Key result
3D-TEE correlates well with BSD for sizing ASDs but performs poorly for multiple defects.
Why the study?
Balloon stretched diameter is the standard for measuring ASD size before transcatheter closure, but 3D-TEE offers detailed spatial assessment and requires comparison.
Does 3D-TEE correlate with the balloon stretched diameter method for measuring ASD size before transcatheter closure in patients with ASD?
Cross-Sectional (n=76)
Does 3D-TEE correlate with the balloon stretched diameter method for measuring ASD size before transcatheter closure in patients with ASD?
Effect estimate: r = 0.8
3D-TEE and balloon sizing are complementary techniques for ASD measurement, with 3D-TEE being particularly useful for assessing multiple defects where correlation with balloon sizing is poor.
3D-TEE correlates with BSD for ASD sizing; leaves open whether it can replace balloon measurement in transcatheter closure.
BACKGROUND: Transcatheter closure of atrial septal defect (ASD) is an alternative approach to surgery in selected patients. Balloon stretched diameter (BSD) is considered as the standard way of measuring ASD size. Three-dimensional transesophageal echocardiography (3D-TEE) provides views of the ASD allowing its measurement and identifying its spatial relation with neighboring structures. Our aim was to compare the BSD and 3D-TEE methods to measure the ASD size before transcatheter closure. METHODS AND RESULTS: Seventy-six consecutive patients were enrolled for ASD device closure. Three-dimensional transesophageal echocardiography and balloon sizing were adequately performed in 70 patients before the defect closure. The mean maximal diameter measured by 3D-TEE was 20 +/- 15 mm (range 10-28) while the mean BSD was 22 +/- 4.8 mm (range 9-31). When comparing the 3D-TEE and transcatheter measurements, there was a good correlation between the two methods (y = 3.15 + 0.77x; r = 0.8). The defect as viewed by 3D-TEE was unique in 54 patients and multiple in 16 patients. In patients with a single defect, the correlation between the two methods was high (y = 1.74 + 0.84x; r = 0.85) while patients with multiple ASDs, the correlation was poor (y = 12.4 + 0.4x; r = 0.45). Transcatheter closure was performed successfully in 86%. The mean size of the Amplatzer device was 23 +/- 4.8 mm (range 4-32). The reference to choose the size of the device was the BSD in single defects and the 3D-TEE maximal diameter in multiple defects. CONCLUSION: Three-dimensional transesophageal echocardiography and transcatheter methods are two complementary techniques for the success of transcatheter ASDs closure.
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Abdel‐Massih et al. (2005) conducted a cross-sectional in Atrial septal defect (n=76). Three-dimensional transesophageal echocardiography (3D-TEE) vs. Balloon stretched diameter (BSD) was evaluated on Correlation of ASD size measurement between 3D-TEE and BSD (r = 0.8). Three-dimensional transesophageal echocardiography showed good correlation with balloon stretched diameter for measuring atrial septal defect size (r=0.8), but was poor for multiple defects (r=0.45).
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