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2018 | OriginalPaper | Buchkapitel

6. Neuronavigation im Kindesalter

verfasst von : U.-W. Thomale

Erschienen in: Pädiatrische Neurochirurgie

Verlag: Springer Berlin Heidelberg

Zusammenfassung

Die Neuronavigation ist zu einer wichtigen Voraussetzung für viele kinderneurochirurgische Eingriffe geworden. Verschiedene Systeme, wie die optische oder elektromagnetische Navigation, sind verfügbar. Die Verbindung mit der intraoperativen Bildgebung wie dem MRT oder dem Ultraschall können den „Brain Shift“, der während der Operation auftreten kann, berücksichtigen und einen neuen Datensatz zur weiteren Navigation zur Verfügung stellen. Indikationen zum Einsatz der Navigation sind vielseitig und beinhalten z. B. die Platzierung von Ventrikelkathetern, neuroendoskopische Eingriffe, Tumorresektionen, Biopsien und die Epilepsiechirurgie.
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Zurück zum Zitat Rohde V, Spangenberg P, Mayfrank L, Reinges M, Gilsbach JM, Coenen VA (2005) Advanced neuronavigation in skull base tumors and vascular lesions. Minim Invasive Neurosurg 48(1):13–18PubMed Rohde V, Spangenberg P, Mayfrank L, Reinges M, Gilsbach JM, Coenen VA (2005) Advanced neuronavigation in skull base tumors and vascular lesions. Minim Invasive Neurosurg 48(1):13–18PubMed
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Zurück zum Zitat Schulz M, Bohner G, Knaus H, Haberl H, Thomale UW (2010) Navigated endoscopic surgery for multiloculated hydrocephalus in children. J Neurosurg Pediatr 5(5):434–442PubMed Schulz M, Bohner G, Knaus H, Haberl H, Thomale UW (2010) Navigated endoscopic surgery for multiloculated hydrocephalus in children. J Neurosurg Pediatr 5(5):434–442PubMed
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Zurück zum Zitat Stieglitz LH, Giordano M, Samii M, Luedemann WO (2010) A new tool for frameless stereotactic placement of ventricular catheters. Neurosurgery 67(3 Suppl Operative):ons131–135; discussion ons135 Stieglitz LH, Giordano M, Samii M, Luedemann WO (2010) A new tool for frameless stereotactic placement of ventricular catheters. Neurosurgery 67(3 Suppl Operative):ons131–135; discussion ons135
Zurück zum Zitat Stone SS, Rutka JT (2008) Utility of neuronavigation and neuromonitoring in epilepsy surgery. Neurosurg Focus 25(3):E17PubMed Stone SS, Rutka JT (2008) Utility of neuronavigation and neuromonitoring in epilepsy surgery. Neurosurg Focus 25(3):E17PubMed
Zurück zum Zitat Surbeck W, Bouthillier A, Weil AG et al. (2011) The combination of subdural and depth electrodes for intracranial EEG investigation of suspected insular (perisylvian) epilepsy. Epilepsia 52(3):458–466PubMed Surbeck W, Bouthillier A, Weil AG et al. (2011) The combination of subdural and depth electrodes for intracranial EEG investigation of suspected insular (perisylvian) epilepsy. Epilepsia 52(3):458–466PubMed
Zurück zum Zitat Thomale UW, Knitter T, Schaumann A et al. (2013) Smartphone-assisted guide for the placement of ventricular catheters. Childs Nerv Syst 29(1):131–139PubMed Thomale UW, Knitter T, Schaumann A et al. (2013) Smartphone-assisted guide for the placement of ventricular catheters. Childs Nerv Syst 29(1):131–139PubMed
Zurück zum Zitat Thompson EM, Anderson GJ, Roberts CM, Hunt MA, Selden NR (2011) Skull-fixated fiducial markers improve accuracy in staged frameless stereotactic epilepsy surgery in children. J Neurosurg Pediatr 7(1):116–119PubMed Thompson EM, Anderson GJ, Roberts CM, Hunt MA, Selden NR (2011) Skull-fixated fiducial markers improve accuracy in staged frameless stereotactic epilepsy surgery in children. J Neurosurg Pediatr 7(1):116–119PubMed
Zurück zum Zitat Tirakotai W, Riegel T, Sure U, Bozinov O, Hellwig D, Bertalanffy H (2004) Clinical application of neuro-navigation in a series of single burr-hole procedures. Zentralbl Neurochir 65(2):57–64PubMed Tirakotai W, Riegel T, Sure U, Bozinov O, Hellwig D, Bertalanffy H (2004) Clinical application of neuro-navigation in a series of single burr-hole procedures. Zentralbl Neurochir 65(2):57–64PubMed
Zurück zum Zitat Tovar-Spinoza ZS, Ochi A, Rutka JT, Go C, Otsubo H (2008) The role of magnetoencephalography in epilepsy surgery. Neurosurg Focus 25(3):E16PubMed Tovar-Spinoza ZS, Ochi A, Rutka JT, Go C, Otsubo H (2008) The role of magnetoencephalography in epilepsy surgery. Neurosurg Focus 25(3):E16PubMed
Zurück zum Zitat Tsioulos K, Del Pero MM, Philpott C (2013) Pneumatisation of turbinates and paranasal sinuses in children: case report. J Laryngol Otol 127(4):419–422PubMed Tsioulos K, Del Pero MM, Philpott C (2013) Pneumatisation of turbinates and paranasal sinuses in children: case report. J Laryngol Otol 127(4):419–422PubMed
Zurück zum Zitat Tuominen J, Yrjana SK, Katisko JP, Heikkila J, Koivukangas J (2003) Intraoperative imaging in a comprehensive neuronavigation environment for minimally invasive brain tumour surgery. Acta Neurochir. Supplement 85:115–120 Tuominen J, Yrjana SK, Katisko JP, Heikkila J, Koivukangas J (2003) Intraoperative imaging in a comprehensive neuronavigation environment for minimally invasive brain tumour surgery. Acta Neurochir. Supplement 85:115–120
Zurück zum Zitat Turner MS, Nguyen HS, Payner TD, Cohen-Gadol AA (2011) A novel method for stereotactic, endoscope-assisted transtentorial placement of a shunt catheter into symptomatic posterior fossa cysts. J Neurosurg Pediatr 8(1):15–21PubMed Turner MS, Nguyen HS, Payner TD, Cohen-Gadol AA (2011) A novel method for stereotactic, endoscope-assisted transtentorial placement of a shunt catheter into symptomatic posterior fossa cysts. J Neurosurg Pediatr 8(1):15–21PubMed
Zurück zum Zitat Ulrich NH, Burkhardt JK, Serra C, Bernays RL, Bozinov O (2012) Resection of pediatric intracerebral tumors with the aid of intraoperative real-time 3-D ultrasound. Childs Nerv Syst 28(1):101–109PubMed Ulrich NH, Burkhardt JK, Serra C, Bernays RL, Bozinov O (2012) Resection of pediatric intracerebral tumors with the aid of intraoperative real-time 3-D ultrasound. Childs Nerv Syst 28(1):101–109PubMed
Zurück zum Zitat Van Gompel JJ, Meyer FB, Marsh WR, Lee KH, Worrell GA (2010) Stereotactic electroencephalography with temporal grid and mesial temporal depth electrode coverage: does technique of depth electrode placement affect outcome? J Neurosurg 113(1):32–38PubMedPubMedCentral Van Gompel JJ, Meyer FB, Marsh WR, Lee KH, Worrell GA (2010) Stereotactic electroencephalography with temporal grid and mesial temporal depth electrode coverage: does technique of depth electrode placement affect outcome? J Neurosurg 113(1):32–38PubMedPubMedCentral
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Zurück zum Zitat Vitaz TW, Hushek S, Shields CB, Moriarty T (2003) Intraoperative MRI for pediatric tumor management. Acta Neurochir. Supplement 85:73–78 Vitaz TW, Hushek S, Shields CB, Moriarty T (2003) Intraoperative MRI for pediatric tumor management. Acta Neurochir. Supplement 85:73–78
Zurück zum Zitat von Lehe M, Wellmer J, Urbach H, Schramm J, Elger CE, Clusmann H (2009) Epilepsy surgery for insular lesions. Rev Neurol 165(10):755–761 von Lehe M, Wellmer J, Urbach H, Schramm J, Elger CE, Clusmann H (2009) Epilepsy surgery for insular lesions. Rev Neurol 165(10):755–761
Zurück zum Zitat Wagner W, Gaab MR, Schroeder HW, Sehl U, Tschiltschke W (1999) Experiences with cranial neuronavigation in Pediatr Neurosurg. Pediatr Neurosurg 31(5):231–236PubMed Wagner W, Gaab MR, Schroeder HW, Sehl U, Tschiltschke W (1999) Experiences with cranial neuronavigation in Pediatr Neurosurg. Pediatr Neurosurg 31(5):231–236PubMed
Zurück zum Zitat Winkler D, Trantakis C, Lindner D, Richter A, Schober J, Meixensberger J (2003) Improving planning procedure in brain biopsy: coupling frame-based stereotaxy with navigational device STP 4.0. Minim Invasive Neurosurg 46(1):37–40PubMed Winkler D, Trantakis C, Lindner D, Richter A, Schober J, Meixensberger J (2003) Improving planning procedure in brain biopsy: coupling frame-based stereotaxy with navigational device STP 4.0. Minim Invasive Neurosurg 46(1):37–40PubMed
Zurück zum Zitat Winkler D, Lindner D, Richter A, Meixensberger J, Schober J (2006a) The value of intraoperative smear examination of stereotaxic brain specimens. Minim Invasive Neurosurg 49(6):353–356PubMed Winkler D, Lindner D, Richter A, Meixensberger J, Schober J (2006a) The value of intraoperative smear examination of stereotaxic brain specimens. Minim Invasive Neurosurg 49(6):353–356PubMed
Zurück zum Zitat Winkler D, Lindner D, Strauss G, Richter A, Schober R, Meixensberger J (2006b) Surgery of cavernous malformations with and without navigational support – a comparative study. Minim Invasive Neurosurg 49(1):15–19PubMed Winkler D, Lindner D, Strauss G, Richter A, Schober R, Meixensberger J (2006b) Surgery of cavernous malformations with and without navigational support – a comparative study. Minim Invasive Neurosurg 49(1):15–19PubMed
Zurück zum Zitat Woodworth GF, McGirt MJ, Elfert P, Sciubba DM, Rigamonti D (2005) Frameless stereotactic ventricular shunt placement for idiopathic intracranial hypertension. Stereotact Funct Neurosurg 83(1):12–16PubMed Woodworth GF, McGirt MJ, Elfert P, Sciubba DM, Rigamonti D (2005) Frameless stereotactic ventricular shunt placement for idiopathic intracranial hypertension. Stereotact Funct Neurosurg 83(1):12–16PubMed
Zurück zum Zitat Woodworth GF, McGirt MJ, Samdani A, Garonzik I, Olivi A, Weingart JD (2006) Frameless image-guided stereotactic brain biopsy procedure: diagnostic yield, surgical morbidity, and comparison with the frame-based technique. J Neurosurg 104(2):233–237PubMed Woodworth GF, McGirt MJ, Samdani A, Garonzik I, Olivi A, Weingart JD (2006) Frameless image-guided stereotactic brain biopsy procedure: diagnostic yield, surgical morbidity, and comparison with the frame-based technique. J Neurosurg 104(2):233–237PubMed
Zurück zum Zitat Wray CD, Kraemer DL, Yang T et al. (2011) Freehand placement of depth electrodes using electromagnetic frameless stereotactic guidance. J Neurosurg Pediatr 8(5):464–467PubMed Wray CD, Kraemer DL, Yang T et al. (2011) Freehand placement of depth electrodes using electromagnetic frameless stereotactic guidance. J Neurosurg Pediatr 8(5):464–467PubMed
Zurück zum Zitat Wurm G, Fellner FA (2004) Implementation of T2*-weighted MR for multimodal image guidance in cerebral cavernomas. NeuroImage 22(2):841–846PubMed Wurm G, Fellner FA (2004) Implementation of T2*-weighted MR for multimodal image guidance in cerebral cavernomas. NeuroImage 22(2):841–846PubMed
Zurück zum Zitat Yousaf J, Avula S, Abernethy LJ, Mallucci CL (2012) Importance of intraoperative magnetic resonance imaging for pediatric brain tumor surgery. Surg Neurol Int 3(Suppl 2):S65–72 Yousaf J, Avula S, Abernethy LJ, Mallucci CL (2012) Importance of intraoperative magnetic resonance imaging for pediatric brain tumor surgery. Surg Neurol Int 3(Suppl 2):S65–72
Zurück zum Zitat Zhu FP, Wu JS, Song YY et al. (2012) Clinical application of motor pathway mapping using diffusion tensor imaging tractography and intraoperative direct subcortical stimulation in cerebral glioma surgery: a prospective cohort study. Neurosurgery 71(6):1170–1183; discussion 1183–1174PubMed Zhu FP, Wu JS, Song YY et al. (2012) Clinical application of motor pathway mapping using diffusion tensor imaging tractography and intraoperative direct subcortical stimulation in cerebral glioma surgery: a prospective cohort study. Neurosurgery 71(6):1170–1183; discussion 1183–1174PubMed
Metadaten
Titel
Neuronavigation Neuronavigation im Kindesalter
verfasst von
U.-W. Thomale
Copyright-Jahr
2018
Verlag
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/978-3-662-48700-6_6

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