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Not all products are registered and approved for sale in all countries or regions. Indications of use may also vary by country and region. Please contact your country representative for product availability and information. Product images are for reference only.

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  • Vascular Access
  • Passive Safety Peripheral IV Catheters
  • Introcan Safety 3 IV Catheter Closed
  • Introcan Safety® 3

Image-Introcan Safety® 3 Closed IV Catheter
Image-Introcan Safety® 3 Closed IV Catheter
Image-Introcan Safety® 3 Closed IV Catheter

Introcan Safety® 3
Closed Safety IV Catheter with Multi-Access Blood Control Septum

Introcan Safety® 3 is a peripheral IV catheter with a passive fully automatic needlestick protection and multi-access blood control septum that helps to protect clinicians and patients from blood exposure. It is a single-use device to generate intravascular and tissue access to sample blood, monitor blood pressure, or administer fluids and blood intravascularly. Introcan Safety® 3 is also indicated for subcutaneous infusion therapies and 325 psi power injector applications (14G – 24G).

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References

  1. Tosini W. et al. Needlestick Injury Rates According to Different Types of Safety-Engineered Devices: Results of a French Multicenter Study. Infection Control & Hospital Epidemiology. April 2010; 31(4): 402-407.
  2. Sossai D. et al. Efficacy of safety catheter devices in the prevention of occupational needlestick injuries: applied research in the Liguria Region (Italy). J Prev Med Hyg. 2016; 57: E110-E114.
  3. Haeseler G. Hildebrand M. Fritscher J. Efficacy and base of use of an intravenous catheter designed to prevent blood leakage: a prospective observational trial. 2015. J Vasc Access: 1-4. (p.3)
  4. Gorski L. et al. Infusion Therapy: Standards of practice. Journal of Infusion Nursing. 2016; Vol 39(1S): S72-73.
  5. Schears G. Summary of Product Trials for 10,164 Patients: Comparing an Intravenous Stabilizing Device to Tape. J Infus Nurs. August 2006; 29(4):225-31
  6. Mensor L. Dirogio D. Souza C. Contadin R. Cost-Effectiveness of safety engineered peripheral catheters with an integrated stabilization platform under the perspective of hospitals in Brazil. BR J of Health Econ. April 2016;18(1):3-10.
  7. Suzuki T. Fukuyama H. Nishiyama J. Oda M. Takahashi M. Differences in Penetration Force of Intravenous Catheters: Effect of Grinding Methods on Inner Needles of Intravenous Catheters. Tokai J Exp Clin Med. 2004; 29(4): 175-181.
  8. Maki D.G. Ringer M. Risk Factors for infusion-related Phlebitis with Small Peripheral Venous Catheters: A randomized Controlled Trial. Ann Intern Med. 1991 May 15; 114(10):845-54.