Fluid Exchange System and Related Methods
US-2024374807-A1 · Nov 14, 2024 · US
US9872972B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9872972-B2 |
| Application number | US-201414477372-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 4, 2014 |
| Priority date | Sep 4, 2014 |
| Publication date | Jan 23, 2018 |
| Grant date | Jan 23, 2018 |
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Methods and devices are provided that allow a physician to consistently and reliably locate an implantable, magnetically settable valve (valve) and to determine and/or change (adjust) a setting of the valve from a current setting to a target setting without interference from the valve and/or patient's skin. In particular, various locator tools are provided that include a housing having a deck extending thereacross that is formed at least in part of a material which is moveable to accommodate a protrusion of a hydrocephalus valve beneath skin.
Opening claim text (preview).
What is claimed is: 1. A locator tool for locating a valve implanted beneath skin, comprising: an annular base member having a proximal end and a distal end that is configured to be placed on a skin surface above a valve implanted beneath the skin surface; and a deck supported across the base member and having at least a portion formed of a material through which at least one of visual and tactile access is obtainable, the material being movable to accommodate a valve protrusion in a skin surface on which the base member is configured to be placed, wherein the material comprises an elastic material which is movable deforming around a protrusion of skin. 2. The tool of claim 1 , wherein at least a portion of the material is transparent to allow a valve to be seen therethrough. 3. The tool of claim 1 , wherein the material includes one or more holes for marking at least one of a location and an orientation of a valve. 4. The tool of claim 1 , wherein the base member has a central opening extending therethrough and defining a central axis, and wherein the material is held by an annular support member mounted to move relative to the base member along the central axis. 5. The tool of claim 4 , wherein the base member and the annular support member include corresponding slots and protrusions to allow relative movement between the base member and the support member. 6. The tool of claim 4 , further comprising a mechanism to selectively fix the support member relative to the base member. 7. The tool of claim 4 , further comprising a biasing element for biasing the support member toward a proximal end of the base member. 8. A locator tool for locating a valve implanted beneath skin, comprising: an annular base member having a proximal end and a distal end that is configured to be placed on a skin surface above a valve implanted beneath the skin surface; and a deck supported across the base member and having at least a portion formed of a material through which at least one of visual and tactile access is obtainable, the material being movable to accommodate a valve protrusion in a skin surface on which the base member is configured to be placed, wherein the deck includes a rigid portion extending across the base member and having a valve cut-out formed therein, the material extending across the valve cut-out. 9. The tool of claim 8 , wherein the material is movable toward and away from the rigid portion. 10. The tool of claim 8 , wherein the material of the deck comprises a non-elastic material. 11. A locator tool for locating a valve implanted beneath skin, comprising: an annular base member having a proximal end and a distal end that is configured to be placed on a skin surface above a valve implanted beneath the skin surface; and a deck supported across the base member and having at least a portion formed of a material through which at least one of visual and tactile access is obtainable the material being movable to accommodate a valve protrusion in a skin surface on which the base member is configured to be placed, wherein the material of the deck comprises a non-elastic material, and wherein the non-elastic material is movable between a taut configuration and an untaut configuration in which the material can move around a protrusion of skin. 12. The tool of claim 8 , wherein the material comprises an elastic material which is movable by deforming around a protrusion of skin. 13. The tool of claim 11 , further comprising an adjustment mechanism for adjusting a tautness of the material. 14. A kit for locating and adjusting a valve implanted beneath a skin surface, comprising: a locator tool having an annular base member configured to be placed on a skin surface above a valve implanted beneath the skin surface, and a deck supported across the base member and having at least a portion formed of a material through which at least one of visual and tactile access is obtainable, the material being movable to accommodate a valve protrusion in a skin surface on which the base member is configured to be placed, wherein the deck includes a rigid portion having a valve cut-out formed therein, and wherein the material extends across the valve cut-out; an indicator tool removably disposable within the locator tool and configured to indicate a setting of a valve; and an adjustment tool removably disposable within the locator tool and configured to adjust a setting of a valve. 15. The kit of claim 14 , wherein at least a portion of the deck of the locator tool forms a platform on which the indicator tool and the adjustment tool seat against when disposed therein. 16. A method of locating a valve implanted beneath skin, comprising: positioning a base member of a locator tool on a skin surface above a valve implanted beneath the skin surface, at least a portion of a deck of the locator tool supported across the base member moving relative to the base member to accommodate a protrusion of skin around the valve. 17. The method of claim 16 , wherein the at least a portion of the deck comprises a material that moves relative to the base member to accommodate a protrusion of skin around the valve, and the method further comprises adjusting a height of the material relative to the base member and the skin surface. 18. The method of claim 16 , wherein the at least a portion of the deck comprises a material that moves relative to the base member to accommodate a protrusion of skin around the valve, and the method further comprises moving the material from an untaut position to a taught position. 19. The method of claim 16 , further comprising marking skin beneath the deck through holes in the deck to indicate features of a valve. 20. The method of claim 16 , further comprising selectively placing at least one of an indicator and a valve adjustment tool on the deck.
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