Tricuspid regurgitation treatment tool to be inserted into pulmonary artery
11 claims: 4 independent, 7 dependent
- 1A tricuspid regurgitation treatment tool (100) to be inserted into the pulmonary artery, the tool (100) comprising:an insertion tube (20) provided with a guidewire-guiding lumen (22) formed therein for the insertion tube (20) to be movable from the inferior vena cava to the pulmonary artery along a guidewire (50);and a blocking part (10) configured to be passed obliquely through the tricuspid valve while the insertion tube (20) is inserted from the inferior vena cava to the pulmonary artery characterized in that the blocking part (10) comprises: a supporting wire (14) having both ends thereof coupled to the insertion tube (20);and a blocking membrane (12) which has one side thereof fixed to the insertion tube (20) and is supported by the supporting wire (14).
- 2A tricuspid regurgitation treatment tool (100) to be inserted into the pulmonary artery, the tool (100) comprising:an insertion tube (20) provided with a guidewire-guiding lumen (22) formed therein for the insertion tube (20) to be movable from the inferior vena cava to the pulmonary artery along a guidewire (50);and a blocking part (10) configured to be passed obliquely through the tricuspid valve while the insertion tube (20) is inserted from the inferior vena cava to the pulmonary artery characterized in that the blocking part (10) comprises: a ring-shaped wire (19) installed to make the insertion tube (20) to be passed through thereof and having a central axis thereof obliquely formed with respect to the insertion tube (20);and a blocking membrane (12) connecting the insertion tube (20) and the ring-shaped wire (19) to each other.
Independent claims4
73 paragraphs, as filed
Technical Field
0001The present invention relates to a tricuspid regurgitation treatment tool to be inserted into the pulmonary artery. More particularly, the present invention relates to a tricuspid regurgitation treatment tool to be inserted into the pulmonary artery, the tool being used to verify whether right ventricular dysfunction may occur when treating tricuspid regurgitation by surgeries or other permanent treatments, wherein a test insertion of the tool is made to pass obliquely through the tricuspid valve of a patient, and after a certain time has elapsed, the tool is removed.
Background Art
0002Tricuspid regurgitation is also called tricuspid valve insufficiency. Tricuspid regurgitation is a lesion of the tricuspid valve, and refers to a symptom in which the tricuspid valve closes incompletely when needed to be closed, thereby resulting in an empty space (i.e., orifice), and thus, some portion of blood, which must flow from the right ventricle into the pulmonary artery during the right ventricular contraction, flows back into the right atrium through the orifice.
0003Conventional treatment of tricuspid regurgitation includes: a method of surgically remedying the disease by opening the patient's chest and dissecting the heart; and a method of treating tricuspid regurgitation by permanently inserting a tool for treatment of tricuspid regurgitation invented in <patcit id="pcit0001" dnum="US8486136B2"><text>US Patent Nos. 8486136 B2</text></patcit>, <patcit id="pcit0002" dnum="US7854762B2"><text>7854762 B2</text></patcit>, and <patcit id="pcit0003" dnum="US9474605B2"><text>9474605 B2</text></patcit>. However, when treating tricuspid regurgitation by using the above methods or permanent treatments, a sudden increase of blood flow from the right ventricle to the pulmonary artery may cause an overload of the right ventricle, and thus a problem having the right ventricular dysfunction symptom may occur.
0004Document <patcit id="pcit0004" dnum="US2010233282A1"><text>US 2010/233282 A1</text></patcit> discloses a delivery of a bioactive composition to heart using a dual lumen catheter by inserting a first cannula of a dual lumen catheter into a vein to access the right ventricle. The first cannula has a first balloon which is blown up around the first cannula proximal to the tricuspid valve. A second cannula of the dual lumen catheter is inserted. The second cannula has a second balloon proximal to the tip of the second cannula. The bioactive composition is delivered to the coronary sinus by inflation and then release of the second balloon.
0005Document <patcit id="pcit0005" dnum="KR20170044065A"><text>KR20170044065 A</text></patcit> discloses a tool for performing a tricuspid regurgitation operation. More specifically, the tool performs a tricuspid regurgitation operation by using a catheter operational method so as to treat tricuspid regurgitation. The tool comprises: a sinus coronarius tube inserted in the sinus coronarius; and a tricuspid valve tube traversing the tricuspid valve. The sinus coronarius tube and the tricuspid valve tube are connected with or adjacent to each other to a predetermined length at a top side, and are separated at a bottom side. A blocking member for stopping a space formed by incomplete closing of the tricuspid valve is formed at the bottom of the tricuspid valve tube or between the sinus coronarius tube and the tricuspid valve tube.
Disclosure
Technical Problem
0006The present invention is to provide a tricuspid regurgitation treatment tool to be inserted into the pulmonary artery, the tool passing obliquely through the tricuspid valve and capable of being easily inserted through the femoral vein, the inferior vena cava, the tricuspid valve, and the pulmonary artery in sequence to solve the above-mentioned problems.
0007In addition, the present invention is to provide a tricuspid regurgitation treatment tool to be inserted into the pulmonary artery, the tool being capable of verifying whether right ventricle overload occurs by blocking an orifice of the tricuspid valve for only a certain time.
0008The objectives of the present invention are not limited to the above-mentioned objectives, and other objectives that are not mentioned herein will be clearly understood by those skilled in the art from the following description.
Technical Solution
0009In order to achieve the above objectives of the present invention, there is provided a tricuspid regurgitation treatment tool to be inserted into the pulmonary artery, the tool including: an insertion tube provided with a guidewire-guiding lumen formed therein for the insertion tube to be movable from the inferior vena cava to the pulmonary artery along a guidewire; and a blocking part configured to be passed obliquely through the tricuspid valve while the insertion tube is inserted from the inferior vena cava to the pulmonary artery.
0010In a first embodiment of the invention as defined by independent claim 1, the blocking part comprises:a supporting wire having both ends thereof coupled to the insertion tube; and a blocking membrane which has one side thereof fixed to the insertion tube and is supported by the supporting wire.
0011In a second embodiment of the invention as defined by independent claim 2, the blocking part comprises:a ring-shaped wire installed to make the insertion tube to be passed through thereof and having a central axis thereof obliquely formed with respect to the insertion tube; and a blocking membrane connecting the insertion tube and the ring-shaped wire to each other.
0012In addition, the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery may further include: a fixing member for the pulmonary artery capable of temporarily fixing the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery to the pulmonary artery.
0013The fixing member for the pulmonary artery may include at a lower part thereof: a fixing member body for the pulmonary artery; and a plurality of fixtures for the pulmonary artery radially coupled to the fixing member body for the pulmonary artery.
0014The fixing member body for the pulmonary artery may be configured in a cylindrical shape having a hole in a central axis thereof and coupled to the insertion tube.
0015The fixing member body for the pulmonary artery may further include a protruding hook for the pulmonary artery, the protruding hook being coupled to an outer circumferential surface of the fixing member body for the pulmonary artery and capable of being hooked by using a hook inserted from outside.
0016The fixing member body for the pulmonary artery may be configured in a ring shape, and the fixing member for the pulmonary artery may include a fixing-member-connecting wire having one end thereof coupled to the fixing member body for the pulmonary artery and inserted into the insertion tube.
0017The fixing member for the pulmonary artery may include: a fixture for the pulmonary artery formed of a wire having a ribbon shape; and a fixing member body for the pulmonary artery coupled to the fixture for the pulmonary artery.
0018The fixing member body for the pulmonary artery may be configured in a cylindrical shape having a hole in a central axis, and may be coupled to the insertion tube.
0019The fixing member body for the pulmonary artery may be configured in a ring shape, and the fixing member for the pulmonary artery may include a fixing-member-connecting wire inserted into the insertion tube by passing through a central axis of the fixing member body for the pulmonary artery coupled to the fixture for the pulmonary artery and configured in a ring-shaped wire.
0020In addition, the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery may further include a sheath tube formed with a lumen into which the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery may be inserted to move into a patient's body.
Advantageous Effects
0021The tricuspid regurgitation treatment tool to be inserted into the pulmonary artery according to the present invention may be easily inserted through the femoral vein, the inferior vena cava, the tricuspid valve, and the pulmonary artery in sequence.
0022In addition, before the tricuspid regurgitation treatment tool is permanently inserted, it is possible to verify whether the right ventricle is overloaded by temporarily inserting the tricuspid regurgitation treatment tool into a patient's body.
0023In addition, when an abnormal symptom due to right ventricular overload of the patient is verified, the tool may be easily removed to restore the blood pressure back to normal in the right ventricle.
Description of Drawings
0024<ul id="ul0001" list-style="none" compact="compact"><li><figref idref="f0001">FIG. 1</figref> is a perspective view showing a tricuspid regurgitation treatment tool to be inserted into the pulmonary artery according to a preferred exemplary embodiment of the present invention.</li><li><figref idref="f0002">FIG. 2</figref> is a flowchart showing steps of treating tricuspid regurgitation by pulmonary artery insertion using the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery of the present invention.</li><li><figref idref="f0003">FIG. 3</figref> is a perspective cross-sectional view showing a process of inserting the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery into a patient's body.</li><li><figref idref="f0004">FIG. 4</figref> shows perspective views illustrating each state in which a fixing member for the pulmonary artery is installed at one end of the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery of <figref idref="f0001">FIG. 1</figref>, wherein <figref idref="f0004">FIG. 4a</figref> is a perspective view showing a fixing member for the pulmonary artery according to the first exemplary embodiment, <figref idref="f0004">FIG. 4b</figref> is a perspective view showing a fixing member for the pulmonary artery according to the second exemplary embodiment, <figref idref="f0004">FIG. 4c</figref> is a perspective view showing a fixing member for the pulmonary artery according to the third exemplary embodiment, and <figref idref="f0004">FIG. 4d</figref> is a perspective view showing a fixing member for the pulmonary artery according to the fourth exemplary embodiment.</li><li><figref idref="f0005">FIG. 5</figref> is a perspective view showing a tricuspid regurgitation treatment tool to be inserted into the pulmonary artery.</li><li><figref idref="f0006">FIG. 6</figref> is a perspective view showing a tricuspid regurgitation treatment tool to be inserted into the pulmonary artery according to yet another preferred exemplary embodiment of the present invention.</li></ul>
<Description of the Reference Numerals in the Drawings>
0025<ul id="ul0002" list-style="none" compact="compact"><li>10 : blocking part</li><li>12 : blocking membrane</li><li>14 : supporting wire</li><li>16 : blocking balloon</li><li>17 : balloon tube</li><li>18 : balloon-adjusting hub</li><li>19 : ring-shaped wire</li><li>20 : insertion tube</li><li>22 : guidewire-guiding lumen</li><li>30 : fixing member for the pulmonary artery</li><li>32 : fixture for the pulmonary artery</li><li>34 : fixing member body for the pulmonary artery</li><li>36 : protruding hook for the pulmonary artery</li><li>38 : fixing-member-connecting wire</li><li>40 : sheath tube</li><li>50 : guidewire</li><li>100 : tricuspid regurgitation treatment tool to be inserted into the pulmonary artery</li><li>S10 : step of moving guidewire</li><li>S20 : step of moving tricuspid regurgitation treatment tool to be inserted into the pulmonary artery</li><li>S30 : step of blocking orifice of the tricuspid valve</li><li>S40 : step of removing tricuspid regurgitation treatment tool to be inserted into the pulmonary artery</li></ul>
Best Mode
0026Benefits and features of the present invention, and methods of accomplishing the same may be understood more readily by reference to the following detailed description of exemplary embodiments and the accompanying drawings. However, the present disclosure may be embodied in many different forms, and should not be construed as being limited to the exemplary embodiments set forth herein. Rather, these exemplary embodiments are provided so that this disclosure will be thorough and complete and will fully convey the concept of the invention to those skilled in the art, and the present disclosure will only be defined by the appended claims.
0027Hereinafter, exemplary embodiments of the present invention will be described in detail with reference to the accompanying drawings. Regardless of the drawings, the same reference numbers refer to the same components, and "and / or" includes each and every combination of one or more of the items mentioned.
0028The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. In this description, the singular also includes the plural unless specifically stated otherwise in the phrase. As used herein, "comprises" and / or "comprising" does not exclude the presence or addition of one or more other components in addition to the mentioned components.
0029Unless otherwise defined, all terms (including technical and scientific terms) used in the present description may be used in a sense that can be commonly understood by those skilled in the art. In addition, the terms defined in the commonly used dictionaries are not ideally or excessively interpreted unless they are specifically defined clearly.
0030Hereinafter, the preferred exemplary embodiments of the present invention will be described in detail with reference to the accompanying drawings.
0031<figref idref="f0001">FIG. 1</figref> is a perspective view showing a tricuspid regurgitation treatment tool to be inserted into the pulmonary artery according to a preferred exemplary embodiment of the present invention.
0032Referring to <figref idref="f0001">FIG. 1</figref>, the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 includes: a blocking part 10; and an insertion tube 20 provided with a guidewire lumen 22 formed therein.
0033The blocking part 10 includes: a supporting wire 14 having both ends fixed to the insertion tube 20; and a blocking membrane 12 connecting the insertion tube 20 and the supporting wire 14 to each other. It is apparent that two opposite sides or one side of the supporting wire 14 may not be fixed to the insertion tube 20.
0034The blocking membrane 12 has softness but not easily torn, is made of a material suitable for the human body, and may be made of a material such as medical polyurethane, polyolefin, silicone, e-PTFE, and PTFE.
0035The supporting wire 14 is to hold the shape of the blocking membrane 12, and may be made of a synthetic resin wire such as nylon or a metal wire (i.e., stainless steel, nylon coating on metal, etc.), and the like. It is apparent that the supporting wire 14 may be a single wire, and may also be a form of wire made by twisting a plurality of thin wires. The blocking membrane 12 may be provided in two layers and configured to be a form where the supporting wire 14 is inserted into the blocking membrane 12.
0036As shown in <figref idref="f0001">FIG. 1</figref>, the blocking membrane 12 may have a circular shape as well as a semi-circular shape, and a plurality of insertion tubes 20 may also be installed therein to adjust the position or to fix the shape of the blocking membrane 12 having the circular shape.
0037The insertion tube 20 provided with a guidewire-guiding lumen 22 formed therein may be made of a material such as rubber and soft plastic, and is made of a material with high softness and having excellent flexibility and resilience to be movable according to the heartbeat.
0038<figref idref="f0002">FIG. 2</figref> is a flowchart showing steps of treating tricuspid regurgitation for pulmonary artery insertion using the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery of the present invention, and <figref idref="f0003">FIG. 3</figref> is a perspective cross-sectional view showing a process of inserting the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery into a patient's body.
0039Referring to <figref idref="f0002">FIGS. 2</figref> and <figref idref="f0003">3</figref>, steps of treating tricuspid regurgitation for pulmonary artery insertion include: a step of moving guidewire S10; a step of moving tricuspid regurgitation treatment tool to be inserted into the pulmonary artery S20; a step of blocking orifice of the tricuspid valve S30; and a step of removing the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery S40.
0040The step of moving guidewire S10 is a step to move the guidewire 50 through the femoral vein, the inferior vena cava, the tricuspid valve, and the pulmonary artery in sequence so as to facilitate the movement of the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 of the present invention. The movement of the wires and catheters in the patient's body may be observed through X-rays. In order to safely move the guidewire 50 into the patient's body, a guidewire-guiding tube (not shown) having a lumen formed therein is required. At the upper end thereof, the guidewire-guiding tube (not shown) has a balloon or a pigtail-shaped locking means to pass through the safe zone of the tricuspid valve. Around the tricuspid valve, there are leaflets of the tricuspid valve, subvalvular structures such as the chordae tendineae and the papillary muscles of the tricuspid valve, and the modulator band. This space is called the unsafe zone. In addition to the unsafe zone, the safe zone refers to a safe area where the human body is not damaged even when wires or catheters pass through the area. The locking means prevents the guidewire-guiding tube from moving forward by being caught in the subvalvular structures and the moderator band when moving toward the unsafe zone, thereby allowing moving to only the safe zone. Accordingly, after the guidewire-guiding tube (not shown) is inserted through the femoral vein, the inferior vena cava, the safe zone of the tricuspid valve, and the pulmonary artery in sequence, the guidewire 50 is inserted into the guidewire-guiding tube (not shown) to move safely inside the patient's body. When the guidewire 50 reaches the pulmonary artery, the movement is stopped and the guidewire-guiding tube (not shown) is removed out of the patient's body. At this time, the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 is inserted into the sheath tube 40 having a lumen formed therein, and is prepared to move into the patient's body.
0041The step of moving tricuspid regurgitation treatment tool to be inserted into the pulmonary artery S20 is a step of inserting the guidewire 50 into the guidewire-guiding lumen 22 formed in the insertion tube 20 so as to move the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 into the patient's body. Along the path (i.e., the femoral vein, the inferior vena cava, the tricuspid valve, and the pulmonary artery in sequence) where the guidewire 50 is moved in the patient's body, the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 inserted into the sheath tube 40 is moved.
0042The step of blocking orifice of the tricuspid valve S30 is a step of inserting the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 into the patient's body to block the orifice of the tricuspid valve by the blocking part 10. When the blocking part 10 passes obliquely through the tricuspid valve, the guidewire 50 and the sheath tube 40 are removed out of the patient's body to block the orifice of the tricuspid valve for a certain time.
0043The step of removing the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery S40 is a step of removing the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 out of the patient's body after verifying whether the patient shows abnormal symptoms such as right ventricular dysfunction and determining whether a permanent treatment is applicable. After blocking the orifice of the tricuspid valve, in the case when the symptoms do not appear even after a certain time, the sheath tube 40 is inserted into the patient's body again. The tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 is inserted into the sheath tube 40, and the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 inserted into the sheath tube 40 is removed out of the patient's body. In the case when any abnormal symptom appears, the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 is immediately removed out of the patient's body.
0044According to the above steps, by temporarily blocking the orifice of the tricuspid valve before the tricuspid regurgitation is permanently treated for the patient with tricuspid regurgitation, whether the tricuspid regurgitation may be treated or not may be verified.
0045<figref idref="f0004">FIG. 4</figref> shows perspective views illustrating each state in which a fixing member for the pulmonary artery is installed at one end of the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery of <figref idref="f0001">FIG. 1</figref>, wherein <figref idref="f0004">FIG. 4a</figref> is a perspective view showing a fixing member for the pulmonary artery according to the first exemplary embodiment, <figref idref="f0004">FIG. 4b</figref> is a perspective view showing a fixing member for the pulmonary artery according to the second exemplary embodiment, <figref idref="f0004">FIG. 4c</figref> is a perspective view showing a fixing member for the pulmonary artery according to the third exemplary embodiment, and <figref idref="f0004">FIG. 4d</figref> is a perspective view showing a fixing member for the pulmonary artery according to the fourth exemplary embodiment.
0046Referring to <figref idref="f0004">FIG. 4</figref>, at the upper end thereof, the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 of the present invention may further include a fixing member for the pulmonary artery 30.
0047First, referring to <figref idref="f0004">FIG. 4a</figref>, the fixing member for the pulmonary artery 30 according to the first exemplary embodiment includes at the lower part thereof: a fixing member body for the pulmonary artery 34; and a plurality of fixtures for the pulmonary artery 32 radially coupled to the fixing member body for the pulmonary artery 34. The fixing member body for the pulmonary artery 34 is configured in a cylindrical shape having a hole in a central axis thereof, has the inner circumferential surface thereof closely coupled to the outer circumferential surface of the insertion tube 20, and is fitted to the insertion tube 20. In addition, the fixing member body for the pulmonary artery 34 may further include a protruding hook for the pulmonary artery 36 having a ring shape formed on the outer circumferential surface thereof.
0048Referring to <figref idref="f0004">FIG. 4b</figref>, the fixing member for the pulmonary artery 30 according to the second exemplary embodiment includes at the lower part thereof: a fixing member body for the pulmonary artery 34 having a ring shape; a plurality of fixtures for the pulmonary artery 32 radially coupled to the upper end of the fixing member body for the pulmonary artery 34; and a fixing-member-connecting wire 38 having one end thereof coupled to the fixing member body for the pulmonary artery 34 and inserted into the insertion tube 20.
0049The fixture for the pulmonary artery 32 according to the first exemplary embodiment and the second exemplary embodiment may be made of an elastic body, a shape memory alloy, or a selfexpandable stent. When inserted into the sheath tube 40 to move into the patient's body, the fixture for the pulmonary artery 32 is inserted in a folded state. When the sheath tube 40 is removed, the fixture for the pulmonary artery 32 is returned to its original state and unfolded in a radial shape, and fixed to the pulmonary artery.
0050Referring to <figref idref="f0004">FIG. 4c</figref>, the fixing member for the pulmonary artery 30 according to the third exemplary embodiment includes: the fixture for the pulmonary artery 32 formed of a wire having a ribbon shape with a convex central part; the fixing member body for the pulmonary artery 34 coupled to the lower end of the fixture for the pulmonary artery 32; and the protruding hook for the pulmonary artery 36 formed on the outer circumferential surface of the fixing member body for the pulmonary artery 34. The fixing member body for the pulmonary artery 34 is configured in a cylindrical shape having a hole in a central axis thereof, is provided with the inner circumferential surface thereof that is tightly coupled to the outer circumferential surface of the insertion tube 20, and is fitted to the insertion tube 20.
0051The fixture for the pulmonary artery 32, formed of a wire having a ribbon shape with a convex central part, may be made of a shape memory alloy, an elastic body, or a self-expanding stent. When inserted into the sheath tube 40 in order to be inserted into the patient's body, the fixture for the pulmonary artery 32 is inserted while the convex central part is pressed. Also, when the sheath tube 40 is removed, the fixture for the pulmonary artery 32 is returned to its ribbon shape with the convex central part and fixed to the pulmonary artery.
0052Referring to <figref idref="f0004">FIG. 4d</figref>, the fixing member for the pulmonary artery 30 according to the fourth exemplary embodiment includes: a fixture for the pulmonary artery 32 formed of a wire having a ribbon shape; a fixing member body for the pulmonary artery 34 formed in a ring shape and coupled to the lower end of the fixture for the pulmonary artery 32; and a fixing-member-connecting wire 38 coupled to one end of the fixture for the pulmonary artery 32 and passing through the central axis of the fixing member body for the pulmonary artery 34, and inserted into the insertion tube 20.
0053The fixture for the pulmonary artery 32 formed in the ribbon shape according to the fourth exemplary embodiment is inserted into the sheath tube 40 and moved into the patient's body in order to be inserted into the patient's body. When the sheath tube 40 is removed, the fixture for the pulmonary artery 32 pushes the fixture for the pulmonary artery 32 or the fixing member body for the pulmonary artery 34 forward to make the fixture for the pulmonary artery 32 have the ribbon shape with the convex central part thereof and be fixed to the pulmonary artery.
0054Different forms other than the fixing member for the pulmonary artery 30 of the above-described form are also applicable. In addition, the fixing member for the pulmonary artery 30 may be coupled to the lower end of the insertion tube 20 and fixed to the inferior vena cava.
0055In the case of removing the fixing member for the pulmonary artery 30, there is a method in which the sheath tube 40 is reinserted into the patient's body and the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 is inserted into the sheath tube 40 for removal, or alternatively, there is a method in which the fixing member for the pulmonary artery 30 is hooked on the protruding hook for the pulmonary artery 36 and pulled out of the patient's body after additionally inserting a wire (not shown) having a hook shape at the upper end thereof into the patient's body.
0056It is apparent that the fixing member for the pulmonary artery 30 may not be installed in the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100.
0057<figref idref="f0005">FIG. 5</figref> is a perspective view showing a tricuspid regurgitation treatment tool to be inserted into the pulmonary artery.
0058Referring to <figref idref="f0005">FIG. 5</figref>, the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 includes: an insertion tube 20 provided with a lumen 22; and a blocking part 10. The insertion tube 20 is the same as described above in <figref idref="f0001">FIG. 1</figref>. The blocking part 10 includes: a blocking balloon 16 coupled to one side of the insertion tube 20; the balloon tube 17 having one end thereof connected to and communicated with the blocking balloon 16; and the balloon-adjusting hub 18 coupled to the other end of the balloon tube 17 and adjusting the expansion and contraction of the blocking balloon 16. The balloon-adjusting hub 18 is installed outside the patient's body, and the blocking balloon 16 may be expanded or contracted by air, oxygen, foam, and the like supplied from the balloon-adjusting hub 18.
0059The tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 may further include a fixing member for the pulmonary artery 30, and the fixing member for the pulmonary artery 30 is the same as described above with reference to <figref idref="f0004">FIG. 4</figref>.
0060When moved into the patient's body, the fixing member for the pulmonary artery 30 of the second and the fourth exemplary embodiments may not be inserted into the sheath tube 40. After the fixing-member-connecting wire 38 is pulled downward and inserted into the insertion tube 20 to move the fixing member for the pulmonary artery 30, when stopped moving, by pushing the fixing-member-connecting wire 38 upward, the fixing member for the pulmonary artery 30 may be taken out of the insertion tube 20 and fixed to the pulmonary artery.
0061<figref idref="f0006">FIG. 6</figref> is a perspective view showing a tricuspid regurgitation treatment tool to be inserted into the pulmonary artery according to yet another preferred exemplary embodiment of the present invention.
0062Referring to <figref idref="f0006">FIG. 6</figref>, the tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 according to yet another preferred exemplary embodiment of the present invention includes: an insertion tube 20 provided with a lumen 22 formed therein; and a blocking part 10. The insertion tube 20 is the same as described above in <figref idref="f0001">FIG. 1</figref>. The blocking part 10 includes: a ring-shaped wire 19 installed to make the insertion tube 20 to be passed through thereof and having a central axis thereof obliquely formed with respect to the insertion tube 20; and a blocking membrane 12 connecting the ring-shaped wire 19 and the insertion tube 20 to each other.
0063The tricuspid regurgitation treatment tool to be inserted into the pulmonary artery 100 may further include a fixing member for the pulmonary artery 30, and the fixing member for the pulmonary artery 30 is the same as described above with reference to <figref idref="f0004">FIG. 4</figref>.
0064Since the ring-shaped wire 19 is installed obliquely with respect to the insertion tube 20 at a certain angle, the ring-shaped wire 19 is positioned in parallel to the tricuspid valve. Thus, the orifice of the tricuspid valve may be effectively blocked.
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| KR20120051936A | Cites | Republic of Korea |
| KR20170034088A | Cites | Republic of Korea |
| KR20170044065A | Cites | Republic of Korea |
| KR101563172B1 | Cites | Republic of Korea |
| US2006064059A1 | Cites | United States of America |
| US2010233282A1 | Cites | United States of America |
| US2012172844A1 | Cites | United States of America |
| US2013274645A1 | Cites | United States of America |
| US2013325110A1 | Cites | United States of America |
| US2016213472A1 | Cites | United States of America |
19 members in 6 offices; this record represents the family
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| KR20190012936A | Republic of Korea | A | |
| WO2019027183A3 | World Intellectual Property Organization (WIPO) | A3 | |
| KR101965637B1 | Republic of Korea | B1 | |
| CN110996852A | China | A | |
| EP3662867A2 | European Patent Office (EPO) | A2 | |
| JP2020529241A | Japan | A | |
| US2021085451A1 | United States of America | A1 | |
| EP3662867A4 | European Patent Office (EPO) | A4 | |
| JP7019937B2 | Japan | B2 | |
| CN110996852B | China | B | |
| CN114903656A | China | A | |
| US11576781B2 | United States of America | B2 | |
| US2023149169A1 | United States of America | A1 | |
| EP3662867B1This record | European Patent Office (EPO) | B1 | |
| EP4324507A2 | European Patent Office (EPO) | A2 | |
| EP4324507A3 | European Patent Office (EPO) | A3 | |
| CN114903656B | China | B | |
| US2025281292A1 | United States of America | A1 |
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| Annual fee paid to national office [announced via postgrant information from national office to epo]GrantedPGFP | PGFP | EP | |
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| Annual fee paid to national office [announced via postgrant information from national office to epo]GrantedPGFP | PGFP | EP | |
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| European patents granted designating irelandGrantedFG4D | FG4D | IE | |
| Opt-out of the competence of the unified patent court (upc) registeredP01 | P01 | EP | |
| Dpma publication of mentioned ep patent grantGrantedR096 | R096 | DE | |
| European patent takes effect as a national patent in ch/liEP | EP | CH | |
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| Party data changed (applicant data changed or rights of an application transferred)RAP3 | RAP3 | EP | |
| Supplementary search report drawn up and despatchedA4 | A4 | EP | |
| Information provided on ipc code assigned before grantRIC1 | RIC1 | EP | |
| Information provided on ipc code assigned before grantRIC1 | RIC1 | EP | |
| Information provided on ipc code assigned before grantRIC1 | RIC1 | EP | |
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| Request for examination filed17P | 17P | EP | |
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| Public reference made under article 153(3) epc to a published international application that has entered the european phaseORIGINAL CODE: 0009012PUAI | PUAI | EP | |
| Information on the status of an ep patent application or granted ep patentGrantedSTATUS: REQUEST FOR EXAMINATION WAS MADESTAA | STAA | EP | |
| Information on the status of an ep patent application or granted ep patentGrantedSTATUS: THE INTERNATIONAL PUBLICATION HAS BEEN MADESTAA | STAA | EP |
Numbers
- Publication
- 3662867
- Application
- 188416200
Titles3
- German
- IN DIE LUNGENARTERIE EINSETZBARES INSTRUMENT ZUR BEHANDLUNG VON TRIKUSPIDALREGURGITATION
- English
- TRICUSPID REGURGITATION TREATMENT TOOL TO BE INSERTED INTO PULMONARY ARTERY
- French
- OUTIL DE TRAITEMENT DE LA RÉGURGITATION TRICUSPIDE DESTINÉ À ÊTRE INSÉRÉ DANS L'ARTÈRE PULMONAIRE
Classification
- CPC, 13
- A61F2/246
- A61F2/2466
- A61F2/2472
- A61F2/2442
- A61B17/1204
- A61B17/12131
- A61B17/12136
- A61F2220/0008
- A61B17/12122
- A61M25/04
- A61F2/2476
- A61F2/2427
- A61F2220/0016
- IPC, 3
- A61F2 24
- A61B17 12
- A61M25 04
Designated states38
- Contracting states, 38
- Albania
- Austria
- Belgium
- Bulgaria
- Switzerland
- Cyprus
- Czechia
- Germany
- Denmark
- Estonia
- Spain
- Finland
- France
- United Kingdom
- Greece
- Croatia
- Hungary
- Ireland
- Iceland
- Italy
- Liechtenstein
- Lithuania
- Luxembourg
- Latvia
and 14 moreShow fewer
- Monaco
- North Macedonia
- Malta
- Netherlands (Kingdom of the)
- Norway
- Poland
- Portugal
- Romania
- Serbia
- Sweden
- Slovenia
- Slovakia
- San Marino
- Türkiye
