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Reliability of Manual Pulse Checks Versus Emerging Techniques in Pediatric Resuscitation: A Systematic Review
Mohammed Basher Ibrahim Alkhalifa1, Omar Abbas2, Nesreen Ahmed Taher Said Ahmed Khereldin3
1General Pediatrics, Neonatal Unit, Barnsley District General Hospital, South Yorkshire, GBR.
Insights
Manual pulse checks are unreliable for assessing circulation during pediatric cardiac arrest. Point-of-care ultrasound (POCUS) offers a more reliable and faster alternative, though further clinical trials are needed.
Area of Science:
- Pediatric Emergency Medicine
- Cardiology
- Diagnostic Imaging
Background:
- Accurate circulation assessment is vital in pediatric cardiac arrest.
- Current manual pulse checks have questionable reliability and can disrupt cardiopulmonary resuscitation (CPR).
- Point-of-care ultrasound (POCUS) presents a potential objective alternative.
Purpose of the Study:
- To systematically review evidence comparing manual pulse checks with emerging techniques for circulation assessment in pediatric resuscitation.
- To evaluate the reliability, accuracy, and speed of different assessment methods.
Main Methods:
- Systematic review following PRISMA 2020 guidelines.
- Searched PubMed, Web of Science, Scopus, and Embase without date restrictions.
- Included studies comparing manual pulse palpation with POCUS or auscultation in pediatric populations; assessed risk of bias using QUADAS-2.
Main Results:
- Six studies were included, revealing significant limitations in manual pulse checks.
- POCUS demonstrated superior reliability and faster decision-making compared to manual checks.
- POCUS provided additional diagnostic information, such as confirming cardiac activity.
Conclusions:
- Manual pulse palpation is an unreliable method for assessing circulation in pediatric cardiac arrest.
- POCUS shows promise as a more accurate and efficient alternative, potentially improving resuscitation quality.
- Further prospective trials in real-world settings are necessary to confirm POCUS's impact on patient outcomes.
Abstract:
The accurate and rapid assessment of circulation is critical during pediatric cardiac arrest. Current guidelines recommend manual pulse checks, yet concerns remain regarding their reliability, as delays and inaccuracies may lead to inappropriate interruptions of cardiopulmonary resuscitation (CPR). Emerging techniques, such as point-of-care ultrasound (POCUS), offer potential objective alternatives. This systematic review aimed to synthesize the available evidence on the reliability of manual pulse checks compared with emerging techniques in pediatric resuscitation. Following Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) 2020 guidelines, a systematic search of PubMed, Web of Science, Scopus, and Embase was conducted without date restrictions. Eligible studies compared manual pulse palpation with techniques such as POCUS or auscultation in pediatric populations, either in simulated or clinical settings. Data on study characteristics, diagnostic accuracy, time to decision, and clinical outcomes were extracted, and the risk of bias was assessed using the Quality Assessment of Diagnostic Accuracy Studies - Version 2 (QUADAS-2) tool. A narrative synthesis was performed due to heterogeneity among studies. Six studies met the inclusion criteria. Overall, the evidence indicated notable limitations of manual pulse checks, while POCUS demonstrated greater reliability and faster decision-making, in addition to providing supplementary diagnostic information such as confirmation of cardiac activity. However, most of the available studies were based on simulations or small case series, underscoring the need for larger prospective trials. Manual pulse palpation appears to be an unreliable method for assessing circulation in pediatric cardiac arrest. POCUS shows promise as a more accurate and efficient alternative, with potential to improve the quality of resuscitation. Further research in real-world clinical settings is warranted to establish its impact on survival and neurological outcomes.
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