Monona, WI, United States of America

Deborah Zane


Average Co-Inventor Count = 3.6

ph-index = 2

Forward Citations = 9(Granted Patents)


Company Filing History:


Years Active: 2013-2014

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3 patents (USPTO):Explore Patents

Title: Innovator Spotlight: Deborah Zane

Introduction

Deborah Zane, an accomplished inventor based in Monona, WI, has made significant contributions to the field of patient monitoring technologies. With three patents to her name, Deborah exhibits a strong commitment to enhancing healthcare through innovative solutions.

Latest Patents

One of Deborah's notable inventions is the inline water trap. This device is designed with a filter component and a panel connector specifically configured to interface effectively with patient gas monitors. In one embodiment, the inline water trap signals to the patient gas monitor that it is in place, enabling it to begin analyzing the filtered patient sample. This invention ensures that a patient sample is processed efficiently by filtering out water and contaminants, thus safeguarding the patient gas monitor from potential damage. Additionally, some versions of the inline water trap include RFID tags to confirm the correct type of device is in use, adding another layer of reliability.

Career Highlights

Deborah Zane is affiliated with Criticare Systems, Inc., where her innovative work greatly contributes to advancements in medical device technology. Her dedication to improving patient monitoring systems showcases her significance in the healthcare technology sector.

Collaborations

Throughout her career, Deborah has collaborated with esteemed colleagues, including Roy A. Henning and Daniel Schwarz. These partnerships often foster a dynamic exchange of ideas and expertise, enhancing the overall quality of their innovations.

Conclusion

In summary, Deborah Zane stands out as a key inventor in the realm of patient monitoring technologies. With her innovative inline water trap and effective collaborations, she continues to push the boundaries of what's possible in medical devices, ensuring improved outcomes for patients everywhere.

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