CLOSED SYSTEM ELASTOMERIC PUMPING MECHANISM
20230087734 · 2023-03-23
Inventors
Cpc classification
A61M5/14212
HUMAN NECESSITIES
A61M39/26
HUMAN NECESSITIES
A61M5/16831
HUMAN NECESSITIES
A61M5/155
HUMAN NECESSITIES
A61M5/1413
HUMAN NECESSITIES
International classification
A61M5/168
HUMAN NECESSITIES
A61M39/26
HUMAN NECESSITIES
A61M5/14
HUMAN NECESSITIES
Abstract
A medicinal infusion system includes a safety valve for isolating residual medication by providing a single point of fluidic disconnect to encapsulate a residual fluid volume prone to spillage. The safety valve couples a medicinal repository such as an infusion pump to a medicinal supply, typically from a syringe or tubing. The safety valve includes a resilient, deformable, or hinged surface for isolating and sealing the medicinal flow to eliminate and/or isolate any residual volume in tubing and connectors. The isolating surface accommodates an inserted fitting or coupling for allowing the medicinal flow to fill the infusion pump. Upon disconnection, fluids on either side of the safety valve are therefore isolated on the respective fill or source sides, and residual volume prone to spillage is eliminated.
Claims
1. A medicinal infusion pumping device, comprising: an expandable surround around a medicinal repository adapted to store a volume of fluid for intravenous injection based on a pressure in the expandable surround; and a plurality of safety valves securing a corresponding plurality of access ports in fluidic communication with the medicinal repository for metered patient delivery of the fluid; each safety valve of the plurality of safety valves providing a single point of fluidic disconnect and enforcement of unidirectional flow to encapsulate the fluid in the medicinal repository for patient delivery.
2. The device of claim 1 wherein each of the access ports is adapted for fluidic communication with an external vessel, and each of the safety valves is configured for fluidic isolation to contain the fluid in the medicinal repository or in the corresponding external vessel.
3. The device of claim 2 wherein the external vessel further comprises a fill vessel and a delivery vessel, the fill vessel adapted for transport of a medicinal source and the delivery vessel configured for intravenous (IV) delivery to a patient.
4. The device of claim 2 wherein each of the access ports further comprises a fitting for isolating the fluid volume while in transport prior to drippage or spillage for encapsulating a residual volume.
5. The device of claim 4 wherein the fitting is configured for engaging a complementary fitting on the corresponding external vessel.
6. The device of claim 2 wherein each of the safety valves further comprises a resilient isolating surfaces adapted to deformably seal the corresponding access port.
7. The device of claim 3 wherein the plurality of access ports further comprises an ingress port and an egress port adapted to engage the fill vessel and delivery vessel, respectively.
8. The device of claim 7 wherein each access port defines a fluidic disconnection point for encapsulating residual vessel volume for a unidirectional decoupling based on a medication flow direction.
9. The device of claim 1 further comprising a repository vessel defined by each of the access ports, each repository vessel in fluidic communication with the medicinal repository, each of the access ports adapted for fluidic communication with an external vessel, and each of the safety valves is configured for fluidic isolation to contain the fluid in the repository vessel or in the corresponding external vessel.
10. The device of claim 1 wherein the plurality of safety valves and access ports further comprises: an ingress port configured to receive the volume of fluid from a fill vessel for transport into the medicinal repository; an egress port configured to receive the volume of fluid via a delivery vessel fluidically coupled to the medicinal repository for unidirectional transport of the fluid therefrom; and an intravenous transport vessel for patient delivery downstream from the egress port.
11. The device of claim 1 wherein each of the safety valves is responsive to engagement of a rigid protrusion with a resilient isolation surface, the resilient isolation surface adapted to seal against external flow of the fluid.
12. A system of patient intravenous (IV) delivery of contact sensitive medication, comprising: an expandable surround around a medicinal repository adapted to store a volume of fluid for intravenous injection based on a pressure in the expandable surround; and a plurality of safety valves securing a corresponding plurality of access ports in fluidic communication with the medicinal repository for metered patient delivery of the fluid; each safety valve of the plurality of safety valves providing a single point of fluidic disconnect and enforcement of unidirectional flow to encapsulate the fluid in the medicinal repository for patient delivery.
13. The system of claim 12 wherein each of the access ports is adapted for fluidic communication with an external vessel, and each of the safety valves is configured for fluidic isolation to contain the fluid in the medicinal repository or in the corresponding external vessel.
14. The system of claim 13 wherein the external vessel further comprises a fill vessel and a delivery vessel, the fill vessel adapted for transport of a medicinal source and the delivery vessel configured for intravenous (IV) delivery to a patient.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008] The foregoing and other objects, features and advantages of the invention will be apparent from the following description of particular embodiments of the invention, as illustrated in the accompanying drawings in which like reference characters refer to the same parts throughout the different views. The drawings are not necessarily to scale, emphasis instead being placed upon illustrating the principles of the invention.
[0009]
[0010]
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[0014]
[0015]
DETAILED DESCRIPTION
[0016] The following detailed description sets forth numerous specific details to provide a thorough understanding of the invention. However, those skilled in the art will appreciate that the invention may be practiced without these specific details. In other instances, well-known methods, procedures, components, protocols, processes, and circuits have not been describe in detail so as not to obscure the invention as claimed.
[0017] Where a term is provided in the singular, the inventors also contemplate aspects of the invention described by the plural of that term. As used in this specification and in any claims, the singular forms “a”, “an”, and “the” include plural references unless the context clearly dictates otherwise, e.g. “a derivative work”. Thus, for example, a reference to “a method” includes one or more methods, and/or steps of the type described therein and/or which will become apparent to those persons skilled in the art upon reading this disclosure.
[0018] The terms “include”, “includes”, “including”, “comprising” and variations thereof mean “including but not limited to”, unless expressly specified otherwise. The term “consisting of” and variations thereof includes “including and limited to”, unless expressly specified otherwise.
[0019] The phrase “based on” does not mean “based only on”, unless expressly specified otherwise. In other words, the phrase “based on” describes both “based only on” and “based at least on”. The term “represent” and like terms are not exclusive, unless expressly specified otherwise.
[0020] Configurations disclosed below depict safety valve configurations for providing a single disconnection point that isolates a medicinal quantity following transport through an arrangement of tubes and fittings for patient administration. Elimination of intermediate fittings and adaptors avoids an open tubing length that can drip or spill a residual quantity of medicinal liquid remaining in the tubes and connectors. In one configuration, the disclosed system employs fittings and connectors employing LUER-LOK® based parameters, as defined in ISO 80369-7:2016, which specifies dimensions and requirements for the design and functional performance of small-bore connectors intended to be used for connections in intravascular applications or hypodermic connections in hypodermic medical devices and accessories. In another configuration, a safety valve integrated with an infusion pump apparatus provides a single point of fluidic disconnect and unidirectional flow to mitigate any residual fluid volume prone to spillage.
[0021]
[0022] The fluidic medication 64 fills the containment 60 from a fill tube 32, usually administered by a pharmaceutical or hospital technician through a syringe 70 or other dispensing apparatus. As indicated above, spillage and residual medication exposure present a hazard from the risk of contact.
[0023] The safety valve 100 includes a series of valves and checks to ensure that a residual volume 112 of medication cannot be liberated flow or spill onto surrounding surfaces or personnel. A pressure activated valve 114 resiliently travels between sealed and open positions based on a protrusion 52 at a fill tube 32 closed male luer 110. The valve 114 ensures that fluidic passage is allowed only when the fill tube 32 is connected, and upon disconnection, closes such that the residual volume 112 is retained. The safety valve 100 also employs a unidirectional valve 116 controlling ingress to the medication containment 60. In the example arrangement, the pressure activated valve 114 and unidirectional valve 116 may be implemented by resilient, elastomeric structures. In another configuration discussed below, they are defined by a single disconnection point.
[0024] A delivery tube or vessel 132 connects to a delivery port or egress from the containment for administration to a patient. The delivery port couples to the delivery vessel 132, and has a closed male luer at the patient connection adapted to retain residual fluid upon disconnection from patient delivery, thereby encapsulating liquid contained in the delivery vessel 132 from spillage.
[0025] The unidirectional valve ensures that dispensed medication passes only through the delivery vessel 132, and further guards against inadvertent dispensing of the medication 64. In contrast to conventional approaches, the safety valve 100 provides functional fill capability for infusion via the vessel 20, while guarding against stray residual medication prone to spillage or contamination of surrounding persons or equipment.
[0026]
[0027]
[0028] In the example configuration of
[0029] The protrusion 52 is likewise adapted to retain residual fluid within the closed male luer 30 during disengagement of the engageable linkage. In the example arrangement, the engageable linkage provides a threaded engagement between the egress fitting 10 and the closed male luer 30 for tight sealing during medicinal fill operations.
[0030]
[0031] Referring to
[0032] In the example of
[0033] Upon insertion, the protrusion 242 disposes the interference surface 250 as shown in
[0034] In
[0035] Following a fill of the repository 60, the interference surface 250 is adapted to dispose to a sealed position responsive to fluidic pressure in an outflow direction from the medicinal repository, shown by arrows 266. The safety valve 200 is adapted to retain residual fluid volume upon disconnection from a transfer or supply vessel 32 as the interference surface 250 resiliently disposes to a closed position in
[0036]
[0037]
[0038] While the system and methods defined herein have been particularly shown and described with references to embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the scope of the invention encompassed by the appended claims.