Record ID | marc_columbia/Columbia-extract-20221130-009.mrc:71698961:6361 |
Source | marc_columbia |
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LEADER: 06361fam a2200565 a 4500
001 4058206
005 20221027025544.0
008 980605t19981998nyua b 101 0 eng c
010 $a 98026175
020 $a0306459205
035 $a(OCoLC)39282398
035 $a(OCoLC)ocm39282398
035 $9ANQ1626HS
035 $a(NNC)4058206
035 $a4058206
040 $aDNLM/DLC$cDLC$dDLC$dOrLoB-B
050 00 $aQP321$b.S495 1998
060 10 $aW1$bAD559 v.441 1998
060 10 $aWE 500$bS627 1998
082 00 $a611/.0186$221
245 00 $aSkeletal muscle metabolism in exercise and diabetes /$cedited by Erik A. Richter [and others].
260 $aNew York :$bPlenum Press,$c[1998], ©1998.
300 $aix, 328 pages :$billustrations ;$c26 cm.
336 $atext$btxt$2rdacontent
337 $aunmediated$bn$2rdamedia
490 1 $aAdvances in experimental medicine and biology ;$vv. 441
500 $a"Proceedings of the Copenhagen Muscle Research Centre Symposium on Regulation of Skeletal Muscle Metabolism: Focus on Glucose Transport, Exercise, and Diabetes, held October 23-26, 1997, in Copenhagen, Denmark"--T.p. verso.
504 $aIncludes bibliographical references and index.
505 00 $g1.$tAn Overview of Muscle Glucose Uptake during Exercise: Sites of Regulation /$rDavid H. Wasserman and Amy E. Halseth --$g2.$tAnatomy of Glucose Transporters in Skeletal Muscle: Effects of Insulin and Contractions /$rThorkil Ploug and Evelyn Ralston --$g3.$tRole of Transverse Tubules (T-Tubules) in Muscle Glucose Transport /$rG. Lynis Dohm and Ronald W. Dudek --$g4.$tGLUT5 Expression and Fructose Transport in Human Skeletal Muscle /$rHarinder S. Hundal, Froogh Darakhshan and Soren Kristiansen [et al.] --$g5.$tSNAREing GLUT4 at the Plasma Membrane in Muscle and Fat /$rMitsuru Hashiramoto and David E. James --$g6.$tMolecular Mechanisms Involved in GLUT4 Translocation in Muscle during Insulin and Contraction Stimulation /$rS. W. Cushman, L. J. Goodyear and P. F. Pilch [et al.] --$g7.$tInsulin Signaling and Glucose Transport in Insulin Resistant Skeletal Muscle: Special Reference to GLUT4 Transgenic and GLUT4 Knockout Mice /$rDana Galuska, Jeff Ryder and Yuichi Kawano [et al.] --
505 80 $g8.$tRole of Nitric Oxide in Contraction Induced Glucose Transport /$rThomas W. Balon --$g9.$tRole of Adenosine in Regulation of Carbohydrate Metabolism in Contracting Muscle /$rPeter Hespel and Erik A. Richter --$g10.$tTraining Effects on Muscle Glucose Transport during Exercise /$rErik A. Richter, Soren Kristiansen and Jorgen Wojtaszewski [et al.] --$g11.$tHepatic Glucose Production during Exercise /$rMichael Kjaer --$g12.$tInsulin Sensitivity, Muscle Fibre Types, and Membrane Lipids /$rJorn W. Helge, Adamandia D. Kriketos and Len H. Storlien --$g13.$tTraining Induced Changes in the Fatty Acid Composition of Skeletal Muscle Lipids: Functional Aspects /$rBengt Vessby, Agneta Andersson and Anders Sjodin --$g14.$tFat Metabolism in Exercise /$rRobert R. Wolfe --$g15.$tMechanisms Regulating Adipocyte Lipolysis /$rGale B. Carey --$g16.$tRegulation of Fatty Acid Delivery in Vivo /$rKeith N. Frayn --
505 80 $g17.$tTransport of Long-Chain Fatty Acids across the Muscular Endothelium /$rGer J. Van der Vusse, Jan F. C. Glatz and Frans A. Van Nieuwenhoven [et al.] --$g18.$tSkeletal Muscle Fatty Acid Transport and Transporters /$rA. Bonen, D. J. Dyek and J. J. F. P. Luiken --$g19.$tIntracellular Transport of Fatty Acids in Muscle: Role of Cytoplasmic Fatty Acid-Binding Protein /$rJan F. C. Glatz, Eric Van Breda and Ger J. Van der Vusse --$g20.$tHormone-Sensitive Lipase (HSL) Expression and Regulation in Skeletal Muscle /$rJ. Langfort, T. Ploug and J. Ihlemann [et al.] --$g21.$tTraining and Fatty Acid Metabolism /$rBente Kiens --$g22.$tIntramuscular Mechanisms Regulating Fatty Acid Oxidation during Exercise /$rW. W. Winder --$g23.$tRegulation of Fat/Carbohydrate Interaction in Human Skeletal Muscle during Exercise /$rLawrence L. Spriet --$g24.$tMalonyl CoA as a Metabolic Switch and a Regulator of Insulin Sensitivity /$rN. B. Ruderman, A. K. Saha and D. Vavvas [et al.] --
505 80 $g25.$tAnaplerosis of the Tricarboxylic Acid Cycle in Human Skeletal Muscle during Exercise: Magnitude, Sources, and Potential Physiological Significance /$rTerry E. Graham and Martin J. Gibala --$g26.$tPyruvate Dehydrogenase Complex Activation Status and Acetyl Group Availability as a Site of Interchange between Anaerobic and Oxidative Metabolism during Intense Exercise /$rPaul L. Greenhaff and James A. Timmons --$g27.$tAmino Acid Transport during Muscle Contraction and Its Relevance to Exercise /$rMichael J. Rennie, Sylvia Y. Low and Peter M. Taylor [et al.] --$g28.$tProtein and Amino Acid Metabolism in Human Muscle /$rAnton J. M. Wagenmakers.
650 0 $aStriated muscle$xMetabolism$vCongresses.
650 0 $aGlucose$xPhysiological transport$vCongresses.
650 0 $aEnergy metabolism$vCongresses.$0http://id.loc.gov/authorities/subjects/sh2008103051
650 0 $aExercise$xPhysiological aspects$vCongresses.$0http://id.loc.gov/authorities/subjects/sh2008103426
650 0 $aDiabetes$xPathophysiology$vCongresses.
650 0 $aInsulin resistance$xPathophysiology$vCongresses.
650 12 $aMuscle, Skeletal$xmetabolism.$0https://id.nlm.nih.gov/mesh/D018482Q000378
650 22 $aGlucose$xmetabolism.$0https://id.nlm.nih.gov/mesh/D005947Q000378
650 22 $aInsulin$xphysiology.$0https://id.nlm.nih.gov/mesh/D007328Q000502
650 22 $aExercise$xphysiology.$0https://id.nlm.nih.gov/mesh/D015444Q000502
650 22 $aFatty Acids$xmetabolism.$0https://id.nlm.nih.gov/mesh/D005227Q000378
650 22 $aDiabetes Mellitus$xphysiopathology.$0https://id.nlm.nih.gov/mesh/D003920Q000503
650 22 $aBiological Transport.$0https://id.nlm.nih.gov/mesh/D001692
655 2 $aCongress.$0https://id.nlm.nih.gov/mesh/D016423
700 1 $aRichter, Erik A.$0http://id.loc.gov/authorities/names/n85158889
711 2 $aCopenhagen Muscle Research Centre Symposium on Regulation of Skeletal Muscle Metabolism: Focus on Glucose Transport, Exercise, and Diabetes$d(1997 :$cCopenhagen, Denmark)$0http://id.loc.gov/authorities/names/n98801761
830 0 $aAdvances in experimental medicine and biology ;$vv. 441.$0http://id.loc.gov/authorities/names/n42001229
852 00 $boff,hsl$hQP321$i.S495 1998