Fluonic


Medical device startup developing MEMS-based flow measurement and disposable sensor technologies for infusion and fluid monitoring. Focus areas include chip-scale composition time-of-flight flow sensing, catheter- and pump-integrated disposable sensors, wireless transmission of infusion data to healthcare IT, and integration of direct flow measurement into closed-loop drug delivery systems.

Industries

biotechnology
health-care
medical
medical-device

Nr. of Employees

small (1-50)

Fluonic

Boulder, Colorado, United States, North America


Products

Disposable elastomeric infusion pump with integrated flow sensing and regulation

A low-cost, fully disposable elastomeric pump architecture augmented with an integrated flow sensor and regulator to measure and control infusion rates and communicate status to healthcare IT.

Disposable catheter-integrated urine flow sensor

A disposable flow sensor designed to mount between Foley catheter and collection bag to continuously record urine output with high accuracy and environmental stability.

Catheter-level flow sensor for insulin/artificial pancreas integration

A disposable flow sensing module intended to measure insulin delivery at the injection point and provide direct flow feedback to artificial pancreas controllers.


Services

Licensing of flow-sensing technology and collaborative development partnerships for integrating flow measurement into medical devices and systems.

Expertise Areas

  • Flow sensor development for medical infusion
  • Microfluidics and MEMS for clinical sensors
  • Disposable medical sensor design
  • Closed-loop infusion control systems
  • Show More (4)

Key Technologies

  • Composition time-of-flight flow measurement
  • MEMS/microfluidic flow measurement chips
  • Electrochemical pH-marker generation via electrolysis
  • Disposable catheter-mounted flow sensors
  • Show More (4)

News & Updates

Guidance on IV flow monitoring, supervision, safety features, and wireless communication of infusion data to healthcare IT.

Discussion of conference participation and the need for flow monitoring solutions in infusion therapy.

Description of sensor applicability for insulin delivery and a Phase I NIH-funded study to demonstrate a portable sensor unit for insulin.

Awarded NIH funding to demonstrate applicability of flow sensor for insulin delivery and to design a portable sensor unit (Phase I and planned Phase II).

Received NSF SBIR Phase I award described as support for a cost reduction approach in medical infusion systems.

Selected to present at industry and investor conferences (OneMedForum, PODD, biotech/healthcare investor events) to discuss infusion flow monitoring solutions.


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