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Diagnostic accuracy of non-invasive thermal evaluation of ventriculoperitoneal shunt flow in shunt malfunction: A prospective, multi-site, operator-blinded study

  • Joseph R. Madsen
  • , Tehnaz P. Boyle
  • , Mark I. Neuman
  • , Eun Hyoung Park
  • , Mandeep S. Tamber
  • , Robert W. Hickey
  • , Gregory G. Heuer
  • , Joseph J. Zorc
  • , Jeffrey R. Leonard
  • , Julie C. Leonard
  • , Robert Keating
  • , James M. Chamberlain
  • , David M. Frim
  • , Paula Zakrzewski
  • , Petra Klinge
  • , Lisa H. Merck
  • , Joseph Piatt
  • , Jonathan E. Bennett
  • , David I. Sandberg
  • , Frederick A. Boop
  • Mustafa Q. Hameed
  • Harvard University
  • Boston Children's Hospital
  • Boston University
  • University of Pittsburgh
  • University of British Columbia
  • University of Pennsylvania
  • Ohio State University
  • George Washington University
  • The University of Chicago
  • Brown University
  • University of Florida
  • University of Texas Health Science Center at Houston
  • University of Tennessee Health Science Center

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

BACKGROUND: Thermal flow evaluation (TFE) is a non-invasive method to assess ventriculoperitoneal shunt function. Flow detected by TFE is a negative predictor of the need for revision surgery. Further optimization of testing protocols, evaluation in multiple centers, and integration with clinical and imaging impressions prompted the current study. OBJECTIVE: To compare the diagnostic accuracy of 2 TFE protocols, with micropumper (TFE+MP) or without (TFE-only), to neuro-imaging in patients emergently presenting with symptoms concerning for shunt malfunction. METHODS: We performed a prospective multicenter operator-blinded trial of a consecutive series of patients who underwent evaluation for shunt malfunction. TFE was performed, and preimaging clinician impressions and imaging results were recorded. The primary outcome was shunt obstruction requiring neurosurgical revision within 7 d. Non-inferiority of the sensitivity of TFE vs neuro-imaging for detecting shunt obstruction was tested using a prospectively determined a priori margin of −2.5%. RESULTS: We enrolled 406 patients at 10 centers. Of these, 68/348 (20%) evaluated with TFE+MP and 30/215 (14%) with TFE-only had shunt obstruction. The sensitivity for detecting obstruction was 100% (95% CI: 88%-100%) for TFE-only, 90% (95% CI: 80%-96%) for TFE+MP, 76% (95% CI: 65%-86%) for imaging in TFE+MP cohort, and 77% (95% CI: 58%-90%) for imaging in the TFE-only cohort. Difference in sensitivities between TFE methods and imaging did not exceed the non-inferiority margin. CONCLUSION: TFE is non-inferior to imaging in ruling out shunt malfunction and may help avoid imaging and other steps. For this purpose, TFE only is favored over TFE+MP.

Original languageEnglish
Pages (from-to)939-948
Number of pages10
JournalNeurosurgery
Volume87
Issue number5
DOIs
StatePublished - 1 Nov 2020

Keywords

  • Cerebrospinal fluid
  • Hydrocephalus
  • Ventriculoperitoneal shunt
  • Ventriculoperitoneal shunt flow
  • Ventriculoperitoneal shunt malfunction

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