Literature DB >> 7808612

The application accuracy of stereotactic frames.

R J Maciunas1, R L Galloway, J W Latimer.   

Abstract

The purpose of incorporating stereotactic methodology into neurosurgical operations is to achieve a consistently high degree of accuracy in localizing intracranial targets. Therefore, the limits of resolution for the operation are a function of the accuracy of the particular stereotactic frame system. The total clinically relevant error (application accuracy) comprises errors associated with each procedural step, including imaging, target selection, vector calculations, and the mechanical errors of stereotactic frames. To evaluate these parameters, a systematic error analysis was carried out with four commonly used stereotactic devices: the Brown-Roberts-Wells, the Cosman-Roberts-Wells, the Kelly-Goerss COMPASS (modified Todd-Wells), and the Leksell frames. Over 21,500 independent accuracy test measurements were made with 11,000 computed tomograms. The results suggest a potentially significant degree of error in the application accuracy of all stereotactic instruments, which is accentuated by but not entirely due to imaging-associated errors. Clinically encountered levels of weightbearing by stereotactic frames may have a pronounced effect on their mechanical accuracy. Both the reapplication of aiming arc assemblies and the use of phantom base units introduce independent sources of mechanical inaccuracy into stereotactic procedures. The scope of individual error values and their determining factors must be considered with every clinical use of stereotactic frame systems.

Mesh:

Year:  1994        PMID: 7808612     DOI: 10.1227/00006123-199410000-00015

Source DB:  PubMed          Journal:  Neurosurgery        ISSN: 0148-396X            Impact factor:   4.654


  45 in total

1.  Bilateral subthalamic stimulation for advanced Parkinson disease: early experience at an Eastern center.

Authors:  Shang-Ming Chiou; Yu-Chin Lin; Ming-Kuei Lu; Chon-Haw Tsai
Journal:  Neurol Sci       Date:  2014-11-14       Impact factor: 3.307

Review 2.  Computer-aided navigation in neurosurgery.

Authors:  P Grunert; K Darabi; J Espinosa; R Filippi
Journal:  Neurosurg Rev       Date:  2003-05       Impact factor: 3.042

3.  [Preoperative imaging as the basis for image-guided neurosurgery].

Authors:  D Winkler; G Strauss; S Hesse; A Goldammer; M Hund-Georgiadis; A Richter; O Sabri; T Kahn; J Meixensberger
Journal:  Radiologe       Date:  2004-07       Impact factor: 0.635

4.  Accuracy of thoracolumbar transpedicular and vertebral body percutaneous screw placement: coupling the Rosa® Spine robot with intraoperative flat-panel CT guidance--a cadaver study.

Authors:  M Lefranc; J Peltier
Journal:  J Robot Surg       Date:  2015-10-22

5.  Patient-specific analysis of the volume of tissue activated during deep brain stimulation.

Authors:  Christopher R Butson; Scott E Cooper; Jaimie M Henderson; Cameron C McIntyre
Journal:  Neuroimage       Date:  2006-11-17       Impact factor: 6.556

6.  Stereotactic neurosurgical planning, recording, and visualization for deep brain stimulation in non-human primates.

Authors:  Svjetlana Miocinovic; Jianyu Zhang; Weidong Xu; Gary S Russo; Jerrold L Vitek; Cameron C McIntyre
Journal:  J Neurosci Methods       Date:  2006-12-21       Impact factor: 2.390

Review 7.  Deep brain stimulation: overview and update.

Authors:  Martin L Bootin
Journal:  J Clin Monit Comput       Date:  2006-09-02       Impact factor: 2.502

Review 8.  [Precision in orthopaedic computer navigation].

Authors:  T Hüfner; D Kendoff; M Citak; J Geerling; C Krettek
Journal:  Orthopade       Date:  2006-10       Impact factor: 1.087

9.  Probabilistic analysis of activation volumes generated during deep brain stimulation.

Authors:  Christopher R Butson; Scott E Cooper; Jaimie M Henderson; Barbara Wolgamuth; Cameron C McIntyre
Journal:  Neuroimage       Date:  2010-10-23       Impact factor: 6.556

10.  Stereotactic Placement of Intratumoral Catheters for Continuous Infusion Delivery of Herpes Simplex Virus -1 G207 in Pediatric Malignant Supratentorial Brain Tumors.

Authors:  Joshua D Bernstock; Zachary Wright; Asim K Bag; Florian Gessler; George Yancey Gillespie; James M Markert; Gregory K Friedman; James M Johnston
Journal:  World Neurosurg       Date:  2018-11-24       Impact factor: 2.104

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