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Impact of web-based clinical practice guidelines on paediatric fracture clinics
Mark W Camp1,2, James R Barnes3, Mohita Damany4
1Department of Surgery, University of Toronto, Toronto, Ontario, Canada.
Insights
Web-based pediatric fracture pathways reduced clinic visits by 12% and radiology visits by 24% for upper extremity fractures. This standardization improved resource utilization in pediatric orthopaedic care.
Area of Science:
- Orthopaedic Surgery
- Digital Health Implementation
- Healthcare Management
Background:
- Standardizing management of uncomplicated pediatric fractures is crucial to reduce overtreatment.
- Web-based fracture pathways were developed to guide care for pediatric fractures.
- Tertiary-care centers face challenges in managing clinic volume for pediatric fractures.
Purpose of the Study:
- To evaluate the impact of web-based pediatric fracture pathways on clinic volume.
- To assess changes in resource utilization after pathway implementation.
- To determine the effectiveness of digital tools in managing pediatric orthopaedic care.
Main Methods:
- A retrospective review compared clinic data from two 12-week periods before and after pathway implementation.
- Data included emergency department visits, fracture clinic visits, and radiology visits.
- Specific focus was on upper extremity fractures managed with available web-based pathways.
Main Results:
- Fracture clinic visits for upper extremity fractures decreased by 12% (954 to 842 visits).
- Radiology department visits for upper extremity fractures decreased by 24% (714 to 544 visits).
- The study observed a reduction in overall clinic resource utilization.
Conclusions:
- Web-based fracture pathways for pediatric upper extremity fractures are associated with reduced clinic resource utilization.
- Standardized digital pathways can effectively decrease patient visits in tertiary pediatric orthopaedic clinics.
- Implementation of these pathways contributes to more efficient healthcare delivery in pediatric orthopaedics.
Background:
In an effort to standardize management and reduce over-treatment of uncomplicated paediatric fractures, the Victorian Pediatric Orthopaedic Network and the Royal Children's Hospital, Melbourne, created publically available web-based paediatric fracture pathways. The aim of this study was to determine the impact of web-based fracture pathways on the clinic volume at a tertiary-care paediatric fracture clinic.
Methods:
A comparative retrospective review was performed at a large, urban, tertiary-care children's hospital. Fracture clinic data from two 12-week periods before and after implementation of the fracture pathways were compared. For each study period, data collected included: total number of emergency department visits, number of fracture clinic visits, number of fracture clinic visits for patients that presented with upper extremity fractures for which web-based fracture pathways were available, number of radiology department visits for X-rays, and number of fracture clinic visits for patients requiring orthopaedic intervention in the operating room (closed or open reductions).
Results:
The number of fracture clinic visits for patients with upper extremity fractures decreased 12% post-pathway implementation, from 954 visits to 842 visits. The number of radiology department visits for patients with upper extremity fractures decreased 24% post-pathway implementation, from 714 to 544 visits.
Conclusion:
The implementation of web-based fracture pathways for upper extremity paediatric fractures was associated with a decrease in clinic resource utilization at a tertiary-care children's hospital.
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