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Cardiogoniometry Compared to Fractional Flow Reserve at Identifying Physiologically Significant Coronary Stenosis:
Oliver I Brown1, Andrew L Clark2, Raj Chelliah3
1Department of Academic Cardiology, University of Hull, Castle Hill Hospital, Daisy Building, Castle Road, Cottingham, HU16 5JQ, UK. oliver.brown@hyms.ac.uk.
Insights
Cardiogoniometry (CGM) shows poor accuracy for detecting significant coronary artery disease (CAD) at rest. While accuracy improves with hyperemia, it is insufficient for routine clinical use in diagnosing physiologically significant CAD.
Area of Science:
- Cardiology
- Medical Imaging
- Diagnostic Accuracy
Background:
- Cardiogoniometry (CGM), a 3D electrocardiographic assessment, can identify stable coronary artery disease (CAD).
- Angiographic evidence of CAD does not always reflect physiologically significant stenosis.
- Fractional flow reserve (FFR) is a key method for assessing physiological significance.
Purpose of the Study:
- To evaluate the diagnostic performance of CGM in detecting physiologically significant coronary stenosis.
- To compare CGM's accuracy against FFR, the gold standard for functional significance.
Main Methods:
- Prospective, double-blinded observational study in a tertiary cardiology center.
- 45 elective patients with single-vessel CAD underwent CGM at rest and during maximal hyperemia (adenosine-induced).
- CGM results were compared with FFR values (significant if <0.80).
Main Results:
- At rest, CGM sensitivity was 33.3% and specificity was 63.0%.
- During maximal hyperemia, CGM sensitivity increased to 71.4% and specificity was 50.0%.
- Forty percent of patients had FFR-defined significant CAD.
Conclusions:
- CGM demonstrates poor diagnostic performance for detecting physiologically significant stable CAD at rest.
- While CGM performance improves during hyperemia, it remains insufficient for routine clinical application.
Abstract:
Cardiogoniometry (CGM) is method of 3-dimensional electrocardiographic assessment which has been shown to identify patients with angiographically defined, stable coronary artery disease (CAD). However, angiographic evidence of CAD, does not always correlate to physiologically significant disease. The aim of our study was to assess the ability of CGM to detect physiologically significant coronary stenosis defined by fractional flow reserve (FFR). In a tertiary cardiology centre, elective patients with single vessel CAD were enrolled into a prospective double blinded observational study. A baseline CGM recording was performed at rest. A second CGM recording was performed during the FFR procedure, at the time of adenosine induced maximal hyperaemia. A significant CGM result was defined as an automatically calculated ischaemia score < 0 and a significant FFR ratio was defined as < 0.80. Measures of diagnostic performance (including sensitivity and specificity) were calculated for CGM at rest and during maximal hyperaemia. Forty-five patients were included (aged 61.1 ± 11.0; 60.0% male), of which eighteen (40%) were found to have significant CAD when assessed by FFR. At rest, CGM yielded a sensitivity of 33.3% and specificity of 63.0%. At maximal hyperaemia the sensitivity and specificity of CGM was 71.4 and 50.0% respectively. The diagnostic performance of CGM to detect physiologically significant stable CAD is poor at rest. Although, the diagnostic performance of CGM improves substantially during maximal hyperaemia, it does not reach sufficient levels of accuracy to be used routinely in clinical practice.
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