TY - ECHAP AU - Agnieszka Anna Tomaka AU - Leszek Luchowski AU - Dariusz Pojda AU - MichaƂ Tarnawski AB -

Methods are described of determining the dynamic occlusion surface based on dynamic sequences of mandibular motion, acquired with a dynamic scanner, and measurements acquired with the Zebris axiograph. The Zebris data is brought into register with multimodal imagery, using three corresponding transformations. This registration allows dense motion sequences to be simulated, which in turn allows occlusal conditions to be known at various stages of movement and the dynamic occlusal surface to be identified for the purposes of occlusal splint design.

BT - Information Technology in Biomedicine. ITIB 2019. Advances in Intelligent Systems and Computing CY - Cham DO - 10.1007/978-3-030-23762-2_26 LA - eng N2 -

Methods are described of determining the dynamic occlusion surface based on dynamic sequences of mandibular motion, acquired with a dynamic scanner, and measurements acquired with the Zebris axiograph. The Zebris data is brought into register with multimodal imagery, using three corresponding transformations. This registration allows dense motion sequences to be simulated, which in turn allows occlusal conditions to be known at various stages of movement and the dynamic occlusal surface to be identified for the purposes of occlusal splint design.

PB - Springer International Publishing PP - Cham PY - 2019 SN - 978-3-030-23761-5 T2 - Information Technology in Biomedicine. ITIB 2019. Advances in Intelligent Systems and Computing T3 - Advances in Intelligent Systems and Computing TI - Dynamic Occlusion Surface Estimation from 4D Multimodal Data VL - vol 1011 ER -