Skip to main content
Erschienen in: Acta Neurochirurgica 5/2009

01.05.2009 | Clinical Article

Surgical planning for microsurgical excision of cerebral arterio-venous malformations using virtual reality technology

verfasst von: Ivan Ng, Peter Y. K. Hwang, Dinesh Kumar, Cheng Kiang Lee, Ralf A. Kockro, Y. Y. Sitoh

Erschienen in: Acta Neurochirurgica | Ausgabe 5/2009

Einloggen, um Zugang zu erhalten

Abstract

Background

To evaluate the feasibility of surgical planning using a virtual reality platform workstation in the treatment of cerebral arterio-venous malformations (AVMs)

Methods

Patient- specific data of multiple imaging modalities were co-registered, fused and displayed as a 3D stereoscopic object on the Dextroscope, a virtual reality surgical planning platform. This system allows for manipulation of 3D data and for the user to evaluate and appreciate the angio-architecture of the nidus with regards to position and spatial relationships of critical feeders and draining veins. We evaluated the ability of the Dextroscope to influence surgical planning by providing a better understanding of the angio-architecture as well as its impact on the surgeon’s pre- and intra-operative confidence and ability to tackle these lesions.

Findings

Twenty four patients were studied. The mean age was 29.65 years. Following pre-surgical planning on the Dextroscope, 23 patients underwent microsurgical resection after pre-surgical virtual reality planning, during which all had documented complete resection of the AVM. Planning on the virtual reality platform allowed for identification of critical feeders and draining vessels in all patients. The appreciation of the complex patient specific angio-architecture to establish a surgical plan was found to be invaluable in the conduct of the procedure and was found to enhance the surgeon’s confidence significantly.

Conclusion

Surgical planning of resection of an AVM with a virtual reality system allowed detailed and comprehensive analysis of 3D multi-modality imaging data and, in our experience, proved very helpful in establishing a good surgical strategy, enhancing intra-operative spatial orientation and increasing surgeon’s confidence.
Literatur
1.
Zurück zum Zitat Albert P (1982) Personal experience in the treatment of 178 cases of arterio-venous malformations of the brain. Acta Neurochir (Wien) 61:207–226. doi:10.1007/BF01740086 CrossRef Albert P (1982) Personal experience in the treatment of 178 cases of arterio-venous malformations of the brain. Acta Neurochir (Wien) 61:207–226. doi:10.​1007/​BF01740086 CrossRef
3.
Zurück zum Zitat Bernardo A, Preul MC, Zabramski JM, Spetzler RF (2003) A three dimensional interactive virtual dissection model to simulate transpetrous surgical avenues. Neurosurgery 52(3):499–505PubMedCrossRef Bernardo A, Preul MC, Zabramski JM, Spetzler RF (2003) A three dimensional interactive virtual dissection model to simulate transpetrous surgical avenues. Neurosurgery 52(3):499–505PubMedCrossRef
6.
Zurück zum Zitat Henn JS, Lemole GM Jr, Ferreira MA, Gonzalez LF, Schornak M, Preul MC, Spetzler RF (2002) Interactive stereoscopic virtual reality: a new tool for neurosurgical education. J Neurosurg 96(1):144–149PubMed Henn JS, Lemole GM Jr, Ferreira MA, Gonzalez LF, Schornak M, Preul MC, Spetzler RF (2002) Interactive stereoscopic virtual reality: a new tool for neurosurgical education. J Neurosurg 96(1):144–149PubMed
7.
Zurück zum Zitat Henn JS, Turner DA (2005) Neurosurgery teaching techniques and neurosurgical simulation. In: Truner DA (ed) Modern Neurosurgery- clinical translation of neuroscience advances. CRC, Florida, pp 291–302 Henn JS, Turner DA (2005) Neurosurgery teaching techniques and neurosurgical simulation. In: Truner DA (ed) Modern Neurosurgery- clinical translation of neuroscience advances. CRC, Florida, pp 291–302
10.
Zurück zum Zitat Kikuta K, Takagi Y, Nozaki K, Hanakawa T, Okada T, Miki Y, Fushimi Y, Fukuyama H, Hashimoto N (2006) Early experience with 3-T magnetic resonance tractography in the surgery of cerebral arterio-venous malformations in and around the visual pathway. Neurosurgery 58(2):331–337PubMedCrossRef Kikuta K, Takagi Y, Nozaki K, Hanakawa T, Okada T, Miki Y, Fushimi Y, Fukuyama H, Hashimoto N (2006) Early experience with 3-T magnetic resonance tractography in the surgery of cerebral arterio-venous malformations in and around the visual pathway. Neurosurgery 58(2):331–337PubMedCrossRef
11.
Zurück zum Zitat Kockro RA, Serra L, Yeo TT, Chan C, Sitoh YY, Chua GG, Lee E, Hoe LY, Ng H, Nowinski W (2000) Planning and simulation of neurosurgery in a virtual reality environment. Neurosurgery 46(1):118–137PubMedCrossRef Kockro RA, Serra L, Yeo TT, Chan C, Sitoh YY, Chua GG, Lee E, Hoe LY, Ng H, Nowinski W (2000) Planning and simulation of neurosurgery in a virtual reality environment. Neurosurgery 46(1):118–137PubMedCrossRef
12.
Zurück zum Zitat Larsen OV (2001) The Virtual brain project: development of a neurosurgical simulator. Stud Health Technol Inform 81:256–262PubMed Larsen OV (2001) The Virtual brain project: development of a neurosurgical simulator. Stud Health Technol Inform 81:256–262PubMed
15.
Zurück zum Zitat Mathiessen T, Peredo I, Edner G, Kihlstrom L, Svensson M, Ulfarsson E (2007) Neuronavigation for arterio-venous malformation surgery by intraoperative three dimensional ultrasound angiography. Neurosurgery 60:345–350 Mathiessen T, Peredo I, Edner G, Kihlstrom L, Svensson M, Ulfarsson E (2007) Neuronavigation for arterio-venous malformation surgery by intraoperative three dimensional ultrasound angiography. Neurosurgery 60:345–350
17.
Zurück zum Zitat Parkinson D, Bachers G (1980) Arterio-venous malformations. Summary of 100 consecutive supratentorial cases. J Neurosurg 53:285–299PubMed Parkinson D, Bachers G (1980) Arterio-venous malformations. Summary of 100 consecutive supratentorial cases. J Neurosurg 53:285–299PubMed
18.
Zurück zum Zitat Radetzky A (2000) ROBO-SIM: a simulator for minimally invasive neurosurgery using an active manipulator. Stud Health Technol Inform 77:1165–1169PubMed Radetzky A (2000) ROBO-SIM: a simulator for minimally invasive neurosurgery using an active manipulator. Stud Health Technol Inform 77:1165–1169PubMed
19.
Zurück zum Zitat Russell SM, Woo HH, Joseffer SS, Jafar JJ (2002) Role of frameless stereotaxy in the surgical treatment of cerebral arterio-venous malformations: techniques and outcomes in a controlled study of 44 consecutive patients. Neurosurgery 51(5):1108–1118. doi:10.1097/00006123-200211000-00002 PubMedCrossRef Russell SM, Woo HH, Joseffer SS, Jafar JJ (2002) Role of frameless stereotaxy in the surgical treatment of cerebral arterio-venous malformations: techniques and outcomes in a controlled study of 44 consecutive patients. Neurosurgery 51(5):1108–1118. doi:10.​1097/​00006123-200211000-00002 PubMedCrossRef
20.
Zurück zum Zitat Spetzler RF, Martin NA (1986) A proposed grading system for arterio-venous malformations. J Neurosurg 65:476–483PubMedCrossRef Spetzler RF, Martin NA (1986) A proposed grading system for arterio-venous malformations. J Neurosurg 65:476–483PubMedCrossRef
21.
Zurück zum Zitat Spicer MA, Apuzzo MLJ (2003) Virtual reality neurosurgery and the contemporary landscape. Neurosurgery 52(3):489–497PubMedCrossRef Spicer MA, Apuzzo MLJ (2003) Virtual reality neurosurgery and the contemporary landscape. Neurosurgery 52(3):489–497PubMedCrossRef
22.
Zurück zum Zitat Strauss G, Trantakis C, Nowatius E, Falk V, Mass H, Cakmak K, Strauss E, Dietz A, Meixenberger J, Bootz F, Kuhnnapfel U (2005) Virtual training in head and neurosurgery. Laryngorhinootologie 84(5):335–344PubMedCrossRef Strauss G, Trantakis C, Nowatius E, Falk V, Mass H, Cakmak K, Strauss E, Dietz A, Meixenberger J, Bootz F, Kuhnnapfel U (2005) Virtual training in head and neurosurgery. Laryngorhinootologie 84(5):335–344PubMedCrossRef
23.
Zurück zum Zitat Sugita K (1985) Microneurosurgical Atlas. Springer-Verlag, Berlin, pp 136–177 Sugita K (1985) Microneurosurgical Atlas. Springer-Verlag, Berlin, pp 136–177
24.
Zurück zum Zitat Unsgaard G, Ommedal S, Rygh OM, Lindseth F (2005) Operation of arterio-venous malformations assisted by stereoscopic navigation controlled display of preoperative magnetic resonance angiography and intra-operative ultrasound angiography. Neurosurgery 56:281–290. doi:10.1227/01.NEU.0000157005.51053.41 PubMedCrossRef Unsgaard G, Ommedal S, Rygh OM, Lindseth F (2005) Operation of arterio-venous malformations assisted by stereoscopic navigation controlled display of preoperative magnetic resonance angiography and intra-operative ultrasound angiography. Neurosurgery 56:281–290. doi:10.​1227/​01.​NEU.​0000157005.​51053.​41 PubMedCrossRef
25.
Zurück zum Zitat Yarsagil MG (1988) Microneurosurgery, Vol III B: AVM of the Brain. George Thieme Verlag, Stuttgart, pp 25–53 Yarsagil MG (1988) Microneurosurgery, Vol III B: AVM of the Brain. George Thieme Verlag, Stuttgart, pp 25–53
Metadaten
Titel
Surgical planning for microsurgical excision of cerebral arterio-venous malformations using virtual reality technology
verfasst von
Ivan Ng
Peter Y. K. Hwang
Dinesh Kumar
Cheng Kiang Lee
Ralf A. Kockro
Y. Y. Sitoh
Publikationsdatum
01.05.2009
Verlag
Springer Vienna
Erschienen in
Acta Neurochirurgica / Ausgabe 5/2009
Print ISSN: 0001-6268
Elektronische ISSN: 0942-0940
DOI
https://doi.org/10.1007/s00701-009-0278-5

Weitere Artikel der Ausgabe 5/2009

Acta Neurochirurgica 5/2009 Zur Ausgabe

Leitlinien kompakt für die Neurologie

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Update Neurologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.