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Exploring the utility of robots in exposure studies
Elisabeth Feld-Cook1, Rahul Shome2, Rosemary T Zaleski3
1Environmental and Occupational Health Sciences Institute, Rutgers, The State University of New Jersey, Piscataway, NJ, 08854, USA.
Journal of Exposure Science & Environmental Epidemiology
|November 21, 2019
Summary
Robots can generate reliable exposure data for industrial hygienists, offering an efficient alternative to human subjects. This proof-of-concept study shows robots performing tasks like painting can yield valid measurements for health science research.
Area of Science:
- Occupational Health and Safety
- Robotics in Research
- Exposure Science
Background:
- Acquiring valid, reliable quantitative exposure data presents a significant challenge for industrial hygienists and exposure scientists.
- Current methods often involve human subjects, necessitating recruitment, training, and ethical reviews, which can be time-consuming and complex.
Purpose of the Study:
- To evaluate the potential of a robotic platform as an alternative to human subjects for generating quantitative exposure data.
- To demonstrate a proof-of-concept for using robots in exposure studies to collect reliable measurements.
Main Methods:
- A humanoid robot was programmed to perform a simulated industrial task (painting drywall).
- Volatile organic compounds (VOCs) were measured in the air during the robot's task.
- Measured air concentrations were compared against estimates from advanced exposure models.
Main Results:
- The air concentrations of VOCs measured during the robotic task generally agreed with the model estimates.
- The robotic approach demonstrated feasibility for data collection without human involvement.
Conclusions:
- Robotic platforms show promise as a viable methodology for generating exposure measurements relevant to human activities.
- This approach offers advantages in efficiency, repeatability, and ethical considerations compared to using human subjects in exposure studies.

