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March 28, 2006Journal of Magnetic Resonance Imaging36 citationsOpen Access

Extended harmonic phase tracking of myocardial motion: Improved coverage of myocardium and its effect on strain results

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STSandra TecelãoJZJaco J.M. ZwanenburgJKJoost P.A. Kuijer

Key Result

Extended harmonic phase (HARP) tracking tracked significantly more myocardial points than the original version across basal, mid, and apical slices (P<=0.001), providing more complete coverage.

Structured PICO

Does the extended HARP tracking method improve coverage of myocardium and accuracy of strain results compared to the original HARP tracking method in healthy volunteers?

P
Population
Six healthy volunteers and a mathematical model of myocardial deformation
I
Intervention
Extended harmonic phase (HARP) tracking method
C
Comparator
Original HARP tracking method
O
Outcome
Number of tracked points and two-dimensional strain componentssurrogate

The extended HARP tracking method provides improved coverage of the myocardial wall and more accurate strain values from regions not covered by the original method.

Main Result

p-value: p=<=0.001

Abstract

PURPOSE: To extend the harmonic phase (HARP) tracking method in order to track the myocardial tissue that appears near the epicardial contour during systole and reappears near the endocardial contour during diastole, due to the longitudinal motion and conical shape of the heart. MATERIALS AND METHODS: A mathematical model of myocardial deformation was used to quantify the accuracy of the extended HARP tracking and of the strain computation. For six healthy volunteers, the number of tracked points and the two-dimensional strain components were computed with the extended and with the original HARP tracking version. RESULTS: High accuracy was obtained for the circumferential strain (maximum error is 0.5% relative to analytical strain). The extended version tracked 22 +/- 7%, 51 +/- 19%, and 67 +/- 20% more points than the original version on the basal, mid, and apical slices, respectively (P < or = 0.001 for each slice), and yielded a decreased circumferential shortening (relative decrease: 2 +/- 4%, 9 +/- 4%, and 12 +/- 5% for the three slices; P < 0.005 for mid and apex), at end systole. These differences in circumferential strain were related to the more complete coverage of the myocardial wall with tracked points. CONCLUSION: The extended HARP tracking also provides strain values from myocardial regions that were not covered by the original HARP tracking.

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Cite This Study

Tecelão et al. (2006) studied Healthy volunteers (n=6). Extended harmonic phase (HARP) tracking vs. Original HARP tracking was evaluated on Number of tracked points and two-dimensional strain components (p=<=0.001). Extended harmonic phase (HARP) tracking tracked significantly more myocardial points than the original version across basal, mid, and apical slices (P<=0.001), providing more complete coverage.

synapsesocial.com/papers/6a193f33ff42a97fac57fb95https://doi.org/10.1002/jmri.20571
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Three-dimensional motion and deformation of the heart wall: estimation with spatial modulation of magnetization--a model-based approach.1992 · 245 citations
  2. 2Heart wall motion: improved method of spatial modulation of magnetization for MR imaging.1989 · 594 citations
  3. 3Human heart: tagging with MR imaging--a method for noninvasive assessment of myocardial motion.1988 · 1,428 citations
  4. 4Regional heart wall motion: two-dimensional analysis and functional imaging with MR imaging.1992 · 151 citations
  5. 5Improved harmonic phase myocardial strain maps2001 · 67 citations