Physics in Medicine and Biology · 2005 · 39 citations · 13 references
Radio FrequencyEye TissueEye TissuesOcular TissuesOptic NerveWireless Implantable DeviceSocial SciencesElectromagnetic CompatibilityAnimal PhysiologyOphthalmologyHigh-frequency DevicePhysiological OpticAntennaBovine GreyNervous SystemAge DependenceHigh-frequency MeasurementDielectric PropertiesNeurophysiologyNeuroanatomyPhysiologyNeuroscienceElectrophysiologyMedicine
In order to identify possible age-dependent dielectric properties of brain and eye tissues in the frequency range of 400 MHz to 18 GHz, measurements on bovine grey and white matter as well as on cornea, lens (cortical) and the vitreous body were performed using a commercially available open-ended coaxial probe and a computer-controlled vector network analyser. Freshly excised tissues of 52 animals of two age groups (42 adult animals, i.e. 16-24 month old and 10 young animals, i.e. 4-6 month old calves) were examined within 8 min (brain tissue) and 15 min (eye tissue), respectively, of the animals' death. Tissue temperatures for the measurements were 32+/-1 degrees C and 25+/-1 degrees C for brain and eye tissues, respectively. Statistical analysis of the measured data revealed significant differences in the dielectric properties of white matter and cortical lens tissue between the adult and the young group. In the case of white matter the mean values of conductivity and permittivity of young tissue were 15%-22% and 12%-15%, respectively, higher compared to the adult tissue in the considered frequency range. Similarly, young cortical lens tissue was 25%-76% higher in conductivity and 27%-39% higher in permittivity than adult cortical lens tissue.
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