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Computer-aided auscultation of murmurs in children: evaluation of commercially available software
Cecilia Lee1, Kathryn N Rankin2, Kevin J Zuo1
11Stollery Children's Hospital,Edmonton,Alberta,Canada.
Insights
Computer-aided auscultation (CardioscanTM) shows high sensitivity for detecting pediatric heart murmurs when combined with an electrocardiogram, but poor specificity. Further evaluation of this technology is needed for clinical application.
Area of Science:
- Pediatric Cardiology
- Medical Technology
- Diagnostic Tools
Background:
- Heart murmurs in children often require differentiation between innocent and pathological causes.
- Primary care physicians may lack the expertise for accurate auscultation.
- Computer-aided auscultation tools aim to assist in identifying children needing specialist referral.
Purpose of the Study:
- To evaluate the effectiveness of computer-aided auscultation (CardioscanTM) in identifying pediatric cardiac pathology.
- To determine if CardioscanTM can accurately identify children requiring referral to a cardiologist.
Main Methods:
- 126 children (0-17 years) with murmurs were enrolled in a tertiary cardiology clinic.
- CardioscanTM was used for auscultation, with echocardiography as the reference standard.
- Sensitivity and specificity of CardioscanTM for detecting pathological murmurs were calculated.
Main Results:
- CardioscanTM demonstrated a sensitivity of 83.9% and specificity of 30.3% for identifying cardiac pathology.
- Sensitivity improved to 93.5% when CardioscanTM results were combined with an abnormal electrocardiogram.
- No hemodynamically significant lesions were missed with the combined approach.
Conclusions:
- Computer-aided auscultation (CardioscanTM) combined with electrocardiogram shows high sensitivity for pediatric cardiac pathology.
- The specificity of CardioscanTM remains a limitation requiring further technological advancement.
- Continued re-evaluation of computer-aided auscultation is necessary as the technology evolves.
Background:
Heart murmurs are common in children and may represent congenital or acquired cardiac pathology. Auscultation is challenging and many primary-care physicians lack the skill to differentiate innocent from pathologic murmurs. We sought to determine whether computer-aided auscultation (CardioscanTM) identifies which children require referral to a cardiologist.
Methods:
We consecutively enrolled children aged between 0 and 17 years with a murmur, innocent or pathologic, being evaluated in a tertiary-care cardiology clinic. Children being evaluated for the first time and patients with known cardiac pathology were eligible. We excluded children who had undergone cardiac surgery previously or were unable to sit still for auscultation. CardioscanTM auscultation was performed in a quiet room with the subject in the supine position. The sensitivity and specificity of a potentially pathologic murmur designation by CardioscanTM - that is, requiring referral - was determined using echocardiography as the reference standard.
Results:
We enrolled 126 subjects (44% female) with a median age of 1.7 years, with 93 (74%) having cardiac pathology. The sensitivity and specificity of a potentially pathologic murmur determination by CardioscanTM for identification of cardiac pathology were 83.9 and 30.3%, respectively, versus 75.0 and 71.4%, respectively, when limited to subjects with a heart rate of 50-120 beats per minute. The combination of a CardioscanTM potentially pathologic murmur designation or an abnormal electrocardiogram improved sensitivity to 93.5%, with no haemodynamically significant lesions missed.
Conclusions:
Sensitivity of CardioscanTM when interpreted in conjunction with an abnormal electrocardiogram was high, although specificity was poor. Re-evaluation of computer-aided auscultation will remain necessary as advances in this technology become available.
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