PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
November 1, 2002IEEE Transactions on Medical Imaging297 citations

Automatic segmentation of echocardiographic sequences by active appearance motion models

View Full Paper
JBJohan G. BoschErasmus MCSMSusan MitchellHebrew SeniorLifeBLBoudewijn P. F. LelieveldtLeiden University

Key Result

Fully automated active appearance motion models successfully delineated left ventricular endocardial contours in 97% of cases, with an average distance to manual landmarks of 3.3 mm.

Structured PICO

Does the active appearance motion model (AAMM) accurately delineate left ventricular endocardial contours in echocardiographic sequences of infarct patients?

P
Population
129 unselected infarct patients with 16-frame phase-normalized transthoracic four-chamber echocardiographic sequences
I
Intervention
Active appearance motion model (AAMM) with nonlinear intensity normalization
C
Comparator
Expert drawn endocardial contours and an equivalent set of two-dimensional AAMs
O
Outcome
Accuracy of automated border detection (distance between manual and automatic landmark points)surrogate

The AAMM technique provides accurate, fully automated, and time-continuous delineation of left ventricular endocardial contours in echocardiograms.

Abstract

A novel extension of active appearance models (AAMs) for automated border detection in echocardiographic image sequences is reported. The active appearance motion model (AAMM) technique allows fully automated robust and time-continuous delineation of left ventricular (LV) endocardial contours over the full heart cycle with good results. Nonlinear intensity normalization was developed and employed to accommodate ultrasound-specific intensity distributions. The method was trained and tested on 16-frame phase-normalized transthoracic four-chamber sequences of 129 unselected infarct patients, split randomly into a training set (n = 65) and a test set (n = 64). Borders were compared to expert drawn endocardial contours. On the test set, fully automated AAMM performed well in 97% of the cases (average distance between manual and automatic landmark points was 3.3 mm, comparable to human interobserver variabilities). The ultrasound-specific intensity normalization proved to be of great value for good results in echocardiograms. The AAMM was significantly more accurate than an equivalent set of two-dimensional AAMs.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Bosch et al. (2002) studied Infarct patients (n=129). Active appearance motion model (AAMM) vs. Expert drawn endocardial contours and two-dimensional AAMs was evaluated on Average distance between manual and automatic landmark points. Fully automated active appearance motion models successfully delineated left ventricular endocardial contours in 97% of cases, with an average distance to manual landmarks of 3.3 mm.

synapsesocial.com/papers/6a0d962748a82a5ce309c493https://doi.org/10.1109/tmi.2002.806427
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

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

  1. 1<title>Active appearance motion models for endocardial contour detection in time sequences of echocardiograms</title>2001 · 19 citations
  2. 2Constrained Active Appearance Models for Segmentation of Triplane Echocardiograms2007 · 46 citations
  3. 3Multistage hybrid active appearance model matching: segmentation of left and right ventricles in cardiac MR images2001 · 332 citations
  4. 4Segmentation of Multi-Center 3D Left Ventricular Echocardiograms by Active Appearance Models2014 · 15 citations
  5. 5Semiautomated Border Tracking of Cine Echocardiographic Ventnrcular Images1987 · 72 citations