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Volumn 29, Issue 5, 2013, Pages 630-640

Assessment of cardiac stroke volume in patients with implanted cardiac pacemaker using parametric electrical impedance tomography: A theoretical 2D study

Author keywords

Electrical impedance tomography; Pacemaker; Parametric reconstruction; Simulation study; Stroke volume; Tissue electrical conductivity

Indexed keywords

APPROPRIATE MODELS; ELECTRICAL CONDUCTIVITY; ELECTRICAL IMPEDANCE TOMOGRAPHY; HEART CATHETERIZATION; PUMPING EFFICIENCY; RECONSTRUCTION PARAMETERS; SIMULATION STUDIES; STROKE VOLUMES;

EID: 84877598948     PISSN: 20407939     EISSN: 20407947     Source Type: Journal    
DOI: 10.1002/cnm.2550     Document Type: Article
Times cited : (10)

References (39)
  • 1
    • 0032765191 scopus 로고    scopus 로고
    • The non-invasive assessment of stroke volume and cardiac output by impedance cardiography: A review
    • Newman DG, Callister R. The non-invasive assessment of stroke volume and cardiac output by impedance cardiography: A review. Aviation, Space, and Environmental Medicine 1999; 70:780-789.
    • (1999) Aviation, Space, and Environmental Medicine , vol.70 , pp. 780-789
    • Newman, D.G.1    Callister, R.2
  • 2
    • 2442688872 scopus 로고    scopus 로고
    • Recent developments in cardiac output determination by bioimpedance: Comparison with invasive cardiac output and potential cardiovascular applications
    • Moshkovitz Y, Kaluski E, Milo O, Vered Z, Cotter G. Recent developments in cardiac output determination by bioimpedance: Comparison with invasive cardiac output and potential cardiovascular applications. Current Opinion in Cardiology 2004; 19:229-237.
    • (2004) Current Opinion in Cardiology , vol.19 , pp. 229-237
    • Moshkovitz, Y.1    Kaluski, E.2    Milo, O.3    Vered, Z.4    Cotter, G.5
  • 4
    • 0013684784 scopus 로고
    • The origin of the variations of body impedance occurring during the cardiac cycle
    • Bonjer FH, Van Den Berg J, Dirken MN. The origin of the variations of body impedance occurring during the cardiac cycle. Circulation 1952; 6:415-20.
    • (1952) Circulation , vol.6 , pp. 415-420
    • Bonjer, F.H.1    Van Den Berg, J.2    Dirken, M.N.3
  • 5
    • 0029239605 scopus 로고
    • Multiple sources of the impedance cardiogram based on 3-D finite difference human thorax models
    • Wang L, Patterson R. Multiple sources of the impedance cardiogram based on 3-D finite difference human thorax models. IEEE Transactions on Biomedical Engineering 1995; 42:141-148.
    • (1995) IEEE Transactions on Biomedical Engineering , vol.42 , pp. 141-148
    • Wang, L.1    Patterson, R.2
  • 7
    • 23044441502 scopus 로고    scopus 로고
    • EIT images of ventilation: What contributes to the resistivity changes?
    • Zhang J, Patterson RP. EIT images of ventilation: What contributes to the resistivity changes?Physiological Measurement 2005; 26:S81-S92.
    • (2005) Physiological Measurement , vol.26
    • Zhang, J.1    Patterson, R.P.2
  • 12
    • 0033860838 scopus 로고    scopus 로고
    • Heart failure management using implantable devices for ventricular resynchronization: Comparison of Medical Therapy, Pacing, and Defibrillation in Chronic Heart Failure (COMPANION) trial. COMPANION Steering Committee and COMPANION Clinical Investigators
    • Bristow MR, Feldman AM, Saxon LA. Heart failure management using implantable devices for ventricular resynchronization: Comparison of Medical Therapy, Pacing, and Defibrillation in Chronic Heart Failure (COMPANION) trial. COMPANION Steering Committee and COMPANION Clinical Investigators. Journal of Cardiac Failure 2000; 6:276-285.
    • (2000) Journal of Cardiac Failure , vol.6 , pp. 276-285
    • Bristow, M.R.1    Feldman, A.M.2    Saxon, L.A.3
  • 14
    • 0029909341 scopus 로고    scopus 로고
    • The dielectric properties of biological tissues: II. Measurements in the frequency range 10 Hz to 20 GHz
    • Gabriel S, Lau RW, Gabriel C. The dielectric properties of biological tissues: II. Measurements in the frequency range 10 Hz to 20 GHz. Physics in Medicine and Biology 1996; 41:2251-2269.
    • (1996) Physics in Medicine and Biology , vol.41 , pp. 2251-2269
    • Gabriel, S.1    Lau, R.W.2    Gabriel, C.3
  • 15
  • 19
    • 66749184826 scopus 로고    scopus 로고
    • Left ventricular lead placement in cardiac resynchronization therapy: Where and how?
    • Khan FZ, Virdee MS, Fynn SP, Dutka DP. Left ventricular lead placement in cardiac resynchronization therapy: Where and how? Europace 2009; 11:554-561.
    • (2009) Europace , vol.11 , pp. 554-561
    • Khan, F.Z.1    Virdee, M.S.2    Fynn, S.P.3    Dutka, D.P.4
  • 22
    • 0028624694 scopus 로고
    • Numerical calculation of the potential distribution due to dipole sources in a spherical model of the head
    • Abboud S, Eshel Y, Levy S, Rosenfeld M. Numerical calculation of the potential distribution due to dipole sources in a spherical model of the head. Computers and Biomedical Research 1994; 27:441-455.
    • (1994) Computers and Biomedical Research , vol.27 , pp. 441-455
    • Abboud, S.1    Eshel, Y.2    Levy, S.3    Rosenfeld, M.4
  • 23
    • 0030200423 scopus 로고    scopus 로고
    • Numerical solution of the potential due to dipole sources in volume conductors with arbitrary geometry and conductivity
    • Rosenfeld M, Tanami R, Abboud S. Numerical solution of the potential due to dipole sources in volume conductors with arbitrary geometry and conductivity. IEEE Transactions on Biomedical Engineering 1996; 43:679-689.
    • (1996) IEEE Transactions on Biomedical Engineering , vol.43 , pp. 679-689
    • Rosenfeld, M.1    Tanami, R.2    Abboud, S.3
  • 27
    • 0014753417 scopus 로고
    • Ultrasonic cardiac echography for determining stroke volume and valvular regurgitation
    • Popp RL, Harrison DC. Ultrasonic cardiac echography for determining stroke volume and valvular regurgitation. Circulation 1970; 41:493-502.
    • (1970) Circulation , vol.41 , pp. 493-502
    • Popp, R.L.1    Harrison, D.C.2
  • 29
    • 84877606858 scopus 로고    scopus 로고
    • Calculation of Left Ventricular Ejection Fraction of Abnormal Heart in SPECT. Nuclear Science Symposium Conference Record, 2006. IEEE, San Diego CA, USA
    • Boutchko R, Sitek A, Reutter BW, Gullberg GT, Budinger TF, Schaefer S, et al. Calculation of Left Ventricular Ejection Fraction of Abnormal Heart in SPECT. Nuclear Science Symposium Conference Record, 2006. IEEE, San Diego CA, USA, 2006; 3233-3234.
    • (2006) , pp. 3233-3234
    • Boutchko, R.1    Sitek, A.2    Reutter, B.W.3    Gullberg, G.T.4    Budinger, T.F.5    Schaefer, S.6
  • 30
    • 0036897615 scopus 로고    scopus 로고
    • Measuring left ventricular volume and ejection fraction with the biplane Simpson's method
    • Otterstad JE. Measuring left ventricular volume and ejection fraction with the biplane Simpson's method. Heart 2002; 88:559-560.
    • (2002) Heart , vol.88 , pp. 559-560
    • Otterstad, J.E.1
  • 31
    • 0020415358 scopus 로고
    • Comparison of single-plane and biplane volume determination by two-dimensional echocardiography. 1. Asymmetric model hearts
    • Erbel R, Krebs W, Henn G, Schweizer P, Richter HA, Meyer J, et al. Comparison of single-plane and biplane volume determination by two-dimensional echocardiography. 1. Asymmetric model hearts. Search ResultsEuropean Heart Journal 1982; 3:469-480.
    • (1982) Search ResultsEuropean Heart Journal , vol.3 , pp. 469-480
    • Erbel, R.1    Krebs, W.2    Henn, G.3    Schweizer, P.4    Richter, H.A.5    Meyer, J.6
  • 34
    • 84908219488 scopus 로고
    • Statistical methods for assessing agreement between two methods of clinical measurement
    • Bland JM, Altman DG. Statistical methods for assessing agreement between two methods of clinical measurement. Lancet 1986; 1:307-310.
    • (1986) Lancet , vol.1 , pp. 307-310
    • Bland, J.M.1    Altman, D.G.2
  • 35
    • 84877622012 scopus 로고    scopus 로고
    • Technical Developments to Enable Electrical Impedance Tomography (EIT) Measurement of Blood Flow to Monitor Cardiac Output: Key Engineering Contributions, M. Sc, Ottawa-Carleton Institute for Biomedical Engineering Department of Systems and Computer Engineering Carleton University, Carleton University Ottawa, Ontario, Canada.
    • Ross H. 2010. Technical Developments to Enable Electrical Impedance Tomography (EIT) Measurement of Blood Flow to Monitor Cardiac Output: Key Engineering Contributions, M. Sc, Ottawa-Carleton Institute for Biomedical Engineering Department of Systems and Computer Engineering Carleton University, Carleton University Ottawa, Ontario, Canada.
    • (2010)
    • Ross, H.1
  • 38
    • 0030087956 scopus 로고    scopus 로고
    • Electrical impedance tomography: Induced-current imaging achieved with a multiple coil system
    • Gencer NG, Ider YZ, Williamson SJ. Electrical impedance tomography: Induced-current imaging achieved with a multiple coil system. IEEE Transactions on Biomedical Engineering 1996; 43:139-149.
    • (1996) IEEE Transactions on Biomedical Engineering , vol.43 , pp. 139-149
    • Gencer, N.G.1    Ider, Y.Z.2    Williamson, S.J.3
  • 39
    • 0030942619 scopus 로고    scopus 로고
    • Noninvasive assessment of right ventricular diastolic function by electrical impedance tomography
    • Vonk Noordegraaf A, Faes T, Janse A, Marcus J, Bronzwaer J, Postmus P. et al. Noninvasive assessment of right ventricular diastolic function by electrical impedance tomography. Chest 1997; 111:1222-1228.
    • (1997) Chest , vol.111 , pp. 1222-1228
    • Vonk Noordegraaf, A.1    Faes, T.2    Janse, A.3    Marcus, J.4    Bronzwaer, J.5    Postmus, P.6


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.