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Computational fluid dynamics modeling aiding surgical planning in a toddler with Parkes Weber syndrome

  • Josiah M. Peñalver
  • , James T. Bennett
  • , Zoe Nelson
  • , Randall A. Bly
  • , Jonathan A. Perkins
  • , Catherine V. Bull
  • , Alberto Aliseda
  • , Fanette Chassagne
  • , Giridhar M. Shivaram
  • , Antoinette W. Lindberg
  • , John H.T. Waldhausen
  • , Muhammad A.K. Nuri
  • University of Washington
  • Seattle Children’s Hospital
  • University of Pennsylvania

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

Parkes Weber syndrome is a fast-flow and slow-flow vascular anomaly with limb overgrowth that can lead to congestive heart failure and limb ischemia. Current management strategies have focused on symptom management with focal embolization. A pediatric case with early onset heart failure is reported. We discuss the use of computational fluid dynamics (CFD) modeling to guide a surgical management strategy in a toddler with an MAP2K1 mutation.

Original languageEnglish
Article number101780
JournalJournal of Pediatric Surgery Case Reports
Volume66
DOIs
StatePublished - Mar 2021

Keywords

  • Arterial banding
  • Computational fluid dynamics modeling
  • Congestive heart failure
  • MAP2K1 mutation
  • Parkes Weber syndrome

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