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Safety Precautions and Operating Procedures in an ABSL-4 Laboratory: 3. Aerobiology
Published on: October 3, 2016
Visualization of Airborne Particles as a Risk for Microbial Contamination in Orthopedic Surgery
Hironobu Koseki1, Shinya Sunagawa1,2, Chieko Imai3
1Departments of Health Sciences, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki, Japan.
Abstract:
Background: The operating theater is recognized to involve a high frequency of occupational blood and body fluid contacts. Objectives: This study aimed to visualize the production of blood and body fluid airborne particles by surgical procedures and to investigate risks of microbial contamination of the conjunctival membranes of surgical staff during orthopedic operations. Methods: Two physicians simulated total knee arthroplasty (TKA) and total hip arthroplasty (THA) in a bio-clean theater using model bones. The generation and behaviors of airborne particles were filmed using a fine particle visualization system, and numbers of airborne particles per 2.83 L of air were counted at the height of the operating and instrument tables. Each action was repeated five times, and particle counts were evaluated statistically. Results: Numerous airborne particles were dispersed to higher and wider areas while "cutting bones in TKA" and "striking and driving the cup component on the pelvic bone in THA" compared to other surgical procedures. The highest particle counts were detected while "cutting bones in TKA" under unidirectional laminar air flow. Discussion: These results provide a clearer image of the dispersion and distribution of airborne particles and identified higher-risk surgical procedures for microbial contamination of the conjunctival membranes. Surgical staff including surgeons, nurses, anesthesiologists, and visitors, should pay attention to and take measures against occupational infection particularly in high-risk surgical situations.
Insights
Surgical procedures generate airborne particles, increasing infection risk for staff. "Cutting bones" in total knee arthroplasty (TKA) disperses the most particles, highlighting high-risk situations for eye contamination.
Area of Science:
- Surgical Safety
- Infection Control
- Occupational Health
Background:
- Operating theaters present frequent occupational exposure to blood and body fluids.
- Surgical staff face risks of microbial contamination during procedures.
Purpose of the Study:
- To visualize airborne particle generation during orthopedic surgeries.
- To assess microbial contamination risks to the conjunctival membranes of surgical staff.
Main Methods:
- Simulated total knee arthroplasty (TKA) and total hip arthroplasty (THA) using model bones.
- Employed a fine particle visualization system to film particle behavior.
- Quantified airborne particles at operating and instrument table heights.
Main Results:
- Significant airborne particle dispersion occurred during bone cutting in TKA and cup insertion in THA.
- Highest particle counts were observed during bone cutting in TKA under unidirectional laminar airflow.
- Particle counts were statistically evaluated after repeated trials.
Conclusions:
- Identified specific surgical actions that generate high levels of airborne particles.
- Highlighted high-risk procedures for conjunctival membrane microbial contamination.
- Emphasized the need for occupational infection precautions for all surgical staff.
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