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The Telemedicine-Based Pediatric Examination of the Neck and Upper Limbs: A Narrative Review
Virginie Boisvert-Plante1, Constantinos Dean Noutsios1, Jordi Perez2,3
1Faculty of Medicine, McGill University, Montreal, QC, Canada.
Insights
Telemedicine enables reliable pediatric musculoskeletal examinations of the neck and upper limbs, with high diagnostic agreement. Smartphone apps for range of motion also show promise for remote care.
Area of Science:
- Pediatric musculoskeletal examination
- Telemedicine in healthcare
- Clinical assessment methods
Background:
- The COVID-19 pandemic accelerated telemedicine adoption, generating extensive literature on its clinical applications.
- Telemedicine's role in pediatric musculoskeletal assessments remains an area of active research and development.
- Existing literature often focuses on adult populations, necessitating adaptation for pediatric care.
Purpose of the Study:
- To review and summarize the current literature on telemedicine for pediatric musculoskeletal examinations of the neck and upper limbs (ages 3-18).
- To describe how standard examination components can be adapted for virtual pediatric consultations.
- To assess the feasibility, validity, and reliability of remote pediatric musculoskeletal assessments.
Main Methods:
- A literature search was conducted on PubMed and ScienceDirect databases for articles published between January 2015 and August 2021.
- Keywords and nested searches were used to identify relevant studies on telemedicine and pediatric musculoskeletal exams.
- The review synthesized findings on examination components, diagnostic accuracy, and reliability of remote assessments.
Main Results:
- Most examination components, excluding the shoulder, demonstrated feasibility, validity, and reliability for remote pediatric assessments.
- Virtual diagnoses and management decisions showed high agreement with in-person evaluations.
- Smartphone applications for measuring joint range of motion exhibited high reliability and validity.
Conclusions:
- Telemedicine is a feasible and reliable tool for pediatric musculoskeletal examinations of the neck and upper limbs.
- While generally effective, some pediatric providers may find information gathering challenging in telemedicine settings.
- This review provides a foundation for structured pediatric telemedicine exams, aiming to boost physician confidence in virtual care.
Abstract:
With the COVID-19 pandemic hastening the adoption of telemedicine into clinical practice, it has also prompted an abundance of new literature highlighting its capabilities and limitations. The purpose of this review is to summarize the current state of the literature on telemedicine applied in the context of a musculoskeletal examination of the neck and upper limbs for children 3 to 18 years old. The PubMed and ScienceDirect databases were searched for relevant articles from January 2015 to August 2021 using a combination of keywords and nested searches. General examination components including inspection, guided self-palpation, range of motion, sensory and motor examination, as well as special testing are described. Although the literature is focused mainly on adult populations, we describe how each component of the exam can be reliably incorporated into a virtual appointment specific to pediatric patients. Caregivers are generally needed for most consultations, but certain maneuvers can be self-performed by older children and adolescents alone. There is general feasibility, validity, and substantial reliability in performing most examination components of the upper limbs remotely, except for the shoulder exam. Compared to those made in person, clinical diagnoses established virtually were found to be either the same or similar in most cases, and management decisions also had high agreement. Despite this, there is evidence that some pediatric providers may not be able to collect all the information needed from a telemedicine visit to make a complete clinical assessment. Lastly, currently available smartphone applications measuring joint range of motion were found to have high reliability and validity. This narrative review not only establishes a foundation for a structured pediatric musculoskeletal examination, but also aims to increase physicians' confidence in incorporating telemedicine into their standard of care.
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