Validation of stroke volume and cardiac output by electrical interrogation of the brachial artery in normals: assessment of strengths, limitations, and sources of error.

The goal of this study is to validate a new, continuous, noninvasive stroke volume (SV) method, known as transbrachial electrical bioimpedance velocimetry (TBEV). TBEV SV was compared to SV obtained by cardiac magnetic resonance imaging (cMRI) in normal humans devoid of clinically apparent heart dis...

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Publicado en:Journal of Clinical Monitoring & Computing Vol. 29; no. 6; pp. 789 - 801
Autores principales: Bernstein, Donald, Henry, Isaac, Lemmens, Harry, Chaltas, Janell, DeMaria, Anthony, Moon, James, Kahn, Andrew, Bernstein, Donald P, Henry, Isaac C, Lemmens, Harry J, Chaltas, Janell L, DeMaria, Anthony N, Moon, James B, Kahn, Andrew M
Formato: research Journal Article
Publicado: Springer Nature Dec2015
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Dec2015
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      pub: Springer Nature
      place: New York, New York
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        10.1007/s10877-015-9668-9
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        atl: Validation of stroke volume and cardiac output by electrical interrogation of the brachial artery in normals: assessment of strengths, limitations, and sources of error.
      aug:
        au:
          Bernstein, Donald
          Henry, Isaac
          Lemmens, Harry
          Chaltas, Janell
          DeMaria, Anthony
          Moon, James
          Kahn, Andrew
          Bernstein, Donald P
          Henry, Isaac C
          Lemmens, Harry J
          Chaltas, Janell L
          DeMaria, Anthony N
          Moon, James B
          Kahn, Andrew M
        affil: Sotera Wireless, Inc., 10020 Huennekens Street San Diego 92121 USA
      sug:
        subj:
          Brachial Artery Physiology
          Cardiography, Impedance Methods
          Cardiac Output Physiology
          Stroke Volume Physiology
          Adult
          Cardiography, Impedance Equipment and Supplies
          Rheology Statistics and Numerical Data
          Linear Regression
          Equipment Design
          Male
          Female
          Cardiography, Impedance Statistics and Numerical Data
          Human
          Reference Values
          Rheology Equipment and Supplies
          Rheology Methods
          Magnetic Resonance Imaging
          Middle Age
          Validation Studies
          Comparative Studies
          Evaluation Research
          Multicenter Studies
          Adult: 19-44 years
          Middle Aged: 45-64 years
          Male
          Female
      ab: The goal of this study is to validate a new, continuous, noninvasive stroke volume (SV) method, known as transbrachial electrical bioimpedance velocimetry (TBEV). TBEV SV was compared to SV obtained by cardiac magnetic resonance imaging (cMRI) in normal humans devoid of clinically apparent heart disease. Thirty-two (32) volunteers were enrolled in the study. Each subject was evaluated by echocardiography to assure that no aortic or mitral valve disease was present. Subsequently, each subject underwent electrical interrogation of the brachial artery by means of a high frequency, low amplitude alternating current. A first TBEV SV estimate was obtained. Immediately after the initial TBEV study, subjects underwent cMRI, using steady-state precession imaging to obtain a volumetric estimate of SV. Following cMRI, the TBEV SV study was repeated. Comparing the cMRI-derived SV to that of TBEV, the two TBEV estimates were averaged and compared to the cMRI standard. CO was computed as the product of SV and heart rate. Statistical methods consisted of Bland-Altman and linear regression analysis. TBEV SV and CO estimates were obtained in 30 of the 32 subjects enrolled. Bland-Altman analysis of pre- and post-cMRI TBEV SV showed a mean bias of 2.87 % (2.05 mL), precision of 13.59% (11.99 mL) and 95% limits of agreement (LOA) of +29.51% (25.55 mL) and -23.77% (-21.45 mL). Regression analysis for pre- and post-cMRI TBEV SV values yielded y = 0.76x + 25.1 and r(2) = 0.71 (r = 0.84). Bland-Altman analysis comparing cMRI SV with averaged TBEV SV showed a mean bias of -1.56% (-1.53 mL), precision of 13.47% (12.84 mL), 95% LOA of +24.85% (+23.64 mL) and -27.97% (-26.7 mL) and percent error = 26.2 %. For correlation analysis, the regression equation was y = 0.82x + 19.1 and correlation coefficient r(2) = 0.61 (r = 0.78). Bland-Altman analysis of averaged pre- and post-cMRI TBEV CO versus cMRI CO yielded a mean bias of 5.01% (0.32 L min(-1)), precision of 12.85% (0.77 L min(-1)), 95% LOA of +30.20 % (+0.1.83 L min(-1)) and -20.7% (-1.19 L min(-1)) and percent error = 24.8%. Regression analysis yielded y = 0.92x + 0.78, correlation coefficient r(2) = 0.74 (r = 0.86). TBEV is a novel, noninvasive method, which provides satisfactory estimates of SV and CO in normal humans.
      pubtype: Academic Journal
      doctype:
        research
        Journal Article
      ougenre: Article
    language: English
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