Insertion aid
The insertion aid with a plate-shaped design and protruding claws on the base support portion effectively prevents the elongated medical object from dislodging, improving one-handed insertion and reducing object damage.
Patent Information
- Application Number
- JP2025132652
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2025-08-07
- Publication Date
- 2026-01-15
- Estimated Expiration
- 2045-08-07
AI Technical Summary
Conventional insertion aids allow elongated medical objects to dislodge from the insertion groove during forward operation.
The insertion aid is designed with a plate-shaped main body featuring a sliding surface, finger hooks, an insertion tube, and a base support portion with an insertion groove and protruding claws to prevent the elongated medical object from slipping out.
Prevents the elongated medical object from coming out of the insertion groove, enhances operability by allowing one-handed insertion, and reduces damage to the object during sliding.
Smart Images

Figure 0007799891000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to an insertion aid. [Background technology]
[0002] Conventionally, there has been an insertion aid that allows for the insertion of an elongated medical object (guide wire) with one hand (see Patent Document 1). This insertion aid (slider) includes a slide section with a sliding contact section protruding from the center, a cylindrical guide wire support section formed at the tip side of the slide section, and a base support section (sheath holding section) formed at the base side of the slide section and having an insertion hole through which the elongated medical object is inserted. With this insertion aid, the slide and the elongated medical object are held between the thumb and index finger, and the thumb is moved to slide the elongated medical object along the slide, thereby advancing the elongated medical object. By repeating this advancing operation, the insertion of the elongated medical object can be performed with one hand. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Publication No. 10-295821 Summary of the Invention [Problem to be solved by the invention]
[0004] In the conventional insertion aid, it is conceivable to form the insertion hole into a groove so that the elongated medical object can be introduced radially into the base support part. However, when the insertion hole of the base support part was made into an insertion groove, a problem occurred in that when the above-mentioned forward operation was performed, the long medical object would come out from the opening side of the insertion groove and become dislodged from the insertion groove.
[0005] SUMMARY OF THE INVENTION It is therefore an object of the present invention to provide an insertion aid that can prevent an elongated medical object from coming off the insertion groove of a base support part. [Means for solving the problem]
[0006] In order to achieve the above object, the present invention provides an insertion aid for inserting a long medical object into a medical device, comprising: It is formed in a plate shape with the thickness direction being the front-to-back direction, and the front side is a sliding surface on which the elongated medical object slides; The back side is a finger hook for placing your fingers. a main body portion for inserting the elongated medical object into the medical device; an insertion tube portion disposed at the tip side of the main body portion and inserted into the medical device; and a base support portion disposed at the base side of the main body portion and supporting the elongated medical object therein, the base support portion having an insertion groove for inserting the elongated medical object therein and a groove extending from an inner edge of the insertion groove in a groove width direction. Inside to stand out a pair A protrusion and a The pair of protrusions have a tip end distance that is smaller than the maximum groove width of the insertion groove, and a pair of inclined surfaces that extend outward are formed at the tip end. The present invention provides an insertion aid characterized by the above features. [Effects of the Invention]
[0007] The insertion aid according to the present invention can prevent the elongated medical object from coming out of the insertion groove of the base support part. [Brief explanation of the drawings]
[0008] [Figure 1] 1 is a front view showing an insertion aid according to an embodiment of the present invention, with a medical elongated object placed therein. [Figure 2] 1A is a perspective view, FIG. 1B is a front view, and FIG. 1C is a plan view showing an insertion aid. [Figure 3] 1A is a rear view, FIG. 1B is a left side view, and FIG. 1C is a right side view showing the insertion aid. [Figure 4] 2(b) shows the insertion aid, (a) is an end view taken along line A-A' in FIG. 2(b) showing the insertion aid, (b) is an end view taken along line B-B' in FIG. 2(b) showing the insertion aid, and (c) is an end view taken along line C-C' in FIG. 2(b) showing the insertion aid. [Figure 5] 1A and 1B are a plan view and a front view, respectively, showing the placement of fingers on an insertion aid during an insertion operation. DETAILED DESCRIPTION OF THE INVENTION
[0009] An insertion aid according to one embodiment of the present invention will be described below with reference to the accompanying drawings. This insertion aid is a medical insertion aid that aids in the insertion of an elongated medical object into a medical device and is configured to allow insertion operation with one hand. In particular, this insertion aid has a removal prevention structure in the insertion groove of the base support part that prevents the elongated medical object from removing from the insertion groove. Note that the following description will be given with left and right, front and rear, and up and down defined as shown in each figure. Furthermore, in this embodiment, the sliding direction (feed direction) of the elongated medical object coincides with the left and right directions, with the leading end of the sliding direction of the elongated medical object on the left side and the base end of the sliding direction of the elongated medical object on the right side.
[0010] (Configuration of insertion aid) 1, the insertion aid 1 integrally comprises a plate-shaped main body 11 having a sliding surface 51 along which the elongated medical object 2 slides when operated with the thumb 6a, an insertion tube 12 disposed on the left side (tip side) of the main body 11 and inserted into the medical device 3, and a base support part 13 disposed on the right side (base side) of the main body 11 and supporting the elongated medical object 2. With the insertion tube 12 inserted into the medical device 3, the elongated medical object 2 is slid relative to the main body 11 by operation with the thumb 6a, thereby feeding the elongated medical object 2 toward the insertion tube 12, and thereby inserting the elongated medical object 2 into the medical device 3 from the tip opening of the insertion tube 12.
[0011] The elongated medical object 2 is a medical tube or a medical wire such as a guidewire, and in this embodiment, the elongated medical object 2 is assumed to be, for example, a catheter (particularly a microcatheter with an inner diameter of 1 mm or less) through which a guidewire has been inserted. On the other hand, the medical device 3 is a medical tube or a medical connector, and in this embodiment, the medical device 3 is assumed to be, for example, a connector with a hemostatic valve attached to the base end of a catheter.
[0012] 2 and 3, the insertion tube portion 12 has a cylindrical tube portion main body 21 with an inner cavity, a slit 22 formed on the front side of the tube portion main body 21, and a notch 23 formed by cutting out an arc-shaped portion at the right end of the tube portion main body 21. The outer peripheral surface and inner cavity of the tube portion main body 21 are formed to be larger on the base side than on the tip side, making it easy to introduce the elongated medical object 2 and to insert it into the medical device 3.
[0013] The slit 22 extends from the outer peripheral surface of the tubular body 21 to the inner cavity in the radial direction of the tubular body 21, and is formed over the entire axial length of the tubular body 21. When removing the insertion aid 1 from the elongated medical object 2 while the elongated medical object 2 is inserted into the medical device 3, the insertion aid 1 is moved rearward (toward the back of the paper in FIG. 1 ) so that the elongated medical object 2 is pushed out of the tubular body 21 through the slit 22, and the insertion tubular section 12 is removed from the elongated medical object 2. As shown in FIG. 4(a), both inner surfaces 22a, 22a of the slit 22 are shaped to widen (incline) outward in the vertical direction as they extend radially outward.
[0014] 2 and 3, the notch 23 is formed by cutting out an arc so as to follow the path of the thumb 6a when the elongated medical object 2 is slid by the thumb 6a. This makes it possible to prevent the thumb 6a from getting caught on the tubular main body 21 when the elongated medical object 2 is slid relative to the main body 11 by the operation of the thumb 6a.
[0015] The base support part 13 has an insertion groove 32 through which the elongated medical object 2 is inserted, and a first claw part 33 and a second claw part 34 that protrude in the groove width direction from the inner edge of the insertion groove 32. The first claw part 33 and the second claw part 34 are examples of protrusions.
[0016] The insertion groove 32 is formed as a groove extending in the left-right direction with an opening on the front side, and the elongated medical object 2 is supported inside the insertion groove 32 by being introduced into the insertion groove 32. The insertion groove 32 supports the elongated medical object 2 at a base side (right side) of the main body 11, at a middle position in the up-down direction of the insertion aid 1.
[0017] As shown in FIG. 4( b), the first claw portion 33 is formed to protrude downward from the inner edge of the upper side of the insertion groove 32. On the other hand, the second claw portion 34 is formed to protrude upward from the inner edge of the lower side of the insertion groove 32. By providing the claw portions 33, 34 on the inner edge of the insertion groove 32, it is possible to prevent the elongated medical object 2 from slipping out from the opening side of the insertion groove 32. In particular, the insertion aid 1 is intended to be used with the insertion groove 32 facing sideways, and there is a risk that the elongated medical object 2 in the insertion groove 32 will slide forward and become detached from the insertion groove 32. In response to this, by providing the claw portions 33, 34 on the inner edge of the insertion groove 32, the claw portions 33, 34 serve as a catch when the elongated medical object 2 slides forward, thereby preventing it from becoming detached from the insertion groove 32.
[0018] The rear surfaces 33a, 34a of the claws 33, 34 (surfaces on the groove bottom side of the insertion groove 32) are inclined downward toward the front side (opening side of the insertion groove 32) toward the tip side of the claws 33, 34. This allows the elongated medical object 2 to be easily removed from the insertion groove 32.
[0019] (Main body configuration) As shown in Figures 2 and 3, the main body 11 is formed in the shape of a plate with the vertical direction as the width direction and the front-to-back direction as the thickness direction, and the front surface serves as a sliding surface 51 along which the long medical object 2 slides, and the rear surface (the surface opposite to the sliding surface 51) serves as a finger hook surface 52 on which the operator's fingers are hooked.
[0020] The finger hook surface 52 is divided into two halves, a first finger hook portion 61 for hooking the index finger 6b and a second finger hook portion 62 for hooking the middle finger 6c, so that the index finger 6b and the middle finger 6c can be hooked simultaneously, as shown in Fig. 5(a). That is, the left-right length of the first finger hook portion 61 is set taking into account the average thickness of the index finger 6b (approximately 14 mm), and the left-right length of the second finger hook portion 62 is set taking into account the average thickness of the middle finger 6c (approximately 15 mm). Therefore, the left-right length of the finger hook surface 52 is preferably 14 mm to 40 mm, and more preferably 19 mm to 35 mm.
[0021] 2 and 3, the sliding surface 51 is formed across the first finger hook portion 61 and the second finger hook portion 62 in the left-right direction (sliding direction). Specifically, the sliding surface 51 extends in the left-right direction from the left end of the first finger hook portion 61 to the right end of the second finger hook portion 62. In other words, the sliding surface 51 extends in the left-right direction (sliding direction) from the right end to the left end of the finger hook surface 52 on which the index finger 6b and middle finger 6c can be simultaneously hooked.
[0022] In addition, the sliding surface 51 is located in the center in the vertical direction and consists of a first sliding portion 71 along which the long medical object 2 slides, and second sliding portions 72, 72 located above and below the first sliding portion 71 along which the thumb 6a slides, and the first sliding portion 71 and the second sliding portions 72, 72 are formed across the first finger hook portion 61 and the second finger hook portion 62 in the left-right direction (sliding direction).
[0023] In this way, the finger hook surface 52 has the first finger hook portion 61 and the second finger hook portion 62, and the sliding surface 51 is formed across the first finger hook portion 61 and the second finger hook portion 62, so that the stroke of the operation of sliding the elongated medical object 2 by moving the thumb 6a from right to left can be lengthened, as shown in Fig. 5(a) . Furthermore, the sliding surface 51 has the first sliding portion 71 and the second sliding portion 72, so that the elongated medical object 2 can be slid by the first sliding portion 71 while being held between the thumb 6a and the index finger 6b and middle finger 6c by the second sliding portion 72.
[0024] The vertical width of the sliding surface 51 is preferably 10 mm or more. The horizontal length of the sliding surface 51 (first sliding portion 71 and second sliding portion 72) is preferably 14 mm or more and 40 mm or less, and more preferably 19 mm or more and 35 mm or less.
[0025] The first sliding portion 71 is provided with a shallow guide groove 73 extending in the left-right direction and guiding the elongated medical object 2 toward the inner cavity of the insertion tube portion 12. The guide groove 73 extends from the inside of the base support portion 13 (the groove bottom of the insertion groove 32) to the inner cavity of the insertion tube portion 12 (the tube portion main body 21 thereof), and is formed in the shape of an arc hole when viewed from the left-right direction, as shown in FIG. 4(c). Furthermore, the inner surfaces 73a, 73a of the guide groove 73 are inclined surfaces that slope downward toward the groove bottom as they extend inward in the groove width direction, and the depth of the guide groove 73 in the front-rear direction is equal to or less than the radius of the elongated medical object 2.
[0026] When the elongated medical object 2 is pressed against the guide groove 73 with the thumb 6a in order to slide the elongated medical object 2, the elongated medical object 2 is guided by the inclination of the inner surfaces 73a, 73a of the guide groove 73 and moves to the bottom of the guide groove 73, and then the inner surfaces 73a, 73a restrict the vertical movement of the elongated medical object 2. Because the position of the bottom of the guide groove 73 coincides with the position of the inner cavity of the insertion tube part 12 (the tube part main body 21 thereof), when the thumb 6a is used to slide the elongated medical object 2 in this state, the guide groove 73 guides the elongated medical object 2 into the inner cavity of the insertion tube part 12. The depth of the guide groove 73 in the front-rear direction is preferably equal to or less than half the radius of the elongated medical object 2. For example, if the radius of the elongated medical object 2 is 0.5 mm, the depth of the guide groove 73 in the front-rear direction is preferably 0.1 mm, and the width of the guide groove 73 in the up-down direction is preferably 1 mm. Furthermore, it is preferable that the height of the groove bottom of the guide groove 73 in the front-rear direction be matched to the height of the rear inner surface of the tubular main body 21 in the front-rear direction so that no step or steep slope is created between the groove bottom of the guide groove 73 and the rear inner surface of the tubular main body 21.
[0027] It is preferable to emboss the surface of the second sliding portion 72. With this configuration, it is possible to prevent the material of the gloves worn by the worker from sticking to the surface of the second sliding portion 72.
[0028] Furthermore, the lower end (one end in the width direction) of the main body 11 is cut out from the center in the left-right direction to the left end to form a finger hook notch 53 for hooking the middle finger 6c. In this embodiment, as shown in FIG. 5(b), it is assumed that the insertion aid 1 will be used in a position where the up-down direction follows the vertical direction, and the proximal joint (or middle joint) of the middle finger 6c is hooked on the second finger hook 62, while the distal joint of the middle finger 6c supports the main body 11 from below. At this time, the formation of the finger hook notch 53 allows the distal joint of the middle finger 6c to stably support the main body 11. The finger hook notch 53 is an example of a finger hook.
[0029] The wall surface (inner surface on the base side in the sliding direction) of the right end of the finger hook cutout 53 serves as a hook surface (hook portion) on which the middle finger 6c can hook in the left-right direction (sliding direction). As a result, when the elongated medical object 2 is slid with the thumb 6a, the insertion aid 1, which tends to move to the left (toward the tip side in the sliding direction), can be held down by the middle finger 6c, thereby further improving the operability of the insertion operation of the elongated medical object 2.
[0030] (Description of the insertion operation of a long medical object using an insertion aid) Next, with reference to FIG. 5, the insertion operation of the elongated medical object 2 in the insertion aid 1 will be described. This insertion operation is assumed to be performed by an operator wearing gloves. As shown in FIGS. 5(a) and 5(b), in this insertion operation, the elongated medical object 2 is first introduced into the insertion groove 32 of the base support part 13 and positioned in the guide groove 73 of the main body part 11. Then, the proximal (or middle) joints of the index finger 6b and the middle finger 6c are hooked on the first finger hook part 61, the second finger hook part 62, and the distal joints of the middle finger 6c, respectively, and the thumb 6a is pressed against the second sliding part 72 while the thumb 6a is pressed against the first sliding part 71. In this way, the operator holds the elongated medical object 2 on the guide groove 73 while clamping the main body part 11, and grasps the insertion aid 1 with one hand. After grasping the insertion aid 1, the insertion tube portion 12 is inserted into the medical device 3. At this time, if the medical device 3 is a connector with a hemostatic valve, the insertion tube portion 12 is used to push open the valve body of the hemostatic valve and insert it.
[0031] 5(a), the main body 11 is pinched between the thumb 6a, index finger 6b, and middle finger 6c, and the elongated medical object 2 is held on the guide groove 73. The thumb 6a is then moved from the base end (right end) of the sliding surface 51 to the tip end (left end) to slide the elongated medical object 2. This sliding of the elongated medical object 2 is then repeated to advance the elongated medical object 2 and insert it into the medical device 3. Once the elongated medical object 2 has been inserted into the medical device 3 to a certain extent, the insertion aid 1 may be held in the left hand that is holding the medical device 3, and the right hand may be used to hold the elongated medical object 2 directly. In this case, the insertion aid 1 and the elongated medical object 2 are pinched between the thumb and index finger of the left hand that is holding the medical device 3, and then the right hand is released from the insertion aid 1 to hold the elongated medical object 2.
[0032] (Actions and Effects of the Embodiments) As described above, according to the configuration of the above embodiment, the claw portions 33, 34 that protrude inward in the groove width direction are provided on the inner edge of the insertion groove 32, so that the claw portions 33, 34 serve as a catch when the elongated medical object 2 slides toward the opening side of the insertion groove 32 and prevent the elongated medical object 2 from coming out, thereby preventing the elongated medical object 2 from coming out of the insertion groove 32 of the base support portion 13.
[0033] Furthermore, according to the configuration of the above embodiment, the finger hook surface 52 is configured so that the index finger 6b and the middle finger 6c can be hooked at the same time, so that the insertion aid 1 can be stably held between the thumb 6a, the index finger 6b, and the middle finger 6c, and the insertion operation can be performed while stably holding the insertion aid 1. This improves the operability of the insertion operation of the elongated medical object 2, particularly when the insertion aid 1 is used in a position where the up-down direction of the insertion aid 1 follows the vertical direction.
[0034] Furthermore, according to the configuration of the above embodiment, the sliding surface 51 is extended in the left-right direction (sliding direction), thereby making it possible to increase the contact area of the elongated medical object 2 with the sliding surface 51. This makes it possible to suppress damage to the elongated medical object 2 (for example, crushing of the microcatheter) when the elongated medical object 2 is slid on the sliding surface 51.
[0035] Furthermore, according to the configuration of the above embodiment, the insertion operation of the elongated medical object 2 is performed using the main body 11 along which the elongated medical object 2 slides. This allows the elongated medical object 2 to be advanced while holding the elongated medical object 2 and the insertion aid 1 with one hand. This allows the insertion operation of the elongated medical object 2 to be performed with one hand. As a result, after the insertion aid 1 is inserted into the medical device 3, the insertion operation can be performed from that state. That is, in the conventional configuration, it was necessary to change the grip of the insertion aid 1 after inserting it into the medical device 3. Therefore, if the medical device 3 is a connector with a hemostatic valve and the elongated medical object 2 is a catheter, the elongated medical object 2 may be pushed back by blood pressure, making the insertion of the elongated medical object 2 difficult. In contrast, since the insertion operation of the elongated medical object 2 can be performed with one hand, there is no need to change the grip of the elongated medical object 2 after inserting the insertion aid 1 into the medical device 3. This prevents the elongated medical object 2 from being pushed back by blood pressure. Furthermore, when the long medical object 2 is to be held in a different position, after the insertion aid 1 has been inserted into the medical device 3, the medical device 3 and the main body 11 are positioned close to each other, so that the insertion aid 1 and the long medical object 2 can be held between the thumb 6a and index finger 6b of the left hand holding the medical device 3, thereby preventing the long medical object 2 from being pushed back when the long medical object 2 is held in a different position.
[0036] Furthermore, according to the configuration of the above embodiment, the rear surfaces 33a, 34a of the claw portions 33, 34 are inclined surfaces that slope downward toward the front toward the tip side of the claw portions 33, 34. Therefore, when the insertion aid 1 is removed from the elongated medical object 2 inserted into the medical device 3, the elongated medical object 2 is guided toward the tip side of the claw portions 33, 34, and the elongated medical object 2 can be easily removed from the insertion groove 32.
[0037] (Other embodiments) Although the embodiments of the present invention have been described above, the invention according to the claims is not limited to the above-described embodiments. It should be noted that not all of the combinations of features described in the embodiments are necessarily essential to the means for solving the problems of the invention. The present invention can be implemented by modifying it as appropriate within the scope of its spirit.
[0038] For example, in the above embodiment, the base support portion 13 is configured to have claw portions 33, 34 protruding inward in the groove width direction on both the upper inner edge and the lower inner edge of the insertion groove 32, but it may also be configured to have claw portions 33, 34 on only one of the upper inner edge and the lower inner edge of the insertion groove 32.
[0039] In the above embodiment, the insertion groove 32 is configured so that the opening is on the front side, but this is not limited to this. For example, the insertion groove 32 may be configured so that the opening is on the upper side.
[0040] In the above embodiment, the elongated medical object 2 is configured such that a catheter having a guide wire inserted therethrough is inserted into the medical device 3, but the present invention is not limited to this. For example, the elongated medical object 2 may be configured such that a guide wire is inserted into the medical device 3.
[0041] (Summary of the embodiment) Next, the technical concepts grasped from the above-described embodiments will be described using the reference numerals and the like in the embodiments. However, the reference numerals and the like in the following description do not limit the components in the claims to the members and the like specifically shown in the embodiments.
[0042] {1} An insertion aid (1) for inserting a long medical object (2) into a medical device (3), comprising: a main body portion (11) having a sliding surface (51) along which the long medical object (2) slides; an insertion tube portion (12) disposed at the tip of the main body portion (11) and inserted into the medical device (3); and a base support portion (13) disposed at the base of the main body portion (11) and supporting the long medical object (2), wherein the base support portion (13) is formed with an insertion groove (32) through which the long medical object (2) passes, and protrusions (33, 34) protruding from the inner edge of the insertion groove (32) in the groove width direction. <2> The insertion aid (1) described in <1> is characterized in that the surfaces (33a, 34a) on the bottom side of the insertion groove (32) of the protrusions (33, 34) are inclined surfaces that slope downward toward the opening of the insertion groove (32) toward the tip end of the protrusions (33, 34). <3> An insertion aid (1) described in <1> or <2>, characterized in that when the side of the main body portion (11) on which the sliding surface (51) is formed is defined as the front side, the insertion groove (32) has the opening side on the front side. (4) An insertion aid (1) described in any one of (1) to (3), characterized in that a finger hook (53) for hooking the middle finger (6c) is formed at one end of the main body (11) in the width direction perpendicular to the sliding direction of the medical elongated object (2). [Explanation of symbols]
[0043] 1: Insertion aid, 2: Medical long object, 3: Medical device, 6c: Middle finger, 11: Main body, 12: Insertion cylinder, 13: Base support, 32: Insertion groove, 33: First claw, 33a: Rear surface, 34: Second claw, 34a: Rear surface, 51: Sliding surface, 53: Finger rest notch
Claims
1. An insertion aid for inserting a long medical object into a medical device, a main body formed in a plate shape with a thickness direction in the front-to-rear direction, the front surface of which serves as a sliding surface along which the elongated medical object slides, and the rear surface of which serves as a finger hook surface on which a finger is hooked; an insertion tube portion disposed at the front side of the main body portion and inserted into the medical device; a base support portion disposed on a base side of the main body portion and supporting the elongated medical object therein; The base support portion has an insertion groove through which the elongated medical object is inserted; a pair of protruding portions protruding inward in a groove width direction from an inner edge of the insertion groove; The pair of protrusions have a tip end space that is smaller than the maximum groove width of the insertion groove, and a pair of inclined surfaces that extend outward are formed at the tip end.
2. The insertion aid according to claim 1, characterized in that the surface of the protrusion on the bottom side of the insertion groove is an inclined surface that slopes downward toward the opening of the insertion groove toward the tip side of the protrusion.
3. 2. The insertion aid according to claim 1, wherein the insertion groove has an opening on a front side relative to the sliding surface of the main body.
4. The insertion tube portion is a tubular body having an inner cavity; 2. The insertion aid according to claim 1, further comprising: slits at regular intervals extending from the outer peripheral surface of the tubular body to the inner cavity and formed forward of the sliding surface over the entire axial direction of the tubular body.
Citation Information
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