DocumentCode
1343838
Title
Computer-Assisted Planning and Navigation for Corrective Distal Radius Osteotomy, Based on Pre- and Intraoperative Imaging
Author
Dobbe, J.G.G. ; Strackee, S.D. ; Schreurs, A.W. ; Jonges, R. ; Carelsen, B. ; Vroemen, J.C. ; Grimbergen, C.A. ; Streekstra, G.J.
Author_Institution
Dept. of Biomed. Eng. & Phys., Univ. of Amsterdam, Amsterdam, Netherlands
Volume
58
Issue
1
fYear
2011
Firstpage
182
Lastpage
190
Abstract
Malunion after a distal radius fracture is very common and if symptomatic, is treated with a so-called corrective osteotomy. In a traditional distal radius osteotomy, the radius is cut at the fracture site and a wedge is inserted in the osteotomy gap to correct the distal radius pose. The standard procedure uses two orthogonal radiographs to estimate the two inclination angles and the dimensions of the wedge to be inserted into the osteotomy gap. However, optimal correction in 3-Dspace requires restoring three angles and three displacements. This paper introduces a new technique that uses preoperative planning based on 3-D images. Intraoperative 3-D imaging is also used after inserting pins with marker tools in the proximal and distal part of the radius and before the osteotomy. Positioning tools are developed to correct the distal radius pose in six degrees of freedom by navigating the pins. The method is accurate (derr <; 1.2 mm, φerr <; 0.9°, mTRE = 1.7 mm), highly reproducible (SEd <; 1.0 mm, SEφ ≤ 1.4°, SEmTRE = 0.7 mm), and allows intraoperative evaluation of the end result. Small incisions for pin placement and for the osteotomy render the method minimally invasive.
Keywords
bone; diagnostic radiography; medical image processing; orthopaedics; patient treatment; computer-assisted navigation; computer-assisted planning; corrective distal radius osteotomy; distal radius pose; inclination angle; intraoperative 3D imaging; optimal correction; orthogonal radiography; osteotomy gap; positioning tools; traditional distal radius osteotomy; Accuracy; Bones; Computed tomography; Image segmentation; Manipulators; Pins; Planning; Computer-assistance; cone-beam CT; corrective distal radius osteotomy; navigation; virtual planning; Cone-Beam Computed Tomography; Female; Fractures, Malunited; Humans; Image Processing, Computer-Assisted; Osteotomy; Preoperative Care; Radius; Radius Fractures; Surgery, Computer-Assisted;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2010.2084576
Filename
5594995
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