The present invention generally relates to an adhesion promotion device, a medical device and a joining method such as a method of joining biological tissue/organs.
In a medical field, a medical procedure (for example, anastomosis for a digestive tract) of joining biological organs to each other by performing a surgical operation is known. In a case where the medical procedure as described above is performed, as a prognosis determinant after surgery, a fact is important that there is no delay in adhesion in a joint portion joined between the biological organs.
In the medical procedure of joining the biological organs, various methods and various medical instruments are used. For example, a method of suturing the biological organs by using a biodegradable suture, or a method of using a mechanical anastomosis device (refer to JP-T-2007-505708) for suturing the biological organs by using a stapler has been proposed. In particular, in a case where anastomosis is performed using the mechanical anastomosis device, compared to a method of using the suture, a joining force between the biological organs can be improved in the joint portion. Accordingly, risk factors of an anastomotic leakage can be reduced.
However, a degree of progress of the adhesion in the joint portion depends on a state of biological tissues in a joint object site (joint target site) of a patient. Therefore, for example, even in a case where the anastomosis device as disclosed in JP-T-2007-505708 is used, depending on the state of the biological tissues of the patient, there is a possibility that the risk factors of the anastomotic leakage cannot be sufficiently reduced.
The adhesion promotion device and medical device disclosed here are capable of effectively reducing risk factors of an anastomotic leakage.
According to one aspect of the disclosure, there is provided an adhesion promotion device including a main body portion formed of a biodegradable sheet having a plurality of through-holes and promoting adhesion of biological tissues, and an assistance unit provided in the main body portion and configured to assist holding the main body portion relative to a biological organ serving as an object to be joined to thereby maintain a desired position of the main body portion relative to the biological organ.
According to the adhesion promotion device, the main body portion is pinched between the biological organs serving as the joint objects. In this manner, it is possible to promote adhesion of the biological tissues of the biological organs. In addition, while an operator performs a medical procedure, the operator uses the assistance unit provided in the main body portion to assist the main body portion to hold the biological organ serving as the joint object. In this manner, it is possible to prevent a possibility that the main body portion may be misaligned from the biological organ or may be distorted and deformed. Therefore, the operator can effectively reduce risk factors of an anastomotic leakage of the biological organs.
According to another aspect, an adhesion promotion device that promotes adhesion between biological tissue comprises a main body portion made of a biodegradable sheet that promotes adhesion of the biological tissue, wherein the main body portion includes a plurality of through-holes that pass through the main body portion. In addition, the adhesion promotion device comprises either: i) an elongated integral member that projects away from the main body portion, that is integrally formed in one piece with the main body portion and that is configured to be pulled by a user to assist holding the main body portion relative to the biological tissue to maintain a desired position of the main body portion relative to the biological tissue; or ii) an elongated separate member separate from the main body portion, engageable with a part of the main body portion adjacent the outer periphery to project away from the main body portion, and configured to be pulled by a user while engaged with the part of the main body to assist holding the main body portion relative to the biological tissue to maintain a desired position of the main body portion relative to the biological tissue.
Another aspect of the disclosure involves a method of promoting adhesion between first and second biological tissue. The method comprises: positioning an adhesion promotion device between the first and second biological tissue, wherein the adhesion promotion device comprises a main body portion formed of a biodegradable sheet that promotes adhesion of the first and second biological tissue, and the main body portion includes a plurality of through-holes that pass through the main body portion. The method additionally involves moving the first and second biological tissue relative to one another while the adhesion promotion device remains positioned between the first and second biological tissues so that the first and second biological tissue approach one another, applying a pulling force to the adhesion promotion device while the adhesion promotion device is positioned between the first and second biological tissue so that the adhesion promotion device is pulled toward the first tissue, and joining parts of the first and second biological tissue to each other while a portion of the main body portion of the adhesion promotion device is pinched between the first and second biological tissue.
Set forth below with reference to the accompanying drawings is a detailed description of embodiments of an adhesion promotion device and a medical device representing examples of the inventive adhesion promotion device and medical device disclosed here.
<Adhesion Promotion Device 100>
As illustrated in
As illustrated in
<Main Body Portion 20>
As illustrated in
As illustrated in
As illustrated in
The respective through-holes 25 have a substantially circular planar shape (shape when the front surface 21 of the main body portion 20 or the rear surface 23 of the main body portion 20 is viewed in a plan view). However, the planar shape of the respective through-holes 25 is not particularly limited, and for example, may be an elliptical shape or a polygonal shape (rectangular shape or triangular shape). In addition, each of the through-holes 25 may have the different planar shape or the different cross-sectional shape.
The main body portion 20 has a substantially circular planar shape. However, the planar shape of the main body portion 20 is not particularly limited, and for example, may be an elliptical shape or a polygonal shape (rectangular shape or triangular shape).
A thickness (dimension T illustrated in
In the main body portion 20, a ratio value of a hole diameter D (distance D illustrated in
Since the main body portion 20 has the plurality of through-holes 25, the main body portion 20 has a plurality of values of the hole diameters D corresponding to the respective through-holes 25. Therefore, in the present embodiment, in calculating the above-described ratio value, an arithmetic average value of two or more values of the hole diameter D corresponding to each of the plurality of through-holes 25 is used as a representative value of the hole diameter D. On the other hand, the pitch P of the plurality of through-holes 25 means a shortest distance between the opening portions of the two through-holes 25. However, with regard to the value of the pitch P, there are a plurality of values of the pitch P corresponding to a combination of the through-holes 25 adjacent to each other. Therefore, according to the present embodiment, in calculating the above-described ratio value, the arithmetic average value of two or more values of the pitch P corresponding to each combination of the through-holes 25 adjacent to each other is used as a representative value of the pitch P.
The pitch P of the above-described through-holes 25, the hole diameter D, and the ratio of the hole diameter D to the pitch P are merely examples, and the present invention is not limited thereto.
The main body portion 20 can be formed of a biodegradable material. A material which may be used to form the main body portion 20 is not particularly limited. For example, a biodegradable resin may be used. As the biodegradable resin, for example, it is possible to use a known biodegradable (co)polymer such as those disclosed in JP-T-2011-528275, JP-T-2008-514719, Pamphlet of International Publication No. 2008-1952, and JP-T-2004-509205. Specifically, the biodegradable resin includes (1) a polymer selected from a group formed of aliphatic polyester, polyester, polyanhydride, polyorthoester, polycarbonate, polyphosphazene, polyphosphate ester, polyvinyl alcohol, polypeptide, polysaccharide, protein, and cellulose; or (2) copolymer configured to include one or more monomers configuring the above-described materials (1). That is, it is preferable that the biodegradable sheet includes the polymer selected from a group formed of aliphatic polyester, polyester, polyanhydride, polyorthoester, polycarbonate, polyphosphazene, polyphosphate ester, polyvinyl alcohol, polypeptide, polysaccharide, protein, and cellulose, and at least one biodegradable resin selected from a group formed of the copolymer configured to include one or more monomers configuring the polymer.
A manufacturing method of the main body portion 20 is not particularly limited. For example, the manufacturing method includes a method of preparing a fiber formed of the above-described biodegradable resin and manufacturing a mesh-shaped sheet by using the fiber. A method of preparing the fiber formed of the biodegradable resin is not particularly limited. For example, the method includes an electrospinning method (electric field spinning method and electrostatic spinning method) or a melt blowing method. As the method for the main body portion 20, only one of the above-described methods may be selected and used. Alternatively, two or more methods may be used in appropriate combination with each other. As still another example of the manufacturing method of the main body portion 20, a fiber formed of the above-described biodegradable resin may be spun in accordance with a usual method, and the obtained fiber may be knitted into a mesh shape to manufacture the biodegradable sheet according to the present invention.
The main body portion 20 causes a biological reaction by using the configuration materials such as the biodegradable resin configuring the main body portion 20. Due to this action, the main body portion 20 induces expression of biological components such as fibrin. The biological components induced in this way can promote adhesion by being accumulated to penetrate the through-holes 25 of the main body portion 20. Therefore, the main body portion 20 of the adhesion promotion device 100 is disposed between the biological organs serving as the joint object, thereby promoting the adhesion by using the above-described mechanism.
In the main body portion 20, a peripheral edge portion (outermost peripheral portion) 26 of the main body portion 20 has a reinforcement portion (reinforcement) 27 having rigidity higher than that of the other portion (portion where the through-hole 25 is formed) of the main body portion 20. In the illustrated embodiment the reinforcement portion 27 is formed over an entire range of the peripheral edge portion 26 along a circumferential direction (direction indicated by arrows R1-R2 in the drawing) of the main body portion 20. The reinforcement portion 27 may be formed only in a portion of the peripheral edge portion 26.
A method for forming the reinforcement portion 27 is not particularly limited. However, for example, the reinforcement portion 27 can be provided by fixing (integrating) a reinforcement member (reinforcement layer) formed separately from the main body portion 20 to the peripheral edge portion 26 on the front surface 21 side of the main body portion 20 and the peripheral edge portion 26 on the rear surface 23 side of the main body portion 20. For example, the reinforcement member can be formed of a biodegradable sheet having no hole portion such as the through-hole 25, or a resin sheet having a rigidity higher than that of the main body portion 20.
The through-hole 25 is not formed in the peripheral edge portion 26 of the biodegradable sheet which is the material from which the main body portion 20 is made. In this manner, the reinforcement portion 27 can be provided in the main body portion 20.
In addition, the through-hole 25 may be formed in the peripheral edge portion 26 of the biodegradable sheet which is the material from which the main body portion 20 is made. Thereafter, only the peripheral edge portion 26 may be compressed or heated in the thickness direction to crush the through-hole 25. In this manner, a portion where the materials forming the biodegradable sheet are densely aggregated may be formed so that the portion is used as the reinforcement portion 27.
As illustrated in
The hole portion 30 has a circular planar shape. The hole inner diameter of the hole portion 30 can be formed to be 5 mm to 25 mm, for example. The planar shape of the hole portion 30 is not particularly limited, and for example, may be an elliptical shape or a polygonal shape (rectangular shape or triangular shape). In addition, a size of the hole portion 30 is not particularly limited.
<Assistance Unit 40>
As illustrated in
The pulling unit 50 can be configured to include an elongated member (for example, a narrow string-shaped member or a strip-shaped member having a predetermined width) having a predetermined length and a cross-sectional shape allowing the pulling unit to be inserted into the connection section 60. The cross-sectional shape or the length of the pulling unit 50 is not particularly limited. In the illustrated embodiment, the width of the elongated pulling member is less than the width or outer dimension of the main body portion 20.
The connection section 60 is configured to include an insertion hole formed in the main body portion 20 and penetrating the main body portion 20 in the thickness direction. The connection section 60 is formed in the reinforcement portion 27 of the main body portion 20.
As illustrated in
In a case where the plurality of assistance units 40 are provided in one main body portion 20 as in the adhesion promotion device 100, it is preferable that at least one set of the assistance units 40 is provided to form a pair at facing locations (opposing locations or diametrically opposite locations) of the main body portion 20. In the present embodiment, as illustrated in
By way of example, the pulling unit 50 can be formed of thermoplastic elastomer such as vinyl chloride, polyurethane elastomer, polystyrene elastomer, styrene-ethylene-butylene-styrene copolymer (SEBS), and styrene-ethylene-propylene-styrene copolymer (SEPS), thermoplastic resin such as nylon and PET, rubber, silicone elastomer, fiber material, or metal such as a SUS wire, a copper wire, a titanium wire, and a Ni—Ti alloy wire. However, the pulling unit 50 is not particularly limited as long as the pulling force (tensile force) can be transmitted to the main body portion 20 in a state of being inserted into the connection section (insertion hole) 60.
As described above, the assistance unit 40 according to the present embodiment includes the pulling unit 50 and the connection section 60. However, the assistance unit 40 may be configured to include only the connection section 60, or may be configured to include only the pulling unit 50 as will described in an embodiment (to be described later). In a case where the pulling unit 50 is not configured to be integral with the main body portion 20 unlike the adhesion promotion device 100 according to the present embodiment, the operator prepares the pulling unit 50 separated from the adhesion promotion device 100 during a medical procedure. The operator can use the adhesion promotion device 100 and the pulling unit 50 in an appropriate combination in accordance with a progress of the medical procedure.
In addition, the number of the assistance units 40 provided in the adhesion promotion device 100 is not particularly limited. For example, one adhesion promotion device 100 may be provided with only one connection section 60, may be provided with one pulling unit 50, or may be provided with one connection section 60 and one pulling unit 50 (one assistance unit 40). However, it is preferable to dispose at least two or more assistance units 40 so that the pulling force can be efficiently transmitted to the main body portion 20, when the pulling force is applied to the main body portion 20 via the assistance unit 40. As a disposition method, it is more preferable that the assistance units 40 are disposed on a diagonal line (positions facing across the central position O of the main body portion 20).
<Embodiment of Treatment Method (Large Intestine Anastomosis)>
Next, a treatment method to which the adhesion promotion device 100 is applied will be described.
The treatment method (hereinafter, simply referred to as the “treatment method”) to which the adhesion promotion device 100 is applied includes disposing the adhesion promotion device including the sheet-like main body portion for promoting the adhesion of the biological tissues between one joint target site (one target site to be joined) and the other joint target site (another target site to be joined) which are joint objects (objects to be joined) of the biological organ (S11), assisting the adhesion promotion device to hold the biological organ (S12), and joining one joint target site and the other joint target site to each other in a state where at least a portion of the main body portion of the adhesion promotion device is disposed between one joint target site and the other joint target site (S13).
The biological organ and the joint target site of the biological organ to which the treatment method according to the present embodiment is applied are not particularly limited, and can be selected in any desired way. However, in the following description, an example will be described in which the treatment method according to the present embodiment is applied to large intestine anastomosis. In addition, in the following description, detailed description of a known medical procedure, a known medical device, or a known medical instrument will not be described in detail as appropriate.
Hereinafter, “disposing the adhesion promotion device between the biological organs” in the description herein means at least one of disposing the adhesion promotion device in a state where the adhesion promotion device is in direct or indirect contact with the biological organs”, disposing the adhesion promotion device in a state where a spatial gap is formed with the biological organ, and disposing the adhesion promotion device in both the states (for example, disposing the adhesion promotion device in a state where the adhesion promotion device is in contact with one biological organ and the adhesion promotion device is not in contact with the other biological organ). In addition, in the description herein, a “periphery” does not define a strict range (region), and means a predetermined range (region) as long as a treatment purpose (joining the biological organs to each other) can be achieved. In addition, as long as the treatment purpose can be achieved, in the medical procedure described in the respective treatment methods, the order of aspects of the method can be appropriately switched therebetween. In addition, in the description herein, “moving the portions relatively closer to each other” means both moving two or more movement objects closer to each other, and moving only one closer to the other one. In addition, “assisting the adhesion promotion device to hold the biological organ” includes at least one of work for causing the adhesion promotion device to hold the biological organ, preparation work for carrying out holding work, and work for maintaining the holding of the biological organ.
<Embodiment of Treatment Method (Large Intestine Anastomosis)>
In the treatment method according to the present embodiment, the biological organ serving as the joint object is a large intestine cut due to or after excision of a cancer tumor. Specifically, the biological organs serving as the joint object are a cut mouth side A1 of the large intestine and a cut anal side A2 of the large intestine. In the following description, a joining procedure will be described in which a mouth portion periphery (one joint target site) on the cut mouth side A1 of the large intestine and a portion (the other joint target site) of an intestinal wall on the cut anal side A2 of the large intestine are joined to each other.
As illustrated in
The treatment method according to the present embodiment will be described in detail with reference to
As illustrated in
For example, as the anastomosis device 500, a known device used for the large intestine anastomosis can be used. The anastomosis device 500 is configured as follows. As the first engagement instrument 510 and the second engagement instrument 520 engage with each other, the biological tissue disposed between the first engagement instrument 510 and the second engagement instrument 520 is excised, and a periphery of the excised biological tissue is sutured into a circumferential shape by using a stapler. For example, the first engagement instrument 510 is an instrument including a cylindrical engagement target portion 511. For example, the second engagement instrument 520 is an instrument including an engagement pin 521 to engage with and to be inserted into the engagement target portion 511 of the first engagement instrument 510.
The operator inserts the engagement target portion 511 of the first engagement instrument 510 into the mouth side A1 of the large intestine, and performs purse-string suture on the engagement target portion 511 in a protruding state, thereby forming a suture portion A11. An outer surface of the suture portion A11 has an uneven shape due to the suture.
Next, as illustrated in
Next, in order to prevent a possibility that the main body portion 20 may be misaligned from the mouth side A1 of the large intestine or may be distorted and deformed, the operator carries out work for assisting the main body portion 20 to hold the mouth side A1 of the large intestine. Specifically, the operator pulls the pulling unit 50 of the assistance unit 40 to one end of the large intestine (side opposite to a side facing the anal side A2 of the large intestine), thereby pressing the main body portion 20 against the mouth side A1 of the large intestine. Therefore, the main body portion 20 can be firmly held for the suture portion A11 and a peripheral portion thereof which form an uneven surface shape. In this case, in order for the main body portion 20 to more stably hold the mouth side A1 of the large intestine, it is preferable that the operator simultaneously pulls a set of the pulling units 50 disposed at facing locations (oppositely disposed locations) of the main body portion 20. In addition, the operator can maintain a state where the pulling force is applied to the main body portion 20 by pinching the pulling unit 50 with a medical instrument such as intestinal forceps or a clip.
A timing for connecting the pulling unit 50 to the main body portion 20 is not particularly limited. For example, the timing may be after the main body portion 20 is disposed between the mouth side A1 of the large intestine and the anal side A2 of the large intestine, or may be before the adhesion promotion device 100 is introduced into a living body.
In addition, in a case where the operator disposes the main body portion 20 on the anal side A2 of the large intestine, the operator can pull the pulling unit 50 of the assistance unit 40 to the other end of the large intestine (side opposite to a side facing the mouth side A1 of the large intestine). In this manner, the main body portion 20 can be held for the anal side A2 of the large intestine.
Next, while the operator applies the pulling force to the pulling unit 50 and maintains a state where the main body portion 20 is held for the mouth side A1 of the large intestine, as illustrated in
Next, as illustrated in
As described above, the adhesion promotion device 100 according to the present embodiment has the main body portion 20 formed of the biodegradable sheet having the plurality of through-holes 25 and promoting the adhesion of the biological tissues, and the assistance unit 40 provided in the main body portion 20 and assisting the main body portion 20 to hold the biological organ serving as the joint object.
According to the adhesion promotion device 100, the adhesion of the biological tissues of the biological organ can be promoted by pinching the main body portion 20 between the biological organs serving as the joint object. In addition, while the operator performs the medical procedure, the operator uses the assistance unit 40 provided in the main body portion 20 to assist the main body portion 20 to hold the biological organ serving as the joint object. In this manner, it is possible to prevent a possibility that the main body portion 20 may be misaligned from the biological organ or may be distorted and deformed. Therefore, the operator can effectively reduce risk factors of an anastomotic leakage of the biological organs.
In addition, the assistance unit 40 includes the pulling unit 50 pulled to apply the pulling force to the main body portion 20, and the connection section 60 enabling the pulling unit 50 to be connected to the main body portion 20. The operator can more reliably hold the main body portion 20 for the biological organ by applying the pulling force to the main body portion 20 via the pulling unit 50. In addition, the operator can easily connect the pulling unit 50 to the main body portion 20 at any desired timing by providing the connection section 60 in the adhesion promotion device 100. In addition, the operator can freely select whether to use the pulling unit 50 or not during the medical procedure.
In addition, the connection section 60 is configured to include the insertion holes formed in the main body portion 20 and penetrating the main body portion 20 in the thickness direction. Therefore, the operator can connect the pulling unit 50 to the main body portion 20 by carrying out an easy operation for inserting the pulling unit 50 into the insertion hole.
In addition, in the main body portion 20, the peripheral edge portion 26 of the main body portion 20 has the reinforcement portion 27 having rigidity higher than that of the other portion of the main body portion 20. The connection section (insertion hole) 60 of the assistance unit 40 is disposed in the reinforcement portion 27. Therefore, when the pulling force is applied to the main body portion 20 via the connection section 60 and the pulling unit 50 inserted into the connection section 60, it is possible to prevent the main body portion 20 from being damaged due to stress concentration in the vicinity of the connection section 60.
In addition, the main body portion 20 has a planar shape which is rotationally symmetric. At least one set of the assistance units 40 is provided to form a pair at facing (opposing) locations of the main body portion 20. Therefore, since the operator can apply the pulling force to two locations facing the main body portion 20, the operator can more stably hold the main body portion 20 for the biological organ.
In addition, the main body portion 20 has the hole portion 30 having the hole inner diameter larger than that of the through-holes 25. Therefore, when the adhesion promotion device 100 is used for the large intestine anastomosis, the adhesion promotion device 100 can be easily mounted on the anastomosis device 500 by using the hole portion 30.
Next, modification examples of the first embodiment described above and other embodiments will be described. In the following description, a detailed description of features and aspects of the adhesion promotion device and medical device already described will not be repeated. In addition, contents not particularly described can be substantially the same as those in the first embodiment.
In the adhesion promotion device 100A according to the modification example, the connection section is configured to include a hook portion 60A including a space portion (space or insertion space) 63 formed outward of the peripheral edge portion 26 of the main body portion 20 and into which the pulling unit 50 can be inserted.
The hook portion 60A has a frame-shaped member (frame) 62 attached to and projecting away from the outer peripheral side surface of the main body portion 20, and the space portion 63 partitioned by or bounded by the frame-shaped member 62. The operator can connect the pulling unit 50 to the main body portion 20 by inserting the pulling unit 50 into the space portion 63. Therefore, as in the case where the connection section 60 (refer to
The reinforcement portion 27 is not provided in the main body portion 20 of the adhesion promotion device 100A, but the reinforcement portion 27 may be provided. In addition, the insertion hole together with the hook portion 60A can be provided in the adhesion promotion device 100A. In addition, a specific shape or a configuration material of the hook portion 60A is not particularly limited as long as the pulling unit 50 can be inserted.
In the adhesion promotion device 100B according to the second embodiment, a pulling unit 50B is configured to include a member integrally provided in the main body portion 20 and having a predetermined length.
The pulling unit 50B is configured to be integral with the reinforcement portion 27 provided in the peripheral edge portion 26 of the main body portion 20. Two pulling units 50B are provided in the main body portion 20. Each of the pulling units 50B is disposed at a facing or opposing location of the main body portion 20.
The pulling unit 50B is configured to include a strip-shaped member having a predetermined width dimension in a direction intersecting with an extending direction of the pulling unit 50B. In addition, a portion of the pulling unit 50B is formed of a flexible material in view of an operation for pulling the pulling unit 50B parallel with the biological organ (mouth side A1 of the large intestine) or an operation for connecting the pulling unit 50B to the outer periphery of the biological organ (to be described later).
As illustrated in
In addition, as illustrated in
As described above, in the adhesion promotion device 100B according to the present embodiment, the pulling unit 50B is configured to include the member integrally provided in the main body portion 20 and having the predetermined length. Therefore, work associated with connecting the pulling unit 50 to the main body portion 20 can be omitted. Therefore, the medical procedure using the adhesion promotion device 100B can be more smoothly and progressively performed.
In the adhesion promotion device 100C according to the modification example, a pulling unit 50C is integrally provided in the main body portion 20. However, the reinforcement portion 27 is not provided in the main body portion 20. For example, the pulling unit 50C can be fixed to the main body portion 20 by using a suture, a stapler, or a biocompatible adhesive.
As illustrated in
As illustrated in
The number, a disposition, or a shape of the easily dividable portions 55 provided in one pulling unit 50D is not particularly limited. In addition, for example, the easily dividable portion 55 can be configured to include a notch formed in a portion of the pulling unit 50D, a portion having a thin wall thickness, or a portion formed of a material which is more easily broken than other portions.
In the adhesion promotion device 100E, two pulling units 51E and 52E provided in the main body portion 20 extend to be curved outward in a direction separated from the central position O of the main body portion 20.
As illustrated in
As illustrated in
In the respective embodiments and the modification examples as described above, an example has been described in which the assistance unit 40 (at least one of the pulling unit and the connection section) is provided in at least a portion of the peripheral edge portion 26 of the main body portion 20. However, a position for providing the assistance unit 40 in the main body portion 20 is not limited only to the peripheral edge portion 26. For example, in a case where the hole portion 30 is provided in the main body portion 20, the assistance unit 40 can be provided in the periphery (innermost peripheral portion) of the hole portion 30. In addition, in a case where the assistance unit 40 is disposed in the periphery of the hole portion 30, the reinforcement portion 27 can be provided to surround the hole portion 30, and the assistance unit 40 can be provided in the reinforcement portion 27.
(Assistance Device 200)
Next, an assistance device 200 according to the present invention will be described.
As illustrated in
As illustrated in
As illustrated in
As illustrated in
When the mounting portion 210 is mounted on the biological organ, the operator guides the biological organ into the insertion portion 220 through the communicating section 230. In addition, the biological organ guided to the insertion portion 220 via the communicating section 230 is restrained in the periphery of the insertion portion 220, and is deformed to a partially bent state. The mounting portion 210 is mounted along the outer peripheral portion of the biological organ in a bent state.
The attachment section 240 is configured to include a slit (notch) penetrating between a front surface 211 and a rear surface 213 of the mounting portion 210. A plurality of the attachment sections 240 are provided in the mounting portion 210. The respective attachment sections 240 are disposed at different locations in the circumferential direction of the mounting portion 210.
The respective attachment sections 240 extend from the outer peripheral side surface 217 of the mounting portion 210 toward a central position O1 of the mounting portion 210. One end portion of the respective attachment sections 240 reaches the outer peripheral side surface 217 of the mounting portion 210. In addition, the other end portion on a side opposite to one end portion of the respective attachment sections 240 does not extend to the insertion portion 220, and is located on the outer peripheral side surface 217 of the mounting portion 210 from the insertion portion 220.
It is preferable that the mounting portion 210 is formed of a material harder or more rigid than that of the main body portion 20 of the adhesion promotion device 100 so that the mounting portion 210 is not distorted and deformed when the mounting portion 210 is mounted on the biological organ. For example, the mounting portion 210 can be formed of a hard resin, silicone, or PTFE. An inner peripheral surface of the insertion portion 220 may be coated to increase friction generated between the insertion portion 220 and the biological organ, and a non-slip member for increasing the friction may be disposed on the inner peripheral surface of the insertion portion 220.
As illustrated in
The operator attaches the pulling unit 50 to the attachment section 240. In this manner, the main body portion 20 can be held for the biological organ without gripping or pulling the pulling unit 50 with the operator's own fingers. Therefore, the assistance device 200 can reduce a workload of the operator when the main body portion 20 is held for the biological organ.
The adhesion promotion device used together with the assistance device 200 may adopt any one of the above-described respective embodiments and the modification examples. In addition, a specific shape, a structure, and a size of each portion of the assistance device 200 is not limited to those described in the illustrated example, and can be changed as appropriate. In addition, a member other than the pulling unit may be used as a member used for connecting the assistance device 200 and the adhesion promotion device to each other.
For example, as illustrated in
The attachment section 240 may have a structure other than the slit (notch). For example, the attachment section 240 may be a hole portion formed in the mounting portion 210.
The adhesion promotion device and the medical device disclosed here have been described through the embodiments. However, the present invention is not limited only to the contents described in the embodiments, and can be appropriately modified, based on the appended claims.
For example, the biological organ serving as the joint object (object to be joined), the joint target site, and the specific medical procedure are not limited to those described in the embodiments. In addition, the material, the size, the shape, and the specific structure of the medical instrument are not particularly limited, as long as the medical instrument has a function of promoting the adhesion of the biological tissues of the joint target site by using the main body portion included in the adhesion promotion device.
In addition, the respective embodiments and the respective structures described in the modification examples can be combined with each other in any desired way for one adhesion promotion device, as long as advantageous effects of the invention can be achieved. The same applies to the assistance device.
The detailed description above describes embodiments of an adhesion promotion device, a medical device and a joining method representing examples of the inventive adhesion promotion device, medical device and method disclosed here. The inventions are not limited, however, to the precise embodiments and variations described. Various changes, modifications and equivalents can be effected by one skilled in the art without departing from the spirit and scope of the invention as defined in the accompanying claims. It is expressly intended that all such changes, modifications and equivalents which fall within the scope of the claims are embraced by the claims.
Number | Date | Country | Kind |
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2018-181774 | Sep 2018 | JP | national |
This application is a continuation of International Patent Application No. PCT/JP2019/038038 filed on Sep. 26, 2019, which claims priority to Japanese Patent Application No. 2018-181774 filed on Sep. 27, 2018, the entire content of which is incorporated herein by reference.
Number | Date | Country | |
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Parent | PCT/JP2019/038038 | Sep 2019 | US |
Child | 17212440 | US |