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US Patent 11911087 Controlled switching network for electrophysiology procedures

Patent 11911087 was granted and assigned to BioSig Technologies, Inc. on February, 2024 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
BioSig Technologies, Inc.
BioSig Technologies, Inc.
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Current Assignee
BioSig Technologies, Inc.
BioSig Technologies, Inc.
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119110870
Patent Inventor Names
Thomas G. Foxall0
Branislav Vlajinic0
Budimir S. Drakulic0
Sina Fakhar0
Date of Patent
February 27, 2024
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Patent Application Number
169875520
Date Filed
August 7, 2020
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Patent Citations
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US Patent 10456057 Systems and methods for evaluation of electrophysiology systems
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US Patent 6907297 Expandable intracardiac return electrode and method of use
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US Patent 7907994 Automated pace-mapping for identification of cardiac arrhythmic conductive pathways and foci
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US Patent 8027721 Balanced charge waveform for transcutaneous pacing
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US Patent 8538501 Mapping and ablation catheter system
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US Patent 10485485 Systems and methods for signal acquisition and visualization
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Patent Primary Examiner
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Thomas A Giuliani
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CPC Code
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A61B 2018/1246
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A61B 2018/1273
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A61N 1/00
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A61N 1/06
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H01R 9/00
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H01R 2201/12
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A61B 2018/124
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A61B 2018/00916
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Patent abstract

Described herein are embodiments of a switching network for integrating electrophysiology components into an electrophysiology system. These electrophysiology components may include electrophysiology recorder, three-dimensional mapping systems, radio frequency generators, and stimulators. The switching network provides switchable connections, which allow the electrophysiology system to be reconfigured to perform different electrophysiology procedures, such as heart signal recording and mapping, cardiac ablation, or cardiac pacing. A recorder may provide control signals to the switching network to change connections between electrophysiology equipment and a catheter in a patient's heart. The electrophysiology system may control generation of biphasic pulses for use in cardiac pacing. The electrophysiology system may reconfigure the effective size the tip electrode of a split tip catheter.

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