Perioperative antibiotic use in vagus nerve stimulator implantation: a clinical series

Jeffrey S Raskin1, Daniel Hansen1, Arvind Mohan1

  • 1Division of Pediatric Neurosurgery, Department of Neurosurgery, Texas Children's Hospital, Baylor College of Medicine, 6701 Fannin St., Ste. 1230, Houston, TX, 77030, USA.

Abstract

Insights

A single preoperative antibiotic dose for vagus nerve stimulator (VNS) implantation showed equal effectiveness in preventing infections compared to multi-drug regimens. This approach also demonstrated similar healthcare utilization outcomes.

Area of Science:

  • Neurosurgery
  • Infectious Disease
  • Pharmacology

Background:

  • Preoperative antibiotic use is substantial in hospitals.
  • Current antibiotic prophylaxis practices lack standardization, potentially impacting infection rates and resistance.
  • The effectiveness of different perioperative antibiotic strategies requires investigation.

Purpose of the Study:

  • To evaluate the association between perioperative antibiotic practices and postoperative infectious outcomes in vagus nerve stimulator (VNS) implantation.
  • To compare the efficacy of single-dose cefazolin versus multi-drug regimens in VNS surgery.

Main Methods:

  • A single-center, retrospective case-control study of 50 VNS implantations.
  • Group 1: single intravenous dose of cefazolin. Group 2: cefazolin plus gentamicin/vancomycin and oral clindamycin.
  • Follow-up for a minimum of 3 months to assess infectious outcomes and healthcare utilization.

Main Results:

  • No significant differences in nonsurgical infections, emergency department visits, or readmissions between groups.
  • Neither antibiotic regimen resulted in VNS infections during the follow-up period.
  • Group 1 patients were older and had longer surgeries, yet outcomes were comparable.

Conclusions:

  • Single preoperative antibiotic dosing is as effective as polypharmacy for VNS implantation regarding infection rates.
  • Restrained antibiotic use demonstrates equipoise in postoperative infection rates and resource utilization.
  • Standardizing single-dose prophylaxis may be a viable strategy to optimize antibiotic use.

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