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Measuring intraoperative surgical instrument use with radio-frequency identification.
Hill, Ian; Olivere, Lindsey; Helmkamp, Joshua; Le, Elliot; Hill, Westin; Wahlstedt, John; Khoury, Phillip; Gloria, Jared; Richard, Marc J; Rosenberger, Laura H; Codd, Patrick J.
Afiliação
  • Hill I; Pratt School of Engineering, Duke University, Durham, North Carolina, USA.
  • Olivere L; School of Medicine, Duke University, Durham, North Carolina, USA.
  • Helmkamp J; School of Medicine, Duke University, Durham, North Carolina, USA.
  • Le E; School of Medicine, Duke University, Durham, North Carolina, USA.
  • Hill W; Department of Neurosurgery, Duke University Hospital, Durham, North Carolina, USA.
  • Wahlstedt J; Pratt School of Engineering, Duke University, Durham, North Carolina, USA.
  • Khoury P; School of Medicine, Duke University, Durham, North Carolina, USA.
  • Gloria J; School of Medicine, Duke University, Durham, North Carolina, USA.
  • Richard MJ; Department of Orthopeadics, Duke University Medical Center, Durham, North Carolina, USA.
  • Rosenberger LH; Duke Cancer Institute, Duke University Medical Center, Durham, North Carolina, USA.
  • Codd PJ; Department of Surgery, Duke University Medical Center, Durham, North Carolina, USA.
JAMIA Open ; 5(1): ooac003, 2022 Apr.
Article em En | MEDLINE | ID: mdl-35156004
ABSTRACT

OBJECTIVE:

Surgical instrument oversupply drives cost, confusion, and workload in the operating room. With an estimated 78%-87% of instruments being unused, many health systems have recognized the need for supply refinement. By manually recording instrument use and tasking surgeons to review instrument trays, previous quality improvement initiatives have achieved an average 52% reduction in supply. While demonstrating the degree of instrument oversupply, previous methods for identifying required instruments are qualitative, expensive, lack scalability and sustainability, and are prone to human error. In this work, we aim to develop and evaluate an automated system for measuring surgical instrument use. MATERIALS AND

METHODS:

We present the first system to our knowledge that automates the collection of real-time instrument use data with radio-frequency identification (RFID). Over 15 breast surgeries, 10 carpometacarpal (CMC) arthroplasties, and 4 craniotomies, instrument use was tracked by both a trained observer manually recording instrument use and the RFID system.

RESULTS:

The average Cohen's Kappa agreement between the system and the observer was 0.81 (near perfect agreement), and the system enabled a supply reduction of 50.8% in breast and orthopedic surgery. Over 10 monitored breast surgeries and 1 CMC arthroplasty with reduced trays, no eliminated instruments were requested, and both trays continue to be used as the supplied standard. Setup time in breast surgery decreased from 23 min to 17 min with the reduced supply.

CONCLUSION:

The RFID system presented herein achieves a novel data stream that enables accurate instrument supply optimization.
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Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Diagnostic_studies / Qualitative_research Idioma: En Revista: JAMIA Open Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Diagnostic_studies / Qualitative_research Idioma: En Revista: JAMIA Open Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Estados Unidos