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Cardiorespiratory sleep studies at home: experience in research and clinical cohorts
Ruth N Kingshott1, Florian Gahleitner2, Heather E Elphick1
1Sheffield Children's NHS Foundation Trust, Sheffield, UK.
Insights
Home cardiorespiratory polygraphy is a successful diagnostic tool for childhood sleep-disordered breathing. Most parents found the equipment easy to use and were willing to repeat the home diagnostics.
Area of Science:
- Pediatric Pulmonology
- Sleep Medicine
- Diagnostic Technology
Background:
- Sleep-disordered breathing (SDB) is a common condition in children.
- Accurate diagnosis is crucial for effective management.
- Home-based diagnostics offer a potential alternative to in-lab studies.
Purpose of the Study:
- To assess the success rates of home cardiorespiratory polygraphy in children.
- To evaluate parental perspectives on using home diagnostic equipment.
- To determine the feasibility of home diagnostics for SDB investigation in pediatric populations.
Main Methods:
- A prospective observational study was conducted across three children's hospitals.
- Home cardiorespiratory polygraphy data were collected from 194 research participants and 61 clinical patients.
- Key outcome measures included successful acquisition of artifact-free data and parental feedback on equipment usability.
Main Results:
- Successful home cardiorespiratory polygraphy at the first attempt was achieved in 74% of research participants and 82% of clinical patients.
- The median artifact-free sleep time for successful studies was 515 minutes for research and 442 minutes for clinical cases.
- A high percentage of parents (84% research, 87% clinical) were willing to repeat home diagnostics, with most finding the equipment easy to use.
Conclusions:
- Home cardiorespiratory polygraphy is an acceptable and feasible method for diagnosing sleep-disordered breathing in children.
- Parental acceptance and willingness to use the equipment support its role in pediatric sleep diagnostics.
- This approach can facilitate SDB assessment in a home environment, potentially improving accessibility and patient comfort.
Objective:
To evaluate the success rates of home cardiorespiratory polygraphy in children under investigation for sleep-disordered breathing and parent perspectives on equipment use at home.
Design:
Prospective observational study.
Setting:
Sheffield, Evelina London and Southampton Children's Hospitals.
Patients:
Data are reported for 194 research participants with Down syndrome, aged 0.5-5.9 years across the three centres and 61 clinical patients aged 0.4-19.5 years from one centre, all of whom had home cardiorespiratory polygraphy including respiratory movements, nasal pressure flow, pulse oximetry, body position and motion.
Main Outcome Measures:
Percentage of home cardiorespiratory studies successfully acquiring ≥4 hours of artefact-free data at the first attempt. Parental report of ease of use of equipment and preparedness to repeat home diagnostics in the future.
Results:
143/194 (74%; 95% CI 67% to 79%) of research participants and 50/61 (82%; 95% CI 71% to 90%) of clinical patients had successful home cardiorespiratory polygraphy at the first attempt. Some children required multiple attempts to achieve a successful study. Overall, this equated to 1.3 studies per research participant and 1.2 studies per clinical child. The median artefact-free sleep time for successful research studies was 515 min (range 261-673) and for clinical studies 442 min (range 291-583). 84% of research and 87% of clinical parents expressed willingness to repeat home cardiorespiratory polygraphy in the future. 67% of research parents found the equipment 'easy or okay' to use, while 64% of clinical parents reported it as 'easy' or 'very easy'.
Conclusions:
Home cardiorespiratory polygraphy offers an acceptable approach to the assessment of sleep-disordered breathing in children.
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