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Research Article

Effect of registration mode on neuronavigation precision: an exploration of the role of random error

, , & , MD, MBA
Pages 172-178 | Received 07 Oct 2011, Accepted 19 Mar 2012, Published online: 08 Jun 2012

References

  • Taylor JR. An Introduction to Error Analysis: The Study of Uncertainties in Physical Measurements, Second. University Science Books, Sausalito, CA 1997
  • Morris AS. Measurement and Instrumentation Principles. Butterworth-Heinemann, Boston 2001
  • Eggers G, Mühling J, Marmulla R. Image-to-patient registration techniques in head surgery. Int J Oral Maxillofac Surg 2006; 35: 1081–1095
  • Woerdeman PA, Willems PW, Noordmans HJ, Tulleken CA, van der Sprenkel JW. Application accuracy in frameless image-guided neurosurgery: A comparison study of three patient-to-image registration methods. J Neurosurg 2007; 106: 1012–1016
  • Mascott CR, Sol JC, Bousquet P, Lagarrigue J, Lazorthes Y, Lauwers-Cances V. Quantification of true in vivo (application) accuracy in cranial image-guided surgery: Influence of mode of patient registration. Neurosurgery 2006; 59: ONS146–ONS156
  • Wolfsberger S, Rössler K, Regatschnig R, Ungersböck K. Anatomical landmarks for image registration in frameless stereotactic neuronavigation. Neurosurg Rev 2002; 25: 68–72
  • Raabe A, Krishnan R, Wolff R, Hermann E, Zimmermann M, Seifert V. Laser surface scanning for patient registration in intracranial image-guided surgery. Neurosurgery 2002; 50: 797–802
  • Giese H, Hoffmann KT, Winkelmann A, Stockhammer F, Jallo GI, Thomale UW. Precision of navigated stereotactic probe implantation into the brainstem. J Neurosurg Pediatr 2010; 5: 350–359
  • Benardete EA, Leonard MA, Weiner HL. Comparison of frameless stereotactic systems: Accuracy, precision, and applications. Neurosurgery 2001; 49: 1409–1415
  • Bjartmarz H, Rehncrona S. Comparison of accuracy and precision between frame-based and frameless stereotactic navigation for deep brain stimulation electrode implantation. Stereotact Funct Neurosurg 2007; 85: 235–242
  • Pfisterer WK, Papadopoulos S, Drumm DA, Smith K, Preul MC. Fiducial versus nonfiducial neuronavigation registration assessment and considerations of accuracy. Neurosurgery 2008; 62: 201–208
  • Makiese O, Pillai P, Salma A, Sammet S, Ammirati M. Accuracy validation in a cadaver model of cranial neuronavigation using a surface autoregistration mask. Neurosurgery 2010; 67: ONS85–ONS90
  • Engelke K, Gluer CC. Quality and performance measures in bone densitometry. Part 1: Errors and diagnosis. Osteoporos Int 2006; 17: 1283–1292
  • Hofer M, Strauß G, Koulechov K, Dietz A, Definition of accuracy and precision - evaluating CAS-systems. In: Lemke HU, Inamura K, Doi K, Vannier MW, Farman AG, editors. Computer Assisted Radiology and Surgery: Proceedings of the 19th International Congress and Exhibition (CARS 2005), Berlin, Germany, June 2005. Amsterdam: Elsevier; 2005. pp 548–552
  • Kirkup L, Frenkel B. An introduction to uncertainty in measurement using the GUM (guide to the expression of uncertainty in measurement). Cambridge University Press, Cambridge, UK 2006
  • Menditto A, Patriarca M, Magnusson B. Understanding the meaning of accuracy, trueness and precision. Accred Qual Assur 2007; 12: 45–47
  • Strauss G, Hofer M, Korb W, Trantakis C, Winkler D, Burgert O, Schulz T, Dietz A, Meixenberger J, Koulechov K. [Accuracy and precision in the evaluation of computer assisted surgical systems. A definition] [In German]. HNO 2006; 54: 78–84
  • JCGM 100:2008. Evaluation of measurement data – Guide to the expression of uncertainty in measurement. Joint Committee for Guides in Metrology; 2008
  • ISO 5725-1. Accuracy (trueness and precision) of measurement methods and results. International Organization for Standardization, Geneva 1994
  • Golfinos JG, Fitzpatrick BC, Smith LR, Spetzler RF. Clinical use of a frameless stereotactic arm: Results of 325 cases. J Neurosurg 1995; 83: 197–205
  • Schlaier J, Warnat J, Brawanski A. Registration accuracy and practicability of laser-directed surface matching. Comput Aided Surg 2002; 7: 284–290
  • Schicho K, Figl M, Seemann R, Donat M, Pretterklieber ML, Birkfellner W, Reichwein A, Wanschitz F, Kainberger F, Bergmann H, et al. Comparison of laser surface scanning and fiducial marker-based registration in frameless stereotaxy. Technical note. J Neurosurg 2007; 106: 704–709
  • Li QH, Zamorano L, Pandya A, Perez R, Gong J, Diaz F. The application accuracy of the NeuroMate robot - A quantitative comparison with frameless and frame-based surgical localization systems. Comput Aided Surg 2002; 7: 90–98

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