By Gwen Swennen
This colour atlas and guide offers clinicians with systematic, standardized, but in addition individualized step by step tips on 3D digital prognosis, remedy making plans, and final result evaluate in sufferers present process orthognathic surgical procedure for maxillofacial deformities. Drawing on two decades of expertise, the authors elucidate the medical strength of the method whereas additionally highlighting present pitfalls and obstacles. the outlet chapters talk about the 3D imaging workflow and its integration into day-by-day medical regimen and comprehensively describe cone-beam CT digital prognosis. The stepwise 3D digital making plans of orthognathic surgical procedure and move of the 3D digital remedy plan to the sufferer within the working room are then completely defined, and the exceptional power of 3D digital evaluate of remedy final result, documented. eventually, after provision of all this crucial heritage details, the last bankruptcy illustrates the appliance of the 3D digital strategy in several forms of maxillofacial deformity. Orthodontists and orthognathic and orthofacial surgeons will locate 3D digital therapy making plans of Orthognathic Surgery to be a very good advisor and source.
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Extra resources for 3D Virtual Treatment Planning of Orthognathic Surgery: A Step-by-Step Approach for Orthodontists and Surgeons
To integrate accurate occlusal and intercuspidation data into the 3D patient model, “rigid registration” with or without markers, based on points, surfaces, voxels or a combination, currently still needs to be performed of: 1. The CBCT imaging acquisition data of the patient’s head (7 Sect. 1) 2. Additional image acquisition data of the patient’s dentition and occlusal surfaces (7 Sect. 2) (a) Without the use of plaster dental models (b) With the use of plaster dental models Although different attempts have been reported by different research groups, only few methods have been properly validated and consequently applied in sufficient consecutive clinical patient series in order to provide evidence-based data.
2 mm at 120 kV according to DICOM ﬁeld, 0018,0060 KVP, and 48 mA according to DICOM ﬁeld, 0018,1151 XRayTubeCurrent). 3D “surface-rendered” (Maxilim v. ). Note that the impression is placed on a commercially available sponge instead of directly on the table of the CBCT apparatus to avoid segmentation problems Rigid Registration of the CBCT scan of the patient’s head (7 Sect. 1) and additional image acquisition of the patient’s dentition (7 Sect. 2) are mandatory for proper 3D virtual orthognathic surgery planning.
Fig. 22 CBCT scan N°1 in CR. G. 4 mm at 120 kV according to DICOM ﬁeld, 0018,0060 KVP, and 48 mA according to DICOM ﬁeld, 0018,1151 TubeCurrent. 3D. ). Note that CBCT N°1 is the same as CBCT scan N°1 of the “Triple CBCT Scan Protocol” (. Fig. 17a) 27 Chapter 1 · Imaging Workﬂow for 3D Virtual Treatment Planning of Orthognathic Surgery 3D Virtual Augmented Model (AUM) of the Patient’s Head “with the Use of Plaster Dental Models” z a b . Fig. 2 mm at 120 kV according to DICOM ﬁeld, 0018,0060 KVP, and 48 mA according to DICOM ﬁeld, 0018,1151 TubeCurrent.
3D Virtual Treatment Planning of Orthognathic Surgery: A Step-by-Step Approach for Orthodontists and Surgeons by Gwen Swennen