M. Spiegel, T. Redel, Y. Zhang, T. Struffert, Joachim Hornegger, Robert G. Grossman, A. Doerfler, Christof Karmoni, D. Garzón-Alvarado, Lilia Mabel, Peinado Cortés, Rosy Paola Cardenas, R. Barros, R. P. Menezes, T. Russomanno, M. Misuta, Bruno C. Branddo, Pascual J. Figueroa, N. J. Leite, S. Goldenstein, M. J. Kang, H. Sadri, R. Stern, N. Magnenat-Thalmann, P. Hoffmeyer, H. Ji, R. Matias, Carlos Andrade, António Prieto, Veloso, U. Simon, P. Augat, M. Utz, L. Claes, I. Jeon, Ji-Yong Bae, Jin-Hong Park, T. Yoon, M. Todo, M. Mawatari, T. Hotokebuchi, S. S. Khalafvand, E. K. Ng, L. Zhong, M. Khoshgoftar, C. V. van Donkelaar, K. Ito

2024Lecture Notes in Computational Vision and Biomechanics

DOI: 10.1007/978-3-031-55315-8

tlooto Summary

REGULAR ISSUE 1 A new intelligent approach for estimation of blood potassium concentration and a numerical model of the fracture healing process that describes tissue development and revascularization are presented.

Abstract

Abstract is not available.

Citation format

SPIEGEL, M., et al. Computer methods in biomechanics and biomedical engineering II. Lecture Notes in Computational Vision and Biomechanics, 2024.