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. 2022 Aug 18;8(8):e10329.
doi: 10.1016/j.heliyon.2022.e10329. eCollection 2022 Aug.

Body physiological responses of city bus drivers subjected to noise and vibration exposure in working environment

Affiliations

Body physiological responses of city bus drivers subjected to noise and vibration exposure in working environment

Ramin Rahmani et al. Heliyon. .

Abstract

Background: The city bus drivers have critical roles in public transport and are occupationally exposed to different environmental stressors. This study aimed to investigate body physiological responses of city bus drivers subjected to noise and vibration exposure while crossing city routes.

Methods: This cross-sectional study was conducted on 103 city bus drivers working in the governmental transportation system in Hamadan city. The subjects' exposures to noise and body vibration were measured during driving activities. Their blood pressure (BP), as well as heart rate (HR), were measured before and after driving. Multivariate regressions (MLR) were employed to analyze the effect size of the stimulus on body physiological responses using SPSS 22.

Results: Exposure levels to noise, whole-body vibration (WBV), and hand-arm vibration among drivers were 79.50 ± 3.51dB, 0.620 ± 0.159 m/s2, and 0.438 ± 0.064 m/s2, respectively which were lower than the exposure limits. Heart rate as main physiological response before and after driving were 74.22 ± 4.11 and 79.23 ± 8.59 bpm, respectively. The developed MLR models statistically showed that noise exposure could only affect the HR (β = 0.193 and p < 0.001); while WBV exposure affected both BP (β = 0.360 and p < 0.001) and HR (β = 0.367 and p = 0.020). The statistical analysis represented that exposure to noise and vibration in the presence of other possible covariates have significant effects on body physiological responses.

Conclusion: The study empirically confirmed the possibility of body physiological changes influenced by physical stimulus during real driving activities. It is highly recommended that occupational health surveillance should continuously be implemented to maintain and promote the safety and health of drivers throughout their careers.

Keywords: Body physiological responses; Bus drivers; Human vibration; Noise.

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Conflict of interest statement

The authors declare no conflict of interest.

Figures

Figure 1
Figure 1
a) Pulse GALA X for measuring BP and HR; b) Svantek 104 for measuring noise exposure; c) Svantek 106A for measuring WBV and HAV.
Figure 2
Figure 2
Set up for measuring drivers' exposure to noise, WBV and HAV.
Figure 3
Figure 3
Bus drivers' exposure to noise, WBV, and HAV according to bus types and bus engine ages note: asterisk shows p < 0.01.
Figure 4
Figure 4
Distribution of bus drivers across different levels of job stress.
Figure 5
Figure 5
The predicted values compared with the measured values of blood pressure and heart rate.

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References

    1. Basner M., Babisch W., Davis A., Brink M., Clark C., Janssen S., et al. Auditory and non-auditory effects of noise on health. Lancet. 2014;383(9925):1325–1332. - PMC - PubMed
    1. Rahmani R., Aliabadi M., Golmohammadi R., Babamiri M., Farhadian M. Evaluation of cognitive performance of city bus drivers with respect to noise and vibration exposure. Acoust Aust. 2021;49(3):529–539.
    1. Nissenbaum M., Aramini J., Hanning C. Effects of industrial wind turbine noise on sleep and health. Noise Health. 2012;14(60):237–243. - PubMed
    1. Abbasi M., Yazdanirad S., Mehri A., Fallah Madvari R., Alizadeh A., Ghaljahi M., et al. Noise exposure and job stress – a structural equation model in textile industries. Arch. Acoust. Q. 2020;45(4):601–611.
    1. Abbasi A.M., Motamedzade M., Aliabadi M., Golmohammadi R., Tapak L. Study of the physiological and mental health effects caused by exposure to low-frequency noise in a simulated control room. Build. Acoust. 2018;25(3):233–248.

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