Introduction to 3d Planning
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3d Planning sentence examples within Virtual 3d Planning
Virtual 3D planning greatly improves the clinician's ability to diagnose and treat facial form and position problems that prevent the patient from accomplishing the three Functional Facial Keys (eating, breathing and communicating).
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3d Planning sentence examples within Discus 3d Planning
We will discuss 3D planning as a means to improve preoperative planning and intraoperative component positioning highlighting different design features that assist in special circumstance.
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We will discuss 3D planning as a means to improve preoperative planning and intraoperative component positioning, highlighting different design features that assist in special circumstances.
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3d Planning sentence examples within Operative 3d Planning
Finally, a case study on hydroxyapatite printing of a patient specific bone graft demonstrates the ability of this material and technique to print complex porous structures created on CT-based anatomical bone models and pre-operative 3D planning, providing further promise for custom implant development for complex bony designs.
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BACKGROUND
Pre-operative 3D planning based on computed tomography (CT) imaging is used to optimise the restitution of normal hip anatomy during primary total hip arthroplasty (THA).
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3d Planning sentence examples within 3d planning software
This report introduces the Clear Aligner Orthognathic Splint for surgery and the steps required for 3D planning with recommendations for perioperative orthodontic support.
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We will discuss 3D planning as a means to improve preoperative planning and intraoperative component positioning highlighting different design features that assist in special circumstance.
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The operation plan requires careful 3D planning and an experienced team.
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RESULTS
The actuarial 5-year biochemical failure-free survival rates for 2D and 3D planning were 88.
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All LAM achieved completely ablation according to the 3D planning preoperation.
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Accurate preoperative 3D planning is useful to predict the entry point and the direction with accuracy similar to navigation systems, avoiding its costs and technical difficulties.
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Materials and methods Preoperative plans were created for 26 patients using three different simulation software programs: an independent preoperative planning simulation (IPPS) software (OrthoVis) and two automated manufacturers preoperative simulation systems: ArthrexVIP™ (AMPS I) and Tornier Blueprint™ 3D Planning (AMPS II).
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PURPOSE
To compare oral function and health-related quality of life (HRQoL) in patients reconstructed with either a reconstruction plate or a free vascularized bone flap with or without 3D planning.
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Using a group of patients with PCa and based on a 3D planning analysis, we propose new practical guidelines for PCa 2D-RT based on current criteria for risk category and CTV, and PTV definition.
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A virtual 3D planning tool greatly facilitates this assessment.
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Conclusion Integration of skin perforators into 3D planning of microvascular fibular graft is feasible and may even decrease involuntary dissection of perforator vessels.
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PURPOSE
Interstitial brachytherapy (ISBT) can be effective for vaginal tumors due to its ability to deliver conformal treatment with 3D planning.
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035cc metrics showed that the ETV (4D accumulated dose) estimated substantially lower coverage than the PTV (3D planning dose): in 3 out of the 11 cases, and for at least for one of the two metrics, coverage estimated by ETV was at least 6% lower than that estimated by PTV.
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Use of 3D planning and 3D printing is expanding in healthcare.
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CONCLUSION
Utilising 3D planning software, complex surgical procedures can be pre-planned based on the patient's anatomy via CT imaging.
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Two-dimensional (2D) planning on standard radiographs for total hip arthroplasty may not be sufficiently accurate to predict implant sizing or restore leg length and femoral offset, whereas 3D planning avoids magnification and projection errors.
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Demand for 3D planning and guidance algorithms is increasing due, in part, to the increase in unmanned vehicle-based applications.
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We will discuss 3D planning as a means to improve preoperative planning and intraoperative component positioning, highlighting different design features that assist in special circumstances.
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The purpose of this study was to compare 3D planning-assisted and a conventional system for TKA positioning.
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It is demonstrated that the proposed algorithm for 3D planning generates chaotic paths by investigating the Lyapunov exponents.
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Finally, a case study on hydroxyapatite printing of a patient specific bone graft demonstrates the ability of this material and technique to print complex porous structures created on CT-based anatomical bone models and pre-operative 3D planning, providing further promise for custom implant development for complex bony designs.
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Virtual 3D planning greatly improves the clinician's ability to diagnose and treat facial form and position problems that prevent the patient from accomplishing the three Functional Facial Keys (eating, breathing and communicating).
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Bone cuts were performed using portable navigation systems according to 3D planning data from computed tomography.
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STUDY AIMS
This lumbar pedicle-based stabilization simulation study aimed to investigate the risk of upper facet joint violation (FJV) during posterior percutaneous pedicle screw placement with conventional 2D planning of screw implantation (as a model for fluoroscopically guided screws) compared with 3D planning (as used with navigation techniques).
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Conclusion: 3D planning significantly reduces 0.
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There is limited literature available providing a detailed description on methods to plan TBI on a 3D planning system.
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Background: To assess the usefulness of three-dimensional (3D) digital pre-operative planning, we compared the radiographic parameters of the distal radius from 3D planning and conventional planning after osteosynthesis of distal radius fractures.
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With the current diagnostic elements, surgeons are perfectly aware of the patient’s pathology, but new 3D planning techniques offer surgeons knowledge of the anatomy of each bone, as well as its disposition in space, due to the deformities that occur in joints due to osteoarthritis and different degenerative pathologies.
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With the advent of new 3D technologies, the technique can be performed using customized guides and plates (with 3D planning and printing), addressing the drawbacks of the procedure, making it minimally invasive, safe, very accurate, and predictable.
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CONCLUSION
The normative data helps to serve as a guide for maxillofacial treatment for globally ethnic Chinese, particularly useful for orthodontic treatment, 3D planning of orthognathic surgery and outcome assessment.
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Use of 3D planning and 3D printing is expanding in healthcare.
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BACKGROUND
Pre-operative 3D planning based on computed tomography (CT) imaging is used to optimise the restitution of normal hip anatomy during primary total hip arthroplasty (THA).
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In 47 knees that underwent OWHTO using 3D planning, postoperative coronal and sagittal bone corrections were mostly accurate.
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The preoperative treatment plan and the postoperative outcome were combined to calculate the translational and rotational discrepancies between the 3D planning and the actual surgical outcome.
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Implant position was virtually planned using 3D planning software based on the preoperative CBCT of each model.
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Brachytherapy boost was LDR or HDR 2D treatment planning from 1997 to 2005 and HDR with MR-based 3D planning from 2005 to 2016.
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The purpose of this study was to provide a technical guideline for joint preserving tumour resection and allograft reconstruction around the knee using 3D planning and PSI.
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We developed a new 3D CT method for FT measurement which is similar to 2D and could be used in the future for virtual 3D planning.
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CT-scan based Patient-specific cutting guides were obtained to define the cutting plane and the location of the K-wire at the hinge, using standardized 3D planning protocol.
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CONCLUSION
3D planning assists the surgeon and eliminates several constraints related to the placement of bone implants.
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