Volumetric fluid balance control for extracorporeal blood treatment
First Claim
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1. A device for balancing the flow of fluids in a blood treatment system, comprising:
- a balancing mechanism having inlets and outlets for a first flow of fluid that includes renal waste and a second flow of fluid including fluid to be infused into a patient;
at least one pressure sensor configured to measure a pressure difference between at least one of said inlets relative to a respective outlet;
the balancing mechanism employing a volumetric system that is subject to variation in relative flow volume rates due to variations in differences between respective inlet and outlet pressures of said first and second flows;
said balancing mechanism configured to receive a compensation signal and adjust a balance between a ratio of said first flow to said second flow responsively to said compensation signal to maintain a correct fluid balance of the patient;
a controller configured to generate said compensation signal responsively to at least one pressure measurement by said at least one pressure sensor, said at least one pressure measurement including at least one of said differences between respective inlet and outlet pressures of said first and second flows.
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Abstract
A method and device for adjusting a volumetric flow balancing system for an extracorporeal blood treatment system receives a pressure signal and calculates a compensation factor that is used to adjust the relative flow rates of the volumetrically balanced fluids. For example, in a hemofiltration system, the flow of waste and and replacement fluid may be balanced volumetrically. Ultrafiltrate may be pumped in a bypass circuit in such a system. The rate of ultrafiltrate flow may be adjusted by the compensation signal. The compensation signal may be empirically derived.
216 Citations
12 Claims
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1. A device for balancing the flow of fluids in a blood treatment system, comprising:
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a balancing mechanism having inlets and outlets for a first flow of fluid that includes renal waste and a second flow of fluid including fluid to be infused into a patient; at least one pressure sensor configured to measure a pressure difference between at least one of said inlets relative to a respective outlet; the balancing mechanism employing a volumetric system that is subject to variation in relative flow volume rates due to variations in differences between respective inlet and outlet pressures of said first and second flows; said balancing mechanism configured to receive a compensation signal and adjust a balance between a ratio of said first flow to said second flow responsively to said compensation signal to maintain a correct fluid balance of the patient; a controller configured to generate said compensation signal responsively to at least one pressure measurement by said at least one pressure sensor, said at least one pressure measurement including at least one of said differences between respective inlet and outlet pressures of said first and second flows. - View Dependent Claims (2)
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3. A device for balancing the flow of fluids in a blood treatment system, comprising:
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a volumetric balancing mechanism having inputs and outputs for respective first and second fluid flows, at least one of said outputs being connected to a venous line of a blood circuit that returns blood to a patient; at least one pressure sensor in at least one of said venous line and said outputs for measuring venous pressure; a controller configured to calculate an error rate in a net fluid transfer rate as a function of a signal from said pressure sensor and further to generate a fluid compensation signal responsive to said error rate; wherein said volumetric balancing mechanism is configured to receive said fluid compensation signal and adjust a relative rate of said first and second fluid flows responsively thereto. - View Dependent Claims (4, 5, 6)
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7. A device for balancing the flow of fluids in a blood treatment system, comprising:
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a volumetric balancing mechanism having first and second flow paths with respective inputs and outputs, one of said flow paths being adapted for conveying a first fluid flow consumed during a blood treatment and the other of said flow paths being adapted for conveying a second fluid flow generated at least partly from said blood treatment; at least one pressure sensor configured to measure a pressure difference between at least one of said inputs relative to a respective output; a controller configured to calculate an error rate in a net fluid transfer rate as a function of a signal from said pressure sensor and further to generate a fluid compensation signal responsive to said error rate; wherein said volumetric balancing mechanism is configured to receive said fluid compensation signal and adjust a relative rate of said first and second fluid flows responsively thereto. - View Dependent Claims (8, 9, 10, 11, 12)
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Specification