Vascular abnormalities correlate with decreased soft tissue volumes in idiopathic clubfoot

Laura J. Merrill, Christina A. Gurnett, Marilyn Siegel, Sushil Sonavane, Matthew B. Dobbs

Research output: Contribution to journalArticle

Abstract

Background: Lower extremity vascular anomalies have been described for patients with clubfoot but few imaging studies have investigated effects on soft tissues such as fat and muscle. To make these assessments we need noninvasive, noncontrast agents to more safely image children. Questions/purposes: We describe a novel noninvasive imaging protocol to identify vascular and soft tissue abnormalities in the lower limbs of patients with clubfoot and determine whether these abnormalities are present in patients who had recurrent clubfoot. Patients and Methods: Three-dimensional noncontrast-enhanced MR angiography was used to identify vascular, bone, and soft tissue abnormalities in patients with clubfoot. We determined whether these abnormalities were more common in patients who had experienced recurrent clubfoot. Results: Four patients with isolated unilateral clubfoot had arterial anomalies in the clubfoot limb. All patients had less muscle volume in the affected limb, and nine of 11 patients (82%) had less subcutaneous fat, with a mean difference of 0.56 cm 3 ± 0.36 cm 3 (range, 0.08-1.12 cm 3 ). Vascular anomalies and decreased fat and muscle volumes were present in all three patients with recurrent clubfoot. Conclusions: We found a high frequency of vascular and soft tissue anomalies in the affected limbs of patients with unilateral clubfoot that may correlate with response to treatment. Clinical Relevance: This approach has the potential to enhance our understanding of the anatomy of clubfoot and lead to a larger MRI study that may allow more accurate prediction of the risk of recurrent clubfoot.

Original languageEnglish (US)
Pages (from-to)1442-1449
Number of pages8
JournalClinical orthopaedics and related research
Volume469
Issue number5
DOIs
StatePublished - May 2011

ASJC Scopus subject areas

  • Surgery
  • Orthopedics and Sports Medicine

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