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In Vivo Quantitative Assessment of Myocardial Structure, Function, Perfusion and Viability Using Cardiac Micro-computed Tomography
Published on: February 16, 2016
Comparative study of echo- and angiocardiographically determined regional left ventricular wall motion in recent
Insights
This study compared echocardiography methods for assessing left ventricular wall motion after myocardial infarction. Two-dimensional echocardiography showed higher agreement with angiography than M-mode, though discrepancies occurred.
Area of Science:
- Cardiology
- Medical Imaging
- Echocardiography
Background:
- Assessing regional left ventricular (LV) wall motion is crucial for managing patients post-myocardial infarction.
- Different echocardiographic techniques offer varying degrees of information on LV function.
Purpose of the Study:
- To compare the accuracy of M-mode and cross-sectional (2D) echocardiography against LV angiography in evaluating regional LV wall motion in recent myocardial infarction patients.
Main Methods:
- Evaluated regional LV wall motion in 50 myocardial infarction patients using a 9-segment model.
- Compared M-mode echocardiography, 2D echocardiography, and LV angiography for segmental wall motion assessment.
- Classified wall motion using a 5-grade scale and calculated systolic mean wall velocity (V mean) from M-mode data.
Main Results:
- 2D echocardiography showed 61% total agreement with angiography, with 35% differing by 1 grade.
- M-mode echocardiography demonstrated 59% total agreement with angiography, with 32% differing by 1 grade.
- Discrepancies were noted in 38% of segments comparing 2D echo to angiography, and 41% comparing M-mode echo to angiography, with M-mode errors contributing significantly.
Conclusions:
- 2D echocardiography provides more comprehensive and comparable information on regional LV wall motion than M-mode echocardiography when assessed against LV angiography.
- While both methods have limitations, 2D echocardiography offers a better alternative for post-myocardial infarction wall motion analysis.
Abstract:
We have studied regional left ventricular (LV) wall motion with M-mode, cross-sectional (2D) echocardiography and LV angiography in 50 patients with a recent myocardial infarction. Regional LV wall motion was evaluated according to a 9-segment model. 2D echocardiography permitted information from all, M-mode echocardiography from 8 and angiocardiography from 6 segments. Wall motion was visually classified according to a 5-grade scale. Systolic mean wall velocity (V mean) and its deviation from normal values was calculated from M-mode registrations. 2D echo- and angiocardiography were evaluated in 35 patients and M-mode echo- and angiocardiography in 37. Total agreement in segmental wall motion was seen in 61% when comparing 2D echo- with angiocardiography, and a further 35% showed 1-grade and 4% a 2-grade difference. Corresponding values for comparisons between M-mode echo- and angiocardiography were 59%, 32% and 9%, respectively. Discrepant wall motion grading from the 2D echo- and angiocardiography comparison was seen in 94 of 243 (38%) segments. Approximately one quarter of the discrepancies were either due to minor differences in evaluation or due to wall motion scoring. Discrepancies were seen in 83 of 202 (41%) segments when M-mode echo- and angiocardiography were compared. In 42 (21%) these were attributed to obvious M-mode errors and in 8 (4%) to left ventricular angiography. In 20 further segments, nonidentical subsegmental evaluations were the probable cause of discrepancies, and in 8 (10%) ischaemia during the angiocardiography. Five segmental discrepancies remained unexplained.
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