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Sabina Galiniak, Izabela Krawczyk-Merć and Agnieszka Pedrycz

B ibliography 1. Angelos MG, Kaufman DS. Pluripotent stem cell applications for regenerative medicine. Curr Opin Organ Transplant 2015; 20(6):663-70, DOI 10.1097/MOT.0000000000000244. 2. Paździorek PR. Mathematical model of stem cell differentiation and tissue regeneration with stochastic noise. Bull Math Biol 2014; 76(7):1642-69, DOI 10.1007/s11538-014-9971-5. 3. Jaenisch R, Young R. Stem cells, the molecular circuitry of pluripotency and nuclear reprogramming. Cell 2008; 13: 567-582, DOI 10.1016/j.cell.2008.01.015. 4. Evans MJ, Kaufman

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Mihai-Constantin Balaşa, Ştefan Cuculici, Cosmin Panţu, Simona Mihai, Alexis-Daniel Negrea, Mihai-Octavian Zdrafcu, Dorin-Dacian Leţ, Viviana Filip and Ştefan Cristea

and S. Purohit, One – stage long-stem total knee arthroplasty for arthritic knees with stress fractures, Journal of Orthopaedic Surgery 2013; Vol. 21 No. 2, pp.199-203 [9] T. Tóth, J. Živčák, A Comparison of the Outputs of 3D Scanners, Procedia Engineering, Volume 69, 2014, pp. 393-401 [10] Şt. Cristea, A

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M. Amini, J. Hisdal and H. Kalvøy

cell culture with less contribution from the electrode polarization impedance can be studied ( 34 , 35 ). This combined electrode configuration can be used to provide structural information during the growth and differentiation process of the stem cells in a nondestructive way ( 36 , 37 ). Moreover, by benefitting from the combinations of two, three and four electrode configurations, more electrode pairs with various spatial distributions can be applied to study the spatial distribution of cells in a 3D cell construct. It should be noted that factors such as