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Zenon Sienkiewicz

Publications and source records attributed to Zenon Sienkiewicz.

3 recordsLinked to original sources

Rapporteur report: Roundup, discussion and recommendations.

There is a relative paucity of recent information regarding the long-term health effects associated with exposure to ultrasound, and to infrasound and low-frequency noise (LFN). For ultrasound, further epidemiological studies are recommended, and priority should be given to studies investigating the effects of handedness and to studies assessing possible subtle effects on brain function. These studies should reflect contemporary practises in diagnostic ultrasound and have sufficiently long follow-up periods to examine the possibility of effects into late adolescence or beyond. In the absence of a non-exposed control group, it would be advisable to make comparisons between a highly exposed group with a less exposed group, and to compare groups exposed at differing gestational stages. The effects associated with ultrasound contrast agents should also be studied, and the appropriateness of the thermal index (TI) and mechanical index (MI) should be reviewed. It is recommended that animal models should be used to investigate the effects of exposure at differing gestational ages on development, and modern cellular and molecular techniques used to investigate potential mechanisms of interaction. Although explicit morphological changes have been reported following occupational and experimental exposures to infrasound and low LFN, it was recommended that a thorough review of the relevant biological and health effects literature was necessary before specific proposals could be made. Uncertainties about the characterisation of these low frequencies also indicated the need to develop appropriate measurement techniques and protocols.

Animals↗

Neurobehavioural effects of electromagnetic fields.

Very few laboratory studies in children have explored the effects of exposure to low level electromagnetic fields (EMFs) on neurobehavioural function. Studies investigating effect on neurotransmitters, cognitive function and brain activity in adults and animals indicate that acute exposure to EMFs does not appear to engender any consistent physiological or behavioural impairment although a few subtle effects may occur. This suggests that exposure of children to low level EMFs may not cause significant detrimental effects on brain function. However the available evidence is not sufficient to draw any definite conclusions, and further laboratory studies are required. In particular, experiments investigating the effects of radiofrequency (RF) fields on the performance of well-characterised cognitive and behavioural tasks by immature and developing animals are recommended, if studies with children cannot be performed for ethical and practical reasons.

Animals↗

Rapporteur report: implications for exposure guidelines.

There is a paucity of information regarding the long-term health effects associated with exposure to static magnetic fields. Perceptual and other acute effects have been demonstrated above a threshold of about 2 T, and these form the basis for human exposure standards at present. Exposures well above this threshold are increasingly becoming more common as the technology associated with magnetic resonance imaging advances. Therefore, priority should be given to assessing the health risks associated with exposures to such fields. Studies should include a prospective cohort study investigating cancer risks of workers and patients exposed to fields in excess of 2 T, a study investigating effects on human cognitive performance from repeated exposures, and a molecular biology study investigating acute changes in genomic responses in volunteers exposed to fields of up to 8 T. Studies investigating the effects of long-term exposure on cancer, and on neurobehavioural development are also recommended using animals, where the use of transgenic models is encouraged. In addition, dosimetric studies should be conducted using high-resolution male, female and pregnant voxel phantoms, as should theoretical studies investigating the local currents induced in the eye and in the heart by movement during exposure. Finally, studies are recommended to investigate further the ability of static magnetic fields to significantly affect radical pair reactions in biological systems.

Animals↗