Accuracy of patient-specific soft-tissue prediction algorithms for maxillomandibular surgery in class III patients

Context: Improved esthetics is an important factor for most patients undergoing orthognathic surgery. Thus, a treatment simulation that can provide patients with a realistic view of the esthetic outcome after surgery is important in clinical practice. Aims: To evaluate the accuracy of simulations ge...

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Veröffentlicht in:Contemporary clinical dentistry Jg. 13; H. 3; S. 242 - 248
Hauptverfasser: Mehta, Shivam, Han, Michael, Tsay, T, Kusnoto, Budi
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Mumbai Wolters Kluwer India Pvt. Ltd 01.07.2022
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Abstract Context: Improved esthetics is an important factor for most patients undergoing orthognathic surgery. Thus, a treatment simulation that can provide patients with a realistic view of the esthetic outcome after surgery is important in clinical practice. Aims: To evaluate the accuracy of simulations generated using algorithms specific for patient's type of malocclusion and surgical procedure compared to nonspecific algorithms. Settings and Design: A total of 36 patients (average age 18.41 years) who had undergone maxillary advancement and mandibular setback for Class III malocclusion were included. Subjects and Methods: The presurgical and postsurgical cone-beam computed tomography scans were used to generate the lateral cephalograms and the surgical simulations were created with the patient-specific algorithm (specific for Class III patients) and the nonspecific algorithm (default algorithm not specific for any particular malocclusion or type of surgery) using the treatment simulation feature in Dolphin Imaging software. The accuracy of the simulations was examined by comparing the soft-tissue changes in the surgical simulations with the postsurgical result. Statistical Analysis Used: Statistical analyses were performed with SPSS-software at 0.05 significance level. For the mean difference between the postsurgical and surgical-simulation landmarks, a paired sample t-test (Student's t-test) was performed. Results: Patient-specific algorithms were accurate in vertical prediction of lower lip, B', tip of nose, upper lip, and horizontal prediction of pogonion'. Whereas the nonspecific algorithm was accurate in the horizontal prediction of the lower lip, pogonion', and menton'. Conclusions: Patient-specific and nonspecific algorithms for generating surgical simulations showed different accuracy for vertical and horizontal predictions of the parameters.
AbstractList Context: Improved esthetics is an important factor for most patients undergoing orthognathic surgery. Thus, a treatment simulation that can provide patients with a realistic view of the esthetic outcome after surgery is important in clinical practice. Aims: To evaluate the accuracy of simulations generated using algorithms specific for patient's type of malocclusion and surgical procedure compared to nonspecific algorithms. Settings and Design: A total of 36 patients (average age 18.41 years) who had undergone maxillary advancement and mandibular setback for Class III malocclusion were included. Subjects and Methods: The presurgical and postsurgical cone-beam computed tomography scans were used to generate the lateral cephalograms and the surgical simulations were created with the patient-specific algorithm (specific for Class III patients) and the nonspecific algorithm (default algorithm not specific for any particular malocclusion or type of surgery) using the treatment simulation feature in Dolphin Imaging software. The accuracy of the simulations was examined by comparing the soft-tissue changes in the surgical simulations with the postsurgical result. Statistical Analysis Used: Statistical analyses were performed with SPSS-software at 0.05 significance level. For the mean difference between the postsurgical and surgical-simulation landmarks, a paired sample t-test (Student's t-test) was performed. Results: Patient-specific algorithms were accurate in vertical prediction of lower lip, B', tip of nose, upper lip, and horizontal prediction of pogonion'. Whereas the nonspecific algorithm was accurate in the horizontal prediction of the lower lip, pogonion', and menton'. Conclusions: Patient-specific and nonspecific algorithms for generating surgical simulations showed different accuracy for vertical and horizontal predictions of the parameters.
Improved esthetics is an important factor for most patients undergoing orthognathic surgery. Thus, a treatment simulation that can provide patients with a realistic view of the esthetic outcome after surgery is important in clinical practice.ContextImproved esthetics is an important factor for most patients undergoing orthognathic surgery. Thus, a treatment simulation that can provide patients with a realistic view of the esthetic outcome after surgery is important in clinical practice.To evaluate the accuracy of simulations generated using algorithms specific for patient's type of malocclusion and surgical procedure compared to nonspecific algorithms.AimsTo evaluate the accuracy of simulations generated using algorithms specific for patient's type of malocclusion and surgical procedure compared to nonspecific algorithms.A total of 36 patients (average age 18.41 years) who had undergone maxillary advancement and mandibular setback for Class III malocclusion were included.Settings and DesignA total of 36 patients (average age 18.41 years) who had undergone maxillary advancement and mandibular setback for Class III malocclusion were included.The presurgical and postsurgical cone-beam computed tomography scans were used to generate the lateral cephalograms and the surgical simulations were created with the patient-specific algorithm (specific for Class III patients) and the nonspecific algorithm (default algorithm not specific for any particular malocclusion or type of surgery) using the treatment simulation feature in Dolphin Imaging software. The accuracy of the simulations was examined by comparing the soft-tissue changes in the surgical simulations with the postsurgical result.Subjects and MethodsThe presurgical and postsurgical cone-beam computed tomography scans were used to generate the lateral cephalograms and the surgical simulations were created with the patient-specific algorithm (specific for Class III patients) and the nonspecific algorithm (default algorithm not specific for any particular malocclusion or type of surgery) using the treatment simulation feature in Dolphin Imaging software. The accuracy of the simulations was examined by comparing the soft-tissue changes in the surgical simulations with the postsurgical result.Statistical analyses were performed with SPSS-software at 0.05 significance level. For the mean difference between the postsurgical and surgical-simulation landmarks, a paired sample t-test (Student's t-test) was performed.Statistical Analysis UsedStatistical analyses were performed with SPSS-software at 0.05 significance level. For the mean difference between the postsurgical and surgical-simulation landmarks, a paired sample t-test (Student's t-test) was performed.Patient-specific algorithms were accurate in vertical prediction of lower lip, B', tip of nose, upper lip, and horizontal prediction of pogonion'. Whereas the nonspecific algorithm was accurate in the horizontal prediction of the lower lip, pogonion', and menton'.ResultsPatient-specific algorithms were accurate in vertical prediction of lower lip, B', tip of nose, upper lip, and horizontal prediction of pogonion'. Whereas the nonspecific algorithm was accurate in the horizontal prediction of the lower lip, pogonion', and menton'.Patient-specific and nonspecific algorithms for generating surgical simulations showed different accuracy for vertical and horizontal predictions of the parameters.ConclusionsPatient-specific and nonspecific algorithms for generating surgical simulations showed different accuracy for vertical and horizontal predictions of the parameters.
Audience Academic
Author Han, Michael
Mehta, Shivam
Tsay, T
Kusnoto, Budi
AuthorAffiliation 3 Department of Oral and Maxillofacial Surgery, University of Illinois at Chicago College of Dentistry, Chicago, IL, USA
2 Department of Orthodontics, University of Illinois at Chicago College of Dentistry, Chicago, IL, USA
1 Division of Orthodontics, UNiversity of Connnecticut Health Center, Farmington, Connecticut, USA
AuthorAffiliation_xml – name: 1 Division of Orthodontics, UNiversity of Connnecticut Health Center, Farmington, Connecticut, USA
– name: 2 Department of Orthodontics, University of Illinois at Chicago College of Dentistry, Chicago, IL, USA
– name: 3 Department of Oral and Maxillofacial Surgery, University of Illinois at Chicago College of Dentistry, Chicago, IL, USA
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  givenname: Shivam
  surname: Mehta
  fullname: Mehta, Shivam
  organization: Division of Orthodontics, UNiversity of Connnecticut Health Center, Farmington, Connecticut; Department of Orthodontics, University of Illinois at Chicago College of Dentistry, Chicago, IL
– sequence: 2
  givenname: Michael
  surname: Han
  fullname: Han, Michael
  organization: Department of Oral and Maxillofacial Surgery, University of Illinois at Chicago College of Dentistry, Chicago, IL
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  givenname: T
  surname: Tsay
  fullname: Tsay, T
  organization: Department of Orthodontics, University of Illinois at Chicago, College of Dentistry, Chicago, IL
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  givenname: Budi
  surname: Kusnoto
  fullname: Kusnoto, Budi
  organization: Department of Orthodontics, University of Illinois at Chicago, College of Dentistry, Chicago, IL
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CitedBy_id crossref_primary_10_7759_cureus_67761
crossref_primary_10_3390_diagnostics15121553
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Issue 3
Keywords cone-beam computed tomography
orthognathic surgery
patient-specific simulations
Angle class III
surgical simulation
Language English
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Snippet Context: Improved esthetics is an important factor for most patients undergoing orthognathic surgery. Thus, a treatment simulation that can provide patients...
Improved esthetics is an important factor for most patients undergoing orthognathic surgery. Thus, a treatment simulation that can provide patients with a...
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StartPage 242
SubjectTerms Accuracy
Algorithms
angle class iii
Care and treatment
Computed tomography
cone-beam computed tomography
Evaluation
Lip
Malocclusion
Methods
Original
Orthognathic surgery
patient-specific simulations
Patients
Predictions
Simulated patients
Simulation
Statistical analysis
Statistics
Surgery
surgical simulation
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Title Accuracy of patient-specific soft-tissue prediction algorithms for maxillomandibular surgery in class III patients
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