- 국문초록
- Ⅰ. 서론
- Ⅱ. 본론
- Ⅲ. 결론
- 참고문헌
http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.
https://www.riss.kr/link?id=A99896441
2009
Korean
692
KCI등재
학술저널
13-26(14쪽)
0
0
상세조회0
다운로드참고문헌 (Reference)
1 Wu, Z., "p38 and extracellular signal-regulated kinases regulate the myogenic program at multiple steps" 20 : 3951-3964, 2000
2 Zetser, A., "mitogen-activated protein kinase pathway promotes skeletal muscle differentiation. Participation of the Mef2c transcription factor" 274 : 5193-5200, 1999
3 Olson, E. N., "bHLH factors in muscle development: dead lines and commitments, what to leave in and what to leave out" 8 : 1-8, 1994
4 Lassar, A., "Wiring diagrams: regulatory circuits and the control of skeletal myogenesis" 6 : 432-442, 1994
5 Makinde, A. O., "Upregulation of 5'-AMP-activated protein kinase is responsible for the increase in myocardial fatty acid oxidation rates following birth in the newborn rabbit" 80 : 482-9, 1997
6 Black, B. L., "Transcriptional control of muscle development by myocyte enhancer factor-2 (MEF2) proteins" 14 : 167-196, 1998
7 Keller, C., "Transcriptional activation of the IL-6 gene in human contracting skeletal muscle: influence of muscle glycogen content" 15 : 2748-2750, 2001
8 Hodge, D. R., "The role of IL-6 and STAT3 in inflammation and cancer" 41 : 2502-2512, 2005
9 Naka, T., "The paradigm of IL-6: From basic science to medicine" 3 : 233-242, 2002
10 Keller, S. R., "The insulin-regulated aminopeptidase: A companion and regulator of GLUT4" 8 : 410-420, 2003
1 Wu, Z., "p38 and extracellular signal-regulated kinases regulate the myogenic program at multiple steps" 20 : 3951-3964, 2000
2 Zetser, A., "mitogen-activated protein kinase pathway promotes skeletal muscle differentiation. Participation of the Mef2c transcription factor" 274 : 5193-5200, 1999
3 Olson, E. N., "bHLH factors in muscle development: dead lines and commitments, what to leave in and what to leave out" 8 : 1-8, 1994
4 Lassar, A., "Wiring diagrams: regulatory circuits and the control of skeletal myogenesis" 6 : 432-442, 1994
5 Makinde, A. O., "Upregulation of 5'-AMP-activated protein kinase is responsible for the increase in myocardial fatty acid oxidation rates following birth in the newborn rabbit" 80 : 482-9, 1997
6 Black, B. L., "Transcriptional control of muscle development by myocyte enhancer factor-2 (MEF2) proteins" 14 : 167-196, 1998
7 Keller, C., "Transcriptional activation of the IL-6 gene in human contracting skeletal muscle: influence of muscle glycogen content" 15 : 2748-2750, 2001
8 Hodge, D. R., "The role of IL-6 and STAT3 in inflammation and cancer" 41 : 2502-2512, 2005
9 Naka, T., "The paradigm of IL-6: From basic science to medicine" 3 : 233-242, 2002
10 Keller, S. R., "The insulin-regulated aminopeptidase: A companion and regulator of GLUT4" 8 : 410-420, 2003
11 Saghizadeh, M., "The expression of TNF by human muscle. Relationship to insulin resistance" 97 : 1111-1116, 1996
12 Petersen, A. M. W., "The anti-inflammatory effect of exercise" 98 : 1154-1162, 2005
13 Davis, R. L., "The MyoD DNA binding domain contains a recognition code for musclespecific gene activation" 60 : 733-746, 1990
14 Murray, P. J., "The JAK-STAT signaling pathway: input and output integration" 178 : 2623-2629, 2007
15 Senn, J. J., "Suppressor of cytokine signaling-3 (SOCS-3), a potential mediator of interleukin-6-dependent insulin resistance in hepatocytes" 278 : 13740-13746, 2003
16 Mohamed-Ali, V., "Subcutaneous adipose tissue releases interleukin-6, but not tumor necrosis factor-in vivo" 82 : 4196-4200, 1997
17 Cuenda, A., "Stress-activated protein kinase-2/p38 and a rapamycinsensitive pathway are required for C2C12 myogenesis" 274 : 4341-4346, 1999
18 Hiscock, N., "Skeletal myocytes are a source of interleukin-6 mRNA expression and protein release during contraction: Evidence of fiber type specificity" 18 : 992-994, 2004
19 Li, Y. P., "Skeletal muscle myocytes undergo protein loss and reactive oxygen mediated NF-B activation in response to tumor necrosis factor" 12 : 871-880, 1998
20 Febbraio, M. A., "Skeletal muscle interleukin-6 and tumor necrosis factor-release in healthy subjects and patients with type 2 diabetes at rest and during exercise" 52 : 939-944, 2003
21 Al-Khalili, L., "Signalling specificity of interleukin-6 action on glucose and lipid metabolism in skeletal muscle" 12 : 3364-3375, 2006
22 Febbraio, M. A., "Signaling pathways for IL-6 within skeletal muscle" 9 : 34-39, 2003
23 Pedersen, B. K., "Role of myokines in exercise and metabolism" 103 : 1093-1098, 2007
24 Foulstone, E. J., "Role of insulin-like growth factor binding protein-3 (IGFBP-3) in the differentiation of primary human adult skeletal myoblasts" 195 : 70-79, 2003
25 Zhao, M., "Regulation of the MEF2 family of transcription factors by p38" 19 : 21-30, 1999
26 Kirwan, J. P., "Regular exercise enhances insulin activation of IRS-1-associated PI3-kinase in himan skeletal muscle" 88 : 797-803, 2000
27 Thannickal, V. J., "Reactive oxygen species in cell signaling" 279 : 1005-1028, 2000
28 Kosmidou, I, "Production of interleukin-6 by skeletal myotubes: Role of reactive oxygen species" 26 : 587-593, 2002
29 Ioanna, K., "Production of Interleukin-6 by Skeletal Myotubes; Role of Reactive Oxygen Species" 26 : 587-593, 2002
30 Steensberg, A., "Production of IL-6 in contracting human skeletal muscles can account for the exercise-induced increase in plasma IL-6" 529 : 237-242, 2000
31 Finkel, T., "Oxidants, oxidative stress and the biology of ageing" 408 : 239-247, 2000
32 Silva, J. L., "NF-kkppaB, MEF2A, MEF2D and HIF1-a involvement on insulin-and contraction-induced regulation of GLUT4 gene expression in soleus muscle" 240 : 82-93, 2005
33 Guttridge, D. C., "NF-kappaB controls cell growth and differentiation through transcriptional regulation of cyclin D1" 19 : 5785-5799, 1999
34 Tapscott, S. J., "MyoD 1, a nuclear phosphoprotein requiring a Mychomology region to convert fibroblasts to myoblasts" 242 : 405-411, 1988
35 Febbraio, M. A., "Muscle-derived interleukin-6: Mechanisms for activation and possible biological roles" 16 : 1335-1347, 2002
36 Ruderman, N. B., "Malonyl-CoA, fuel sensing, and insulin resistance" 276 : 1-18, 1999
37 Saha, A. K., "Malonyl-CoA and AMP-activated protein kinase: An expanding partnership" 253 : 65-70, 2003
38 Baeza-Raja, B., "MAPK-induced nuclear factor-kappa B activity is required for skeletal muscle differentiation: role of interleukin-6" 15 : 2013-2026, 2004
39 Craig, R., "MAPK and NF-B collaborate to induce interleukin-6 gene expression and release: Evidence for a cytoprotective autocrine signaling pathway in a cardiac myocyte model system" 275 : 23814-23824, 2000
40 Kami, K., "Localization of leukemia inhibitory factor and interleukin-6 messenger ribonucleic acids in regenerating rat skeletal muscle" 21 : 819-822, 1998
41 Frost, R. A., "Lipopolysaccharide regulates proinflammatory cytokine expression in mouse myoblasts and skeletal muscle" 283 : 698-709, 2002
42 Kurek, J. B., "Leukemia inhibitory factor and interleukin-6 are produced by diseased and regenerating skeletal muscle" 19 : 1291-1301, 1996
43 Pischon, T., "Leisure-time physical activity and reduced plasma levels of obesity-related inflammatory markers" 11 : 1055-1064, 2003
44 Holmes, A. G., "Ionomycin, but not physiologic doses of epinephrine, stimulates skeletal muscle interleukin-6 mRNA expression and protein release" 53 : 1492-1495, 2004
45 Balschun, D., "Interleukin-6: a cytokine to forget" 18 : 1788-1790, 2004
46 Wallenius, V., "Interleukin-6-deficient mice develop mature-onset obesity" 8 : 75-79, 2002
47 van Hall, G., "Interleukin-6 stimulates lipolysis and fat oxidation in human" 88 : 3005-3010, 2003
48 Kanda, T., "Interleukin-6 secreted from human myxoma reduces murine viral myocarditis" 58 : 1705-1712, 1996
49 Mac Donald, C., "Interleukin-6 release from human skeletal muscle during exercise: Relation to AMPK activity" 95 : 2273-2277, 2003
50 Trujillo, M. E., "Interleukin-6 regulates human adipose tissue lipid metabolism and leptin production in vitro" 89 : 5577-5582, 2004
51 Steensberg, A., "Interleukin-6 production in contracting human skeletal muscle is influenced by pre-exercise muscle glycogen content" 537 : 633-639, 2001
52 Senn, J. J., "Interleukin-6 induces cellular insulin resistance in hepatocytes" 51 : 3391-3399, 2002
53 Fischer, C. P., "Interleukin-6 in acute exercise and training: What is the biological relevance?" 12 : 6-33, 2006
54 Rotter, V., "Interleukin-6 (IL-6) induces insulin resistance in 3T3–L1 adipocytes and is, like IL-8 and tumor necrosis factor-alpha, overexpressed in human fat cells from insulin-resistant subjects" 278 : 45777-45784, 2003
55 Van Wagoner, N. J., "Interleukin 6 expression and regulation in astrocytes" 100 : 124-139, 1999
56 Nennesmo, I., "Interferon--like immunoreactivity and T-cell marker expression in rat skeletal muscle fibres" 504 : 306-310, 1989
57 Kern, M., "Insulin responsiveness in skeletal muscle is determined by glucose transporter(Glut4) protein level" 270 : 397-400, 1990
58 Burkhard, M., "Inhibition of IL-1, IL-6, and TNF-α in immunemediated inflammatory disease" 27 : 391-408, 2006
59 Winder, W. W., "Inactivation of acetyl-CoA carboxylase and activation of AMP-activated protein kinase in muscle during exercise" 270 : 299-304, 1996
60 Geiger, P. C., "IL-6 increases muscle insulin sensitivity only at superphusiological levels" 292 : 1842-1846, 2007
61 Carey, A. L., "IL-6 increases insulin-stimulated glucose disposal in humans and glucose uptake and fatty acid oxidation in vitro via AMP-activated protein kinase" 55 : 2688-2697, 2006
62 Steensberg, A., "IL-6 enhances plasma IL-1ra, IL-10, and cortisol in humans" 285 : 433-437, 2003
63 Steensberg, A., "IL-6 and TNF-expression in, and release from, contracting human skeletal muscle" 283 : 1272-1278, 2002
64 Kami, K., "Gene expression of receptors for IL-6, LIF, and CNTF in regenerating skeletal muscles. J. Histochem" 48 : 1203-1213, 2000
65 Banzet, S., "Fibre-type specificity of Interleukin-6 gene transcription during muscle contraction in rat: association with calcineurin activity" 566 : 839-847, 2005
66 Chibalin, A. V., "Exercise-induced changes in expression and activity of proteins involved in insulin signal transduction in skeletal muscle: Differential effects on insulin-receptor substrates 1 and 2" 97 : 38-43, 2000
67 Friedman, J. E., "Exercise training increases glucose transporter protein GLUT-4 in skeletal muscle of obese Zucker(fa/fa) rat" 268 : 13-16, 1990
68 Akimoto, T., "Exercise stimulates PGC-1α transcription in skeletal muscle through activation of the p38 MAPK pathway" 280 (280): 587-19593, 2005
69 Pilegaard, H., "Exercise induces transient transcriptional activation of the PGC-1alpha gene in human skeletal muscle" 546 : 851-858, 2003
70 Starkie, R., "Exercise and IL-6 infusion inhibit exdotoxin-induced TNF-alpha production in humans" 17 : 884-886, 2003
71 Ostrowski, K., "Evidence that Interleukin-6 is produced in human skeletal muscle during prolonged running" 508 : 949-953, 1998
72 Al-Khalili, L., "Enhanced insulin-stimulated glycogen synthesis in response to insulin, metformin or rosiglitazone is associated with increased mRNA expression of GLUT4 and peroxisomal proliferator activator receptor gamma co-activator 1" 48 : 1173-1179, 2005
73 Fischer, C. P., "Endurance training reduces the contraction-induced interleukin-6 mRNA expression in human skeletal muscle" 287 : 1189-1194, 2004
74 Ali, M. H., "Endothelial permeability and IL-6 production during hypoxia: role of ROS in signal transduction" 277 : 1057-1065, 1999
75 Phillips, S. M., "Effects of training duration on substrate turnover and oxidation during exercise" 81 : 2182-2191, 1996
76 Crampes, F., "Effect of physical traninig in human on the response of isolated fat cells to epiephrine" 61 : 25-29, 1986
77 Keller, C., "Effect of exercise, training, and glycogen availability on IL-6 receptor expression in human skeletal muscle" 99 : 2075-2079, 2005
78 Ploug, T., "Effect of endurance training on glucose transport capacity and glucose transporter expression in rat skeletal muscle" 259 : 778-786, 1990
79 Weigert, C., "Direct cross-talk of interleukin-6 and insulin signal transduction via insulin receptor substrate-1 in skeletal muscle cells" 281 : 7060-7067, 2006
80 Keller, C., "Differential regulation of IL-6 and TNF-alpha via calcineurin in human skeletal muscle cells" 36 : 141-147, 2006
81 Bruce, C. R., "Cytokine regulation of skeletal muscle fatty acid metabolism: effect of interleukin-6 and tumor necrosis factor-{alpha}" 287 : 616-621, 2004
82 Tews, D. S., "Cytokine expression profile in idiopathic inflammatory myopathies" 55 : 342-347, 1996
83 Schindler, R., "Correlations and interactions in the production of interleukin-6 (IL- 6), IL-1, and tumor necrosis factor (TNF) in human blood mononuclear cells: IL-6 suppresses IL-1 and TNF" 75 : 40-47, 1990
84 Febbraio, M. A., "Contraction-induced myokine production and release: is skeletal muscle an endocrine organ?" 33 : 114-119, 2005
85 Banzet, S., "Contraction-induced interleukin-6 transcription in rat slow-type muscle is partly dependent on calcineurin activation" 210 : 596-601, 2007
86 Bartoccioni, E., "Constitutive and cytokine-induced production of interleukin-6 by human myoblasts" 42 : 135-138, 1994
87 Haddad, J. J. E., "Chemioxyexcitation(pO2/ROS)-dependent release of IL-1, IL-6 and TNF-α: evidence of cytokines as oxygen-sensitive mediators in the alveolar epithelium" 13 : 138-147, 2001
88 Schobitz, B., "Cellular localization of interleukin 6 mRNA and interleukin 6 receptor mRNA in rat brain" 5 : 1426-1435, 1993
89 Pennica, D., "Cardiotrophin-1, a multifunctional cytokine that signals via LIF receptor-gp 130 dependent pathways. Cytokine" 7 : 81-91, 1996
90 Nieman, D. C., "Carbohydrate ingestion influences skeletal muscle cytokine mRNA and plasma cytokine levels after a 3-h run" 94 : 1917-1925, 2003
91 Holloszy, J. O., "Biochemical adaptations to endurance exercise in muscle" 38 : 273-291, 1976
92 Geffken, D. F., "Association between physical activity and markers of inflammation in a healthy elderly population" 153 : 242-250, 2001
93 Ji, L. L., "Antioxidants and oxidative stress in exercise" 222 : 283-292, 1999
94 Chan, M. H., "Altering dietary nutrient intake that reduces glycogen content leads to phosphorylation of nuclear p38 MAP kinase in human skeletal muscle: association with IL-6 gene transcription during contraction" 18 : 1785-1787, 2004
95 Kern, P. A., "Adipose tissue tumor necrosis factor and interleukin-6 expression in human obesity and insulin resistance" 280 : 745-751, 2001
96 Spath-Schwalbe, E., "Acute effect of recombinant human interleukin-6 on endocrine and central nervous sleep functions in healthy men" 83 : 1573-1579, 1998
97 Han, J., "Activation of the transcription factor MEF2C by the MAP kinase p38 in inflammation" 386 : 296-299, 1997
98 Kelly, M., "AMPK activity is diminished in tissues of IL-6 knockout mice: the effect of exercise" 320 : 449-454, 2004
99 Merrill, G. F., "AICA riboside increases AMP-activated protein kinase, fatty acid oxidation, and glucose uptake in rat muscle" 273 : 1107-1112, 1997
100 Grobet, L., "A deletion in the bovine myostatin gene causes the double-muscled 9phenotype in cattle" 17 : 71-74, 1997
세팍타크로 선수의 16주간 트레이닝이 경기 중 운동강도와 건강 및 운동기능관련 체력에 미치는 영향
초등 여자 테니스선수의 체격, 체력 및 신체적 자기 효능감이 테니스 기능에 미치는 영향
키네시오 테이핑 요법이 조정(漕艇)선수의 로윙 에르고미터 수행능력에 미치는 영향
태권도 품새 수련이 신체구성, 체력, 폐기능 및 혈액성분에 미치는 영향
학술지 이력
연월일 | 이력구분 | 이력상세 | 등재구분 |
---|---|---|---|
2027 | 평가예정 | 재인증평가 신청대상 (재인증) | |
2021-01-01 | 평가 | 등재학술지 유지 (재인증) | ![]() |
2018-01-01 | 평가 | 등재학술지 선정 (계속평가) | ![]() |
2017-01-01 | 평가 | 등재후보학술지 유지 (계속평가) | ![]() |
2016-01-01 | 평가 | 등재후보학술지 유지 (계속평가) | ![]() |
2015-12-01 | 평가 | 등재후보로 하락 (기타) | ![]() |
2012-01-01 | 평가 | 등재학술지 선정 (등재후보2차) | ![]() |
2011-01-01 | 평가 | 등재후보 1차 PASS (등재후보1차) | ![]() |
2009-01-01 | 평가 | 등재후보학술지 선정 (신규평가) | ![]() |
2008-01-01 | 평가 | 등재후보 탈락 (등재후보1차) | |
2007-07-04 | 학술지명변경 | 외국어명 : 미등록 -> Journal of Coaching Development | ![]() |
2006-01-01 | 평가 | 등재후보 1차 FAIL (등재후보1차) | ![]() |
2004-01-01 | 평가 | 등재후보학술지 선정 (신규평가) | ![]() |
학술지 인용정보
기준연도 | WOS-KCI 통합IF(2년) | KCIF(2년) | KCIF(3년) |
---|---|---|---|
2016 | 0.98 | 0.98 | 1.04 |
KCIF(4년) | KCIF(5년) | 중심성지수(3년) | 즉시성지수 |
1 | 1.04 | 0.952 | 0.25 |