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US Patent 11992363 Dynamically adjusting ultrasound-imaging systems and methods thereof

Patent 11992363 was granted and assigned to Bard Access Systems on May, 2024 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
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Bard Access Systems
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Current Assignee
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Bard Access Systems
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119923630
Patent Inventor Names
Anthony K. Misener0
William Robert McLaughlin0
Steffan Sowards0
Date of Patent
May 28, 2024
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Patent Application Number
174683180
Date Filed
September 7, 2021
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Patent Citations
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US Patent 7359554 System and method for identifying a vascular border
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US Patent 7534209 Device and method for mapping and tracking blood flow and determining parameters of blood flow
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US Patent 7599730 Navigation system for cardiac therapies
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US Patent 7637870 Tissue penetrating catheters having integral imaging transducers and their methods of use
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US Patent 7681579 Guided procedures for treating atrial fibrillation
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US Patent 7691061 Ultrasonic diagnostic apparatus and method of processing an ultrasound signal
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US Patent 7699779 Ultrasonic treatment equipment
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US Patent 7720520 Method and system for registering an image with a navigation reference catheter
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Patent Primary Examiner
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Colin T. Sakamoto
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CPC Code
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G01S 15/8927
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A61B 8/461
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A61B 2562/0223
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A61B 2562/0219
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A61B 8/54
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A61B 8/0841
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A61B 8/0891
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A61B 8/4461
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Patent abstract

Disclosed herein are dynamically adjusting ultrasound-imaging systems and methods thereof. For example, an ultrasound-imaging system can include an ultrasound probe, a console, and a display screen. The ultrasound probe includes an array of ultrasonic transducers that, when activated, emit generated ultrasound signals into a patient, receive reflected ultrasound signals from the patient, and convert the reflected ultrasound signals into corresponding electrical signals for processing into ultrasound images. The console is configured to execute instructions for dynamically adjusting a distance of activated ultrasonic transducers from a predefined target or area, an orientation of the activated ultrasonic transducers to the predefined target or area, or both the distance and the orientation of the activated ultrasonic transducers with respect to the predefined target or area. The display screen is configured to display a graphical user interface including the ultrasound images processed by the console from the corresponding electrical signals of the ultrasound signals.

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