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Published on: July 28, 2008
Electric fields in the human body due to electrostatic discharges
T W Dawson1, M A Stuchly, R Kavet
1Department of Electrical and Computer Engineering, University of Victoria, Victoria, Canada.
Electrostatic discharges (ESDs) can create strong electric fields in human tissues, potentially causing health effects. This study models these spark-discharge dosimetry effects in a human body, revealing kilovolt-per-meter fields in the lower arm.
Area of Science:
- Biophysics
- Computational Electromagnetics
- Environmental Health
Background:
- Electrostatic discharges (ESDs) are sparks from potential differences.
- ESDs are hypothesized to cause health issues, including childhood leukemia.
- Contact currents from ESDs may induce higher electric fields than power line frequencies.
Purpose of the Study:
- To model spark-discharge dosimetry in a realistic human adult model.
- To assess electric fields in specific human tissues resulting from ESDs.
- To investigate potential health implications of ESD exposure.
Main Methods:
- Utilized numerical modeling to compute ESD dosimetry.
- Applied the frequency-domain scalar potential finite difference method.
- Employed Fourier transform analysis for electric field assessment.
Main Results:
- Calculated representative spark-discharge dosimetry in a human model.
- Electric fields reached kilovolts per meter in lower arm tissues like subcutaneous fat, muscle, and bone marrow.
- Discharge pulses were short, approximately 100 nanoseconds.
Conclusions:
- ESDs can induce significant electric fields within human tissues.
- The findings support the hypothesis that ESDs may be linked to adverse health effects.
- Further research is warranted to understand the biological impact of these induced fields.
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