Biological Hazards
Medical radiation technologists (MRTs) face a variety of biological hazards in their daily work, primarily due to close and frequent contact with patients. These hazards are consistent across subcategories of MRTs, but vary in intensity and exposure routes depending on the specific tasks involved. For example, nuclear medicine technologists frequently handle radioactive blood and urine samples, increasing their risk of exposure to both infectious agents and radiopharmaceuticals. Similarly, radiation therapists and radiologic technologists can be exposed to infectious patients and bodily fluids during procedures, patient positioning, and equipment handling.
A multi-tiered infection control approach is essential. Administrative controls include routine precautions, hand hygiene protocols, environmental cleaning, and comprehensive sharps safety programs. In nuclear medicine, technologists may handle infectious material and radioactive samples, where infection control practices must integrate radiation safety protocols, including proper disposal of radioactive waste and the use of specialized personal protective equipment (PPE).
Across all MRT roles, the proper use of personal protective equipment (PPE) is vital. Gloves, gowns, face shields, and masks (including N95 respirators when appropriate) must be readily available and properly used during any activity that risks exposure to bodily fluids or infectious droplets. Finally, training and education programs are essential to ensure that all staff remain vigilant and up to date on infection control techniques, spill management procedures, and post-exposure protocols.
Chemical Hazards
Healthcare settings, such as those involving advanced diagnostic and therapeutic modalities, like medical imaging and radiation oncology, can require the use of a diverse range of chemicals. MRTs work in clinical environments where good hygiene practices are essential. Personnel routinely use specialized cleaning and disinfecting agents to sterilize imaging equipment, patient contact surfaces, and workspaces. MRTs must also work with reagents for preparing radiopharmaceuticals, as well as other solvents used for equipment maintenance. Exposure to these substances can present occupational health risks, causing dermal irritation, chemical burns, respiratory symptoms, and other chronic effects depending on the chemicals used, their properties, the exposure duration, and the route of exposure.
Ergonomic Hazards
Musculoskeletal disorders (MSDs) pose a risk for healthcare professionals, particularly those involved in patient handling and operating medical equipment. These injuries often result from repetitive tasks, awkward postures, lifting and transferring patients, and prolonged standing. Common areas affected include the back, neck, shoulders, and wrists. The nature of the work performed by medical radiation technologists can require frequent patient transfers and manipulating heavy imaging and treatment equipment, which heightens the risk of developing musculoskeletal disorders (MSDs).
To mitigate the risk of MSDs, the following control measures should be considered:
Physical Hazards
Noise
MRI machines can produce high levels of acoustic noise during scans that may exceed occupational noise exposure limits. To protect against hearing damage, it is essential to conduct noise assessments and follow established hearing protection protocols to protect workers and patients.
Radiation Emitting Devices
Medical radiation technologists work with radiation-emitting equipment. Although radiation doses from a single procedure are generally low, the cumulative effect over many years can increase the risk of long-term health issues to workers. To protect themselves, MRTs follow strict safety protocols that minimize time near radiation sources, maximize distance, and use appropriate shielding. Additionally, special attention is given to pregnant MRTs, whose fetuses are more sensitive to radiation. Upon declaration of pregnancy, workplaces must ensure that fetal exposure remains below the established threshold to prevent potential developmental harm. Workers can request protective reassignment to protect themselves and their fetus.
Health Canada has produced a number of Safety Codes for X-ray equipment. Safety Code 35 covers the Safety Procedures for the Installation, Use and Control of X-ray Equipment in Large Medical Radiological Facilities (2024)
Radiopharmaceuticals
Nuclear medicine technologists (NMTs) are a specialized subgroup of MRTs who face additional risks because they work directly with unsealed radioactive materials called radiopharmaceuticals. These substances emit radiation and are administered to patients for diagnosis or treatment. NMTs are exposed to radiation hazards during the preparation, dispensing, administration, and disposal of these materials, as well as during imaging procedures. Due to the potential for both external exposure and internal contamination through inhalation or skin contact, NMTs must rigorously apply safety measures and use personal protective equipment to minimize their radiation exposure.
Psychological Hazards
MRTs can be exposed to psychological and emotional hazards due to:
To address these psychological and emotional risks, several strategies are recommended.
Violence and Harassment Hazards
Healthcare professionals are at risk of physical violence, verbal abuse, and personal and sexual harassment from both the public and co-workers. Factors that should be considered include:
To reduce the risks associated with workplace violence and harassment:
Safety Hazards
Magnetic Resonance Imaging (MRI) technologists also face unique occupational hazards related to the strong magnetic fields generated by MRI machines. MRIs use powerful magnets and radiofrequency waves to produce images of the body. Metal objects with ferromagnetic properties are a serious projectile hazard in MRI environments because they are strongly attracted to the scanner’s powerful magnetic field and present the greatest danger to patients and staff. Objects like oxygen cylinders, wheelchairs, and stretchers can be pulled rapidly toward the MRI machine, risking serious injury or death to those in its path.
Preventing incidents in MRI environments requires strict adherence to established safety measures, staff training, patient and staff screening, and controlled access to the MRI environment through designated MRI safety zones. Safety zones increase in restrictions and magnetic risk from Zone 1 (open to the public) to Zone 4 (the MRI scanner room with the strongest magnetic field and the highest risk of projectile incidents).
- ergonomic Proper body mechanics, emphasizing correct lifting and transfer techniques such as keeping loads close to the body and bending at the knees.
- ergonomic Utilizing ergonomic equipment, including mechanical lifts, transfer boards, and adjustable-height tables, to reduce the need for manual lifting and awkward movements.
- ergonomic Workstation design should prioritize ergonomic principles to promote neutral postures and minimize strain.
- ergonomic Education and training programs on proper body mechanics and ergonomic principles are fundamental to fostering a safer work environment.
- general The demanding nature of their work environment
- general Caring for patients with serious illnesses
- general The pressure of maintaining patient safety and the responsibility of administering radioactive doses accurately
- psychosocial Long hours, shift work, and night shifts add further strain and disrupt the circadian rhythm
- general The need to keep pace with and adapt to changes in the medical technology they use, and the need for ongoing training required to stay current
- general Technical problems with medical equipment and how work is organized can impact staff and contribute to emotional strain
- general Fostering a supportive workplace culture where technologists feel supported
- psychosocial Offering stress management programs and mental health support services, such as counselling and resilience training, is helpful in promoting emotional well-being
- general Optimizing work schedules to allow sufficient rest between shifts and minimizing night work can help maintain circadian health
- psychosocial Ensuring sufficient personnel to manage the workload and reduce stress
- general Implementing organizational-level interventions, such as investing in user-friendly systems, or redesigning workflows
- general Taking organizational action to resolve the source of underlying problems
- general Being a younger worker or a worker new to the profession with limited experience
- general Working night shifts
- chemical Working with intoxicated patients or patients experiencing mental health conditions
- psychosocial Establish violence and harassment policies and procedures for staff in accordance with legislative requirements.
- psychosocial Ensure policies and procedures address how the employer will address and protect workers from the public and patients who engage in violence or harassment
- general Train employees
- general Enhance physical security (e.g., provision of security services at main entrances, surveillance systems, restricted public access for staff only)
- general Improve patient and staff management (e.g., scheduling and communication).
- general Conduct routine staff surveys and increase policy awareness