 Lianne Cartee Associate Professor, Primary Core Faculty Director of BME Undergraduate Programs
Joint Department of Biomedical Engineering NC State University and UNC Chapel Hill
NC State University Office 118 Weaver Labs NC State University Raleigh, NC 27695-7625 Phone: 919-515-6726 Fax: 919-515-7760
E-mail:                 
Primary Research Area: Biomedical Engineering including Bioelectric Stimulation, Mathematical Modeling
Research Interests: Cellular response of tissue models to extracellular stimulation and cochlear implants. Education: B.S. in Biological Engineering, Mississippi State Univ., Mississippi State, MS
PhD in Biomedical Engineering, Duke University, Durham, NC Recent Publications:
- Cartee, L.A., Spiral ganglion cell site of excitation II: Numerical model analysis. Hearing Research, vol. 215, pp. 22-30, 2006.
- Cartee, L.A., Miller, C.A., van den Honert, C. Spiral ganglion cell site of excitation I: Comparison of scala tympani and intrameatal electrode responses. Hearing Research, vol. 215, pp. 10-21, 2006.
- Cartee, L.A. Evaluation of a model of the cochlear neural membrane II: Comparison of model and physiological measure of membrane properties measured in response to intrameatal electrical stimulation. Hearing Research, vol. 146, pp. 153-166, 2000.
- Cartee, L.A., van den Honert, C., Finley, C.C., Miller, R.L. Evaluation of a model of the cochlear neural membrane I: Physiological measurement of membrane characteristics in response to intrameatal electrical stimulation Hearing Research, vol. 146, pp. 143-152, 2000.
- Cartee, L.A. and Plonsey, R. Active response of a one-dimensional cardiac model with gap junctions to extracellular stimulation, Medical and Biological Engineering and Computing, Vol. 30, pp. 389-398, 1992.
- Cartee, L.A. and Plonsey, R. The effect of cellular discontinuities on the transient subthreshold response of a one-dimensional cardiac model, IEEE Transactions on Biomedical Engineering, Vol. 39, No. 3, pp. 260-270, 1992.
- Cartee, L.A. and Plonsey, R. The transient subthreshold response of spherical and cylindrical cell models to extracellular stimulation, IEEE Transactions on Biomedical Engineering, Vol. 39, No. 1, pp. 76-85, 1992.
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