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US Patent 10058694 Medical treatment system and methods using a plurality of fluid lines

Patent 10058694 was granted and assigned to DEKA (company) on August, 2018 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
DEKA (company)
DEKA (company)
Current Assignee
DEKA (company)
DEKA (company)
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10058694
Date of Patent
August 28, 2018
Patent Application Number
14732571
Date Filed
June 5, 2015
Patent Citations Received
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US Patent 12066017 Pumping cassette
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US Patent 11500400 Valve actuation systems and related methods
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US Patent 12024701 System and method for creating tissue
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US Patent 12064540 Hemodialysis systems and methods
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US Patent 11478577 Pump cassette and methods for use in medical treatment system using a plurality of fluid lines
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US Patent 11511024 Pump cassette and methods for use in medical treatment system using a plurality of fluid lines
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US Patent 10345175 Pressure measurement devices, methods, and systems
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US Patent 10485914 Medical treatment system and methods using a plurality of fluid lines
...
Patent Primary Examiner
‌
Nathan R Price
Patent abstract

Improvements in fluid volume measurement systems are disclosed for a pneumatically actuated diaphragm pump in general, and a peritoneal dialysis cycler using a pump cassette in particular. Pump fluid volume measurements are based on pressure measurements in a pump control chamber and a reference chamber in a two-chamber model, with different sections of the apparatus being modeled using a combination of adiabatic, isothermal and polytropic processes. Real time or instantaneous fluid flow measurements in a pump chamber of a diaphragm pump are also disclosed, in this case using a one-chamber ideal gas model and using a high speed processor to obtain and process pump control chamber pressures during fluid flow into or out of the pump chamber. Improved heater control circuitry is also disclosed, to provide added or redundant safety measures, or to reduce current leakage from a heater element during pulse width modulation control of the heater. Improvements are also disclosed in the application of negative pressure during a drain phase in peritoneal dialysis therapy, and to control the amount of intraperitoneal fluid accumulation during a therapy. Improvements in efficiency are also disclosed in the movement of fluid into and out of a two-pump cassette and heater bag of a peritoneal dialysis cycler, and in the synchronization of the operation of two or more pumps in a peritoneal dialysis cycler or other fluid handling devices using a multi-pump arrangement.

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