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US Patent 11998332 Fluid diversion mechanism for bodily-fluid sampling

Patent 11998332 was granted and assigned to Magnolia Medical Technologies on June, 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
Magnolia Medical Technologies
Magnolia Medical Technologies
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Current Assignee
Magnolia Medical Technologies
Magnolia Medical Technologies
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119983320
Patent Inventor Names
Richard G. Patton0
Shan E. Gaw0
Jay M. Miazga0
Gregory J. Bullington0
Date of Patent
June 4, 2024
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Patent Application Number
183813690
Date Filed
October 18, 2023
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Patent Citations
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US Patent 7044941 Method and apparatus for collecting blood samples prior to a blood collection procedure
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US Patent 7052603 Single-use manifold for automated, aseptic transfer of soulutions in bioprocessing applications
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US Patent 7055401 Closed method and system for the sampling and testing of fluid
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US Patent 7087047 Predonation blood sampling apparatus
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US Patent 7141097 Bacterial retentive, air venting, intravenous filter
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US Patent 7241281 Blood component separation method and apparatus
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US Patent 7306736 Valve mechanism for infusion fluid systems
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US Patent 7314452 Self flushing luer activated blood sampling devices
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...
Patent Citations Received
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US Patent 12133968 Systems and methods for delivering a fluid to a patient with reduced contamination
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Patent Primary Examiner
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May A Abouelela
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CPC Code
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A61B 2010/008
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A61B 2010/0077
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A61B 2010/0061
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A61B 10/007
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A61B 10/0051
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A61B 10/0048
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A61B 5/150221
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A61B 5/15003
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Patent abstract

An apparatus includes a housing, a fluid reservoir, a flow control mechanism, and an actuator. The housing defines an inner volume and has an inlet port that can be fluidically coupled to a patient and an outlet port. The fluid reservoir is disposed in the inner volume to receive and isolate a first volume of a bodily-fluid. The flow control mechanism is rotatable in the housing from a first configuration, in which a first lumen places the inlet port is in fluid communication with the fluid reservoir, and a second configuration, in which a second lumen places the inlet port in fluid communication with the outlet port. The actuator is configured to create a negative pressure in the fluid reservoir and is configured to rotate the flow control mechanism from the first configuration to the second configuration after the first volume of bodily-fluid is received in the fluid reservoir.

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