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Published in: Child's Nervous System 4/2016

01-04-2016 | Technical Note

Bilateral occipital endoscopic choroid plexus cauterization for persistent hydrocephalus following frontal endoscopic third ventriculostomy and choroid plexus cauterization—the “bowling ball” technique

Authors: Hannah E. Goldstein, Benjamin C. Kennedy, Junia Santos, Richard C. E. Anderson, Neil A. Feldstein

Published in: Child's Nervous System | Issue 4/2016

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Abstract

Endoscopic third ventriculostomy with choroid plexus cauterization (ETV/CPC) as a primary treatment for hydrocephalus is gaining popularity in North America, particularly among the infant population. Unfortunately, despite considerable experience with ETV/CPC at several centers, treatment failures still exist. Early reports have suggested that greater than 90 % cauterization of the choroid plexus is associated with improved clinical outcomes. However, individual patient anatomy and smaller overall ventricular size can limit the amount of choroid plexus cauterization that is technically possible through a single frontal burr hole. Furthermore, the degree of cauterization achieved by surgeons using this technique is difficult to quantify objectively. In this report, we describe the case of an infant who failed initial ETV/CPC but then had successful resolution of hydrocephalus after additional choroid plexus cauterization performed through bilateral occipital burr holes. The child remains shunt-free over a year after treatment, suggesting that this three-pronged CPC approach (the “bowling ball” technique) may be successful in some young children with persistent hydrocephalus after ETV/CPC from a single frontal burr hole.
Literature
1.
go back to reference Warf BC (2005) Comparison of endoscopic third ventriculostomy alone and combined with choroid plexus cauterization in infants younger than 1 year of age: a prospective study in 550 African children. J Neurosurg 103:475–481PubMed Warf BC (2005) Comparison of endoscopic third ventriculostomy alone and combined with choroid plexus cauterization in infants younger than 1 year of age: a prospective study in 550 African children. J Neurosurg 103:475–481PubMed
2.
go back to reference Stone SS, Warf BC (2014) Combined endoscopic third ventriculostomy and choroid plexus cauterization as primary treatment for infant hydrocephalus: a prospective North American series. J Neurosurg Pediatr 14:439–446CrossRefPubMed Stone SS, Warf BC (2014) Combined endoscopic third ventriculostomy and choroid plexus cauterization as primary treatment for infant hydrocephalus: a prospective North American series. J Neurosurg Pediatr 14:439–446CrossRefPubMed
3.
go back to reference Chamiraju P, Bhatia S, Sandberg DI, Ragheb J (2014) Endoscopic third ventriculostomy and choroid plexus cauterization in posthemorrhagic hydrocephalus of prematurity. J Neurosurg Pediatr 13:433–439CrossRefPubMed Chamiraju P, Bhatia S, Sandberg DI, Ragheb J (2014) Endoscopic third ventriculostomy and choroid plexus cauterization in posthemorrhagic hydrocephalus of prematurity. J Neurosurg Pediatr 13:433–439CrossRefPubMed
4.
go back to reference Kulkarni AV, Riva-Cambrin J, Browd SR, Drake JM, Holubkov R, Kestle JR, Limbrick DD, Rozzelle CJ, Simon TD, Tamber MS, Wellons 3rd JC, Whitehead WE, Hydrocephalus Clinical Research N (2014) Endoscopic third ventriculostomy and choroid plexus cauterization in infants with hydrocephalus: a retrospective Hydrocephalus Clinical Research Network study. J Neurosurg Pediatr 14:224–229CrossRefPubMed Kulkarni AV, Riva-Cambrin J, Browd SR, Drake JM, Holubkov R, Kestle JR, Limbrick DD, Rozzelle CJ, Simon TD, Tamber MS, Wellons 3rd JC, Whitehead WE, Hydrocephalus Clinical Research N (2014) Endoscopic third ventriculostomy and choroid plexus cauterization in infants with hydrocephalus: a retrospective Hydrocephalus Clinical Research Network study. J Neurosurg Pediatr 14:224–229CrossRefPubMed
5.
go back to reference Warf BC, Campbell JW, Riddle E (2011) Initial experience with combined endoscopic third ventriculostomy and choroid plexus cauterization for post-hemorrhagic hydrocephalus of prematurity: the importance of prepontine cistern status and the predictive value of FIESTA MRI imaging. Childs Nerv Syst 27:1063–1071CrossRefPubMed Warf BC, Campbell JW, Riddle E (2011) Initial experience with combined endoscopic third ventriculostomy and choroid plexus cauterization for post-hemorrhagic hydrocephalus of prematurity: the importance of prepontine cistern status and the predictive value of FIESTA MRI imaging. Childs Nerv Syst 27:1063–1071CrossRefPubMed
6.
go back to reference Zandian A, Haffner M, Johnson J, Rozzelle CJ, Tubbs RS, Loukas M (2014) Endoscopic third ventriculostomy with/without choroid plexus cauterization for hydrocephalus due to hemorrhage, infection, Dandy-Walker malformation, and neural tube defect: a meta-analysis. Childs Nerv Syst 30:571–578CrossRefPubMed Zandian A, Haffner M, Johnson J, Rozzelle CJ, Tubbs RS, Loukas M (2014) Endoscopic third ventriculostomy with/without choroid plexus cauterization for hydrocephalus due to hemorrhage, infection, Dandy-Walker malformation, and neural tube defect: a meta-analysis. Childs Nerv Syst 30:571–578CrossRefPubMed
7.
go back to reference Warf BC, Mugamba J, Kulkarni AV (2010) Endoscopic third ventriculostomy in the treatment of childhood hydrocephalus in Uganda: report of a scoring system that predicts success. J Neurosurg Pediatr 5:143–148CrossRefPubMed Warf BC, Mugamba J, Kulkarni AV (2010) Endoscopic third ventriculostomy in the treatment of childhood hydrocephalus in Uganda: report of a scoring system that predicts success. J Neurosurg Pediatr 5:143–148CrossRefPubMed
8.
go back to reference Warf BC, Kulkarni AV (2010) Intraoperative assessment of cerebral aqueduct patency and cisternal scarring: impact on success of endoscopic third ventriculostomy in 403 African children. J Neurosurg Pediatr 5:204–209CrossRefPubMed Warf BC, Kulkarni AV (2010) Intraoperative assessment of cerebral aqueduct patency and cisternal scarring: impact on success of endoscopic third ventriculostomy in 403 African children. J Neurosurg Pediatr 5:204–209CrossRefPubMed
9.
go back to reference Oi S, Matsumoto S (1987) Infantile hydrocephalus and the slit ventricle syndrome in early infancy. Childs Nerv Syst 3:145–150CrossRefPubMed Oi S, Matsumoto S (1987) Infantile hydrocephalus and the slit ventricle syndrome in early infancy. Childs Nerv Syst 3:145–150CrossRefPubMed
10.
go back to reference St George E, Natarajan K, Sgouros S (2004) Changes in ventricular volume in hydrocephalic children following successful endoscopic third ventriculostomy. Childs Nerv Syst 20:834–838CrossRefPubMed St George E, Natarajan K, Sgouros S (2004) Changes in ventricular volume in hydrocephalic children following successful endoscopic third ventriculostomy. Childs Nerv Syst 20:834–838CrossRefPubMed
11.
go back to reference Beems T, Grotenhuis JA (2002) Is the success rate of endoscopic third ventriculostomy age-dependent? An analysis of the results of endoscopic third ventriculostomy in young children. Childs Nerv Syst 18:605–608CrossRefPubMed Beems T, Grotenhuis JA (2002) Is the success rate of endoscopic third ventriculostomy age-dependent? An analysis of the results of endoscopic third ventriculostomy in young children. Childs Nerv Syst 18:605–608CrossRefPubMed
12.
go back to reference Boynton BR, Boynton CA, Merritt TA, Vaucher YE, James HE, Bejar RF (1986) Ventriculoperitoneal shunts in low birth weight infants with intracranial hemorrhage: neurodevelopmental outcome. Neurosurgery 18:141–145CrossRefPubMed Boynton BR, Boynton CA, Merritt TA, Vaucher YE, James HE, Bejar RF (1986) Ventriculoperitoneal shunts in low birth weight infants with intracranial hemorrhage: neurodevelopmental outcome. Neurosurgery 18:141–145CrossRefPubMed
13.
go back to reference Drake JM, Kestle JR, Milner R, Cinalli G, Boop F, Piatt J. Jr., Haines S, Schiff SJ, Cochrane DD, Steinbok P, MacNeil N (1998) Randomized trial of cerebrospinal fluid shunt valve design in pediatric hydrocephalus. Neurosurgery 43: 294–303; discussion 303-295CrossRefPubMed Drake JM, Kestle JR, Milner R, Cinalli G, Boop F, Piatt J. Jr., Haines S, Schiff SJ, Cochrane DD, Steinbok P, MacNeil N (1998) Randomized trial of cerebrospinal fluid shunt valve design in pediatric hydrocephalus. Neurosurgery 43: 294–303; discussion 303-295CrossRefPubMed
14.
go back to reference Levy ML, Masri LS, McComb JG (1997) Outcome for preterm infants with germinal matrix hemorrhage and progressive hydrocephalus. Neurosurgery 41:1111–1117 discussion 1117-1118CrossRefPubMed Levy ML, Masri LS, McComb JG (1997) Outcome for preterm infants with germinal matrix hemorrhage and progressive hydrocephalus. Neurosurgery 41:1111–1117 discussion 1117-1118CrossRefPubMed
15.
go back to reference Resch B, Gedermann A, Maurer U, Ritschl E, Muller W (1996) Neurodevelopmental outcome of hydrocephalus following intra−/periventricular hemorrhage in preterm infants: short- and long-term results. Childs Nerv Syst 12:27–33CrossRefPubMed Resch B, Gedermann A, Maurer U, Ritschl E, Muller W (1996) Neurodevelopmental outcome of hydrocephalus following intra−/periventricular hemorrhage in preterm infants: short- and long-term results. Childs Nerv Syst 12:27–33CrossRefPubMed
16.
go back to reference Warf BC, Campbell JW (2008) Combined endoscopic third ventriculostomy and choroid plexus cauterization as primary treatment of hydrocephalus for infants with myelomeningocele: long-term results of a prospective intent-to-treat study in 115 East African infants. J Neurosurg Pediatr 2:310–316CrossRefPubMed Warf BC, Campbell JW (2008) Combined endoscopic third ventriculostomy and choroid plexus cauterization as primary treatment of hydrocephalus for infants with myelomeningocele: long-term results of a prospective intent-to-treat study in 115 East African infants. J Neurosurg Pediatr 2:310–316CrossRefPubMed
18.
go back to reference Fujimura M, Onuma T, Kameyama M, Motohashi O, Kon H, Yamamoto K, Ishii K, Tominaga T (2004) Hydrocephalus due to cerebrospinal fluid overproduction by bilateral choroid plexus papillomas. Childs Nerv Syst 20:485–488PubMed Fujimura M, Onuma T, Kameyama M, Motohashi O, Kon H, Yamamoto K, Ishii K, Tominaga T (2004) Hydrocephalus due to cerebrospinal fluid overproduction by bilateral choroid plexus papillomas. Childs Nerv Syst 20:485–488PubMed
19.
go back to reference Hirano H, Hirahara K, Asakura T, Shimozuru T, Kadota K, Kasamo S, Shimohonji M, Kimotsuki K, Goto M (1994) Hydrocephalus due to villous hypertrophy of the choroid plexus in the lateral ventricles. Case report. J Neurosurg 80:321–323CrossRefPubMed Hirano H, Hirahara K, Asakura T, Shimozuru T, Kadota K, Kasamo S, Shimohonji M, Kimotsuki K, Goto M (1994) Hydrocephalus due to villous hypertrophy of the choroid plexus in the lateral ventricles. Case report. J Neurosurg 80:321–323CrossRefPubMed
20.
go back to reference Philips MF, Shanno G, Duhaime AC (1998) Treatment of villous hypertrophy of the choroid plexus by endoscopic contact coagulation. Pediatr Neurosurg 28:252–256CrossRefPubMed Philips MF, Shanno G, Duhaime AC (1998) Treatment of villous hypertrophy of the choroid plexus by endoscopic contact coagulation. Pediatr Neurosurg 28:252–256CrossRefPubMed
21.
go back to reference Scarff JE (1970) The treatment of nonobstructive (communicating) hydrocephalus by endoscopic cauterization of the choroid plexuses. J Neurosurg 33:1–18CrossRefPubMed Scarff JE (1970) The treatment of nonobstructive (communicating) hydrocephalus by endoscopic cauterization of the choroid plexuses. J Neurosurg 33:1–18CrossRefPubMed
Metadata
Title
Bilateral occipital endoscopic choroid plexus cauterization for persistent hydrocephalus following frontal endoscopic third ventriculostomy and choroid plexus cauterization—the “bowling ball” technique
Authors
Hannah E. Goldstein
Benjamin C. Kennedy
Junia Santos
Richard C. E. Anderson
Neil A. Feldstein
Publication date
01-04-2016
Publisher
Springer Berlin Heidelberg
Published in
Child's Nervous System / Issue 4/2016
Print ISSN: 0256-7040
Electronic ISSN: 1433-0350
DOI
https://doi.org/10.1007/s00381-015-2925-x

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