 3 mo, and then increased gradually at 6 to 12 mo. The Asian breeds, however, GDF-8 expression level increased markedly at 3 mo and maintained a constant level thereafter. The results indicate that rather than polymorphism within the GDF-8 functional sequence between European and Asia breeds, it was relative to the gene regulation in postnatal muscle growth.

The Effect of Melatonin on Biochemical Changes after Ischemia-Reperfusion Injury of Rat Skeletal Muscle (흰쥐 골격근의 허혈-재관류 손상후 생화학적 변화에 미치는 Melatonin의 효과)

  • Park, Hye June;Burm, Jin Sik
    • Archives of Plastic Surgery
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    • v.32 no.6
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    • pp.683-688
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    • 2005
  • The ischemia-reperfusion injury of the skeletal muscles is caused by generation of reactive oxygen during ischemia and reperfusion. Melatonin or N-Acetyl-5-methoxy- tryptamine is suggested to have antioxidant effects in several tissues. In present study, we examined the protective effect of melatonin in a rat hind limb ischemia-reperfusion injury. Dimethyl-sulfoxide(DMSO) was also tested for comparison. Ischemia was induced for 4 hours by vascular clamping and followed by 1 hour or 24 hours of reperfusion. Muscle injury was evaluated in 4 groups such as single laparotomy group(control), ischemia-reperfusion group, DMSO group, melatonin group. Eedema ratio and malondialdehyde(MDA) of muscle tissue and serum level of creatine kinase(CK), were measeured at the end of reperfusion. DMSO and melatonin group showed significant amelioration of edema and serum CK compared with ischemia-reperfusion group. The decreasing effect was more prominent in melatonin group. The muscle tissue MDA concentration is significantly lower in melatonin group than in ischemia-reperfusion group. The results show that melatonin prevents and improves ischemia-reperfusion injury more effectively in a rat hind limb than DMSO dose. Thus, clinically the melatonin may be used for a beneficial treatment of such injuries

The effect of thalidomide on visceral fat pad mass and triglyceride concentration of the skeletal muscles in rats

  • Kim, Ki-Hoon;Choi, Chang-Bon;Kim, Jong-Yeon
    • Journal of Yeungnam Medical Science
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    • v.35 no.2
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    • pp.213-218
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    • 2018
  • Background: Body fats, especially both of abdominal fat pad mass and skeletal muscle fat content, are inversely related to insulin action. Therefore, methods for decreasing visceral fat mass and muscle triglyceride content may be helpful for the prevention of insulin resistance. Methods: Thalidomide, used for its anti-angiogenic and anti-inflammatory properties, was administered to rats for 4 weeks. A 10% solution of thalidomide in dimethyl sulfoxide was injected daily into the peritoneal cavity as much as 100 mg/kg of body weight. Results: The total visceral fat pad mass in the thalidomide-treated group was 11% lower than in the control group. The size of adipocytes of the epididymal fat pad mass in the thalidomide-treated group was smaller than in the control group. The intraperitoneal thalidomide treatment increased triglyceride concentrations by 16% in the red muscle, but not in the white muscle. Conclusion: The results suggested that intraperitoneal thalidomide treatment inhibited abdominal fat accumulation, and that the free fatty acids in the blood were preferentially accumulated in the red muscle rather than in the white muscle.

Total Creatine Phosphokinase(CPK) Acevities and CPK Isoenzymes Fractions in Canine Sera and Organ Tissues and in Canine Sera of Artificially Induced Myocardial Infarction (개의 혈청과 장기조직 및 인공유발 심근경색견의 혈청 Creatine Phosphokinase(CPK) 총활성과 CPK Isoenzyme 분획)

  • Jeong Han-Young;Kim Duck-Hwan
    • Journal of Veterinary Clinics
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    • v.9 no.2
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    • pp.417-426
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    • 1992
  • Total CPK activities and CPK isoenzymes fractions of the sera and some organ tissues of dogs were examined to acquire the basic data of canine CPK available in clinical practice. In addition fluctuation of serum total CPK activities and CPK isoenzymes fractions is artificially induced canine myocardial infarctino were investigated to know the availabity of them as indicators for the diagnosis of myocardial infarction. For the determination of serum total CPK activities, total 22 clinically healthy dogs(7 to 30 months old, 15 of female and 7 of male) were used and 15 out of 22 dogs were used for the determination of serum CPK isoenzymes fractions. For the determination of total CPK activities and CPK isoenzymes fractions. some organ tissues (the hearts, skeletal muscles and brains )from 3 dogs were examined. For the fluctuation of total CPK activities and CPK isoenzymes fractions in the sera from artificially induced canine acute myocardial infarction, 3 dogs of coronary artery ligated experimental group and 3 of control group were used. The results obtained were as follows ; 1. Serum total CPK activities of normal dogs were 106.2${\pm}$29.9(31.3∼148.1)IU/$\ell$. 2. The pattern of serum CPK isoenzymes fractions in normal dogs was high with decreasing order of CK$_1$>CK$_3$>CK$_2$. 3. Total CPK activities of organ tissues were high with decreasing order of the skeletal muscles > the hearts > the brains. 4. The pattern of CPK isoenzymes fractions of the organ tissues was high with decreasing order of CK$_3$>CK$_2$ in the hearts and only CK$_3$(100%) was detected in the skeletal muscles. Further they were high with decreasing order of CK$_1$>CK$_3$>CK$_2$ in the trains. 5. Serum total CPK activities in experimental group were changed with higher values than those of control group. 6. In the fluctuation of serum CPK isoenzymes fractions the CK$_1$ CK$_2$ and CK$_3$ values were changed with higher values than those of control group. 7. It was become clear that the finding of Increase of serum total CPK activities, and CK$_2$ and CK$_3$ was important for the diagnosis of myocardial infarction.

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