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Journal Abstract Search


1029 related items for PubMed ID: 16383248

  • 1. Early programmable valve malfunctions in pediatric hydrocephalus.
    Mangano FT, Menendez JA, Habrock T, Narayan P, Leonard JR, Park TS, Smyth MD.
    J Neurosurg; 2005 Dec; 103(6 Suppl):501-7. PubMed ID: 16383248
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  • 2. Congenital hydrocephalus and ventriculoperitoneal shunts: influence of etiology and programmable shunts on revisions.
    Notarianni C, Vannemreddy P, Caldito G, Bollam P, Wylen E, Willis B, Nanda A.
    J Neurosurg Pediatr; 2009 Dec; 4(6):547-52. PubMed ID: 19951042
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  • 3. A multicenter prospective cohort study of the Strata valve for the management of hydrocephalus in pediatric patients.
    Kestle JR, Walker ML, Strata Investigators.
    J Neurosurg; 2005 Mar; 102(2 Suppl):141-5. PubMed ID: 16156221
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  • 4. Endoscopic third ventriculostomy: an outcome analysis of primary cases and procedures performed after ventriculoperitoneal shunt malfunction.
    O'Brien DF, Javadpour M, Collins DR, Spennato P, Mallucci CL.
    J Neurosurg; 2005 Nov; 103(5 Suppl):393-400. PubMed ID: 16302610
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  • 9. The programmable adult Codman Hakim valve is useful even in very small children with hydrocephalus. A 7-year retrospective study with special focus on cost/benefit analysis.
    Arnell K, Eriksson E, Olsen L.
    Eur J Pediatr Surg; 2006 Feb; 16(1):1-7. PubMed ID: 16544218
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  • 10. Use of programmable versus nonprogrammable shunts in the management of hydrocephalus secondary to aneurysmal subarachnoid hemorrhage: a retrospective study with cost-benefit analysis.
    Lee L, King NK, Kumar D, Ng YP, Rao J, Ng H, Lee KK, Wang E, Ng I.
    J Neurosurg; 2014 Oct; 121(4):899-903. PubMed ID: 24745705
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  • 11. [The Codman Medos programmable shunt valve. Evaluation of 53 implantations in 50 patients].
    Belliard H, Roux FX, Turak B, Nataf F, Devaux B, Cioloca C.
    Neurochirurgie; 1996 Oct; 42(3):139-45; discussion 145-6. PubMed ID: 9084740
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  • 12. Parent/guardian knowledge regarding implanted shunt type, setting, and symptoms of malfunction/infection.
    Ackerman LL, Fulkerson DH, Jea A, Smith JL.
    J Neurosurg Pediatr; 2018 Apr; 21(4):359-366. PubMed ID: 29328006
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  • 14. Comparison of programmable shunt valves vs standard valves for communicating hydrocephalus of adults: a retrospective analysis of 407 patients.
    Ringel F, Schramm J, Meyer B.
    Surg Neurol; 2005 Jan; 63(1):36-41; discussion 41. PubMed ID: 15639519
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  • 16. Experiences with a gravity-assisted valve in hydrocephalic children. Clinical article.
    Haberl EJ, Messing-Juenger M, Schuhmann M, Eymann R, Cedzich C, Fritsch MJ, Kiefer M, Van Lindert EJ, Geyer C, Lehner M, Rohde V, Stroux A, von Berenberg P.
    J Neurosurg Pediatr; 2009 Sep; 4(3):289-94. PubMed ID: 19772417
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  • 17. What is the risk of a shunt malfunction after elective intradural surgery?
    Venable GT, Green CS, Smalley ZS, Bedford EC, Modica JS, Klimo P.
    J Neurosurg Pediatr; 2015 Dec; 16(6):642-7. PubMed ID: 26359674
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  • 18. Nonprogrammable and programmable cerebrospinal fluid shunt valves: a 5-year study.
    Hatlen TJ, Shurtleff DB, Loeser JD, Ojemann JG, Avellino AM, Ellenbogen RG.
    J Neurosurg Pediatr; 2012 May; 9(5):462-7. PubMed ID: 22546022
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  • 19. Ventriculo-peritoneal shunting devices for hydrocephalus.
    Garegnani L, Franco JV, Ciapponi A, Garrote V, Vietto V, Portillo Medina SA.
    Cochrane Database Syst Rev; 2020 Jun 16; 6(6):CD012726. PubMed ID: 32542676
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  • 20. Postshunt insertion CSF leaks in infants treated by an adjustable valve opening pressure reduction.
    Rohde V, Weinzierl M, Mayfrank L, Gilsbach JM.
    Childs Nerv Syst; 2002 Dec 16; 18(12):702-4. PubMed ID: 12483354
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