Proof of concept image artifact reduction by energy-modulated proton computed tomography (EMpCT)

2021 ◽  
Vol 81 ◽  
pp. 237-244
Author(s):  
Jannis Dickmann ◽  
Christina Sarosiek ◽  
Victor Rykalin ◽  
Mark Pankuch ◽  
George Coutrakon ◽  
...  
Author(s):  
Yu-Jen Chen ◽  
Yen-Jung Chang ◽  
Shao-Cheng Wen ◽  
Yiyu Shi ◽  
Xiaowei Xu ◽  
...  

2009 ◽  
Vol 40 (1) ◽  
pp. 1223 ◽  
Author(s):  
Ya-Ting Wang ◽  
Yi-Nung Liu ◽  
Shao-Yi Chien ◽  
Yung-Hao Yang ◽  
Yi-Lin Chen ◽  
...  

2021 ◽  
Vol 24 ◽  
pp. 100573
Author(s):  
Goli Khaleghi ◽  
Mohammad Hosntalab ◽  
Mahdi Sadeghi ◽  
Reza Reiazi ◽  
Seied Rabi Mahdavi

2020 ◽  
Vol 6 (1) ◽  
Author(s):  
Kyungmin Lee ◽  
Gyu-Hyoung Lee

Abstract Background Radiographs are integral in evaluating implant space and inter-root distance. The purpose of this report is to introduce a method for evaluating the 3D root position with minimal radiation using a 3D tooth model composed of an intraoral-scanned crown and a cone-beam computed tomography (CBCT)-scanned root. Materials and methods Intraoral scan and CBCT scan of the patient were obtained before treatment. In the CBCT image, tooth segmentation was performed by isolating individual teeth from the maxillary and mandibular alveolar bone using software program. The 3D tooth model was fabricated by combining segmented individual teeth with the intraoral scan. Results A post-treatment intraoral scan was integrated into the tooth model, and the resulting position of the root could be predicted without additional radiographs. It is possible to monitor the root position after a pretreatment CBCT scan using a 3D tooth model without additional radiographs. Conclusion The application of the 3D tooth model benefits the patient by reducing repeated radiation exposure while providing the clinician with a precise treatment evaluation to monitor tooth movement.


2020 ◽  
Vol 14 (2) ◽  
pp. 177-184 ◽  
Author(s):  
Takuya Mizukami ◽  
Kaoru Tanaka ◽  
Jeroen Sonck ◽  
Bert Vandeloo ◽  
Bram Roosens ◽  
...  

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