Spike with non-return valve function and filling device of a liquid system with spike
US-9486569-B2 · Nov 8, 2016 · US
US9511183B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9511183-B2 |
| Application number | US-201414783266-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 16, 2014 |
| Priority date | Apr 19, 2013 |
| Publication date | Dec 6, 2016 |
| Grant date | Dec 6, 2016 |
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Disclosed is a filling and recirculation device of a fluid conducting system for blood treatment which has a fluid connector and a three-dimensional four-way valve with a first valve plane on which an inlet connector for the fluid container, an arterial line connector, and a valve-internal coupling connector are arranged and a second valve plane on which an outlet connector and a venous line connector are arranged. The venous line connector is permanently connected with the valve-internal coupling connector. A manually operable valve rotary piston of the four-way valve has a first control section assigned to the first valve plane and a second control section assigned to the second valve plane.
Opening claim text (preview).
The invention claimed is: 1. Filling and recirculation device of a fluid conducting system of an extracorporeal blood treatment device comprising: a fluid container connector configured for connection with a single fluid connector of a medical fluid container; and a manually operable fluid blocking mechanism positioned downstream of the fluid container connector and configured to remain fluidically connected with the medical fluid container during the entire operation of the filling and recirculation device via the fluid container connector, the fluid blocking mechanism including: a three-dimensional four-way valve with a first valve plane on which an inlet connector for the medical fluid container, an arterial line connector, and a valve-internal coupling connector are arranged and a second valve plane on which an outlet connector and a venous line connector are arranged, the venous line connector permanently fluidically connected with the valve-internal coupling connector of the first plane; and a manually operable valve rotary piston including a first piston control section corresponding to the first valve plane and an axially spaced second piston control section corresponding to the second valve plane, the first and second piston control sections geared relative to each other such that: a. in a flushing valve piston rotary position, the first piston control section connects the inlet connector with the arterial line connector and the second piston control section connects the venous line section with the outlet connector; b. in a recirculation valve piston rotary position, the first piston control section connects the valve-internal coupling connector with the arterial connector and the second piston control section blocks the outlet connector from the venous line connector; and c. in a therapy valve piston rotary position, the first and the second piston control sections block all connectors. 2. Filling and recirculation device according to claim 1 , wherein: d. in a patient connecting valve piston rotary position, the first piston control section blocks the inlet connector and the arterial connector and the second piston control section connects the venous line connector with the outlet connector. 3. Filling and recirculation device according to claim 2 , wherein: e. in a re-infusion valve piston rotary position the first piston control section connects the inlet connector with the arterial line connector and the second piston control section connects the venous line connector with the outlet connector. 4. Filling and recirculation device according to claim 1 , wherein: d. in a re-infusion valve piston rotary position the first piston control section connects the inlet connector with the arterial line connector and the second piston control section connects the venous line connector with the outlet connector. 5. Filling and recirculation device according to claim 1 , wherein in the recirculation valve piston rotary position the first piston control section connects the inlet connector with the arterial line connector. 6. Filling and recirculation device according to claim 1 , wherein in the recirculation valve piston rotary position the first piston control section blocks the inlet connector from the arterial line connector. 7. Procedure for performing a filling and recirculation process of a blood-side conducting system of a dialysis machine using a filling and recirculation device according to claim 1 , comprising: connecting the fluid container connector to the single fluid connector of the medical fluid container with the four-way valve completely closed, and connecting the arterial line section and the venous line section, respectively, to the arterial and venous line connectors of the four-way valve while closed; flushing a fluid flow path along the arterial fluid line section and the venous line section of the extracorporeal blood treatment device by rotating the valve rotary piston from a valve shut-off position into the flushing valve piston rotary position; recirculating the fluid flow path by further rotating the valve rotary piston from the flushing valve piston rotary position into the recirculation valve piston rotary position; and connecting the fluid conducting system of the extracorporeal blood treatment device to a patient and performing a blood treatment after further rotating the valve rotary piston from the recirculation valve piston rotary position into the therapy valve piston rotary position. 8. Procedure for performing a filling and recirculation process according to claim 7 , further comprising: draining the fluid conducting system of blood by further rotating the valve rotary piston from the therapy valve piston rotary position into a re-infusion valve piston rotary position in which the first piston control section connects the inlet connector with the arterial line connector and the second piston control section connects the venous line connector with the outlet connector. 9. Procedure for performing a filling and recirculation process according to claim 7 , wherein connecting the fluid conducting system of the extracorporeal blood treatment device to a patient and performing a blood treatment comprises connecting first the arterial line section to the patient in order to have fluid inside the fluid conducting system displaced by blood, and then connecting the venous line section to the patient. 10. Procedure for performing a filling and recirculation process according to claim 7 , wherein connecting the fluid conducting system of the extracorporeal blood treatment device to a patient and performing a blood treatment comprises disconnecting the four-way valve from the arterial line section after the valve rotary piston is further rotated into the patient connecting valve piston rotary position. 11. Procedure for performing a filling and recirculation process according to claim 7 , wherein connecting the fluid conducting system of the extracorporeal blood treatment device to a patient and performing a blood treatment comprises disconnecting the four-way valve from the venous line section after the valve rotary piston is further rotated into the therapy valve piston rotary position. 12. Procedure for performing a filling and recirculation process according to claim 8 , wherein draining the fluid conducting system comprises connecting the four-way valve to the fluid conducting system of the extracorporeal blood treatment device before the valve rotary piston is further rotated into the re-infusion valve rotary position. 13. A method of filling a blood-side fluid conducting system of a dialysis machine, the method comprising: the step of utilizing the filling and recirculation device according to claim 1 .
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