Advanced Visuohaptic Surgical Planning for Trauma Surgery
Studieoversigt
Status
Status
Betingelser
Betingelser
Intervention / Behandling
Intervention / Behandling
Detaljeret beskrivelse
Undersøgelsestype
Undersøgelsestype
Tilmelding (Faktiske)
Tilmelding
Kontakter og lokationer
Studiesteder
-
-
California
-
San Francisco, California, Forenede Stater, 94121
- VA Medical Center, San Francisco
-
-
Deltagelseskriterier
Berettigelseskriterier
Berettigelseskriterier
Aldre berettiget til at studere
Tager imod sunde frivillige
Køn, der er berettiget til at studere
Prøveudtagningsmetode
Studiebefolkning
Beskrivelse
Inclusion Criteria:
- Craniofacial deformity, including post-traumatic, congenital or acquired deformity
- Patients who have already have surgery because there was a clinical indication for surgical correction
Exclusion Criteria:
- No craniofacial deformity
- No clinical indication for surgical correction
- Contraindication for surgical correction
Studieplan
Hvordan er undersøgelsen tilrettelagt?
Design detaljer
Antal grupper/kohorter
Kohorter og interventioner
Gruppe / kohorteGruppe / kohorte |
Intervention / BehandlingIntervention / Behandling |
|---|---|
|
Group 1
15 patients who underwent surgical repair of mandibular fractures at San Francisco VA Medical Center
|
Patients will undergo whatever needed surgical repair of maxillofacial trauma that is necessary.
Records such as CT imaging and plaster models of the jaws will be utilized in the standard way to plan and carry out the surgery.
The CT scan will also be used within the visuohaptic computational environment to develop and evaluate the user interface.
The amount of time taken to work up and plan surgery using standard surgical practice and using the computational platform will be compared.
Real surgical outcome will be compared to the simulated surgical outcome using the proposed software tool.
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Hvad måler undersøgelsen?
Primære resultatmål
Primære resultatmål
Resultatmål |
Foranstaltningsbeskrivelse |
Tidsramme |
|---|---|---|
|
Percentage of Deviation From Actual Surgical Outcome During Virtual Repair of Mandibular Fractures, Using the Novel Visuohaptic Computational Platform That Was Developed by the Investigators
Tidsramme: 6 months
|
The virtual surgical outcome was compared to the actual surgical outcome.
This was accomplished by measuring distances (mm) and angles between specific mandibular anatomic points in the virtual environment and comparing it to the same distances (mm) and angles between specific mandibular anatomic points in the actual surgical outcome, as seen in a 3D rendering derived from the patient's postoperative CT scan.
The actual surgical repair was considered to be the gold standard.
A deviation of more than 10% between the virtual surgical repair and the actual surgical repair was considered to be above threshold (inaccurate virtual fracture repair).
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6 months
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Sekundære resultatmål
Sekundære resultatmål
Resultatmål |
Foranstaltningsbeskrivelse |
Tidsramme |
|---|---|---|
|
Development and Evaluation of Automation Features for the Visuohaptic Virtual Surgery Planning Environment
Tidsramme: 3 years
|
The addition of automation features for the visuohaptic virtual surgical planning environment was envisioned to make it possible to predict the number, type, size, and position of reconstruction hardware (bone plates and screws) that would best fit the virtually repaired mandibular fractures.
The goal was to compare the hardware configuration selected and used in the actual surgical repair for the 3 participating patients with what the software predicted.
Unfortunately, the software development proved to be difficult to add this automated feature.
|
3 years
|
|
Implementation and Test of the Telemedicine Prototype
Tidsramme: 3 years
|
Measurement of the accuracy of the virtual surgical repair generated by the surgeon operating the software when a remote surgeon digitally sends a CT scan of a patient with an acute mandibular fracture(s).
The telemedicine interface would require an automated method to segment the CT scan into the fractured components.
The operator would manipulate the bone fractures, select the hardware type and size for "best fit", and generate a report back to the remote surgeon.
|
3 years
|
Samarbejdspartnere og efterforskere
Sponsor
Sponsor
Samarbejdspartnere
Samarbejdspartnere
Efterforskere
Efterforskere
- Ledende efterforsker: Rebeka Silva, DMD, VA Medical Center, San Francisco
Publikationer og nyttige links
Generelle publikationer
- Schvartzman SC, Silva R, Salisbury K, Gaudilliere D, Girod S. Computer-aided trauma simulation system with haptic feedback is easy and fast for oral-maxillofacial surgeons to learn and use. J Oral Maxillofac Surg. 2014 Oct;72(10):1984-93. doi: 10.1016/j.joms.2014.05.007. Epub 2014 May 24.
- Forsslund J, Chan S, Selesnick J, Salisbury K, Silva RG, Blevins NH. The effect of haptic degrees of freedom on task performance in virtual surgical environments. Stud Health Technol Inform. 2013;184:129-35.
- Girod S, Schvartzman SC, Gaudilliere D, Salisbury K, Silva R. Haptic feedback improves surgeons' user experience and fracture reduction in facial trauma simulation. J Rehabil Res Dev. 2016;53(5):561-570. doi: 10.1682/JRRD.2015.03.0043.
Datoer for undersøgelser
Studer store datoer
Studiestart
Studiestart
Primær færdiggørelse (Faktiske)
Primær færdiggørelse
Studieafslutning (Faktiske)
Studieafslutning
Datoer for studieregistrering
Først indsendt
Først indsendt
Først indsendt, der opfyldte QC-kriterier
Først indsendt, der opfyldte QC-kriterier
Først opslået (Skøn)
Først opslået
Opdateringer af undersøgelsesjournaler
Sidste opdatering sendt (Faktiske)
Sidste opdatering sendt
Sidste opdatering indsendt, der opfyldte kvalitetskontrolkriterier
Sidste opdatering indsendt, der opfyldte kvalitetskontrolkriterier
Sidst verificeret
Sidst verificeret
Mere information
Begreber relateret til denne undersøgelse
Yderligere relevante MeSH-vilkår
Andre undersøgelses-id-numre
Andre undersøgelses-id-numre
- F7124-R
Plan for individuelle deltagerdata (IPD)
Planlægger du at dele individuelle deltagerdata (IPD)?
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