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US Patent 11357979 Systems and methods for sensing and stimulation

Patent 11357979 was granted and assigned to Lungpacer Medical Inc. on June, 2022 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
Lungpacer Medical Inc.
Lungpacer Medical Inc.
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Current Assignee
Lungpacer Medical Inc.
Lungpacer Medical 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
113579790
Patent Inventor Names
Douglas G. Evans0
Viral S. Thakkar0
Date of Patent
June 14, 2022
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Patent Application Number
168748390
Date Filed
May 15, 2020
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Patent Citations
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US Patent 10195429 Systems and methods for intravascular catheter positioning and/or nerve stimulation
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US Patent 10293164 Apparatus and methods for assisted breathing by transvascular nerve stimulation
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US Patent 10300270 Device and method for the treatment of breathing disorders and cardiac disorders
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US Patent 10315035 Hemodynamic performance enhancement through asymptomatic diaphragm stimulation
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US Patent 10335592 Systems, devices, and methods for improving hemodynamic performance through asymptomatic diaphragm stimulation
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US Patent 10369361 Leads for implantable medical device that affects pressures within the intrathoracic cavity through diaphragmatic stimulation
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US Patent 10391314 Systems and related methods for optimization of multi-electrode nerve pacing
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US Patent 10406366 Transvenous phrenic nerve stimulation system
...
Patent Primary Examiner
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Amanda K Hulbert
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CPC Code
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A61N 1/3601
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A61N 1/3611
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A61N 1/3614
0

A system for stimulating body tissue may include a stimulation lead, sensors, and a control unit. The stimulation lead may include one or more energy sources. The control unit may include a processor and non-transitory computer readable medium, and an interface (e.g., touch screen interface) for receiving user inputs and communicating information to the user. The sensors may be configured to provide impedance measurements to the control unit. The control unit may calculate lung gas distributions and/or generate an image modeling lung gas distributions. Stimulation delivered by the stimulation may be adjusted based on the impedance measurements.

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