Radioisotope delivery system with multiple detectors to detect gamma and beta emissions
US-2024148961-A1 · May 9, 2024 · US
US2022379025A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2022379025-A1 |
| Application number | US-202217664546-A |
| Country | US |
| Kind code | A1 |
| Filing date | May 23, 2022 |
| Priority date | May 28, 2021 |
| Publication date | Dec 1, 2022 |
| Grant date | — |
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The invention relates to a device for applying a pharmaceutical fluid, having a tube and a valve element, wherein the tube can be connected in terms of fluid conduction via a first tube end to a reservoir for the pharmaceutical fluid, and wherein the valve element is arranged in a second tube end of the tube. The invention furthermore relates to a system for applying a pharmaceutical fluid, having a reservoir for the pharmaceutical fluid and such a device, and to a method for applying a pharmaceutical fluid by means of such a device.
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What is claimed is: 1 . A device for applying a pharmaceutical fluid, comprising: a tube; and, a valve element; wherein the tube can be connected in terms of fluid conduction via a first tube end to a reservoir for the pharmaceutical fluid, and wherein the valve element is arranged in a second tube end of the tube; wherein the valve element has at a first valve element end facing toward the first tube end, at least one anchoring element in order to prevent the valve element from being discharged from the second tube end has at a second valve element end facing toward the second tube end, a sealing element having an outer diameter of the sealing element corresponding to at least one inner tube diameter of the tube, so that the second tube end is sealed by the sealing element in terms of fluid conduction, and comprises a conduit means connecting the first tube end and the sealing element in terms of fluid conduction; wherein a gap can be reversibly formed between the tube and the sealing element when a pressure is charged to the pharmaceutical fluid from the direction of the first tube end, so that the second tube end is open in terms of fluid conduction. 2 . The device according to claim 1 wherein a gap between the tube and the sealing element can be reversibly formed given a pressure charging of at least 5 N/cm 2 to the pharmaceutical fluid from the direction of the first tube end, so that the second tube end is open in terms of fluid conduction. 3 . The device according to claim 1 wherein the valve element has a valve element length corresponding to at least three times the outer diameter of the sealing element. 4 . The device according to claim 1 wherein the at least one anchoring element is at least one barb element. 5 . The device according to claim 4 wherein the at least one barb element takes the form of a cone having a cone base and a cone shell; wherein the cone shell faces toward the first valve element end and the cone base faces toward the second valve element end. 6 . The device according to claim 5 wherein the cone base and the cone shell enclose an angle of at most 80°. 7 . The device according to claim 5 wherein the cone is penetrated at least at one location by the conduit mean. 8 . The device according to claim 1 wherein the tube comprises an elastic polymer with a Shore A hardness greater than 50 and/or a thermoplastic polymer with a Shore D hardness greater than 10. 9 . The device according to claim 1 wherein the tube has an x-ray opacifier. 10 . The device according to claim 1 wherein at least one metal coil is arranged along a longitudinal axis of the device within the tube and/or in a wall of the tube. 11 . The device according to claim 1 wherein the device has an adapter to which the device and a reservoir for a pharmaceutical fluid can be connected in terms of fluid conduction, in particular reversibly in terms of fluid conduction. 12 . The device according to claim 1 wherein the device has a check valve within the tube, which check valve is designed to be fluid-impermeable in the direction of the first tube. 13 . A system for applying a pharmaceutical fluid, comprising: a reservoir for the pharmaceutical fluid; and, a device comprising: a tube; and, a valve element, wherein the tube can be connected in terms of fluid conduction via a first tube end to the reservoir for the pharmaceutical fluid; and, wherein the valve element is arranged in a second tube end of the tube, wherein the valve element has at a first valve element end facing toward the first tube end, at least one anchoring element in order to prevent the valve element from being discharged from the second tube end has at a second valve element end facing toward the second tube end, a sealing element with an outer diameter of the sealing element corresponding to at least one inner tube diameter of the tube, so that the second tube end is sealed in terms of fluid conduction by the sealing element, and comprises a conduit means connecting in terms of fluid conduction the first tube end and the sealing element; wherein, when pressure is charged to the pharmaceutical fluid from the direction of the first tube end, a gap can be reversibly formed between the tube and the sealing element so that the second tube end is open in terms of fluid conduction. 14 . The system according to claim 13 , wherein the reservoir comprises: a conveying means for conveying a pharmaceutical fluid from the reservoir into the first tube end and for generating the pressure charging to the pharmaceutical fluid from the direction of the first tube end. 15 . A method for applying a pharmaceutical fluid with a device comprising: a tube and a valve element, wherein the tube can be connected in terms of fluid conduction via a first tube end to a reservoir for the pharmaceutical fluid; and, wherein the valve element is arranged in a second tube end of the tube; wherein the valve element has at a first valve element end facing toward the first tube end, at least one anchoring element in order to prevent the valve element from being discharged from the second tube end has at a second valve element end facing toward the second tube end, a sealing element having an outer diameter of the sealing element corresponding to at least one inner tube diameter of the tube, so that the second tube end is sealed by the sealing element in terms of fluid conduction; and comprises: a conduit means connecting the first tube end and the sealing element in terms of fluid conduction, comprising the following steps: a. connecting, in terms of fluid conduction, the device to the reservoir for the pharmaceutical fluid; b. conveying the pharmaceutical fluid from the reservoir via the tube up to the sealing element; c. building up a pressure of greater than 5 N/cm 2 on the pharmaceutical fluid from the direction of the first tube end within the tube; d. radially expanding the tube in the region of the sealing element by the action of the pressure while forming a gap between sealing element and tube; e. dispensing the pharmaceutical fluid from the gap while reducing the pressure; f. radially contracting the tube while closing the gap between sealing element and tube.
Valves or arrangement of valves {(A61M39/02, A61M39/0247, A61M39/16 take precedence; regulating valves in infusion systems A61M5/16881; in devices worn by the patient for the reception of urine, faeces, catamenial or other discharge, or in colostomy devices A61F5/4405)} · CPC title
Closing or sealing means · CPC title
Regulating valves (on-off valves, e.g. clamps A61M39/28) · CPC title
Valve means · CPC title
Bones · CPC title
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