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Remote Presence Robotic Technology Reduces Need for Pediatric Interfacility Transportation from an Isolated Northern
Tanya Holt1, Nazmi Sari2, Gregory Hansen1
11 Division of Critical Care, Department of Pediatrics, College of Medicine, University of Saskatchewan , Saskatoon, Canada .
Insights
Remote presence robotic technology (RPRT) significantly reduced the need for interfacility transport for acutely ill children in remote areas. This technology also facilitated appropriate regionalization of care, improving access to specialized pediatric services.
Area of Science:
- Pediatric critical care
- Telemedicine
- Robotics in healthcare
Background:
- Access to specialized pediatric care for acutely ill children in isolated communities is a significant challenge.
- Remote presence robotic technology (RPRT) offers a potential solution to bridge this gap.
Purpose of the Study:
- To evaluate the effectiveness of RPRT in enhancing pediatric remote assessments.
- To determine RPRT's impact on expediting treatment initiation, refining triaging, and reducing transport needs.
Main Methods:
- A pilot prospective observational study was conducted in an isolated northern community.
- Atertiary center pediatric intensivist used RPRT to assess 38 acutely ill children considered for interfacility transport (IFT).
- Participants were triaged by the intensivist to either remain at the clinic or be transported, with propensity score-matched controls.
Main Results:
- Only 37% of RPRT-assessed children required transport, compared to 100% of controls (p < 0.0001).
- 43% of transported participants were regionalized to a nearby hospital, a significant improvement over controls (p = 0.0001).
- Children remaining at the clinic had shorter stays (<24h) compared to controls in tertiary care (4.9 days, p < 0.001).
Conclusions:
- RPRT effectively reduced the necessity for specialized pediatric interfacility transport.
- The technology enabled appropriate regionalization of care, optimizing resource utilization.
- Implementation of RPRT holds promise for improving healthcare access and reducing costs in remote settings.
Background:
Providing acutely ill children in isolated communities access to specialized care is challenging. This study aimed to evaluate remote presence robotic technology (RPRT) for enhancing pediatric remote assessments, expediting initiation of treatment, refining triaging, and reducing the need for transport.
Methods:
We conducted a pilot prospective observational study at a primary/urgent care clinic in an isolated northern community. Participants (n = 38) were acutely ill children <17 years presenting to the clinic, whom local healthcare professionals had considered for interfacility transportation (IFT). Participants were assessed and managed by a tertiary center pediatric intensivist through a remote presence robot. The intensivist triaged participants to either remain at the clinic or be transported to regional/tertiary care. Controls from a pre-existing local transport database were matched using propensity scoring. The primary outcome was the number of IFTs among participants versus controls.
Results:
Fourteen of 38 (37%) participants required transport, whereas all controls were transported (p < 0.0001). Six of 14 (43%) transported participants were triaged to a nearby regional hospital, while no controls were regionalized (p = 0.0001). All participants who remained at the clinic stayed <24 h, and were matched to controls who stayed 4.9 days in tertiary care (p < 0.001). There was no statistically significant difference in hospital length of stay between transported participants and controls (6.0 vs. 5.7 days).
Conclusions:
RPRT reduced the need for specialized pediatric IFT, while enabling regionalization when appropriate. This study may have implications for the broader implementation of RPRT, while reducing costs to the healthcare system.
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