U.S. flag An official website of the United States government.
Official websites use .gov

A .gov website belongs to an official government organization in the United States.

Secure .gov websites use HTTPS

A lock ( ) or https:// means you've safely connected to the .gov website. Share sensitive information only on official, secure websites.

i

Assessing the Feasibility of Wearable Devices for Physiological Monitoring and Heat Risk Prediction in Outdoor Agricultural Workers

Peer Reviewed
File Language:
English


Details

  • Journal Article:
    American Journal of Industrial Medicine
  • Personal Author:
  • Description:
    Background: Outdoor agricultural workers experience significant heat exposure, yet few studies have evaluated whether wearable sensors can reliably measure continuous physiological responses in real field conditions. This pilot study examined the feasibility and predictive utility of core temperature, hydration, heart rate, and movement data collected from commercially available wearables. Methods: Thirty farmworkers in eastern North Carolina wore three devices, the CALERA core temperature sensor, the Nix Hydration Biosensor, and the Garmin Vivoactive smartwatch, during one July work shift. 1 min, physiological and environmental data were aligned to compute the modified Physiological Strain Index, mPSI. Device reliability, physiological responses, and heat exposure were summarized. Multi-linear regression and machine learning, Random Forest (RF) and Gradient Boosting Regression (GBR), models were evaluated to predict mPSI, using raw and smoothed predictors to estimate mPSI. Results: CALERA retrieved 100 percent of the data, Garmin retrieved 97 percent, and Nix retrieved 80 percent. WBGT remained consistently high, approximately 28 to 29 degrees Celsius, and 12.6 percent of core temperature measurements exceeded 38 degrees Celsius. mPSI ranged from minimal to high heat strain, with 8.3 percent of observations at or above 5. Heart rate showed the strongest association with mPSI. The RF model using 60-min moving averages achieved the highest predictive accuracy with an R2 of 0.96 and a root mean squared error of 0.25. Wearables captured meaningful physiological patterns that corresponded with environmental heat exposure, and WBGT-based risk levels consistently overestimated heat strain relative to mPSI. Conclusion: Multi-sensor wearable systems are feasible for continuous heat strain monitoring and can support accurate prediction of heat-related risk among agricultural workers. This study is the first to evaluate the CALERA, Nix, and Garmin devices combined for heat strain monitoring in outdoor agricultural workers. By combining all three wearables in a field-based feasibility assessment, it addresses a key gap in validating consumer-grade technology for occupational safety in this high-risk workforce. The findings of the study support the use of wearable devices for real-time heat strain alerts, individualized hydration and work-rest guidance, and early warning systems to help prevent heat-related illness in physically demanding outdoor occupations. Description provided by NIOSH
  • Subjects:
  • Keywords:
  • ISSN:
    0271-3586
  • Document Type:
  • Funding:
  • Genre:
  • Place as Subject:
  • CIO:
  • Topic:
  • Location:
  • Pages in Document:
    23 pdf pages
  • NIOSHTIC Number:
    nn:20071765
  • Citation:
    Am J Ind Med 2026 Jun; :Epub ahead of print
  • Federal Fiscal Year:
    2026
  • NORA Priority Area:
  • Performing Organization:
    East Carolina University
  • Peer Reviewed:
    True
  • Start Date:
    2024/09/01
  • End Date:
    2027/08/31
  • Download URL:
  • File Type:
    Filetype[PDF - 5.70 MB]
  • Collection(s):
  • Main Document Checksum:
    urn:sha-512:71aac8b4049271b09e06a41e7aef65ee8626902a8539c75db7e25ed8cb95e683ff6cebd221f6df8b08d47cd97ea5dc72c34974f7aa9df2cd2701d66ab9a8c650
File Language:
English
ON THIS PAGE
 Was this page helpful?
 Found an issue?
Send us an email at:
CDC STACKS serves as an archival repository of CDC-published products including scientific findings, journal articles, guidelines, recommendations, or other public health information authored or co-authored by CDC or funded partners.

As a repository, CDC STACKS retains documents in their original published format to ensure public access to scientific information.