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Volumn 35, Issue 12, 2002, Pages 1671-1676

Mechanical compliance of the endocardium

Author keywords

Elastic component; Insertion depth; Relaxation effect; RF ablation

Indexed keywords

CARDIOLOGY; CATHETERS; ELASTICITY; ELECTRODES; TISSUE;

EID: 0036890169     PISSN: 00219290     EISSN: None     Source Type: Journal    
DOI: 10.1016/S0021-9290(02)00228-2     Document Type: Article
Times cited : (15)

References (13)
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    • Broom, N.D.1
  • 5
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    • The constitutive behaviour of passive heart muscle tissue: A quasi-linear viscoelastic formulation
    • Huyghe J.M., Campen D.H., Arts T., Heethaar R.M. The constitutive behaviour of passive heart muscle tissue. a quasi-linear viscoelastic formulation Journal of Biomechanics. 24:1991;842-849.
    • (1991) Journal of Biomechanics , vol.24 , pp. 842-849
    • Huyghe, J.M.1    Campen, D.H.2    Arts, T.3    Heethaar, R.M.4
  • 7
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    • Temperature guided radiofrequency catheter ablation of myocardium: Comparison of catheter tip and tissue temperatures in vitro
    • Kongsgaard E., Steen T., Jensen Ø., Aass H. Temperature guided radiofrequency catheter ablation of myocardium. comparison of catheter tip and tissue temperatures in vitro PACE. 20:1997;1252-1260.
    • (1997) PACE , vol.20 , pp. 1252-1260
    • Kongsgaard, E.1    Steen, T.2    Jensen, Ø.3    Aass, H.4
  • 8
    • 0032903237 scopus 로고    scopus 로고
    • Lesion dimensions during temperature-controlled radiofrequency catheter ablation of left ventricular porcine myocardium: Impact of ablation site, electrode size, and convective cooling
    • Peterson H.H., Chen X., Pietersen A., Svendsen J.H., Haunsø S. Lesion dimensions during temperature-controlled radiofrequency catheter ablation of left ventricular porcine myocardium. impact of ablation site, electrode size, and convective cooling Circulation. 99:1999;319-325.
    • (1999) Circulation , vol.99 , pp. 319-325
    • Peterson, H.H.1    Chen, X.2    Pietersen, A.3    Svendsen, J.H.4    Haunsø, S.5
  • 9
    • 0015685612 scopus 로고
    • Mechanical properties of the heart muscle in the passive state
    • Pinto J.G., Fung Y.C. Mechanical properties of the heart muscle in the passive state. Journal of Biomechanics. 6:1973;597-616.
    • (1973) Journal of Biomechanics , vol.6 , pp. 597-616
    • Pinto, J.G.1    Fung, Y.C.2
  • 10
    • 0020072401 scopus 로고
    • A viscoelastic model for the mechanical properties of biological materials
    • Sanjeevi R. A viscoelastic model for the mechanical properties of biological materials. Journal of Biomechanics. 15:1982;107-109.
    • (1982) Journal of Biomechanics , vol.15 , pp. 107-109
    • Sanjeevi, R.1
  • 11
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    • Determination of a constitutive relation for passive myocardium: É. A new functional form
    • Strumpf R.K., Yin F.C.P., Humphrey J.D. Determination of a constitutive relation for passive myocardium. É. A new functional form Journal of Biomechanical Engineering. 112:1990;333-339.
    • (1990) Journal of Biomechanical Engineering , vol.112 , pp. 333-339
    • Strumpf, R.K.1    Yin, F.C.P.2    Humphrey, J.D.3
  • 12
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    • Determination of a constitutive relation for passive myocardium: ÉI. Parameter estimation
    • Strumpf R.K., Yin F.C.P., Humphrey J.D. Determination of a constitutive relation for passive myocardium. ÉI. Parameter estimation Journal of Biomechanical Engineering. 112:1990;340-346.
    • (1990) Journal of Biomechanical Engineering , vol.112 , pp. 340-346
    • Strumpf, R.K.1    Yin, F.C.P.2    Humphrey, J.D.3


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.