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Erschienen in: International Journal of Computer Assisted Radiology and Surgery 12/2017

29.08.2017 | Original Article

A simulator for advanced analysis of a 5-DOF EM tracking systems in use for image-guided surgery

verfasst von: Mengfei Li, Christian Hansen, Georg Rose

Erschienen in: International Journal of Computer Assisted Radiology and Surgery | Ausgabe 12/2017

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Abstract

Purpose

To assess the accuracy of medical electromagnetic tracking systems, reference positioning systems are generally required. Errors are unavoidable in such systems, and despite how tiny they may be, prevent the ground truth from being known. In this work, a simulator was developed and used to analyze the theoretical system performances in electromagnetic tracking.

Methods

To simulate the entire tracking process, the magnetic dipole model, Faraday’s law, and a mathematical optimization algorithm are applied. With the simulator, we optimized the spatial placement of the transmitter coils, analyzed the tracking accuracy by applying stochastic and optimized coil placement. Additionally, the performance of the calibration of transmitter coils’ measurement error and Kalman filtering was tested.

Results

The results show that, after optimizing the spatial arrangement of the transmitter coils, the tracking accuracy is significantly improved to a much higher level compared with applying statistical arrangement. The measurement errors of the transmitter coils’ positions and orientations can be totally rectified by the developed calibration algorithm when no noises are introduced. The Kalman filter reduces the sensor jitter errors caused by noise, which potentially allows the EM tracking system to reach a larger volume of interest.

Conclusions

We proposed a simulator for advanced analysis in electromagnetic tracking without hardware requirements. Grounded on this, we performed an optimization of the spatial arrangement of the transmitter coils to improve the tracking accuracy further. The performances of the calibration algorithm and Kalman filtering were also evaluated. The developed simulator can also be applied for other analysis in electromagnetic tracking.
Literatur
2.
Zurück zum Zitat Franz AM, März K, Hummel J, Birkfellner W, Bendl R, Delorme S, Schlemmer HP, Meinzer HP, Maier-Hein L (2012) Electromagnetic tracking for us-guided interventions: standardized assessment of a new compact field generator. Int J Comput Assist Radiol Surg 7(6):813–818. doi:10.1007/s11548-012-0740-3 CrossRefPubMed Franz AM, März K, Hummel J, Birkfellner W, Bendl R, Delorme S, Schlemmer HP, Meinzer HP, Maier-Hein L (2012) Electromagnetic tracking for us-guided interventions: standardized assessment of a new compact field generator. Int J Comput Assist Radiol Surg 7(6):813–818. doi:10.​1007/​s11548-012-0740-3 CrossRefPubMed
3.
4.
Zurück zum Zitat Franz AM, Haidegger T, Birkfellner W, Cleary K, Peters TM, Maier-Hein L (2014) Electromagnetic tracking in medicine—a review of technology, validation, and applications. IEEE Trans Med Imaging 33(8):1702–1725. doi:10.1109/TMI.2014.2321777 CrossRefPubMed Franz AM, Haidegger T, Birkfellner W, Cleary K, Peters TM, Maier-Hein L (2014) Electromagnetic tracking in medicine—a review of technology, validation, and applications. IEEE Trans Med Imaging 33(8):1702–1725. doi:10.​1109/​TMI.​2014.​2321777 CrossRefPubMed
10.
Zurück zum Zitat Bien T, Rose G (2012) Algorithm for calibration of the electromagnetic tracking system. In: 2012 IEEE-EMBS international conference on biomedical and health informatics (BHI), IEEE, pp 85–88. doi:10.1109/BHI.2012.6211512 Bien T, Rose G (2012) Algorithm for calibration of the electromagnetic tracking system. In: 2012 IEEE-EMBS international conference on biomedical and health informatics (BHI), IEEE, pp 85–88. doi:10.​1109/​BHI.​2012.​6211512
12.
Zurück zum Zitat Frantz DD, Wiles A, Leis S, Kirsch S (2003) Accuracy assessment protocols for electromagnetic tracking systems. Phys Med Biol 48(14):2241CrossRefPubMed Frantz DD, Wiles A, Leis S, Kirsch S (2003) Accuracy assessment protocols for electromagnetic tracking systems. Phys Med Biol 48(14):2241CrossRefPubMed
13.
Zurück zum Zitat Nafis C, Jensen V, Beauregard L, Anderson P (2006) Method for estimating dynamic em tracking accuracy of surgical navigation tools. Proc SPIE Med Image 2006 Vis Image Guided Proc Display 6141:152–167. doi:10.1117/12.653448 Nafis C, Jensen V, Beauregard L, Anderson P (2006) Method for estimating dynamic em tracking accuracy of surgical navigation tools. Proc SPIE Med Image 2006 Vis Image Guided Proc Display 6141:152–167. doi:10.​1117/​12.​653448
14.
Zurück zum Zitat Wilson E, Yaniv Z, Zhang H, Nafis C, Shen E, Shechter G, Wiles A, Peters T, Lindisch D, Cleary K (2007) A hardware and software protocol for the evaluation of electromagnetic tracker accuracy in the clinical environment: a multi-center study. Proc SPIE 6509:65092T. doi:10.1117/12.712701 CrossRef Wilson E, Yaniv Z, Zhang H, Nafis C, Shen E, Shechter G, Wiles A, Peters T, Lindisch D, Cleary K (2007) A hardware and software protocol for the evaluation of electromagnetic tracker accuracy in the clinical environment: a multi-center study. Proc SPIE 6509:65092T. doi:10.​1117/​12.​712701 CrossRef
17.
Zurück zum Zitat Li M, Hansen C, Rose G (2015) A robust electromagnetic tracking system for clinical applications. In: Proceedings of the annual meeting of the German society of computer- and robot-assisted surgery, pp 31–36 Li M, Hansen C, Rose G (2015) A robust electromagnetic tracking system for clinical applications. In: Proceedings of the annual meeting of the German society of computer- and robot-assisted surgery, pp 31–36
18.
Zurück zum Zitat Wiles AD, Thompson DG, Frantz DD (2004) Accuracy assessment and interpretation for optical tracking systems. Proc SPIE 5367:421–432. doi:10.1117/12.536128 Wiles AD, Thompson DG, Frantz DD (2004) Accuracy assessment and interpretation for optical tracking systems. Proc SPIE 5367:421–432. doi:10.​1117/​12.​536128
19.
Zurück zum Zitat Maier-Hein L, Franz A, Birkfellner W, Hummel J, Gergel I, Wegner I, Meinzer HP (2012) Standardized assessment of new electromagnetic field generators in an interventional radiology setting. Med Phys 39(6):3424–3434CrossRefPubMed Maier-Hein L, Franz A, Birkfellner W, Hummel J, Gergel I, Wegner I, Meinzer HP (2012) Standardized assessment of new electromagnetic field generators in an interventional radiology setting. Med Phys 39(6):3424–3434CrossRefPubMed
21.
Zurück zum Zitat O’Donoghue K, Eustace D, Griffiths J, O’Shea M, Power T, Mansfield H, Cantillon-Murphy P (2014) Catheter position tracking system using planar magnetics and closed loop current control. IEEE Trans Magn 50(7):1–9. doi:10.1109/TMAG.2014.2304271 CrossRef O’Donoghue K, Eustace D, Griffiths J, O’Shea M, Power T, Mansfield H, Cantillon-Murphy P (2014) Catheter position tracking system using planar magnetics and closed loop current control. IEEE Trans Magn 50(7):1–9. doi:10.​1109/​TMAG.​2014.​2304271 CrossRef
23.
Zurück zum Zitat Schneider M, Stevens C (2007) Development and testing of a new magnetic-tracking device for image guidance. In: Medical imaging, International society for optics and photonics, pp 65.090I–65.090I. doi:10.1117/12.713249 Schneider M, Stevens C (2007) Development and testing of a new magnetic-tracking device for image guidance. In: Medical imaging, International society for optics and photonics, pp 65.090I–65.090I. doi:10.​1117/​12.​713249
25.
Zurück zum Zitat Stenger B, Mendonça PR, Cipolla R (2001) Model-based hand tracking using an unscented Kalman filter. BMVC 1:63–72. doi:10.5244/C.15.8 Stenger B, Mendonça PR, Cipolla R (2001) Model-based hand tracking using an unscented Kalman filter. BMVC 1:63–72. doi:10.​5244/​C.​15.​8
26.
Zurück zum Zitat Bertozzi M, Broggi A, Fascioli A, Tibaldi A, Chapuis R, Chausse F (2004) Pedestrian localization and tracking system with Kalman filtering. In: Intelligent vehicles symposium, IEEE, pp 584–589. doi:10.1109/IVS.2004.1336449 Bertozzi M, Broggi A, Fascioli A, Tibaldi A, Chapuis R, Chausse F (2004) Pedestrian localization and tracking system with Kalman filtering. In: Intelligent vehicles symposium, IEEE, pp 584–589. doi:10.​1109/​IVS.​2004.​1336449
27.
Zurück zum Zitat Schenderlein M, Rasche V, Dietmayer K (2011) Three-dimensional catheter tip tracking from asynchronous biplane X-ray image sequences using non-linear state filtering. In: Bildverarbeitung für die Medizin 2011, Springer, pp 234–238. doi:10.1007/978-3-642-19335-4_49 Schenderlein M, Rasche V, Dietmayer K (2011) Three-dimensional catheter tip tracking from asynchronous biplane X-ray image sequences using non-linear state filtering. In: Bildverarbeitung für die Medizin 2011, Springer, pp 234–238. doi:10.​1007/​978-3-642-19335-4_​49
28.
Zurück zum Zitat Li M, Song S, Hu C, Chen D, Meng MQH (2010) A novel method of 6-dof electromagnetic navigation system for surgical robot. In: 2010 8th world congress on intelligent control and automation (WCICA), IEEE, pp 2163–2167. doi:10.1109/WCICA.2010.5554348 Li M, Song S, Hu C, Chen D, Meng MQH (2010) A novel method of 6-dof electromagnetic navigation system for surgical robot. In: 2010 8th world congress on intelligent control and automation (WCICA), IEEE, pp 2163–2167. doi:10.​1109/​WCICA.​2010.​5554348
30.
Zurück zum Zitat Li M, Hansen C, Rose G (2017) A software solution to dynamically reduce metallic distortions of electromagnetic tracking systems for image-guided surgery. Int J Comput Assist Radiol Surg 2:1–13. doi:10.1007/s11548-017-1546-0 Li M, Hansen C, Rose G (2017) A software solution to dynamically reduce metallic distortions of electromagnetic tracking systems for image-guided surgery. Int J Comput Assist Radiol Surg 2:1–13. doi:10.​1007/​s11548-017-1546-0
31.
Zurück zum Zitat Aron M, Kerrien E, Berger MO, Laprie Y (2006) Coupling electromagnetic sensors and ultrasound images for tongue tracking: acquisition setup and preliminary results. In: 7th international seminar on speech production-ISSP’06, CEFALA-Centro de Estudos da Fala, Acústica, Linguagem e músicA Aron M, Kerrien E, Berger MO, Laprie Y (2006) Coupling electromagnetic sensors and ultrasound images for tongue tracking: acquisition setup and preliminary results. In: 7th international seminar on speech production-ISSP’06, CEFALA-Centro de Estudos da Fala, Acústica, Linguagem e músicA
Metadaten
Titel
A simulator for advanced analysis of a 5-DOF EM tracking systems in use for image-guided surgery
verfasst von
Mengfei Li
Christian Hansen
Georg Rose
Publikationsdatum
29.08.2017
Verlag
Springer International Publishing
Erschienen in
International Journal of Computer Assisted Radiology and Surgery / Ausgabe 12/2017
Print ISSN: 1861-6410
Elektronische ISSN: 1861-6429
DOI
https://doi.org/10.1007/s11548-017-1662-x

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