477
Views
27
CrossRef citations to date
0
Altmetric
Education Report

Intraoperative ultrasound in neurosurgery – a practical guide

, , &
Pages 510-517 | Received 19 Aug 2009, Accepted 10 May 2010, Published online: 24 Sep 2010

References

  • McGirt MJ, Attenello FJ, Datoo G, et al. Intraoperative ultrasonography as a guide to patient selection for duraplasty after suboccipital decompression in children with Chiari malformation type I. J Neurosurg Pediatr 2008;2(1):52–7.
  • Yeh DD, Koch B, Crone KR. Intraoperative ultrasonography used to determine the extent of surgery necessary during posterior fossa decompression in children with Chiari malformation type I. J Neurosurg 2006;105(1 Suppl):26–32.
  • Milhorat TH, Bolognese PA. Tailored operative technique for Chiari type I malformation using intraoperative color Doppler ultrasonography. Neurosurgery 2003;53(4):899–905; discussion 05–6.
  • DiPietro MA, Venes JL, Rubin JM. Arnold-Chiari II malformation: intraoperative real-time US. Radiology 1987;164(3):799–804.
  • Clark S, Sangra M, Hayhurst C, et al The use of noninvasive electromagnetic neuronavigation for slit ventricle syndrome and complex hydrocephalus in a pediatric population. J Neurosurg Pediatr 2008;2(6):430–4.
  • St. Amour TE, Rubin JM, Dohrmann GJ. The central canal of the spinal cord: ultrasonic identification. Radiology 1984;152(3):767–9.
  • Rubin JM, Dohrmann GJ. Use of ultrasonically guided probes and catheters in neurosurgery. Surg Neurol 1982;18(2):143–8.
  • Simpson B. Peroperative Ultrasound Scanning. New York: Churchill Livingstone, 1995.
  • Woydt M, Perez J, Meixensberger J, Krone A, Soerensen N, Roosen K. Intra-operative colour-duplex-sonography in the surgical management of cerebral AV-malformations. Acta Neurochir (Wien) 1998;140(7):689–98.
  • Woydt M, Greiner K, Perez J, Krone A, Roosen K. Intraoperative color duplex sonography of basal arteries during aneurysm surgery. J Neuroimaging 1997;7(4):203–7.
  • Unsgaard G, Gronningsaeter A, Ommedal S, Hernes TAN Brain operations guided by real-time two-dimensional ultrasound: new possibilities as a result of improved image quality. Neurosurgery 2002;51(2):402–11; discussion 11–2.
  • Comeau RM, Sadikot AF, Fenster A, Peters TM. Intraoperative ultrasound for guidance and tissue shift correction in image-guided neurosurgery. Med Phys 2000;27(4):787–800.
  • Letteboer MM, Willems PW, Viergever MA, Niessen WJ. Brain shift estimation in image-guided neurosurgery using 3-D ultrasound. IEEE Trans Biomed Eng 2005;52(2):268–76.
  • Maurer CR, Jr, Hill DLG, Martin AJ, et al. Investigation of intraoperative brain deformation using a 1.5-T interventional MR system: preliminary results.IEEE Trans Med Imaging 1998;17(5):817–25.
  • Nimsky C, Ganslandt O, Cerny S, Hastreiter P, Greiner G, Fahlbusch R. Quantification of, visualization of, and compensation for brain shift using intraoperative magnetic resonance imaging. Neurosurgery 2000;47(5):1070–80.
  • Roberts DW, Hartov A, Kennedy FE, Miga MI, Paulsen KD. Intraoperative brain shift and deformation: a quantitative analysis of cortical displacement in 28 cases. Neurosurgery 1998;43(4):749–60.
  • Hata N, Dohi T, Iseki H, Takakura K. Development of a frameless and armless stereotactic neuronavigation system with ultrasonographic registration. Neurosurgery 1997;41(3):608–13; discussion 13–4.
  • Shillito J, Jr. Craniopharyngiomas: the subfrontal approach, or none at all? Clin Neurosurg 1980;27:188–205.
  • Koivukangas J, Louhisalmi Y, Alakuijala J, Oikarinen J. Ultrasound-controlled neuronavigator-guided brain surgery. J Neurosurg 1993;79(1):36–42.
  • Miga MI, Paulsen KD, Lemery JM, et al. Model-updated image guidance: initial clinical experiences with gravity-induced brain deformation. IEEE Trans Med Imaging 1999;18(10):866–74.
  • Reinges MHT, Krombach G, Nguyen H, et al. Assessment of intraoperative brain tissue movements by frameless neuronavigation. Computer integrated surgery in the areas of head and spine. Medicine-Technology-Society, Linz, Austria, September 1–5, 1997Linz, Austria; 1997:218.
  • Dorwood NL, Alberti O, Velani B, et al. Postimaging brain distortion: magnitude, correlates, and impact on neuronavigation. J Neurosurg 1998;88(4):656–62.
  • Keles GE, Lamborn KR, Berger MS. Coregistration accuracy and detection of brain shift using intraoperative sononavigation during resection of hemispheric tumors. Neurosurgery 2003;53(3):556–62; discussion 62–4.
  • Woydt M, Krone A, Soerensen N, Roosen K. Ultrasound-guided neuronavigation of deep-seated cavernous haemangiomas: clinical results and navigation techniques. Br J Neurosurg 2001;15(6):485–95.
  • Woydt M, Horowski A, Krone A, Soerensen N, Roosen K. Localization and characterization of intracerebral cavernous angiomas by intra-operative high-resolution colour-duplex-sonography. Acta Neurochir (Wien) 1999;141(2):143–51; discussion 52.
  • Woydt M, Krone A, Becker G, Schmidt K, Roggendorf W, Roosen K. Correlation of intra-operative ultrasound with histopathologic findings after tumour resection in supratentorial gliomas. A method to improve gross total tumour resection. Acta Neurochir (Wien) 1996;138(12):1391–8.
  • Becker G, Krone A, Schmitt K, et al. Preoperative and postoperative follow-up in high-grade gliomas: comparison of transcranial color-coded real-time sonography and computed tomography findings. Ultrasound Med Biol 1995;21(9):1123–35.
  • Cengiz C, Keramettin A. Intraoperative ultrasonographic characteristics of malignant intracranial lesions. Neurol India 2005;53(2):208–11; discussion 12.
  • Woydt M, Horowski A, Krauss J, Krone A, Soerensen N, Roosen K. Three-dimensional intraoperative ultrasound of vascular malformations and supratentorial tumors. J Neuroimaging 2002;12(1):28–34.
  • Lindner D, Trantakis C, Renner C, et al. Application of intraoperative 3D ultrasound during navigated tumor resection. Minim Invasive Neurosurg 2006;49(4):197–202.
  • Unsgaard G, Selbekk T, Muller TB, et al. Ability of navigated 3D ultrasound to delineate gliomas and metastases–comparison of image interpretations with histopathology. Acta Neurochir (Wien) 2005;147(12):1259–69; discussion 69.
  • He W, Jiang XQ, Wang S, et al. Intraoperative contrast-enhanced ultrasound for brain tumors. Clin Imaging 2008;32(6):419–24.
  • Engelhardt M, Hansen C, Eyding J, et al. Feasibility of contrast-enhanced sonography during resection of cerebral tumours: initial results of a prospective study. Ultrasound Med Biol 2007;33(4):571–5.
  • Engelhardt M, Hansen C, Ermert H, Harders A, Schmieder K. Contrast enhanced ultrasound during surgery of low-grade brain tumor. Deutsche Gesellschaft für Neurochirurgie. 60. Jahrestagung der Deutschen Gesellschaft für Neurochirurgie (DGNC), Joint Meeting mit den Benelux-Ländern und Bulgarien. 2009; DOI: 10.3205/09dgnc022, URN: urn:nbn:de:0183-09dgnc0228.
  • Vicenzini E, Delfini R, Magri F, et al. Semiquantitative human cerebral perfusion assessment with ultrasound in brain space-occupying lesions: preliminary data. J Ultrasound Med 2008;27(5):685–92.
  • Klotzsch C, Bozzato A, Lammers G, Mull M, Noth J. Contrast-enhanced three-dimensional transcranial color-coded sonography of intracranial stenoses. AJNR Am J Neuroradiol 2002;23(2):208–12.
  • Mathiesen T, Peredo I, Edner G, et al. Neuronavigation for arteriovenous malformation surgery by intraoperative three-dimensional ultrasound angiography. Neurosurgery 2007;60(4 Suppl 2):345–50; discussion 50–1.
  • Resch KD, Schroeder HW. Endoneurosonography: technique and equipment, anatomy and imaging, and clinical application. Neurosurgery 2007;61(3 Suppl):146–59; discussion 59–60.
  • Resch KD Transendoscopic ultrasound in ventricular lesions. Surg Neurol 2008;69(4):375–82; discussion 82.
  • Woydt M, Kripfgans OD, Fowlkes BJ, Roosen K, Carson PL. Functional imaging with intraoperative ultrasound: detection of somatosensory cortex in dogs with color-duplex sonography. Neurosurgery 2005;56(2):355–63; discussion 55–63.
  • Hynynen K, McDannold N, Vykhodtseva N, et al. Focal disruption of the blood-brain barrier due to 260-kHz ultrasound bursts: a method for molecular imaging and targeted drug delivery. J Neurosurg 2006;105(3):445–54.
  • Jolesz FA. Future perspectives for intraoperative MRI. Neurosurg Clin N Am 2005;16(1):201–13.
  • Rubin JM, Quint DJ. Intraoperative US versus intraoperative MR imaging for guidance during intracranial neurosurgery. Radiology 2000;215(3):917–8.
  • Rasmussen IA, Jr, Lindseth F, Rygh OM, et al. Functional neuronavigation combined with intra-operative 3D ultrasound: initial experiences during surgical resections close to eloquent brain areas and future directions in automatic brain shift compensation of preoperative data. Acta Neurochir (Wien) 2007;149(4):365–78.
  • Sergeeva O, Uhlemann F, Schackert G, Hergeth C, Morgenstern U, Steinmeier R. Integration of intraoperative 3D-ultrasound in a commercial navigation system. Zentralbl Neurochir 2006;67(4):197–203.
  • Hernes TA, Ommedal S, Lie T, Lindseth F, Lango T, Unsgaard G. Stereoscopic navigation-controlled display of preoperative MRI and intraoperative 3D ultrasound in planning and guidance of neurosurgery: new technology for minimally invasive image-guided surgery approaches. Minim Invasive Neurosurg 2003;46(3):129–37.
  • Unsgaard G, Ommedal S, Muller T, Gronningsaeter A, Nagelhus Hernes TA. Neuronavigation by intraoperative three-dimensional ultrasound: initial experience during brain tumor resection. Neurosurgery 2002;50(4):804–12; discussion 12.
  • Wadley JP, Thomas GT. Neuronavigation: Accuracy, benefits and pitfalls. Neurosurg Q 2000;10:276–310.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.