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Executive summary of respiratory indications for polysomnography in children: an evidence-based review
Merrill S Wise1, Cynthia D Nichols, Madeleine M Grigg-Damberger
1Methodist Healthcare Sleep Disorders Center, Memphis, TN, USA.
Insights
Polysomnography (PSG) is a valid and reliable tool for diagnosing pediatric sleep breathing disorders. Integrating PSG findings with clinical evaluation by a sleep specialist is crucial for accurate diagnosis and treatment.
Area of Science:
- Pediatric Sleep Medicine
- Respiratory Physiology
- Diagnostic Test Evaluation
Background:
- Sleep related breathing disorders are common in children.
- Accurate diagnosis is essential for effective management and preventing complications.
- Polysomnography is a key diagnostic tool, but its utility in children requires systematic evaluation.
Purpose of the Study:
- To systematically review the literature on the validity, reliability, and clinical utility of polysomnography for diagnosing breathing during sleep in children.
- To inform practice parameters for respiratory indications of polysomnography in pediatric populations.
Main Methods:
- A systematic review of 243 evidentiary papers was conducted by a task force of content experts.
- Evidence was graded using a standardized system.
- The review analyzed the operating characteristics, strengths, and limitations of polysomnography in children.
Main Results:
- Polysomnography demonstrates strong validity (face, content, convergent, test-retest) and moderate-to-strong reliability (test-retest, interscorer) in children.
- Clinical utility is particularly notable in children with suspected sleep related breathing disorders, obesity, metabolic syndrome, neurological/developmental disorders, and craniofacial syndromes.
- Preoperative polysomnography aids in predicting perioperative complications and persistence of obstructive sleep apnea after adenotonsillectomy.
Conclusions:
- Pediatric polysomnography is a valid, reliable, and clinically useful diagnostic tool, comparable to other routine procedures.
- The gold standard for diagnosing pediatric sleep breathing disorders involves skillful integration of clinical and polysomnographic findings by a sleep specialist.
- Future advancements will enhance data collection and analysis, but the core diagnostic challenge remains integrating polysomnography with clinical evaluation.
Objective:
This comprehensive, evidence-based review provides a systematic analysis of the literature regarding the validity, reliability, and clinical utility of polysomnography for characterizing breathing during sleep in children. Findings serve as the foundation of practice parameters regarding respiratory indications for polysomnography in children.
Methods:
A task force of content experts performed a systematic review of the relevant literature and graded the evidence using a standardized grading system. Two hundred forty-three evidentiary papers were reviewed, summarized, and graded. The analysis addressed the operating characteristics of polysomnography as a diagnostic procedure in children and identified strengths and limitations of polysomnography for evaluation of respiratory function during sleep.
Results:
The analysis documents strong face validity and content validity, moderately strong convergent validity when comparing respiratory findings with a variety of relevant independent measures, moderate-to-strong test-retest validity, and limited data supporting discriminant validity for characterizing breathing during sleep in children. The analysis documents moderate-to-strong test-retest reliability and interscorer reliability based on limited data. The data indicate particularly strong clinical utility in children with suspected sleep related breathing disorders and obesity, evolving metabolic syndrome, neurological, neurodevelopmental, or genetic disorders, and children with craniofacial syndromes. Specific consideration was given to clinical utility of polysomnography prior to adenotonsillectomy (AT) for confirmation of obstructive sleep apnea syndrome. The most relevant findings include: (1) recognition that clinical history and examination are often poor predictors of respiratory polygraphic findings, (2) preoperative polysomnography is helpful in predicting risk for perioperative complications, and (3) preoperative polysomnography is often helpful in predicting persistence of obstructive sleep apnea syndrome in patients after AT. No prospective studies were identified that address whether clinical outcome following AT for treatment of obstructive sleep apnea is improved in association with routine performance of polysomnography before surgery in otherwise healthy children. A small group of papers confirm the clinical utility of polysomnography for initiation and titration of positive airway pressure support.
Conclusions:
Pediatric polysomnography shows validity, reliability, and clinical utility that is commensurate with most other routinely employed diagnostic clinical tools or procedures. Findings indicate that the "gold standard" for diagnosis of sleep related breathing disorders in children is not polysomnography alone, but rather the skillful integration of clinical and polygraphic findings by a knowledgeable sleep specialist. Future developments will provide more sophisticated methods for data collection and analysis, but integration of polysomnographic findings with the clinical evaluation will represent the fundamental diagnostic challenge for the sleep specialist.
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