1. Nuutinen, J., Ikäheimo, R., & Lahtinen, T. (2004). Validation of a new dielectric device to assess changes of tissue water in skin and subcutaneous fat. Physiological Measurement, 25(2), 447–454.
2. Harris, C., & Dell, D. (1983). The radio frequency dielectric properties of yeast cells measured with rapid automated frequency domain dielectric spectrometer. Bio-electrochemistry and Bioenergetics, 11, 14–28.
3. Asami, K. (2002). Characterization of biological cells by dielectric spectroscopy. Journal of Non Crystalline Solids, 305, 268–277.
4. Guha, S., Jamal, F. I., Schmalz, K., Wenger, C., & Meliani, C. (2013). CMOS lab on a chip device for dielectric characterization of cell suspensions based on a 6 GHz oscillator. In Microwave conference (EuMC), 2013 European (pp. 471–474).
5. Helmy, A., Jeon, H.-J., Lo, Y.-C., Larsson, A., Kulkarni, R., Kim, J., et al. (2012). A self-sustained CMOS microwave chemical sensor using a frequency synthesizer. IEEE Journal of Solid-State Circuits, 47(10), 2467–2483.