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15.05.2024 | Original Article

Noctopus: a novel device and method for patient registration and navigation in image-guided cranial surgery

verfasst von: Yusuf Özbek, Zoltán Bárdosi, Wolfgang Freysinger

Erschienen in: International Journal of Computer Assisted Radiology and Surgery

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Abstract

Purpose

A patient registration and real-time surgical navigation system and a novel device and method (Noctopus) is presented. With any tracking system technology and a patient/target-specific registration marker configuration, submillimetric target registration error (TRE), high-precise application accuracy for single or multiple anatomical targets in image-guided neurosurgery or ENT surgery is realized.

Methods

The system utilizes the advantages of marker-based registration technique and allows to perform automatized patient registration using on the device attached and with patient scanned four fiducial markers. The best possible sensor/marker positions around the patient’s head are determined for single or multiple region(s) of interest (target/s) in the anatomy. Once brought at the predetermined positions the device can be operated with any tracking system for registration purposes.

Results

Targeting accuracy was evaluated quantitatively at various target positions on a phantom skull. The target registration error (TRE) was measured on individual targets using an electromagnetic tracking system. The overall averaged TRE was 0.22 ± 0.08 mm for intraoperative measurements.

Conclusion

An automatized patient registration system using optimized patient-/target-specific marker configurations is proposed. High-precision and user-error-free intraoperative surgical navigation with minimum number of registration markers and sensors is realized. The targeting accuracy is significantly improved in minimally invasive neurosurgical and ENT interventions.
Literatur
1.
Zurück zum Zitat Maurer CR, Fitzpatrick JM, Wang MY, Galloway RL, Maciunas RJ, Allen GS (1997) Registration of head volume images using implantable fiducial markers. IEEE Trans Med Imaging 16(4):447–462CrossRefPubMed Maurer CR, Fitzpatrick JM, Wang MY, Galloway RL, Maciunas RJ, Allen GS (1997) Registration of head volume images using implantable fiducial markers. IEEE Trans Med Imaging 16(4):447–462CrossRefPubMed
2.
Zurück zum Zitat Luebbers H, Messmer P, Obwegeser JA, Zwahlen RA, Kikinis R, Graetz KW, Matthews F (2008) Comparison of different registration methods for surgical navigation in craniomaxillofacial surgery. J Craniomaxillofac Surg 36(2):109–116CrossRefPubMed Luebbers H, Messmer P, Obwegeser JA, Zwahlen RA, Kikinis R, Graetz KW, Matthews F (2008) Comparison of different registration methods for surgical navigation in craniomaxillofacial surgery. J Craniomaxillofac Surg 36(2):109–116CrossRefPubMed
3.
Zurück zum Zitat Horn Berthold KP (1987) Closed-form solution of absolute orientation using unit quaternions. J Opt Soc Am 4(4):629–642CrossRef Horn Berthold KP (1987) Closed-form solution of absolute orientation using unit quaternions. J Opt Soc Am 4(4):629–642CrossRef
4.
Zurück zum Zitat Besl P, McKay H (1992) A method for registration of 3-D shapes. IEEE Trans Pattern Anal Mach Intell 14(2):239–256CrossRef Besl P, McKay H (1992) A method for registration of 3-D shapes. IEEE Trans Pattern Anal Mach Intell 14(2):239–256CrossRef
5.
Zurück zum Zitat Fitzpatrick JM, Milan S (2009) Handbook of Medical Imaging, Volume 2. Medical Image Processing and Analysis, Chapter 8: Image Registration PM80, ISBN: 9780819477606 Fitzpatrick JM, Milan S (2009) Handbook of Medical Imaging, Volume 2. Medical Image Processing and Analysis, Chapter 8: Image Registration PM80, ISBN: 9780819477606
6.
Zurück zum Zitat Eggers G, Mühling J, Marmulla R (2006) Image-to-patient registration techniques in head surgery. Int J Oral Maxillofac Surg 35(12):1081–1095CrossRefPubMed Eggers G, Mühling J, Marmulla R (2006) Image-to-patient registration techniques in head surgery. Int J Oral Maxillofac Surg 35(12):1081–1095CrossRefPubMed
7.
Zurück zum Zitat West JB, Fitzpatrick JM, Toms SA, Maurer CR, Maciunas RJ (2001) Fiducial point placement and the accuracy of point-based, rigid body registration. Neurosurgery 48(4):810–816PubMed West JB, Fitzpatrick JM, Toms SA, Maurer CR, Maciunas RJ (2001) Fiducial point placement and the accuracy of point-based, rigid body registration. Neurosurgery 48(4):810–816PubMed
8.
Zurück zum Zitat Pillai P, Sammet S, Ammirati M (2008) Application accuracy of computed tomography based, image-guided navigation of temporal bone. Neurosurgery 63(4 Suppl 2):326–332PubMed Pillai P, Sammet S, Ammirati M (2008) Application accuracy of computed tomography based, image-guided navigation of temporal bone. Neurosurgery 63(4 Suppl 2):326–332PubMed
9.
Zurück zum Zitat Grauvogel TD, Soteriou E, Metzger MC, Berlis A, Maier W (2010) Influence of different registration modalities on navigation accuracy in ear, nose, and throat surgery depending on the surgical field. Laryngoscope 120(5):881–888CrossRefPubMed Grauvogel TD, Soteriou E, Metzger MC, Berlis A, Maier W (2010) Influence of different registration modalities on navigation accuracy in ear, nose, and throat surgery depending on the surgical field. Laryngoscope 120(5):881–888CrossRefPubMed
10.
Zurück zum Zitat Hofer M, Dittrich E, Baumberger C, Strauss M, Dietz A, Lüth T, Strauss G (2010) The influence of various registration procedures upon surgical accuracy during navigated controlled petrous bone surgery. Otolaryngol Head Neck Surg 143(2):258–262CrossRefPubMed Hofer M, Dittrich E, Baumberger C, Strauss M, Dietz A, Lüth T, Strauss G (2010) The influence of various registration procedures upon surgical accuracy during navigated controlled petrous bone surgery. Otolaryngol Head Neck Surg 143(2):258–262CrossRefPubMed
11.
Zurück zum Zitat Helm PA, Eckel TS (1998) Accuracy of registration methods in frameless stereotaxis. Comput Aided Surg 3(2):51–56CrossRefPubMed Helm PA, Eckel TS (1998) Accuracy of registration methods in frameless stereotaxis. Comput Aided Surg 3(2):51–56CrossRefPubMed
12.
Zurück zum Zitat Metzger MC, Rafii A, Holhweg-Majert B, Pham AM, Strong B (2007) Comparison of 4 registration strategies for computer-aided maxillofacial surgery. Otolaryngol Head Neck Surg 137(1):93–99CrossRefPubMed Metzger MC, Rafii A, Holhweg-Majert B, Pham AM, Strong B (2007) Comparison of 4 registration strategies for computer-aided maxillofacial surgery. Otolaryngol Head Neck Surg 137(1):93–99CrossRefPubMed
13.
Zurück zum Zitat Vrionis FD, Foley KT, Robertson JH, Shea JJ (1997) Use of cranial surface anatomic fiducials for interactive image-guided navigation in the temporal bone: a cadaveric study. Neurosurgery 40(4):755–764 Vrionis FD, Foley KT, Robertson JH, Shea JJ (1997) Use of cranial surface anatomic fiducials for interactive image-guided navigation in the temporal bone: a cadaveric study. Neurosurgery 40(4):755–764
14.
Zurück zum Zitat Villalobos H, Germano IM (1999) Clinical evaluation of multimodality registration in frameless stereotaxy. Comput Aided Surg 4(1):45–49CrossRefPubMed Villalobos H, Germano IM (1999) Clinical evaluation of multimodality registration in frameless stereotaxy. Comput Aided Surg 4(1):45–49CrossRefPubMed
15.
Zurück zum Zitat Wolfsberger S, Rössler K, Regatsching R, Ungersböck K (2002) Anatomical landmarks for image registration in frameless stereotactic neuronavigation. Neurosurg Rev 25(1–2):68–72CrossRefPubMed Wolfsberger S, Rössler K, Regatsching R, Ungersböck K (2002) Anatomical landmarks for image registration in frameless stereotactic neuronavigation. Neurosurg Rev 25(1–2):68–72CrossRefPubMed
16.
Zurück zum Zitat Woerdeman PA, Willems PWA, Noordmans HJ, Tulleken CAF, Sprenkel JWB (2007) Application accuracy in frameless image-guided neurosurgery: a comparison study of three patient-to-image registration methods. J Neurosurg 106(6):1012–1016CrossRefPubMed Woerdeman PA, Willems PWA, Noordmans HJ, Tulleken CAF, Sprenkel JWB (2007) Application accuracy in frameless image-guided neurosurgery: a comparison study of three patient-to-image registration methods. J Neurosurg 106(6):1012–1016CrossRefPubMed
17.
Zurück zum Zitat Shamir RR, Joskowicz L, Spektor S, Shoshan Y (2009) Localization and registration accuracy in image guided neurosurgery: a clinical study. Int J Comput Assist Radiol Surg 4(1):45–52CrossRefPubMed Shamir RR, Joskowicz L, Spektor S, Shoshan Y (2009) Localization and registration accuracy in image guided neurosurgery: a clinical study. Int J Comput Assist Radiol Surg 4(1):45–52CrossRefPubMed
18.
Zurück zum Zitat Kremser C, Plangger C, Bösecke R, Pallua A, Aichner F, Felber SR (1997) Image registration of MR and CT images using a frameless fiducial marker system. Magn Reason Imaging 15(5):579–585CrossRef Kremser C, Plangger C, Bösecke R, Pallua A, Aichner F, Felber SR (1997) Image registration of MR and CT images using a frameless fiducial marker system. Magn Reason Imaging 15(5):579–585CrossRef
19.
Zurück zum Zitat Steinmeier R, Rachinger J, Kaus M, Ganslandt O, Huk W, Fahlbusch R (2000) Factors influencing the application accuracy of neuronavigation systems. Stereotact Funct Neurosurg 75(4):188–202CrossRefPubMed Steinmeier R, Rachinger J, Kaus M, Ganslandt O, Huk W, Fahlbusch R (2000) Factors influencing the application accuracy of neuronavigation systems. Stereotact Funct Neurosurg 75(4):188–202CrossRefPubMed
20.
Zurück zum Zitat Hardy SM, Melroy C, White DR, Dubin M, Senior B (2006) A comparison of computer-aided surgery registration methods for endoscopic sinus surgery. Am J Rhinol 20(1):48–52CrossRefPubMed Hardy SM, Melroy C, White DR, Dubin M, Senior B (2006) A comparison of computer-aided surgery registration methods for endoscopic sinus surgery. Am J Rhinol 20(1):48–52CrossRefPubMed
21.
Zurück zum Zitat Yinlong L, Zhijian S, Manning W (2017) A new robust markerless method for automatic image-to-patient registration in image-guided neurosurgery system. Comput Assist Surg 22(1):319–325 Yinlong L, Zhijian S, Manning W (2017) A new robust markerless method for automatic image-to-patient registration in image-guided neurosurgery system. Comput Assist Surg 22(1):319–325
22.
Zurück zum Zitat Mongen MA, Willems PWA (2019) Current accuracy of surface matching compared to adhesive markers in patient-to-image registration. Acta Neurochir 161:865–870CrossRefPubMed Mongen MA, Willems PWA (2019) Current accuracy of surface matching compared to adhesive markers in patient-to-image registration. Acta Neurochir 161:865–870CrossRefPubMed
23.
Zurück zum Zitat Raabe A, Krishnan R, Wolff R, Hermann E, Zimmermann M, Seifert V (2002) Laser surface scanning for patient registration in intracranial image-guided surgery. Neurosurgery 50(4):797–801CrossRefPubMed Raabe A, Krishnan R, Wolff R, Hermann E, Zimmermann M, Seifert V (2002) Laser surface scanning for patient registration in intracranial image-guided surgery. Neurosurgery 50(4):797–801CrossRefPubMed
24.
Zurück zum Zitat Schlaier J, Warnat J, Brawanski A (2002) Registration accuracy and practicability of laserdirected surface matching. Comput Aided Surg 7(5):284–290 Schlaier J, Warnat J, Brawanski A (2002) Registration accuracy and practicability of laserdirected surface matching. Comput Aided Surg 7(5):284–290
25.
Zurück zum Zitat Mascott CR, Sol J, Bousquet P, Lagarrigue J, Lazorthes Y, Lauwers-Cances V (2006) Quantification of true in vivo (application) accuracy in cranial image-guided surgery: influence of mode of patient registration. Neurosurgery 59(1):146–56 Mascott CR, Sol J, Bousquet P, Lagarrigue J, Lazorthes Y, Lauwers-Cances V (2006) Quantification of true in vivo (application) accuracy in cranial image-guided surgery: influence of mode of patient registration. Neurosurgery 59(1):146–56
26.
Zurück zum Zitat Arapakis I, Hubbe U, Maier W, Laszig R, Schipper J (2005) LED-Autoregistrierung in der navigierten endonasalen Nasennebenhöhlenchirurgie. Laryngorhinootologie 84(6):418–425 Arapakis I, Hubbe U, Maier W, Laszig R, Schipper J (2005) LED-Autoregistrierung in der navigierten endonasalen Nasennebenhöhlenchirurgie. Laryngorhinootologie 84(6):418–425
27.
Zurück zum Zitat Makiese O, Pillai P, Salma A, Sammet S, Ammirati M (2010) Accuracy Validation in a Cadaver Model of Cranial Neuronavigation Using a Surface Autoregistration Mask. Neurosurgery 67:85–90 Makiese O, Pillai P, Salma A, Sammet S, Ammirati M (2010) Accuracy Validation in a Cadaver Model of Cranial Neuronavigation Using a Surface Autoregistration Mask. Neurosurgery 67:85–90
28.
Zurück zum Zitat Bardosi Z (2015) OpenCL accelerated GPU binary morphology image filters for ITK. Insight J Bardosi Z (2015) OpenCL accelerated GPU binary morphology image filters for ITK. Insight J
29.
Zurück zum Zitat Fitzpatrick JM, West JB, Maurer CR (1998) Predicting error in rigid-body point-based registration. IEEE Trans Med Imaging 17(5):694–702CrossRefPubMed Fitzpatrick JM, West JB, Maurer CR (1998) Predicting error in rigid-body point-based registration. IEEE Trans Med Imaging 17(5):694–702CrossRefPubMed
30.
Zurück zum Zitat Zannoni C, Viceconti M, Pierotti L, Cappello A (1998) Analysis of titanium induced CT artifacts in the development of biomechanical finite element models. Med Eng Phys 20(9):653–659CrossRefPubMed Zannoni C, Viceconti M, Pierotti L, Cappello A (1998) Analysis of titanium induced CT artifacts in the development of biomechanical finite element models. Med Eng Phys 20(9):653–659CrossRefPubMed
Metadaten
Titel
Noctopus: a novel device and method for patient registration and navigation in image-guided cranial surgery
verfasst von
Yusuf Özbek
Zoltán Bárdosi
Wolfgang Freysinger
Publikationsdatum
15.05.2024
Verlag
Springer International Publishing
Erschienen in
International Journal of Computer Assisted Radiology and Surgery
Print ISSN: 1861-6410
Elektronische ISSN: 1861-6429
DOI
https://doi.org/10.1007/s11548-024-03135-w

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