Literature DB >> 8217210

The shape of the proximal isovelocity surface area varies with regurgitant orifice size and distance from orifice: computer simulation and model experiments with color M-mode technique.

S A Barclay1, L Eidenvall, M Karlsson, G Andersson, C Xiong, P Ask, D Loyd, B Wranne.   

Abstract

The hemispheric proximal isovelocity surface area method for quantification of mitral regurgitant flow (i.e., Qc = 2 pi r2v), where 2 pi r2 is the surface area and v is the velocity at radius r, was investigated as distance from the orifice was increased. Computer simulations and steady flow model experiments were performed for orifices of 4, 6, and 8 mm. Flow rates derived from the centerline velocity and hemispheric assumption were compared with true flow rates. Proximal isovelocity surface area shape varied as distance from each orifice was increased and could only be approximated from the hemispheric equation when a certain distance was exceeded: > 7, > 10, and > 12 mm for the 4, 6, and 8 mm orifices, respectively. Prediction of relative error showed that the best radial zone at which to make measurements was 5 to 9, 6 to 14 and 7 to 17 mm for the 4, 6, and 8 mm orifices, respectively. Although effects of a nonhemispheric shape could be compensated for by use of a correction factor, a radius of 8 to 9 mm can be recommended without the use of a correction factor over all orifices studied if a deviation in calculated as compared with true flow of 15% is considered acceptable. These measurements therefore have implications for the technique in clinical practice.

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Year:  1993        PMID: 8217210     DOI: 10.1016/s0894-7317(14)80242-3

Source DB:  PubMed          Journal:  J Am Soc Echocardiogr        ISSN: 0894-7317            Impact factor:   5.251


  4 in total

1.  Regurgitant heart valve flow from 2-D proximal velocity field: continued search for the ideal method.

Authors:  L Eidenvall; S Barclay; D Loyd; B Wrannel; P Ask
Journal:  Med Biol Eng Comput       Date:  1995-03       Impact factor: 2.602

2.  Influence of pulse repetition frequency and high pass filter on color Doppler maps of converging flow in vitro.

Authors:  M Giesler; V Göller; A Pfob; D Bajtay; M Kochs; V Hombach; G Grossmann
Journal:  Int J Card Imaging       Date:  1996-12

3.  Computational simulations of mitral regurgitation quantification using the flow convergence method: comparison of hemispheric and hemielliptic formulae.

Authors:  J Hopmeyer; E Whitney; D A Papp; M S Navathe; R A Levine; Y H Kim; A P Yoganathan
Journal:  Ann Biomed Eng       Date:  1996 Sep-Oct       Impact factor: 3.934

4.  Radius of proximal isovelocity surface area in the assessment of rheumatic mitral stenosis: Connecting flow to anatomy and hemodynamics.

Authors:  Alaa Mabrouk Salem Omar; Mohamed Ahmed Abdel-Rahman; Hala Raslan; Osama Rifaie
Journal:  J Saudi Heart Assoc       Date:  2015-03-12
  4 in total

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