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Journal Abstract Search


415 related items for PubMed ID: 31525716

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  • 5. 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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  • 7. Telemetric assessment of intracranial pressure changes consequent to manipulations of the Codman-Medos programmable shunt valve.
    Frim DM, Lathrop D.
    Pediatr Neurosurg; 2000 Nov; 33(5):237-242. PubMed ID: 11155059
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  • 8. PROSAIKA: a prospective multicenter registry with the first programmable gravitational device for hydrocephalus shunting.
    Kehler U, Kiefer M, Eymann R, Wagner W, Tschan CA, Langer N, Rohde V, Ludwig HC, Gliemroth J, Meier U, Lemcke J, Thomale UW, Fritsch M, Krauss JK, Mirzayan MJ, Schuhmann M, Huthmann A.
    Clin Neurol Neurosurg; 2015 Oct; 137():132-6. PubMed ID: 26196478
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  • 9. Hydrodynamic properties of hydrocephalus shunts.
    Czosnyka Z, Czosnyka M, Richards H, Pickard JD.
    Acta Neurochir Suppl; 1998 Oct; 71():334-9. PubMed ID: 9779223
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  • 10. Influence of distal insertion technique, valve selection, and patient demographics on shunt survival in ventriculoperitoneal shunt insertion: A retrospective analysis of an Australian case series.
    Wearne JA, Davis GA.
    J Clin Neurosci; 2024 Jul; 125():168-174. PubMed ID: 38820856
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  • 11. 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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  • 12. In vivo intracranial pressure dynamics in patients with hydrocephalus treated by shunt placement.
    Frim DM, Goumnerova LC.
    J Neurosurg; 2000 Jun; 92(6):927-32. PubMed ID: 10839251
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  • 16. Magnetic resonance-based estimation of intracranial pressure correlates with ventriculoperitoneal shunt valve opening pressure setting in children with hydrocephalus.
    Muehlmann M, Koerte IK, Laubender RP, Steffinger D, Lehner M, Peraud A, Heinen F, Kiefer M, Reiser M, Ertl-Wagner B.
    Invest Radiol; 2013 Jul; 48(7):543-7. PubMed ID: 23695081
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  • 17. Comparative durability and costs analysis of ventricular shunts.
    Agarwal N, Kashkoush A, McDowell MM, Lariviere WR, Ismail N, Friedlander RM.
    J Neurosurg; 2019 Apr 01; 130(4):1252-1259. PubMed ID: 29749912
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  • 18. Outcome analysis of initial neonatal shunts: does the valve make a difference?
    Robinson S, Kaufman BA, Park TS.
    Pediatr Neurosurg; 2002 Dec 01; 37(6):287-94. PubMed ID: 12422042
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  • 19. Long-term outcomes of ventriculoperitoneal shunt surgery in patients with hydrocephalus.
    Reddy GK, Bollam P, Caldito G.
    World Neurosurg; 2014 Feb 01; 81(2):404-10. PubMed ID: 23380280
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  • 20. Ultra-low-pressure hydrocephalic state in NPH: benefits of therapeutic siphoning with adjustable antigravity valves.
    Funnell JP, D'Antona L, Craven CL, Thorne L, Watkins LD, Toma AK.
    Acta Neurochir (Wien); 2020 Dec 01; 162(12):2967-2974. PubMed ID: 32989519
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