System and Method for Tension-Activated Fluid Control
Abstract
A medication infusion system may include a controller and a reservoir module including a reservoir containing medication to be delivered to an internal wound site via the controller. The controller may have a peristaltic pump driven by a motor to urge medication to flow toward the internal wound site, through a conduit. When the conduit is not tensioned via engagement with the pump, a valve blocks fluid flow to prevent unrestricted flow of medication. The valve may have a tapered plunger separated from an annular valve seat by a portion of the conduit that elongates under tension to enable withdrawal of the plunger from the valve seat. Alternatively, the valve may have features such as a spherical plunger between two annular valve seats, a rigid tubular member biased with respect to the conduit, or an opening in the conduit that moves axially or radially to enable fluid flow.
Claims
exact text as granted — not AI-modified1 . A system for percutaneous infusion of an internal wound site, the system comprising:
a conduit positioned to convey a first fluid toward the internal wound site; a rotor positioned to impinge against the conduit to urge the first fluid to move through the conduit; and a valve positioned to impede flow of the first fluid through the conduit in response to absence of impingement of the rotor against the conduit.
2 . The system of claim 1 , further comprising a first reservoir shaped to contain the first fluid, wherein the conduit is coupled to the first reservoir to receive the first fluid from the first reservoir.
3 . The system of claim 2 , further comprising a second reservoir in communication with the internal wound site to receive a second fluid aspirated from the internal wound site.
4 . The system of claim 1 , wherein the rotor is incorporated into a peristaltic pump comprising multiple rotor pins, wherein the conduit is routed tightly about the rotor pins such that tension in the conduit causes opposing sides of the tube to press against each other proximate each of the rotor pins to impede flow of the first fluid past the rotor pins.
5 . The system of claim 4 , wherein the peristaltic pump is driven by a motor having an axis of rotation about which the rotor pins rotate.
6 . The system of claim 1 , wherein the valve operates substantially independently of a pressure gradient across the valve.
7 . The system of claim 1 , wherein the valve comprises a valve seat and a plunger, wherein the plunger is movable with respect to the valve seat such that the plunger contacts the valve seat to impede flow of the first fluid through the conduit.
8 . The system of claim 7 , wherein the conduit comprises a tube within which the valve seat and the plunger are retained, wherein elongation of a portion of the tube between the plunger and the valve seat enables the plunger to move with respect to the valve seat.
9 . The system of claim 8 , wherein the valve seat has a generally annular shape, wherein the plunger has a sealing end and a retention end, the sealing end having a tapered shape insertable into the valve seat to substantially prevent flow of the first fluid through the valve seat, the retention end having a splined shape selected to permit passage of the first fluid between the retention end and a bore of the tube.
10 . The system of claim 8 , wherein the valve seat has a generally annular shape, wherein the plunger has a sealing end and a retention end, the sealing end having a tapered shape insertable into the valve seat to substantially prevent flow of the first fluid through the valve seat, the retention end having a plurality of passageways formed therein to permit passage of the first fluid through the retention end.
11 . The system of claim 8 , wherein the valve seat comprises a first valve seat having a generally annular shape, wherein the plunger comprises a generally spherical shape, wherein the plunger is positioned to be pressed into engagement with the first valve seat via motion of a second valve seat having a generally annular shape.
12 . The system of claim 7 , wherein the valve further comprises a rigid tubular body, wherein one of the plunger and valve seat is attached to the rigid tubular body and the other of the plunger and valve seat is attached to the conduit, wherein the rigid tubular body is resiliently coupled to the conduit to enable the plunger to move with respect to the valve seat.
13 . The system of claim 1 , wherein the conduit has an opening oriented generally radially with respect to an axis of the conduit, wherein the valve comprises a blocking member positioned to block flow of the first fluid through the opening, wherein the opening moves along an axis of the tube with respect to the blocking member in response to elongation of the conduit to permit flow of the first fluid through the opening.
14 . The system of claim 1 , wherein the conduit has an opening oriented generally radially with respect to an axis of the conduit, wherein the valve comprises a blocking member positioned to block flow of the first fluid through the opening, wherein the opening moves toward an axis of the tube in response to elongation of the conduit to permit flow of the first fluid through the opening.
15 . A peristaltic pump comprising:
a conduit positioned to convey a first fluid; a plurality of rotor pins about which the conduit is routed tightly routable such that tension in the conduit causes opposing sides of the conduit to press against each other proximate each of the rotor pins to impede flow of the first fluid past the rotor pins, wherein the rotor pins are rotatable about an axis of rotation to urge the first fluid to move through the conduit; and a plunger positioned to impede flow of the first fluid through the conduit in response to absence of impingement of the rotor pins against the conduit.
16 . The peristaltic pump of claim 15 , wherein the plunger moves substantially independently of a pressure gradient across the valve.
17 . The peristaltic pump of claim 15 , wherein plunger is incorporated into a valve, the valve further comprising a valve seat, wherein the plunger is movable with respect to the valve seat such that the plunger contacts the valve seat to impede flow of the first fluid through the conduit.
18 . The peristaltic pump of claim 17 , wherein the conduit comprises a tube within which the valve seat and the plunger are retained, wherein elongation of a portion of the tube between the plunger and the valve seat enables the plunger to move with respect to the valve seat.
19 . The peristaltic pump of claim 18 , wherein the valve seat has a generally annular shape, wherein the plunger has a sealing end and a retention end, the sealing end having a tapered shape insertable into the valve seat to substantially prevent flow of the first fluid through the valve seat, the retention end having a splined shape selected to permit passage of the first fluid between the retention end and a bore of the tube.
20 . The peristaltic pump of claim 18 , wherein the valve seat has a generally annular shape, wherein the plunger has a sealing end and a retention end, the sealing end having a tapered shape insertable into the valve seat to substantially prevent flow of the first fluid through the valve seat, the retention end having a plurality of passageways formed therein to permit passage of the first fluid through the retention end.
21 . The peristaltic pump of claim 18 , wherein the valve seat comprises a first valve seat having a generally annular shape, wherein the plunger comprises a generally spherical shape, wherein the plunger is positioned to be pressed into engagement with the first valve seat via motion of a second valve seat having a generally annular shape.
22 . The peristaltic pump of claim 17 , wherein the valve further comprises a rigid tubular body, wherein one of the plunger and valve seat is attached to the rigid tubular body and the other of the plunger and valve seat is attached to the conduit, wherein the rigid tubular body is resiliently coupled to the conduit to enable the plunger to move with respect to the valve seat.
23 . A valve comprising:
a conduit positioned to convey a first fluid; a valve seat; and a plunger resiliently urged to contact the valve seat; wherein at least one of the valve seat and the plunger is coupled to the conduit to be movable in response to tension in the conduit to withdraw the plunger from the valve seat, thereby permitting flow of the first fluid through the valve.
24 . The valve of claim 23 , wherein the plunger moves substantially independently of a pressure gradient across the valve.
25 . The valve of claim 23 , wherein the conduit comprises a tube within which the valve seat and the plunger are retained, wherein elongation of a portion of the tube between the plunger and the valve seat enables the plunger to move with respect to the valve seat.
26 . The valve of claim 25 , wherein the valve seat has a generally annular shape, wherein the plunger has a sealing end and a retention end, the sealing end having a tapered shape insertable into the valve seat to substantially prevent flow of the first fluid through the valve seat, the retention end having a splined shape selected to permit passage of the first fluid between the retention end and a bore of the tube.
27 . The valve of claim 25 , wherein the valve seat has a generally annular shape, wherein the plunger has a sealing end and a retention end, the sealing end having a tapered shape insertable into the valve seat to substantially prevent flow of the first fluid through the valve seat, the retention end having a plurality of passageways formed therein to permit passage of the first fluid through the retention end.
28 . The valve of claim 25 , wherein the valve seat comprises a first valve seat having a generally annular shape, wherein the plunger comprises a generally spherical shape, wherein the plunger is positioned to be pressed into engagement with the first valve seat via motion of a second valve seat having a generally annular shape.
29 . The valve of claim 23 , further comprising a rigid tubular body, wherein one of the plunger and valve seat is attached to the rigid tubular body and the other of the plunger and valve seat is attached to the conduit, wherein the rigid tubular body is resiliently coupled to the conduit to enable the plunger to move with respect to the valve seat.
30 . A method for percutaneously infusing an internal wound site through the use of a system comprising a peristaltic pump having a conduit and a rotor, the method comprising:
tightly routing the conduit about the rotor; opening the valve in response to tight routing of the conduit about the rotor; and moving the rotor along the conduit to urge a first fluid to move through the conduit, toward the internal wound site.
31 . The method of claim 30 , wherein the system further comprises a first reservoir shaped to contain the first fluid, wherein the conduit is coupled to the first reservoir to receive the first fluid from the first reservoir, wherein urging the first fluid to move through the conduit comprises drawing the first fluid from the first reservoir.
32 . The method of claim 31 , wherein the system further comprises a second reservoir in communication with the internal wound site, the method further comprising receiving a second fluid aspirated from the internal wound site into the second reservoir.
33 . The method of claim 30 , wherein the peristaltic pump comprises multiple rotor pins, wherein tightly routing the conduit about the rotor comprises tightly routing the conduit about the plurality of rotor pins such that tension in the conduit causes opposing sides of the tube to press against each other proximate each of the rotor pins to impede flow of the first fluid past the rotor pins.
34 . The method of claim 33 , wherein the peristaltic pump is driven by a motor having an axis of rotation, wherein moving the rotor along the conduit comprises rotating the rotor about the axis of rotation.
35 . The method of claim 30 , wherein opening the valve comprises opening the valve substantially independently of a pressure gradient across the valve.
36 . The method of claim 30 , wherein the valve comprises a valve seat and a plunger, wherein opening the valve comprises moving the plunger with respect to the valve seat such that the plunger is withdrawn from contact with the valve seat to permit flow of the first fluid through the conduit.
37 . The method of claim 36 , wherein the conduit comprises a tube within which the valve seat and the plunger are retained, wherein opening the valve comprises elongating of a portion of the tube between the plunger and the valve seat to enable the plunger to move with respect to the valve seat.
38 . The method of claim 37 , wherein the valve seat has a generally annular shape, wherein the plunger has a sealing end and a retention end, the sealing end having a tapered shape insertable into the valve seat, the retention end having a splined shape selected to permit passage of the first fluid between the retention end and a bore of the tube, wherein opening the valve comprises withdrawing the sealing end from the valve seat to permit flow of the first fluid through the valve seat.
39 . The method of claim 37 , wherein the valve seat has a generally annular shape, wherein the plunger has a sealing end and a retention end, the sealing end having a tapered shape insertable into the valve seat, the retention end having a plurality of passageways formed therein to permit passage of the first fluid through the retention end, wherein opening the valve comprises withdrawing the sealing end from the valve seat to permit flow of the first fluid through the valve seat.
40 . The method of claim 37 , wherein the valve seat comprises a first valve seat having a generally annular shape, wherein the plunger comprises a generally spherical shape, wherein opening the valve comprises withdrawing a second valve seat to permit withdrawal of the plunger from the first valve seat, wherein the second valve seat has a generally annular shape.
41 . The method of claim 36 , wherein the valve further comprises a rigid tubular body, wherein one of the plunger and valve seat is attached to the rigid tubular body and the other of the plunger and valve seat is attached to the conduit, wherein the rigid tubular body is resiliently coupled to the conduit, wherein opening the valve comprises moving the conduit axially with respect to the rigid tubular body to withdraw the plunger from the valve seat.
42 . The method of claim 30 , wherein the conduit has an opening oriented generally radially with respect to an axis of the conduit, wherein the valve comprises a blocking member positioned to block flow of the first fluid through the opening, wherein opening the valve comprises moving the opening along an axis of the tube with respect to the blocking member in response to elongation of the conduit to permit flow of the first fluid through the opening.
43 . The method of claim 30 , wherein the conduit has an opening oriented generally radially with respect to an axis of the conduit, wherein the valve comprises a blocking member positioned to block flow of the first fluid through the opening, wherein opening the valve comprises moving the opening toward an axis of the tube in response to elongation of the conduit to permit flow of the first fluid through the opening.
44 . A method for permitting fluid flow through a conduit through the use of a valve comprising a plunger and a valve seat, the method comprising:
exerting tension on the conduit; and moving at least one of the plunger and the valve seat in response to the tension to withdraw the plunger from the valve seat, thereby permitting flow of the first fluid through the valve.
45 . The method of claim 44 , wherein moving at least one of the plunger and the valve seat comprises moving at least one of the plunger and the valve seat substantially independently of a pressure gradient across the valve.
46 . The method of claim 44 , wherein the conduit comprises a tube within which the valve seat and the plunger are retained, wherein moving at least one of the plunger and the valve seat comprises elongating of a portion of the tube between the plunger and the valve seat to enable the plunger to move with respect to the valve seat.
47 . The method of claim 46 , wherein the valve seat has a generally annular shape, wherein the plunger has a sealing end and a retention end, the sealing end having a tapered shape insertable into the valve seat, the retention end having a splined shape selected to permit passage of the first fluid between the retention end and a bore of the tube, wherein moving at least one of the plunger and the valve seat comprises withdrawing the sealing end from the valve seat to permit flow of the first fluid through the valve seat.
48 . The method of claim 46 , wherein the valve seat has a generally annular shape, wherein the plunger has a sealing end and a retention end, the sealing end having a tapered shape insertable into the valve seat, the retention end having a plurality of passageways formed therein to permit passage of the first fluid through the retention end, wherein moving at least one of the plunger and the valve seat comprises withdrawing the sealing end from the valve seat to permit flow of the first fluid through the valve seat.
49 . The method of claim 46 , wherein the valve seat comprises a first valve seat having a generally annular shape, wherein the plunger comprises a generally spherical shape, wherein moving at least one of the plunger and the valve seat comprises withdrawing a second valve seat to permit withdrawal of the plunger from the first valve seat, wherein the second valve seat has a generally annular shape.
50 . The method of claim 44 , wherein the valve further comprises a rigid tubular body, wherein one of the plunger and valve seat is attached to the rigid tubular body and the other of the plunger and valve seat is attached to the conduit, wherein the rigid tubular body is resiliently coupled to the conduit, wherein moving at least one of the plunger and the valve seat comprises moving the conduit axially with respect to the rigid tubular body to withdraw the plunger from the valve seat.Join the waitlist — get patent alerts
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