Vascular Device Delivery Devices and Related Systems
The instrument delivery device addresses catheter-related issues by enabling efficient blood withdrawal and fluid delivery through a vascular access device, reducing trauma and needlesticks, and extending catheter lifespan.
Patent Information
- Application Number
- JP2022558007
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2021-03-08
- Filing Date
- 2021-03-15
- Publication Date
- 2025-12-03
- Estimated Expiration
- 2041-03-15
AI Technical Summary
Catheters used for extended vascular access face issues such as stenosis, breakage, kinking, blockage by debris, and adhesion to the vasculature, necessitating additional needlesticks for blood collection, which are painful and costly.
An instrument delivery device that couples with a vascular access device, allowing it to move from a compact coiled position to an extended position, facilitating blood withdrawal and fluid delivery through a catheter without causing trauma, reducing the need for additional needlesticks.
The device reduces vascular trauma, minimizes blood withdrawal time, and extends catheter lifespan by enabling efficient blood collection and fluid delivery, thereby reducing the number of needlesticks and material costs.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to instrument delivery devices and related systems and methods. [Background technology]
[0002] Catheters are commonly used to infuse fluids into a patient's vascular system. For example, catheters may be used to infuse saline, various medications, or total parenteral nutrition. Catheters may also be used to withdraw blood from a patient.
[0003] The catheter may include an over-the-needle peripheral intravenous ("IV") catheter. In this case, the catheter may be mounted over an introducer needle having a sharp distal tip. The catheter and introducer needle may be assembled so that the distal tip of the introducer needle extends beyond the distal tip of the catheter, with the needle bevel pointing away from the patient's skin. The catheter and introducer needle are typically inserted into the patient's vascular system at a shallow angle from the skin.
[0004] To verify proper placement of the introducer needle and / or catheter within the blood vessel, the clinician typically checks for a "flashback" of blood within the flashback chamber of the catheter assembly. Once needle placement is confirmed, the clinician may temporarily occlude flow within the vasculature and remove the needle, leaving the catheter in place for subsequent blood collection or infusion.
[0005] Blood collection using a catheter can be difficult for several reasons, especially when the catheter's residence time within the vasculature exceeds one day. For example, if a catheter is left inserted in a patient for an extended period of time, the catheter may become more susceptible to stenosis, breakage, kinking, blockage by debris (e.g., fibrin or platelet clots), and adhesion of the catheter tip to the vasculature. For this reason, catheters are often used to obtain blood samples at the time of catheter placement but less frequently during the catheter placement period. Thus, when a blood sample is needed, an additional needlestick is required to provide venous access for collection, which can be painful for the patient and results in higher material costs.
[0006] The subject matter claimed herein is not limited to embodiments that solve any shortcomings or that operate only in such environments. Rather, this background is only provided to illustrate one example technology area where some embodiments described herein may be practiced. Summary of the Invention
[0007] The present disclosure generally relates to an instrument delivery device configured to couple to a vascular access device and deliver a vascular access device therethrough. In some embodiments, the instrument delivery device may include a housing that may include a distal connector, a proximal connector, and a lumen extending through the distal and proximal connectors. In some embodiments, the instrument delivery device may include a vascular access device that may include a distal end and a proximal end. In some embodiments, the vascular access device may be positioned within the lumen of the housing in a compact position that includes one or more bends in the vascular access device. In some embodiments, the compact position may include a coiled position. In some embodiments, the vascular access device may be configured to move from the compact position to an extended or extended position, which may include a coil-free position, and advance through the distal connector.
[0008] In some embodiments, the instrument delivery device may include another housing that may be coupled to the distal connector. In some embodiments, the other housing may include another distal connector, another proximal connector, and another lumen extending through the other distal connector and the other proximal connector. In some embodiments, the other housing may include a one-way valve disposed within the other lumen.
[0009] In some embodiments, the vascular access device may include a wire. In some embodiments, the wire may be coiled. In some embodiments, the vascular access device may include a tube. In some embodiments, the distal connector may include a cannula or a male luer connector. In some embodiments, the proximal connector may include a female luer connector.
[0010] In some embodiments, the proximal end of the vascular access device may include a stop. In some embodiments, the outer diameter of the stop may be larger than the diameter of the lumen to prevent the proximal end of the vascular access device from moving through the distal connector. In some embodiments, the stop may be spherical, wedge-shaped, or another suitable shape. In some embodiments, the stop may include a fluid path extending therethrough. In some embodiments, the stop may be configured to prevent fluid from flowing through the stop.
[0011] In some embodiments, the method may include inserting a catheter assembly into the patient's vascular system. In some embodiments, the catheter assembly may also include a catheter adapter, which may include a distal end, a proximal end, and a lumen extending through the distal and proximal ends. In some embodiments, the catheter assembly may include a catheter extending distally from the distal end of the catheter adapter. In some embodiments, the method may include coupling an instrument delivery device to the catheter assembly. In some embodiments, coupling the instrument delivery device to the catheter assembly may include coupling another distal connector to the catheter assembly.
[0012] In some embodiments, after inserting the catheter assembly into the patient's vasculature, the method may include advancing a vascular access device through the catheter, hi some embodiments, advancing the vascular access device through the catheter may include coupling a pre-filled syringe to the proximal connector and depressing a plunger of the pre-filled syringe.
[0013] In some embodiments, the housing can include a pre-filled syringe, which can include a distal connector. In some embodiments, the vascular access device can be disposed within the pre-filled syringe. In some embodiments, in response to depression of a plunger of the pre-filled syringe, the vascular access device can be configured to move from a compact position to an extended position and advance through the distal connector.
[0014] In some embodiments, a vascular access device may facilitate blood withdrawal from a patient, fluid delivery to a patient, patient or device monitoring, or other clinical needs by utilizing a catheter present within the patient's vasculature. In some embodiments, the vascular access device may facilitate one or more of the following: reducing trauma to the vasculature, reducing blood withdrawal time, and overcoming thrombus or fibrin sheaths in or around the catheter that may prevent blood withdrawal. In some embodiments, the vascular access device may be used to extend the life of a catheter remaining within the vasculature and may reduce the number of needle sticks. In some embodiments, the vascular access device may include one or more of a coiled wire, a guidewire, a probe, and a tube. In some embodiments, the vascular access device may include a sensor.
[0015] It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not intended to limit the scope of the claims. It is to be understood that the various embodiments are not limited to the arrangements and instrumentality shown in the drawings. It is also to be understood that the embodiments may be combined or other embodiments may be utilized, and that structural changes may be made without departing from the scope of the various embodiments of the present invention, unless so claimed. Therefore, the following detailed description is not to be taken in a limiting sense. [Brief explanation of the drawings]
[0016] Example embodiments will be described and explained with additional specificity and detail through the use of the accompanying drawings. [Figure 1A] FIG. 1A is a top perspective view of an exemplary instrument delivery device showing an exemplary housing, according to some embodiments. [Figure 1B] FIG. 1B is a cross-sectional view of an instrument delivery device coupled to another housing, according to some embodiments. [Figure 2A] FIG. 2A is a top perspective view of an instrument delivery device coupled to another housing, according to some embodiments, showing an example of a vascular access device in an advanced position. [Figure 2B] FIG. 2B is a cross-sectional view of an instrument delivery device coupled to another housing, according to some embodiments, showing a vascular access device in an advanced position. [Figure 3A] FIG. 3A is a cross-sectional view of an instrument delivery device coupled to another housing, showing another exemplary vascular access device in a coiled position, according to some embodiments. [Figure 3B] FIG. 3B is a cross-sectional view of an instrument delivery device coupled to another housing, showing a vascular access device in an advanced position, according to some embodiments. [Figure 4A] FIG. 4A is a cross-sectional view of an exemplary wedge, according to some embodiments. [Figure 4B] FIG. 4B is a cross-sectional view of another exemplary wedge, according to some embodiments. [Figure 5] FIG. 5 is a top perspective view of an exemplary vascular access system, according to some embodiments. [Figure 6] FIG. 6 is a top perspective view of a portion of a vascular access system showing an example of another distal connector, according to some embodiments. [Figure 7A] FIG. 7A is a cross-sectional view of another instrument delivery device showing a vascular access device in a coiled position, according to some embodiments. [Figure 7B]FIG. 7B is a cross-sectional view of another instrument delivery device showing a vascular access device in an advanced position, according to some embodiments. DETAILED DESCRIPTION OF THE INVENTION
[0017] 1A , in some embodiments, an instrument delivery device 10 can be configured to couple to a vascular access device and deliver a vascular access device 12 into and / or through the vascular access device. In some embodiments, the instrument delivery device 10 can include a housing 14 that can include a distal connector 16, a proximal connector 18, and a lumen 20 extending through the distal connector 16 and the proximal connector 18. In some embodiments, the distal connector 16 can include a cannula, a male Luer connector, or another suitable connector. In some embodiments, the proximal connector 18 can include a female Luer connector or another suitable connector. In some embodiments, the female Luer connector can include a needleless access connector or one or more features of a needleless access connector. For example, the female Luer connector can include a septum or a valve.
[0018] In some embodiments, instrument delivery device 10 may include a vascular access device 12, which may include a distal end 22 and a proximal end 24. In some embodiments, vascular access device 12 may be disposed within lumen 20 of housing 14 in a compact position that includes one or more bends in vascular access device 12. As shown in FIG. 1A , in some embodiments, the compact position may include a coiled position. In some embodiments, the coiled position may prevent tangling of vascular access device 12 when vascular access device 12 moves from the compact position to an extended or outstretched position.
[0019] In some embodiments, the length of the vascular access device 12 in the compact position may be shorter than the length of the vascular access device 12 in the outstretched position. In some embodiments, the vascular access device 12 may be generally straight in the outstretched position. In some embodiments, the compact position of the vascular access device 12 may facilitate storage of the vascular access device 12 within the housing 14 with a length sufficient to extend therethrough while also allowing the housing 14 to be compact. In some embodiments, the distal end 22 of the vascular access device 12 may be disposed within the distal connector 16 adjacent the distal opening 25, which may prevent tangling of the vascular access device 12 when the vascular access device 12 is moved from the compact position to the outstretched position.
[0020] 1B , in some embodiments, instrument delivery device 10 may include another housing 26 that may be coupled to distal connector 16. In some embodiments, other housing 26 may include another distal connector 28, another proximal connector 30, and another lumen 32 extending through the other distal connector 28 and the other proximal connector 30. In some embodiments, other housing 26 may include a one-way valve 34 disposed within the other lumen 32. In some embodiments, one-way valve 34 may include a duckbill valve. In some embodiments, one-way valve 34 may allow fluid to flow distally through one-way valve 34, but not proximally.
[0021] In some embodiments, distal connector 16 and / or other distal connector 28 may include a cannula, a male luer connector, or another suitable connector. In some embodiments, proximal connector 18 and / or other proximal connector 30 may include a female luer connector or another suitable connector. In some embodiments, distal connector 16 may be coupled to other proximal connector 30. In some embodiments, the outer diameter of distal end 22 of vascular access device 12 may be less than the diameter of distal connector 16 such that vascular access device 12 may move distally through distal connector 16.
[0022] In some embodiments, the proximal end 24 of the vascular access device 12 may include a stop 36. In some embodiments, the outer diameter 38 of the stop 36 may be larger than the diameter 40 of the lumen 20 to prevent the proximal end 24 of the vascular access device 12 from moving through the distal connector 16. In some embodiments, the stop 36 may be spherical, wedge-shaped, hemispherical, conical, or another suitable shape. In some embodiments, the outer diameter of the proximal portion of the stop 36 may be larger than the outer diameter of the distal portion of the stop 36, which may facilitate fluid flow carrying the instrument distally. In some embodiments, the stop 36 may be free within the lumen 20. In other embodiments, the stop 36 may be fixed within the lumen 20. For example, the stop 36 may be fixed to the inner surface of the housing 14 that forms the lumen 20.
[0023] In some embodiments, housing 14 and other housings 26 may be separate units or may be coupled together via compatible connectors. In some embodiments, instrument delivery device 10 may not include other housings 26 because, for example, one-way valve 34 may not be needed for a particular procedure or with a particular catheter assembly. In some embodiments, housing 14 and other housings 26 may be monolithically formed as a single unit.
[0024] 2A-2B, in some embodiments, the vascular access device 12 may be configured to move from a compact position to an extended position, which may include an uncoiled position and advanced distally through the distal connector 16. In some embodiments, the vascular access device 12 in the uncoiled position may be fully uncoiled or have less coil than the coiled position. In some embodiments, the vascular access device 12 may include a tube, for example, as shown in FIGS. 1A-2B. In some embodiments, the tube may include a variable outer diameter and / or a variable inner diameter along the length of the tube. In some embodiments, the tube may include a constant outer diameter and / or a constant inner diameter along the length of the tube.
[0025] In some embodiments, the tubing may be constructed of a polymeric and / or elastomeric material. In some embodiments, the tubing may be composed of a soft material having a lower durometer than a standard peripheral intravenous catheter, which may reduce trauma to the vasculature during advancement of the vascular access device 12.
[0026] In some embodiments, the tube may include one or more durometers and / or materials. In some embodiments, the tube may include or correspond to a tubular instrument further described in U.S. Patent Application No. 17 / 143,095, filed January 6, 2021, entitled "Tubular Instruments and Related Devices and Methods," which is incorporated by reference in its entirety. In some embodiments, the tube may include an extrusion or construction of a single or multiple materials. In some embodiments, the tube may include multiple segments that may be joined via solvent bonding, adhesive bonding, swaging, ultrasonic welding, tipping, etc. In some embodiments, the tube may be integrally formed as a single unit. In some embodiments, the tube may include one or more of a distal opening, a proximal opening, and one or more side holes.
[0027] 3A-3B, in some embodiments, the vascular access device 12 may include a wire. In some embodiments, the wire may be coiled in addition to being positioned in a coiled position. More specifically, in some embodiments, the wire may include smaller coils positioned along all or a portion of its length, and the wire may also be wound into a larger coil when in the coiled position such that the overall shape of the wire is a coiled shape. In some embodiments, at least a portion of the wire extending distally beyond the vascular access device may include a smaller coil, which may facilitate thrombus prevention. In some embodiments, the smaller coil may reduce the opportunity for thrombus entry into the vascular access device during insertion of the vascular access device into a patient's vasculature. Also, in some embodiments, the smaller coil may reduce the likelihood of trauma to the vasculature in response to advancement of the vascular access device 12 through the vascular access device and into the vasculature. Furthermore, in some embodiments, the smaller coil may facilitate blood flow through the vascular access device 12 to the vascular access device under negative pressure. In some embodiments, the wire may be constructed of a metal or other suitable material.
[0028] 4A-4B, in some embodiments, stop 36 may include a fluid pathway 41 extending through stop 36, for example, as shown in FIG. 4A. In some embodiments, fluid pathway 41 may be aligned with a central axis of stop 36. In some embodiments, stop 36 may be configured to prevent fluid from flowing through stop 36, for example, as shown in FIG. 4B.
[0029] In some embodiments, the proximal end 24 of the vascular access device 12, which may include a wire, a tube, or another suitable vascular access device, may be coupled to the stop 36 via an interference fit, a press fit, a friction fit, a material bond, or another suitable method. In some embodiments, the stop 36 may be composed of one or more of a polymeric material, an elastomeric material, a metallic material, and another suitable material.
[0030] 5 , in some embodiments, a vascular access device may include a catheter assembly 42, which may be inserted into a patient's vascular system. In some embodiments, the catheter assembly 42 may also include a catheter adapter 44, which may include a distal end 46, a proximal end 48, and a lumen 50 extending through the distal end 46 and the proximal end 48. In some embodiments, the catheter assembly 42 may include a catheter 52 extending distally from the distal end 46 of the catheter adapter 44. In some embodiments, the catheter 52 may include a peripheral intravenous catheter, a peripherally inserted central catheter, or a midline catheter.
[0031] In some embodiments, the instrument delivery device 10 may be coupled to a catheter assembly 42 that may reside within the patient's vasculature. In some embodiments, coupling the instrument delivery device 10 to the catheter assembly 42 may include coupling another distal connector 28 to the catheter assembly 42. In some embodiments, the instrument delivery device 10 may be coupled to the proximal end 48 of a catheter adapter 44.
[0032] In some embodiments, the catheter assembly 42 may include an extension tube 54 integrated into a side port 55 of the catheter adapter 44. In some embodiments, the proximal end of the extension tube 54 may be coupled to an adapter 56, such as, for example, a Y adapter or a T adapter. In some embodiments, the instrument delivery device 10 may be coupled to the adapter 56. In other embodiments, the other housing 26 and / or the housing 14 may be integrally formed with the adapter 56 as a single unit.
[0033] In some embodiments, after inserting the catheter 52 into the patient's vasculature, the vascular access device 12 may be advanced through the catheter 52, as shown in FIG. 5 . In some embodiments, advancing the vascular access device 12 through the catheter may include coupling a pre-filled syringe 58 to the proximal connector 18 and depressing a plunger 60 of the pre-filled syringe 58. In some embodiments, the pre-filled syringe 58 may be filled with a flushing solution, such as, for example, saline, which may be flushed through the catheter 52 in response to depressing the plunger 60. In some embodiments, the housing 14 may be coupled to any suitable pre-filled syringe.
[0034] In some embodiments, the vascular access device 12 may not be attached to the housing 14, which may facilitate movement of the distal end 22 of the vascular access device 12 through the distal connector 16 in response to pressure from depressing the plunger 60 of the pre-filled syringe 58. In some embodiments, flushing through the catheter 52 may be referred to as a "flush in place" because the catheter 52 may remain within the patient's vasculature when flushing occurs. In some embodiments, as the vascular access device 12 moves from a compact position to an extended position to advance the vascular access device 12, the distal end 22 of the vascular access device 12 may move distally through one or more of the following non-tortuous fluid paths: the distal connector 16, the other housing 26, the adapter 56, the extension tube 54, the side port 55, the distal end 46 of the catheter adapter 44, and the catheter 52.
[0035] In some embodiments, the distal end of another extension tube 62 may be coupled to the adapter 56. In some embodiments, the proximal end of the other extension tube 62 may be coupled to a blood collection device 64, which may include a Vacutainer® available from Becton Dickinson and Company of Franklin Lakes, New Jersey, or another suitable blood collection device. In some embodiments, blood collection device 64 may be used to collect blood in response to the vascular access device 12 being in the extended position and distal to the catheter 52.
[0036] Referring now to FIG. 6 , in some embodiments, the instrument delivery device 10 may be coupled to a needleless access connector 65, which may be coupled to the adapter 56 or another portion of the catheter assembly 42. In some embodiments, the needleless access connector 65 may include a non-tortuous or generally straight path to facilitate passage of the vascular access device 12 through the needleless access connector 65. In some embodiments, the other distal connector 28 may include a cannula 66 that may be inserted into the adapter 56, the needleless access connector 65, or the catheter adapter 44. In some embodiments, the cannula may be blunt. In some embodiments, the distal connector 16 may include one or more arms 68 that may be inwardly biased to interface with the outer surface of the adapter 56, the needleless access connector 65, or another portion of the catheter assembly 42. In some embodiments, the distal connector 16 may include the cannula 66 and / or the arms 68. In some embodiments, the distal connector 16 may include a male Luer connector or another suitable connector.
[0037] 7A-7B, in some embodiments, housing 14 may include a pre-filled syringe 70, which may include distal connector 16. In some embodiments, vascular access device 12 may be disposed within pre-filled syringe 70. In some embodiments, in response to depression of plunger 72 of the pre-filled syringe, vascular access device 12 may be configured to move from a compacted position to an extended position and advance through distal connector 16. In some embodiments, pre-filled syringe 70 may be filled with a flushing solution, such as, for example, saline, which may be flushed through catheter 52 in response to depression of plunger 72.
[0038] All examples and conditional language described herein are intended for educational purposes to aid in understanding the invention and concepts provided by the inventor to further the technology, and should be construed as not being limited to the specifically recited examples and conditions. Although embodiments of the present disclosure have been described in detail, it should be understood that various changes, substitutions, and alterations can be made thereto without departing from the spirit and scope of the disclosed embodiments.
Claims
1. 1. An instrument delivery device for coupling to a vascular access device, comprising: A housing, a distal connector comprising a male luer connector, the male luer connector comprising an outer collar surrounding a central protrusion, the central protrusion defining a distal opening at a distal end thereof; a proximal connector including a female Luer connector; a lumen extending through the distal connector and the proximal connector; the housing comprising: a vascular access device having a distal end and a proximal end, the vascular access device disposed within the lumen of the housing in a compact position, the distal end of the vascular access device disposed within the central protrusion of the male luer connector and adjacent the distal opening when in the compact position, the vascular access device configured to move from the compact position to an extended position and advance through the distal connector; Equipped with an instrument delivery device, wherein the proximal end of the vascular access device is provided with a stop that prevents the proximal end of the vascular access device from moving through the distal connector, the stop including a solid member that prevents fluid from flowing therethrough.
2. 10. The instrument delivery device of claim 1, further comprising a further housing coupled to the distal connector, the further housing comprising a further distal connector, a further proximal connector, and a further lumen extending through the further distal connector and the further proximal connector, and further comprising a one-way valve disposed within the further lumen.
3. The instrument delivery device of claim 1 , wherein the vascular access device comprises a wire.
4. The instrument delivery device of claim 3 , wherein the wire is coiled.
5. The instrument delivery device of claim 1 , wherein the vascular access device comprises a tube.
6. The instrument delivery device of claim 1 , wherein the stop is spherical.
7. The instrument delivery device of claim 1 , wherein the stop is wedge-shaped.
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