Surgical Suction System

The surgical suction system addresses clogging issues by using adaptable suction devices and tubes with varying diameters and adapters, enhancing flow and enabling quick instrument changes, thereby improving surgical efficiency.

JP7785726B2Active Publication Date: 2025-12-15CONMED CORP
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Patent Information

Application Number
JP2023127049
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2018-03-14
Filing Date
2023-08-03
Publication Date
2025-12-15
Estimated Expiration
2038-09-14

AI Technical Summary

Technical Problem

Conventional suction systems used in medical procedures, particularly in orthopedic surgeries, frequently clog due to the mixture of solid and liquid biological materials, requiring labor-intensive and time-consuming disassembly and reassembly to unclog, and lack the ability to seamlessly switch between small and large suction instruments.

Method used

A surgical suction system with interchangeable Yankauer suction devices and cannula tubes featuring varying diameters and adapters to minimize clogging, allowing for efficient passage of both liquid and solid materials, and enabling quick instrument changes based on surgical site and material type.

Benefits of technology

The system reduces clogging by increasing inner diameters to accommodate diverse biological materials, enhancing flow, and allows for rapid instrument exchange, thus improving efficiency and reducing downtime during surgeries.

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Abstract

To provide a surgical suction system.SOLUTION: A surgical suction system 10 includes a large bore Yankauer suction device 12 having: a distal tip with a first diameter; and a proximal end with exterior hose barbs 42 and a second diameter. The second diameter is greater than the first diameter such that a channel extending through the large bore Yankauer suction device may have an increasing diameter from the distal tip to the proximal end. The surgical system also includes cannulated tubing 24 having a distal end and a proximal end, the distal end configured to mate with the exterior hose barbs of the Yankauer suction device. The surgical system further includes an adapter 38 having a distal end with exterior hose barbs and a proximal end. The exterior hose barbs are configured to mate with the proximal end of the cannulated tubing. The proximal end of the adapter is configured to connect to a port to a canister, wall vacuum, or other biological material collection device.SELECTED DRAWING: Figure 3
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Description

[Technical Field]

[0001] CROSS-REFERENCE TO RELATED APPLICATIONS This application claims priority to U.S. Provisional Patent Application No. 62 / 642,693, filed March 14, 2018, entitled "Large Bore Yankauer Kit."

[0002] FIELD OF THE INVENTION The present invention relates generally to medical devices used during surgical procedures, and more particularly to a surgical suction system with adapters for changing instruments and connecting to various vacuum systems and collection devices. [Background technology]

[0003] 2. Description of Related Art During various medical procedures, for example, orthopedic procedures, it is frequently necessary to remove material such as blood and bone fragments by suction. Conventional suction canisters connected to suction instruments used in medical procedures have standard fittings for receiving suction tubing. Conventional suction tubing generally has an inner diameter in the range of 1 / 8 to 9 / 32 inches. However, in many orthopedic procedures, the nature of the material being removed by suction is such that the material clogs standard tubing, instruments, and fittings used to connect the suction tubing.

[0004] During a single standard hip or knee replacement (or revision) procedure, a surgeon may unclog the suction line up to 15 times. As discussed above, the suction line may become clogged with a mixture of solid and liquid biological material, such as blood, fat, bone fragments, and clotted blood. To unclog the suction system, the surgeon must disassemble and reassemble components of the system. Thus, unclogging the suction system is labor-intensive and time-consuming.

[0005] In some cases, a surgical procedure may require the use of a small suction instrument. For example, if the surgical site is small and suction is only used for liquid biological material, a small suction instrument may be needed for the small incision made at the beginning of the surgical procedure. Currently, the small and large suction instruments are each components of separate suction systems. In other words, surgeons must switch between suction systems to use different sized suction instruments.

[0006] Therefore, there is a need for a suction system that minimizes clogging and allows for the interchangeable use of small and large suction devices. Summary of the Invention

[0007] The present invention relates to a surgical suction system with an adapter for changing instruments and connecting to various vacuum systems and collection devices. According to one aspect, the suction system includes a Yankauer suction device having a distal tip with a first diameter and a proximal end with an external hose barb (or alternatively, threads) and a second diameter. The second diameter is larger than the first diameter. The suction system also includes a cannula tube having a distal end and a proximal end. The distal end of the cannula tube is configured to mate with the external hose barb of the Yankauer suction device. The suction system further includes an adapter having a distal end with an external hose barb and a proximal end. The external hose barb of the adapter is configured to mate with the proximal end of the cannula tube.

[0008] According to another aspect, a suction system includes a Yankauer suction device having a distal tip with a first diameter and a proximal end with an external hose barb and a second diameter. The second diameter is larger than the first diameter. The suction system also includes a cannula tube having a distal end and a proximal end. The distal end of the cannula tube is configured to mate with the external hose barb of the Yankauer suction device. The suction system further includes a first adapter having a distal end with an external hose barb and a proximal end. The external hose barb of the adapter is configured to mate with the proximal end of the cannula tube. The suction system also includes a second instrument having a proximal end configured to mate with the proximal end of the second adapter. The second adapter has a proximal end with an external hose barb configured to mate with the distal end of the cannula tube. The Yankauer suction device and the second instrument are interchangeable. In the first configuration, the proximal end of the Yankauer suction device is connected to the distal end of the cannula tube. In the second configuration, the proximal end of the second instrument is connected to the distal end of the second adapter, and the proximal end of the second adapter is connected to the distal end of the cannula tube.

[0009] It should be understood that all combinations of the foregoing concepts and additional concepts discussed in more detail below (provided such concepts are not mutually inconsistent) are contemplated as part of the inventive subject matter disclosed herein. In particular, all combinations of subject matter recited in the claims appearing at the end of this disclosure are contemplated as part of the inventive subject matter disclosed herein. Additionally, terms explicitly used herein, which may also appear in any disclosure incorporated by reference, should be understood to correspond to a meaning that most closely matches the specific concepts disclosed herein.

[0010] These and other aspects of the invention will be apparent from and elucidated with reference to the embodiment(s) described hereinafter. [Brief explanation of the drawings]

[0011] One or more aspects of the invention are particularly pointed out and particularly claimed as examples in the claims at the conclusion of this specification. The foregoing and other objects, features, and advantages of the invention will become apparent from the following description taken in conjunction with the accompanying drawings.

[0012] [Figure 1] FIG. 1 shows a schematic exploded side view of an aspiration system according to one embodiment. [Figure 2] FIG. 2 is a front (distal) schematic view of a large bore Yankauer suction apparatus, according to one embodiment. [Figure 3] FIG. 3 is a schematic side view of an aspiration system according to one embodiment. [Figure 4] FIG. 4 is a schematic perspective side view of a flexible adapter, according to one embodiment. [Figure 5] FIG. 5 is a schematic rear (proximal) perspective view of a flexible adapter, according to an embodiment. [Figure 6] FIG. 6 is a schematic side view of a flexible adapter, according to one embodiment. [Figure 7] FIG. 7 is a cross-sectional schematic view of the flexible adapter of FIG. [Figure 8] FIG. 8 is a perspective schematic view of a spout adapter, according to one embodiment. DETAILED DESCRIPTION OF THE INVENTION

[0013] Aspects of the present invention and specific features, advantages, and details thereof are more fully described below with reference to non-limiting examples illustrated in the accompanying drawings. Descriptions of well-known structures are omitted so as not to unnecessarily obscure the details of the invention. It should be understood, however, that the detailed description and specific non-limiting examples, while illustrating aspects of the present invention, are given by way of illustration only, and not limitation. Various substitutions, modifications, additions, and / or arrangements within the spirit and / or scope of the concepts underlying the invention will be apparent to those skilled in the art from this disclosure.

[0014] Referring now to the drawings, wherein like reference numerals refer to like parts throughout, FIG. 1 shows an exploded side schematic view of an aspiration system 10, according to one embodiment. The aspiration system 10 includes a large-bore suction instrument 12, such as a Yankauer aspiration tool / device (hereinafter, "large-bore Yankauer"). As shown in FIG. 2, the large-bore Yankauer 12 includes a body 14 with a distal tip 16 having a bore 18 extending therethrough. In the illustrated embodiment, the bore 18 is relatively large for removing both liquid and solid biological material (e.g., blood, fat, bone fragments) from a surgical site. In one embodiment, the bore 18 has an inner diameter d1 of 6.00 mm; however, alternative sizes of bore 18 may be used so long as the inner diameter is large enough to allow the passage of both liquid and solid biological material. Specifically, as used herein, "large bore" is defined to include a wide range of bore sizes having diameters in the range of 5-10 mm, with the inner diameter d1 of the bore 18 preferably being in the range of 6-8 mm.

[0015] Referring again to FIG. 1 , the body 14 of the large bore Yankauer 12 extends from the distal tip 16 to the proximal end 20 along a central longitudinal yy-axis. The proximal end 20 of the large bore Yankauer 12 includes an external hose barb 22. The hose barb 22 is understood by those skilled in the art as a barb-like ring that allows for each push-to-connect and prevents easy disconnection from the tubing. As shown in FIG. 3 , the external hose barb 22 at the proximal end 20 is sized and configured to be removably attached to a cannula flexible tubing 24. As also shown in FIG. 3 , a channel 26 extends along the central longitudinal yy-axis from the hole 18 at the distal tip 16 through the body 14 of the large bore Yankauer 12 to the proximal end 20. In one embodiment, the inner diameter of the channel 26 is smallest at the distal tip 16 (i.e., d1 of the hole 18 in FIG. 2 ). For example, in one embodiment, the inner diameter of channel 26 increases from inner diameter d1 at distal tip 16 to inner diameter d2 (FIG. 3) at proximal end 20. The increasing inner diameter from distal tip 16 to proximal end 20, following the suction direction f (FIG. 1) of large bore Yankauer 12, provides extra space for biological material to flow and minimizes clogging.

[0016] As described above, the proximal end 16 of the large-bore Yankauer 12 is sized and configured to mate or otherwise connect with the cannula flexible tubing 24. In the embodiment shown in FIG. 1 , the cannula flexible tubing 24 includes a pair of flared ends 28, 30 at the distal end 32 and the proximal end 34 of the flexible tubing 24, respectively. The flared ends 28, 30 are portions of the flexible tubing 24 that are tapered or otherwise have a varying inner diameter. The flared ends 28, 30 are configured and / or structured to accommodate connections between the flexible tubing 24 and instruments and / or connectors and to prevent pinching or kinking of the tubing adjacent the flared ends (traditional tubing without flared ends tends to kink or pinch in the section adjacent the connected end of the tubing). Thus, other dimensions and configurations of flexible tube 24 may be used, so long as the distal and proximal ends 32, 34 are suitable for stable connection to instruments and / or connectors.

[0017] In the embodiment illustrated in FIG. 1, the inner diameter of the cannula flexible tubing 24 increases toward the distal end 32, creating a first flared end 28, and increases in the opposite direction toward the proximal end 34, creating a second flared end 30. As the inner diameter of the cannula flexible tubing 24 increases toward both the distal and proximal ends 32, 34, the inner diameter of the flexible tubing 24 is smallest at a central portion 36 of the flexible tubing 24 between the distal ends 32, 34, as shown in FIG. 3. In FIG. 3, the central portion 36 extends to the distal and proximal ends 32, 34 and has an inner diameter d3 that is larger than the inner diameter d1 of the bore 18 at the distal tip 16 of the large-bore Yankauer 12. For example, in one embodiment, the inner diameter d1 of the first bore is 6.00 mm, and the inner diameter d3 of the central portion 36 of the flexible tubing 24 is 8.38 mm. In an alternative embodiment, d3 > d2 > d1 such that the inner diameter of the suction system 10 increases with the direction of suction f (FIG. 1). In another embodiment, the inner diameter d3 of the central portion 36 is 1 1 / 32 inches, which is larger than the inner diameter of tubing typically used in Yankauer suction devices. The relatively large inner diameter of the flexible tubing 24 increases the flow in the suction direction f (FIG. 1). This increases leakage, which minimizes clogging.

[0018] 3, the first flared end 28 of the cannula flexible tubing 24 is sized and configured to removably receive the proximal end 20 of the large bore Yankauer 12. In particular, FIG. 3 shows that the first flared end 28 engages or captures the barbs 22 on the proximal end 20 of the large bore Yankauer 12. The second flared end 30 of the cannula flexible tubing 24 is sized and configured to removably receive a flexible adapter 38 (also shown in FIG. 1). As shown in FIG. 1, the adapter 38 includes a distal end 40 having an external hose barb 42. The external hose barb 42 is sized and configured to mate with or otherwise connect to the second flared end 30 of the cannula flexible tubing 24, as shown in FIG. 3. In the illustrated embodiment, the second flared end 30 engages or captures barbs 42 on the distal end 40 of the flexible adapter 38 .

[0019] 4-5, various schematic views of a flexible adapter 38 are shown, according to one embodiment. FIG. 4 shows a perspective side view of the flexible adapter 38. In the illustrated embodiment, as described above, the flexible adapter 38 has an external hose barb 42 on its distal end 40. In one embodiment, the external hose barb 42 of the flexible adapter 38 matches or is substantially similar to the external hose barb 22 on the proximal end 20 of the large bore Yankauer 12. FIG. 5 is a perspective rear (proximal) schematic view of the flexible adapter 38. FIGS. 4 and 5 show a bore 44 extending from the proximal end 46 of the flexible adapter 38 to the distal end 40. FIG. 3 also shows the bore 44 extending therethrough. When assembled, the aspiration system 10 provides a pathway for biological material from the distal tip 16 of the large bore Yankauer 12 to the proximal end 46 of the flexible adapter 38. The pathway includes the holes 18 and channels 26 in the large bore Yankauer 12, the cannula flexible tubing 24, and the holes 44 in the flexible adapter 38, as shown in FIG.

[0020] 6-7 also show various schematic views of the flexible adapter 38, according to one embodiment. FIG. 6 shows a schematic side view of the flexible adapter 38, and FIG. 7 shows a schematic cross-sectional view of the flexible adapter 38 of FIG. 6. In the illustrated embodiment, as described above, the bore 44 extends from the proximal end 46 to the distal end 40 of the flexible adapter 38. In one embodiment, the minimum inner diameter of the flexible adapter 38 is larger than the inner diameter d1 of the bore 18 in the distal tip 16 of the large bore Yankauer 12. For example, the minimum inner diameter of the flexible adapter 38 is 7.24 mm, and the inner diameter d1 of the bore 18 in the distal tip 16 of the large bore Yankauer 12 is 6.00 mm.

[0021] In one embodiment, the inner diameter d4 at the distal end 40 of the flexible adapter 38 is smaller than the inner diameter d5 at the proximal end 46 of the flexible adapter 38. In some embodiments, the maximum inner diameter of the aspiration system 10 is the inner diameter d5 at the proximal end 46 of the flexible adapter 38, such that the inner diameter of the aspiration system 10 increases from the distal tip 16 of the large-bore Yankauer 12 to the proximal end 46 of the flexible adapter 38. The increasing inner diameter of the aspiration system 10 in the aspiration direction f ( FIG. 1 ) allows biological material of various sizes and densities to pass through the aspiration system 10, increasing flow to the proximal end 46 and minimizing clogging. In an alternative embodiment shown in FIGS. 6-7 , the inner diameter d4 at the distal end 40 of the flexible adapter 38 is larger than the inner diameter d5 at the proximal end 46 of the flexible adapter 38. For example, the inner diameter d4 at the distal end 40 is 11.43 mm and the inner diameter d5 at the proximal end 46 is 9.73 mm.

[0022] 4, the proximal end 46 of the flexible adapter 38 is configured to interface the cannula flexible tubing 24 with a suction collection canister, other container, or existing instrument having a relatively small diameter (as described in detail below and as should be understood by those skilled in the art in conjunction with a review of this disclosure). For example, the proximal end 46 of the flexible adapter 38 may be configured to interface with a collection canister on a cart (e.g., a portable vacuum system). In another example, the cannula flexible tubing 24 is configured to interface with a flexible adapter 38 secured (permanently or removably) to a port 52 on a collection canister spout adapter 50, as shown in FIG. 8 . As will be understood by those skilled in the art, the spout adapter 50 is connected to the suction collection canister (not shown) so that biological material removed by the suction system 10 can be poured from the collection canister without removing its lid (or other cover). In another embodiment, the proximal end 46 of the flexible adapter 38 is configured to connect to a port for a vacuum in the wall. The proximal end 46 of the flexible adapter 38 can be connected to any of the example ports described above, as will be understood by those skilled in the art.

[0023] 4-7, the proximal end 46 of the flexible adapter 38 has one or more flats 48. In the illustrated embodiment, the flats 48 extend along the length of the flexible adapter 38 through gaps. The flats 48 are configured and / or structured to prevent the flexible adapter 38 (or the aspiration system 10) from rolling off an instrument table or other surface when the flexible adapter 38 (or the aspiration system 10) is not in use. In one embodiment, the flats 48 extend in a direction substantially parallel to a central longitudinal yy axis extending through the flexible adapter 38.

[0024] Returning to FIG. 1 , an additional flexible adapter 38′ can be used to connect the small-bore Yankauer 12′ to the first flared end 32 (i.e., distal end 28) of the cannula flexible tubing 24. As discussed above, the flexible adapter 38′ can be used to connect the flexible tubing 24 to smaller instruments (compared to the large-bore Yankauer 12). It is important to note that when the additional flexible adapter 38′ is used, it is the same as the flexible adapter shown in FIGS. 4-7 , except that the distal end 40 of the flexible adapter 38′ is the same as the proximal end 40′ of the additional flexible adapter 38′, and the proximal end 46 of the flexible adapter 38′ is the same as the distal end 46′ of the additional flexible adapter 38′. In other words, in one embodiment, the additional flexible adapter 38′ is a rotated (180°) configuration of the flexible adapter 38 of FIGS. 4-7.

[0025] As shown in FIG. 1 , the distal end 46' of the flexible adapter 38' connects to the proximal end 20' of the small-bore Yankauer 12' (or other small instrument), and the proximal end 42' of the flexible adapter 38' connects to the first flared end 32 of the flexible tubing 24. Thus, as shown in FIG. 1 , the flexible adapter 38' and connected small-bore Yankauer 12' are interchangeable with the large-bore Yankauer 12. The small-bore Yankauer 12' can be used to aspirate or remove fluids from a surgical area, such as a small incision. The ability to quickly exchange the large-bore Yankauer 12' for a smaller instrument 12' allows a user to select an instrument (e.g., a large-bore Yankauer 12 or a small-bore Yankauer 12') based on factors such as the size of the surgical site and the biological material to be removed from the surgical site.

[0026] All definitions defined and used herein should be understood to control for dictionary definitions, definitions in documents incorporated by reference, and / or ordinary meanings of the defined terms.

[0027] While various embodiments have been described and illustrated herein, those skilled in the art will readily envision various other means and / or structures for performing the functions and / or obtaining the results and / or one or more advantages described herein, and each such variation and / or modification is deemed to be within the scope of the embodiments described herein. More generally, those skilled in the art will readily appreciate that all parameters, dimensions, materials, and configurations described herein are exemplary, and that the actual parameters, dimensions, materials, and / or configurations will depend on the particular application or applications for which the teachings are used. Those skilled in the art will recognize, or be able to ascertain using no more than routine experimentation, many equivalents to the specific embodiments described herein. Accordingly, the foregoing embodiments are presented by way of example only, and it will be understood that, within the scope of the appended claims and their equivalents, the embodiments may be practiced otherwise than as specifically described and claimed. Embodiments of the present disclosure are directed to each individual feature, system, article, material, kit, and / or method described herein. Furthermore, any combination of two or more such features, systems, articles, materials, kits, and / or methods, where such features, systems, articles, materials, kits, and / or methods are not mutually inconsistent, is within the scope of the present disclosure.

[0028] The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the singular forms "a," "an," and "the" are intended to include the plural forms as well, unless the context clearly dictates otherwise. It will be further understood that the terms "comprise" (and any form of comprise, such as "comprises" or "comprising"), "have" (and any form of have, such as "has" or "having"), "include" (and any form of include, such as "includes" or "including"), and "contain" (and any form of contain, such as "contains" or "containing") are open-ended linking verbs. Consequently, a method or device "comprises," "have," "include," or "contain" one or more steps or elements. Similarly, a method step or device element that "comprises," "has," "includes," or "contains" one or more features has those one or more features, but is not limited to possessing only those features or features. Furthermore, a device or structure that is configured in a particular way is configured in at least that way, but may also be configured in ways not listed.

[0029] Corresponding structure, materials, acts, and equivalents of all means or step-plus-function elements in the following claims are intended to include the structure, materials, or acts for performing the function, if any, in combination with the elements of other claims that are specifically claimed. The description of the present invention has been presented for purposes of illustration and description, but is not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the invention. The embodiments were chosen and described to best explain the principles and practical application of one or more aspects of the invention and to enable others skilled in the art to appreciate one or more aspects of the invention in various embodiments with various modifications suitable for the particular use contemplated.

Claims

1. a Yankauer suction device having a distal tip with a first inner diameter and a proximal end with a second inner diameter, the second inner diameter being larger than the first inner diameter; a cannula tube having a distal end and a proximal end, the distal end configured to mate with the proximal end of the Yankauer suction device; a first adapter having a distal end and a proximal end, the distal end configured to mate with the proximal end of the cannula tube; a second instrument configured to mate with the distal end of a second adapter and having a proximal end with an inner diameter smaller than the second inner diameter of the Yankauer suction apparatus, the second adapter having a proximal end configured to mate with the distal end of the cannula tube; Equipped with an aspiration system, wherein the Yankauer suction device and the second instrument are interchangeable such that in a first configuration, the proximal end of the Yankauer suction device is connected to the distal end of the cannula tube, and in a second configuration, the proximal end of the second instrument is connected to the distal end of the second adapter, which is connected to the distal end of the cannula tube.

2. 2. The suction system of claim 1, wherein the second instrument is a small bore Yankauer suction device having an inner diameter at its distal end smaller than the first inner diameter of the Yankauer suction device.

3. 10. The suction system of claim 1, wherein the second instrument has an inner diameter smaller than an inner diameter of the Yankauer suction apparatus.

4. In the first configuration, the Yankauer suction apparatus further comprises a channel extending from the distal tip to the proximal end of the first adapter; 2. The aspiration system of claim 1, wherein the channel has an inner diameter that increases from the distal tip of the Yankauer aspiration apparatus toward the proximal end of the first adapter.

5. 10. The suction system of claim 1, wherein in the first configuration, the direction of suction is from the distal tip of the Yankauer suction apparatus toward the proximal end of the first adapter.

6. The suction system of claim 1 , wherein in the second configuration, the direction of suction is from the second instrument toward the proximal end of the first adapter.

7. The aspiration system of claim 1 , wherein an inner diameter of the cannula tube increases from a central position toward the distal end of the cannula tube and toward the proximal end of the cannula tube.

8. the distal end of the first adapter, the proximal end of the second adapter, and the proximal end of the Yankauer suction apparatus each include an external hose barb; 2. The suction system of claim 1, wherein the external hose barb of the first adapter mates with the external hose barb of the second adapter and the external hose barb of the proximal end of the Yankauer suction apparatus.

Citation Information

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