Nautilus™ Smart ECMO Module

Simplify your circuit with the first oxygenator featuring integrated monitoring. The Nautilus™* Smart ECMO Module improves long-term gas transfer1 while providing real-time device performance data accessible from an intuitive touch screen. 

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Overview

Simplification. Monitoring.  Alerts in Real Time.

View the animation to see how the Nautilus™ Smart module improves long-term gas transfer1 while providing real-time device performance data.

Device Features 

PERFORMANCE PREDICTABILITY

View monitored parameters on the interactive touch screen

  • Pressure In/Pressure Out/Δ P
  • O2 Saturation In/O2 Saturation Out
  • Temperature Out
  • Set alarm limits
  • Receive visual and audio alert notifications
An Image of Nautilus Smart ECMO Module, showing the device inlet, touch screen display, and green indicator light

CIRCUIT SIMPLICITY

  • Integrated sensors may eliminate the need for pressure transducers and external blood saturation monitoring.
  • Simplify the circuit for patient transport, ambulation, and rehabilitation.
  • Fewer connections minimises number of areas prone to blood clot formation and air entrainment.
A close-up image showing the integrated sensor in the blood inlet port of the Nautilus Smart ECMO Module
A close-up image showing the integrated sensor in the blood outlet port of the Nautilus Smart ECMO Module

STREAMLINED WORKFLOW

  • Light bar provides at-a-glance assessment of oxygenator performance.
  • Reduce need to look at multiple devices to get oxygenator-related performance data.
  • Visual and audio alerts when limits are exceeded.
  • Displayed data allows clinicians to clearly communicate oxygenator status among ECMO team members.
An Image of Nautilus Smart ECMO Module, showing the device inlet, touch screen display, and indicator light

DESIGNED FOR ECMO

CIRCULAR FLOW-PATH TECHNOLOGY

The Nautilus™ Smart ECMO Module has a transverse flow-path with a circular profile. Transverse flow minimises surface contact area while achieving a low blood-side pressure drop. The circular profile eliminates corners where low flow and stasis are known to occur. Designed for durability1 and long-term performance, the circular flow-path design improves long-term gas transfer.1

Illustration showing circular flow-path technology

Circular Shape

Eliminates corners, areas known for clotting

Illustration showing Nautilus circular shape

Guided Inlet

Reduces velocity changes at the inlet where low flow and stasis may occur

Illustration showing Nautilus guided inlet

Filling Vanes

Aid in even filling and even flow distribution across the membrane

Illustration showing Nautilus filling vanes

Performance Data 

Designed for durability1 and long-term performance.

BLOOD PATH PRESSURE DROP

Chart showing blood path pressure drop for Nautilus ECMO devices

HEAT EXCHANGE PERFORMANCE FACTOR

Chart showing heat exchange performance factor for Nautilus ECMO devices

OXYGEN TRANSFER

Chart showing oxygen transfer for Nautilus ECMO devices

CARBON DIOXIDE TRANSFER

Chart showing carbon dioxide transfer for Nautilus ECMO devices

Bench data; may not be indicative of clinical performance.

ORDERING INFORMATION  

Contact your local Medtronic representative for availability in your country.

Nautilus™ Smart ECMO Module

1 unit per box

Image of accessories available for Nautilus Smart, including holder, power cord, and power supply

Code

48135E

Nautilus™ Smart ECMO Module

48160

Nautilus™* Oxygenator Holder

48155

Nautilus™ Smart Power Supply

48155

Nautilus™ Smart Power Cord

Additional resources 

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INFORMATION

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*

Third party brands are trademarks of their respective owners.

Indicated in Europe for use up to 14 days and in the U.S. for use up to 48 hours.

Reference

1

Data on file at MC3. These tests may not be indicative of clinical performance.

Nautilus™* Smart ECMO Module and Nautilus™* ECMO Oxygenator are manufactured by MC3, Inc., and exclusively distributed by Medtronic.

Balance™ is a trademark of Medtronic. Technology licensed under agreement from BioInteractions, Limited, United Kingdom.