Computer-aided position planning of miniplates to treat facial bone defects

08/17/2017
by   Jan Egger, et al.
0

In this contribution, a software system for computer-aided position planning of miniplates to treat facial bone defects is proposed. The intra-operatively used bone plates have to be passively adapted on the underlying bone contours for adequate bone fragment stabilization. However, this procedure can lead to frequent intra-operatively performed material readjustments especially in complex surgical cases. Our approach is able to fit a selection of common implant models on the surgeon's desired position in a 3D computer model. This happens with respect to the surrounding anatomical structures, always including the possibility of adjusting both the direction and the position of the used osteosynthesis material. By using the proposed software, surgeons are able to pre-plan the out coming implant in its form and morphology with the aid of a computer-visualized model within a few minutes. Further, the resulting model can be stored in STL file format, the commonly used format for 3D printing. Using this technology, surgeons are able to print the virtual generated implant, or create an individually designed bending tool. This method leads to adapted osteosynthesis materials according to the surrounding anatomy and requires further a minimum amount of money and time.

READ FULL TEXT

page 1

page 2

page 6

page 9

page 14

page 15

page 16

page 18

research
09/01/2023

A FAIR File Format for Mathematical Software

We describe a generic JSON based file format which is suitable for compu...
research
07/25/2018

Video-based computer aided arthroscopy for patient specific reconstruction of the Anterior Cruciate Ligament

The Anterior Cruciate Ligament (ACL) tear is a common medical condition ...
research
09/05/2023

An Automated and Efficient Aerodynamic Design and Analysis Framework Integrated to PANAIR

Aircraft design is an iterative process that requires an estimation of a...
research
03/09/2017

Interactive reconstructions of cranial 3D implants under MeVisLab as an alternative to commercial planning software

In this publication, the interactive planning and reconstruction of cran...
research
10/12/2020

An Extension of the Strain Transfer Principle for Fiber Reinforced Materials

Fiber optical strain sensors are used to measure the strain at a particu...
research
11/05/2020

Immersive Anatomical Scenes that Enable Multiple Users to Occupy the Same Virtual Space: A Tool for Surgical Planning and Education

3D modeling is becoming a well-developed field of medicine, but its appl...
research
07/20/2023

Soft-tissue Driven Craniomaxillofacial Surgical Planning

In CMF surgery, the planning of bony movement to achieve a desired facia...

Please sign up or login with your details

Forgot password? Click here to reset