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Published on: May 30, 2016
Vessel health and preservation: Vascular access key risk considerations
1PICC Excellence, Inc. Hartwell, GA, United States; Griffith University, Brisbane, Queensland, Australia.
Insights
The Vessel Health and Preservation (VHP) model optimizes vascular access device (VAD) selection and management. This evidence-based pathway reduces complications and improves patient outcomes by prioritizing vascular integrity and tailored VAD strategies.
Area of Science:
- Vascular access management
- Patient safety
- Clinical pathways
Background:
- Vascular access is a common procedure, yet complications like infections and thrombosis arise from improper device selection and management.
- Maintaining vascular integrity is crucial for safe and effective treatment delivery in hospitalized patients.
Purpose of the Study:
- To describe the Vessel Health and Preservation (VHP) model as a structured, evidence-based clinical pathway.
- To outline a stepwise approach for optimizing vascular access outcomes and preserving vascular integrity.
Main Methods:
- The VHP model follows four stages: assessment/device selection, insertion, management, and outcome evaluation.
- It emphasizes patient-specific factors, risk profiles, early planning, and daily reassessment.
- Recommendations include using clinical pathways for device selection, minimizing lumens, choosing least invasive devices, and involving vascular access teams.
Main Results:
- Implementing a VHP program improves first-attempt insertion success and reduces therapy delays.
- The model lowers complication rates and ensures continued vascular health in complex cases.
- Integration into EHRs and interprofessional education are key for institutional adoption.
Conclusions:
- The VHP model offers a proactive, structured approach to vascular access management.
- It enhances patient safety, optimizes treatment delivery, and preserves vascular integrity.
- Adoption of VHP principles leads to improved clinical outcomes and reduced healthcare costs.
Abstract:
Vascular access is the most common invasive procedure in hospitalized patients, with over 90% requiring intravenous therapy. Despite its routine nature, improper selection and management of acceso vascular devices (VADs) can lead to complications such as infections, thrombosis, and device failure. Preserving the integrity of the vascular system is essential for ensuring safe and effective treatment delivery across healthcare settings. This paper describes the key principles of the Vessel Health and Preservation (VHP) model, highlighting its implementation as a structured, evidence-based clinical pathway for optimizing vascular access outcomes, preserving vascular integrity, and reducing complications. It also outlines a stepwise approach to vascular access planning, device selection, management, and escalation based on patient-specific factors and risk profiles. The VHP model is structured around four main stages: assessment and device selection, insertion, management, and outcome evaluation. Key findings and recommendations include early device planning within 24h of admission and placement within 48h, daily reassessment to align access with evolving treatment needs, use of clinical pathways to guide device selection based on diagnosis, therapy type, and duration, emphasis on minimizing the number of device lumens, choosing the least invasive device, and using vascular access teams for assessment and the identification of high-risk patients requiring specialty placement and escalation to interventional radiology or surgical teams. Implementing a VHP program across institutions requires leadership support, interprofessional education, and integration into electronic health records. Adopting this proactive model improves first-attempt insertion success, reduces delays in therapy, and lowers complication rates. In complex cases, timely advancement to specialty placement ensures continued vascular health while maintaining access to essential treatments.
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