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Improving the improvisational pelvic circumferential compression technique for open-book pelvic fractures using a
Paul Patrick Rega1, B Fink2, M Sexton3
1School of Population Health, College of Health and Human Services, University of Toledo, Toledo, Ohio, USA Paul.Rega@utoledo.edu.
An improvised windlass significantly improves pressure for open-book pelvic fracture reduction using a bedsheet. This method enhances fracture stabilization, especially for obese patients, regardless of rescuer strength.
Area of Science:
- Emergency Medicine
- Trauma Surgery
- Orthopedic Trauma
Background:
- Open-book pelvic fractures carry high mortality rates.
- Emergency management often requires pelvic circumferential compression devices.
- Commercial devices may be unavailable; bedsheets are an alternative but can be limited by patient or rescuer factors.
Purpose of the Study:
- To evaluate the effectiveness of an improvisational windlass (intravenous pole) in enhancing pelvic fracture reduction.
- To determine if an improvised device improves compression force compared to standard methods.
Main Methods:
- A study involving 28 healthcare students and residents used a METIman model.
- Participants applied a bedsheet for pelvic compression, first with maximum manual effort, then with an added intravenous pole as a windlass.
- Pressure measurements were recorded after each application method.
Main Results:
- The mean pressure increase with a bedsheet alone was 106.43 mm Hg.
- The mean pressure increase with the bedsheet and improvised windlass was 351.79 mm Hg.
- This difference was statistically significant (p < 0.001), with no correlation to participant physical characteristics.
Conclusions:
- An improvisational windlass significantly enhances the effectiveness of bedsheet pelvic circumferential compression.
- This technique improves fracture reduction capabilities, particularly beneficial for obese patients or when rescuer strength is limited.
- The improvised windlass offers a valuable, accessible tool for managing open-book pelvic fractures.
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