mht mobile scanner Search Results


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ARTEC CO LTD mht mobile scanner
a . CBCT data acquisition is performed using the Newtom 5G scanner (QR S.r.l., Verona, Italy). b . Optical <t>surface</t> <t>scanning</t> of patient’s facial contours is performed using the Artec <t>MHT</t> mobile scanner (Artec Inc., Luxembourg). c . 3D anatomical model, including soft tissue, bones and airways, is generated from pre-surgical CBCT data. d . 3D photo-textured model of patient’s facial contours is generated using Artec Studio v.0.7.4.2 software. e . 3D anatomical ( c ) and surface ( d ) models are merged to a single triangulated model. f . 3D bone displacement is simulated on the basis of the initial BRA plan. FE simulation is performed to predict post-surgical facial contours ( g ) and extension of airways ( h ) resulting from maxillo-mandibular displacements ( f ).
Mht Mobile Scanner, supplied by ARTEC CO LTD, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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mht mobile scanner - by Bioz Stars, 2026-05
90/100 stars
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a . CBCT data acquisition is performed using the Newtom 5G scanner (QR S.r.l., Verona, Italy). b . Optical surface scanning of patient’s facial contours is performed using the Artec MHT mobile scanner (Artec Inc., Luxembourg). c . 3D anatomical model, including soft tissue, bones and airways, is generated from pre-surgical CBCT data. d . 3D photo-textured model of patient’s facial contours is generated using Artec Studio v.0.7.4.2 software. e . 3D anatomical ( c ) and surface ( d ) models are merged to a single triangulated model. f . 3D bone displacement is simulated on the basis of the initial BRA plan. FE simulation is performed to predict post-surgical facial contours ( g ) and extension of airways ( h ) resulting from maxillo-mandibular displacements ( f ).

Journal: PLoS ONE

Article Title: A combined planning approach for improved functional and esthetic outcome of bimaxillary rotation advancement for treatment of obstructive sleep apnea using 3D biomechanical modeling

doi: 10.1371/journal.pone.0199956

Figure Lengend Snippet: a . CBCT data acquisition is performed using the Newtom 5G scanner (QR S.r.l., Verona, Italy). b . Optical surface scanning of patient’s facial contours is performed using the Artec MHT mobile scanner (Artec Inc., Luxembourg). c . 3D anatomical model, including soft tissue, bones and airways, is generated from pre-surgical CBCT data. d . 3D photo-textured model of patient’s facial contours is generated using Artec Studio v.0.7.4.2 software. e . 3D anatomical ( c ) and surface ( d ) models are merged to a single triangulated model. f . 3D bone displacement is simulated on the basis of the initial BRA plan. FE simulation is performed to predict post-surgical facial contours ( g ) and extension of airways ( h ) resulting from maxillo-mandibular displacements ( f ).

Article Snippet: Optical surface (OS) scanning of patient’s facial contours was performed in upright position using the Artec MHT mobile scanner followed by generation of a photo-textured surface model in Artec Studio v. 0.7.4.2 software (Artec Inc., Luxembourg).

Techniques: Generated, Software