TY - GEN
T1 - Biomedical implications of dental ceramic defects investigated by numerical simulation, radiographic, microcomputer tomography and time domain optical coherence tomography
AU - Sinescu, Cosmin
AU - Negrutiu, Meda Lavinia
AU - Ionita, Ciprian
AU - Marsavina, Liviu
AU - Negru, Radu
AU - Topala, Florin
AU - Petrescu, Emanuela
AU - Rominu, Roxana
AU - Fabriky, Mihai
AU - Bradu, Adrian
AU - Rominu, Mihai
AU - Podoleanu, Adrian Gh
PY - 2011
Y1 - 2011
N2 - Imagistic investigation of the metal-ceramic crowns and fixed partial prostheses represent a very important issue in nowadays dentistry. At this time, in dental office, it is difficult or even impossible to evaluate a metal ceramic crown or bridge before setting it in the oral cavity. The possibilities of ceramic fractures are due to small fracture lines or material defects inside the esthetic layers. Material and methods: In this study 25 metal ceramic crowns and fixed partial prostheses were investigated by radiographic method (Rx), micro computer tomography (MicroCT) and optical coherence tomography (OCT) working in Time Domain, at 1300 nm. The OCT system contains two interferometers and one scanner. For each incident analysis a stuck made of 100 slices was obtain. These slices were used in order to obtain a 3D model of the ceramic interface. After detecting the presence and the positions of the ceramic defects the numerical simulation method was used to estimate the biomechanical effect of the masticatory forces on fractures propagations in ceramic materials. Results: For all the dental ceramic defects numerical simulation analysis was performed. The simulation of crack propagation shows that the crack could initiate from the upper, lower or both parts of the defect and propagates through the ceramic material where tensile stress field is present. RX and MicroCT are very powerful instruments that provide a good characterization of the dental construct. It is important to observe the reflections due to the metal infrastructure that could affect the evaluation of the metal ceramic crowns and bridges. The OCT investigations could complete the imagistic evaluation of the dental construct by offering important information when it is need it.
AB - Imagistic investigation of the metal-ceramic crowns and fixed partial prostheses represent a very important issue in nowadays dentistry. At this time, in dental office, it is difficult or even impossible to evaluate a metal ceramic crown or bridge before setting it in the oral cavity. The possibilities of ceramic fractures are due to small fracture lines or material defects inside the esthetic layers. Material and methods: In this study 25 metal ceramic crowns and fixed partial prostheses were investigated by radiographic method (Rx), micro computer tomography (MicroCT) and optical coherence tomography (OCT) working in Time Domain, at 1300 nm. The OCT system contains two interferometers and one scanner. For each incident analysis a stuck made of 100 slices was obtain. These slices were used in order to obtain a 3D model of the ceramic interface. After detecting the presence and the positions of the ceramic defects the numerical simulation method was used to estimate the biomechanical effect of the masticatory forces on fractures propagations in ceramic materials. Results: For all the dental ceramic defects numerical simulation analysis was performed. The simulation of crack propagation shows that the crack could initiate from the upper, lower or both parts of the defect and propagates through the ceramic material where tensile stress field is present. RX and MicroCT are very powerful instruments that provide a good characterization of the dental construct. It is important to observe the reflections due to the metal infrastructure that could affect the evaluation of the metal ceramic crowns and bridges. The OCT investigations could complete the imagistic evaluation of the dental construct by offering important information when it is need it.
KW - Fractures
KW - Materials defects
KW - Metal ceramic crowns and bridges
KW - Micro computer tomography
KW - Optical coherence tomography
KW - Radiographic method
UR - https://www.scopus.com/pages/publications/80054967025
U2 - 10.1117/12.896716
DO - 10.1117/12.896716
M3 - Conference contribution
AN - SCOPUS:80054967025
SN - 9780819487988
T3 - Proceedings of SPIE - The International Society for Optical Engineering
BT - Optical Complex Systems, OCS11
T2 - Optical Complex Systems, OCS11
Y2 - 5 September 2011 through 8 September 2011
ER -