00765nas 2200277zu 450 991112451520332120260806110122.02789-2093(CKB)49790671100041(DE-599)3251577-7(EXLCZ)994979067110004120260725cuuuuuuuu || |engur|||||||||||Tobruk University Journal of Medical SciencesLibya: University of Tobrukmedicinebiomedical sciencespublic healthhealth policymedical educationclinical medicineJOURNAL9911124515203321Tobruk University Journal of Medical Sciences4818043UNINA03765nam 2200649Ia 450 991114016360332120251116203423.097866119117519781281911759128191175597898127713779812771379(CKB)1000000000409993(SSID)ssj0000112140(PQKBManifestationID)11124932(PQKBTitleCode)TC0000112140(PQKBWorkID)10087740(PQKB)10925351(MiAaPQ)EBC1681088(WSP)00006506v2(Au-PeEL)EBL1681088(CaPaEBR)ebr10255604(CaONFJC)MIL191175(OCoLC)879024908(Perlego)849558(EXLCZ)99100000000040999320080325d2007 uy 0engurcn|||||||||txtccrBiomechanical systems technology[Volume 2]Cardiovascular systems /editor, Cornelius T. Leondes1st ed.Singapore ;Hackensack, N.J. World Scientificc2007vii, 270 p. illBibliographic Level Mode of Issuance: Monograph9789812707987 9812707980 9789812709820 9812709827 Includes bibliographical references.ch. 1. A simulation study of hemodynamic benefits and optimal control of axial flow pump-based left ventricular assist device / Huiting Qiao, Jing Bai and Ping He -- ch. 2. Techniques in visualization and evaluation of the in vivo microcirculation / Shigeru Ichioka -- ch. 3. Impedance cardiography: development of the stroke volume equations and their electrodynamic and biophysical foundations / Donald Philip Bernstein and Hendrikus J. M. Lemmens -- ch. 4. Indicator dilution techniques in cardiovascular quantification / Massimo Mischi, Zaccaria Del Prete and Hendrikus H. M. Korsten -- ch. 5. Analyzing cardiac biomechanics by heart sound / Andreas Voss, R. Schroeder, A. Seeck and T. Huebner -- ch. 6. Methods in the analysis of the effects of gravity and wall properties in blood flow through vascular systems / S. J. Payne and S. Uzel -- ch. 7. Numerical and experimental techniques for the study of biomechanics in the arterial system / Thomas P. O'Brien, Michael T. Walsh, Liam Morris, Pierce A. Grace, Eamon G. Kavanagh and Tim M. McGloughlin."Because of rapid developments in computer technology and computational techniques, advances in a wide spectrum of technologies, coupled with cross-disciplinary pursuits between technology and its application to human body processes, the field of biomechanics continues to evolve. Many areas of significant progress include dynamics of musculoskeletal systems, mechanics of hard and soft tissues, mechanics of bone remodeling, mechanics of blood and air flow, flow-prosthesis interfaces, mechanics of impact, dynamics of man-machine interaction, and more. Thus, the great breadth and significance of the field in the international scene require a well integrated set of volumes to provide a complete coverage of the exciting subject of biomechanical systems technology. World-renowned contributors tackle the latest technologies in an in-depth and readable manner."BiomechanicsMethodologyCardiovascular systemBiomechanicsMethodology.Cardiovascular system.612.76Leondes Cornelius T28131MiAaPQMiAaPQMiAaPQBOOK9911140163603321Biomechanical systems technology4838879UNINA