Open AccessPhysicsEngineeringMedicine

P. Meaney, A. Gregory, J. Seppälä, T. Lahtinen

2016.1.29IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES

DOI: 10.1109/tmtt.2016.2519027

tlooto Summary

It is demonstrated that the penetration depth in both water and saline has a clear dependence on the probe diameter, but is remarkably uniform over frequency and with respect to the intervening liquid permittivity.

Abstract

We have performed a series of experiments, which demonstrate the effect of open-ended coaxial diameter on the depth of penetration. We used a two-layer configuration of a liquid and movable cylindrical piece of either Teflon or acrylic. The technique accurately demonstrates the depth in a sample for which a given probe diameter provides a reasonable measure of the bulk dielectric properties for a heterogeneous volume. In addition, we have developed a technique for determining the effective depth for a given probe diameter size. Using a set of simulations mimicking four 50- Ω coaxial cable diameters, we demonstrate that the penetration depth in both water and saline has a clear dependence on the probe diameter, but is remarkably uniform over frequency and with respect to the intervening liquid permittivity. Two different 50- Ω commercial probes were similarly tested and confirm these observations. This result has significant implications to a range of dielectric measurements, most notably in the area of tissue property studies.

Citation format

MEANEY, P., et al. Open-ended coaxial dielectric probe effective penetration depth determination. IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2016, 64: 915–923.