WO2014187093A1 - 密封性能较好的穿刺器 - Google Patents

密封性能较好的穿刺器 Download PDF

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Publication number
WO2014187093A1
WO2014187093A1 PCT/CN2013/087614 CN2013087614W WO2014187093A1 WO 2014187093 A1 WO2014187093 A1 WO 2014187093A1 CN 2013087614 W CN2013087614 W CN 2013087614W WO 2014187093 A1 WO2014187093 A1 WO 2014187093A1
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WO
WIPO (PCT)
Prior art keywords
edge
thin
tapered
seal
assembly
Prior art date
Application number
PCT/CN2013/087614
Other languages
English (en)
French (fr)
Inventor
马博平
万建峰
黄建设
孙东明
曹奇
Original Assignee
Ma Boping
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201310202250.9A external-priority patent/CN103505268B/zh
Priority claimed from CN201310461463.3A external-priority patent/CN103505270B/zh
Application filed by Ma Boping filed Critical Ma Boping
Publication of WO2014187093A1 publication Critical patent/WO2014187093A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/34Trocars; Puncturing needles
    • A61B17/3462Trocars; Puncturing needles with means for changing the diameter or the orientation of the entrance port of the cannula, e.g. for use with different-sized instruments, reduction ports, adapter seals
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/34Trocars; Puncturing needles
    • A61B17/3462Trocars; Puncturing needles with means for changing the diameter or the orientation of the entrance port of the cannula, e.g. for use with different-sized instruments, reduction ports, adapter seals
    • A61B2017/3464Trocars; Puncturing needles with means for changing the diameter or the orientation of the entrance port of the cannula, e.g. for use with different-sized instruments, reduction ports, adapter seals with means acting on inner surface of valve or seal for expanding or protecting, e.g. inner pivoting fingers

Definitions

  • the present invention relates to a minimally invasive surgical instrument, and more particularly to a puncturing device having better sealing performance for use in laparoscopic surgery.
  • the trocar is a surgical instrument that pierces the abdominal wall and provides access to the body cavity for other surgical instruments. It is a minimally invasive surgical instrument.
  • the trocar typically includes a sleeve assembly that enters the channel as another surgical instrument and a puncturing rod that extends through the sleeve assembly.
  • a puncturing rod that extends through the sleeve assembly.
  • the skin epidermis is first cut with a scalpel, and then the piercing rod penetrates the skin and enters the body cavity.
  • the sleeve assembly can be used to perform endoscopic surgery and endoscopy Minimally invasive instrument channel for operation.
  • the sleeve assembly is used to introduce various instruments and tools into the abdominal cavity and provides irrigation to raise the abdominal wall above the organ.
  • a probing device eg, an endoscope or laparoscope
  • an endoscope or laparoscope is inserted through the sleeve assembly To allow the surgeon to observe the surgical procedure on an external monitor connected to the detection device.
  • a puncturing device having a housing at the top of the sleeve assembly, the housing having an instrument sealing assembly including a pair of rigid rings, and more a separate flexible seal pressed between the pair of rings, each resilient seal having a circumference of 180 to 270 and stacked together to form a conical seal and adapted to seal through the seal
  • the surgical instruments of the assembly to prevent gas leakage from the abdominal cavity.
  • the above-mentioned prior art has the disadvantage that the sealing performance of the above sealing assembly is low, and when the air pressure difference between the inside and outside of the abdominal cavity is greater than 4 KPa, the air leakage is obvious; meanwhile, when the air pressure difference between the inside and outside of the abdominal cavity is 2 KPa, there is also a chronic air leakage. .
  • the technical problem to be solved by the present invention is to provide a puncturing device which has a simple structure and a good sealing performance between the sealing assembly and the surgical instrument.
  • the present invention provides a puncturing device comprising: a sealing assembly comprising a plurality of elastic seals; each elastic sealing member comprising: a conical thin-faced thin-walled portion and connected to the tapered surface a ring-shaped portion at the bottom of the thin-walled portion; a fan-shaped notch is formed on the thin-walled portion of the tapered surface, and the tip end of the scalloped notch is a tip end of the thin-walled portion of the tapered surface, and has an arc-shaped angle; as a first solution, The wall edge of at least the scalloped notch on the scalloped edge is smaller than the remaining portion of the tapered thin portion; the remaining portion of the tapered thin portion has the same wall thickness.
  • the thickness from the bottom of the tapered thin-walled portion to the tip end is gradually reduced from thick.
  • the above second solution can be implemented on the basis of the above first solution, that is, constitutes the third solution.
  • the first or third solution has a chamfer on the outer edge of the scallop or at least on the outer edge of the top end such that at least the top edge has a wall thickness smaller than the The remainder of the thin section of the cone.
  • the edge may also be a uniform thickness and a thinner wall than the remainder of the tapered thin wall portion.
  • the outer wall of the tapered thin-walled portion is provided with at least one annular reinforcing rib or belt coaxially distributed with the tapered thin-walled portion, and the reinforcing rib or belt is The scallops have corresponding indentations.
  • the annular reinforcing rib or the annular reinforcing band can prevent the deformation of the individual elastic sealing members when the piercing rod or other surgical instruments are inserted into the sealing assembly and the individual elastic sealing members are excessively stressed. The amount is prevented from being damaged by excessive deformation, and the tear resistance of the thin portion of the tapered surface is increased.
  • the annular reinforcing ribs or belts distributed coaxially with the tapered thin-walled portions are advantageous for improving the sealing performance between adjacent elastic seals laminated to each other.
  • the wall thickness from the bottom of the tapered thin portion to the tip is gradually thinned from the thickness of the thin portion of the tapered surface (the bottom of the thin portion of the tapered surface)
  • the wall thickness is 1.5-3 times near the top end thereof, and the shape and structure of the elastic sealing member are combined with the gradual thinning of the wall thickness, and are suitable for sealing and sealing between the adjacent elastic sealing members. Tightly, the stress on the thin portion of the tapered surface is reasonably distributed to prevent local bulging from leaking or seeping, so as to further facilitate the tight wrapping of the tapered thin portion on the puncture rod or other surgical instruments, further Improve the wrap and air tightness between the seal assembly and the puncture rod or other surgical instrument.
  • the bottom of the tapered thin portion of each elastic seal has a circumference of not less than 180°, or a circumference of 300° to 340°.
  • the top edge of the scalloped notch has a circular arc shape;
  • the annular portion is provided with a bottom edge notch opposite to the scalloped notch; the width of the bottom edge notch is smaller than the bottom width of the scalloped notch, and the bottom edge notch is opposite to the center of the scalloped notch to fix each While fixing the bottom circumference of the tapered thin portion of the elastic seal, the position of the radial edge of the scallop notch of each elastic seal is fixed as much as possible, so that the fan-shaped notch on the adjacent elastic seal of the laminate can be staggered by a sufficient angle, Avoiding leakage paths between adjacent scallops ultimately ensures tightness between adjacent elastomeric seals.
  • the puncturing device further comprises: a sleeve assembly, the sealing assembly is disposed in a housing at the top of the sleeve assembly; the sealing assembly further includes a pair of rigid rings Each of the elastic seals is disposed between the pair of rings; the annular portions of the elastic seals are stacked one on another such that the tapered thin-walled portions of the respective elastic seals form a conical seal, thereby allowing the The surgical instrument of the seal assembly is in a fluidly sealed engagement with the seal assembly.
  • the housing at the top of the sleeve assembly includes: a conversion cap and a sleeve seat that are sealingly fitted up and down; the sealing assembly is disposed on a working passage in the conversion cap.
  • the sleeve includes: a bowl, a cylinder longitudinally connected to the center of the bottom of the bowl and integral with the bowl, and a ring cover sealed and fixed on the top of the bowl a plate, and a plug valve disposed on the side wall of the bowl; the plug valve is for allowing and preventing the perfusion fluid from entering or exiting the body cavity through the barrel; the outer side wall of the annular cover is evenly distributed with at least two a mounting groove of the back-shaped lock buckle is disposed; a spring is disposed on the inner side wall of the back-shaped lock buckle; and a plug-in interface is formed on the top surface of the annular cover plate to penetrate the mounting groove; the bottom of the conversion cap is a plurality of locking tongues for respectively inserting the insertion interface, the inner side of the locking tongue having a locking groove, after the locking tongue sequentially passes through the through hole of the insertion interface and the back-shaped locking buckle, Under the action of the spring, the locking groove is fixedly engaged in the through hole
  • a choke valve is disposed on the working passage in the bowl body of the sleeve seat;
  • the choke valve includes a cup portion made of an elastic material, and the bottom surface of the cup portion is a flat surface.
  • a central portion of the bottom surface is provided with a cross-shaped slit;
  • the side wall of the cup portion is provided with four arcuate grooves respectively opposite to the four angles of the cross-shaped slit;
  • the surgical instrument is adapted to pass through the ten
  • the glyph is sewn, and the bottom surface of the cup portion is adapted to seal the working channel when no surgical instrument is passed, thereby preventing leakage of perfusion gas that is delivered to the body cavity through the plug valve or the barrel.
  • the air pressure in the cup portion acts on the four arcuate grooves and squeezes the four angles of the cross-shaped slit to close the cross-shaped slit when there is no surgical instrument to pass through, and then seal;
  • the working channel is sealed by the seal assembly as the instrument passes through the cross-shaped slit.
  • the bottom surface of the cup body is slidably engaged with the cylindrical surgical instrument through the cross-shaped slit, and the material deformation is small with respect to the quilted structure of the duckbill gas-blocking valve, and the corresponding resistance acting on the surgical instrument is reduced.
  • each of the arcuate grooves is gradually increased from top to bottom, so that the pressure of the four angles of pressing the cross-shaped slits is more effective, thereby improving the sealing effect.
  • the centers of the four arcuate grooves are symmetrically distributed so that the pressure of the four angles at which the cross-shaped slit is pressed is uniform.
  • the top of the cup portion has an integrally formed flange for sealingly engaging with a central through hole of the annular cover of the sleeve seat and a bottom of the conversion cap to The conversion cap is sealingly fitted with the sleeve seat.
  • the trocar further includes a puncturing rod extending through the sleeve assembly, the puncturing rod comprising a shaft portion of the ABS material and a head of PC material attached to the end of the shaft portion.
  • the invention has the characteristics of low cost, simple process and higher safety.
  • the puncturing device of the present invention has no reinforcing pad portion on the tapered thin-walled portion relative to the prior art, and the corresponding production process is simpler and less used; and in the prior art, the elastic sealing member is the most
  • the portion where air leakage or liquid leakage is likely to occur is the top edge of the scallop.
  • at least the top edge of the scalloped edge has a thin wall thickness, and a larger air pressure in the abdominal cavity is suitable for pressing the top edge, so that the top edge is tightly wrapped and fits on the piercing rod.
  • the tension of the top edge of the plurality of elastic seals is evenly distributed to avoid the occurrence of bulging of individual top edges due to uneven tension distribution, thereby having better wrapping and airtightness.
  • the bottom of the tapered thin portion of the elastic seal has a circumference of not less than 180°, preferably not less than 270°; when a circumference of 300° to 340° is used, correspondingly
  • the scalloped notch on the elastic seal is small, and the corresponding technical effect is that: when the surgical instrument passes through the sealing assembly, the side wall of the surgical instrument and the scalloped gap of each elastic seal are in operation. The radial edges are wrapped tighter, which improves the sealing performance. Even if the pressure difference between the inside and outside of the abdominal cavity reaches 8.5KPa, there is no obvious air leakage.
  • the bottom circumference of the tapered thin portion of the elastic seal is greater than 340°, the insertion of the surgical instrument may be difficult, and at the same time, the radial edge of the scallop of the elastic seal may be deformed, thereby affecting the stack.
  • the tightness between adjacent elastic seals of the layer If the bottom circumference of the tapered thin portion of the elastic seal is less than 300°, the wrapping force of the side wall of the surgical instrument and the radial edge of the scallop of each elastic seal is gradually weakened;
  • the housing at the top of the sleeve assembly of the present invention comprises: a conversion cap and a sleeve seat that are sealingly fitted up and down; and the advantage of the split structure relative to the integral structure: facilitating timely replacement according to actual conditions during the operation or The conversion cap is cleaned; at the same time, the bowl of the sleeve can be cleaned during the operation.
  • the plug-and-fit structure of the conversion cap and the sleeve seat of the present invention is simple and reliable to use. Highly sexual characteristics;
  • the center of the bottom surface of the gas barrier valve of the present invention is provided with a cross-shaped slit; the side wall of the cup body portion is provided with four arc-shaped grooves respectively opposite to the four angles of the cross-shaped slit;
  • the air pressure in the cup body acts on the four arcuate grooves and squeezes the four angles of the cross-shaped slit to close the cross-shaped slit when there is no surgical instrument to pass through, thereby sealing when the surgical instrument passes through
  • the working channel is sealed by the seal assembly when the cross-shaped slit is formed.
  • FIG. 1A is a schematic structural view of a trocar of the present invention
  • Figure 1B is a plan view of the trocar of the present invention.
  • Figure 1C is a cross-sectional view of the A-A of the trocar of Figure 1A;
  • Figure 1D is a cross-sectional view of the B-B of the trocar of Figure 1A;
  • Figure 1E is a perspective view of the trocar of the present invention.
  • Figure 1F is a cross-sectional structural view showing a housing portion of the trocar of the present invention.
  • 1G is a cross-sectional structural view of a conversion cap in the trocar of the present invention.
  • FIG. 2 is a schematic exploded view of the puncture device of the present invention
  • Figure 3A is a plan view of the sleeve seat of the present invention.
  • Figure 3B is a cross-sectional view showing the C-C of the sleeve holder of the present invention.
  • 3C is a cross-sectional structural view of the sleeve of the present invention taken along the line D-D;
  • FIG. 4A is a schematic structural view of a choke valve of the present invention.
  • Figure 4B is a right side view of the choke valve of Figure 4A;
  • Figure 4C is a perspective view of the choke valve of Figure 4A;
  • Figure 4D is a left side view of the choke valve of Figure 4A;
  • 5A is a schematic structural view of an elastic seal of the present invention.
  • Figure 5B is a bottom plan view of the elastic seal of Figure 5A;
  • Figure 5C is a perspective view of the elastic seal of Figure 5A;
  • Figure 5D is a schematic cross-sectional view of the E-E of the elastic seal of Figure 5B;
  • Figure 5E is another schematic structural view of the E-E section of the elastic seal of Figure 5B;
  • FIG. 6A is a schematic structural view of another elastic sealing member of the present invention.
  • Figure 6B is a plan view of Figure 6A
  • FIG. 7A is a schematic structural view of a third elastic sealing member of the present invention.
  • Figure 7B is a plan view of Figure 7A
  • Figure 8 is a schematic view showing the structure of a fourth elastic sealing member of the present invention.
  • the puncturing device of the present embodiment includes: a sleeve assembly 1, the housing 2 at the top of the sleeve assembly includes: a switching cap 2-1 and a sleeve seat 2-2 that are sealingly fitted up and down;
  • the sleeve 2-2 includes: a bowl 2-20, a cylinder 2-21 longitudinally connected to the center of the bottom of the bowl 2-20 and integral with the bowl 2-20, sealed and fixed in the bowl
  • the plug valve 4 is used to allow and prevent the perfusion fluid from entering or exiting the body cavity through the barrel 2-21;
  • a working channel 10 for threading a surgical instrument or a piercing rod is disposed on a central axis of the conversion cap 2-1 and the sleeve 2-2; a sealing assembly 3 is disposed on the working channel in the conversion cap 2-1, and the sealing assembly There is a protector 6 above the 3 .
  • the seal assembly 3 includes a pair of rigid rings 3-1, and 3 to 6 (preferably 4) elastic seals 3-2 disposed between the pair of rings 3-1
  • Each elastic seal 3-2 includes: a conical thin-walled thin portion 3-21 and an annular portion 3-22 connected to the bottom of the tapered thin-walled portion 3-21; a tapered thin-walled portion 3-21 A scalloped notch 3-20 is provided, and the top end of the scalloped notch 3-20 is the top edge 3-24 of the tapered thin-walled portion 3-21, and the annular portion 3 of each elastic sealing member 3-2
  • the layers 22 are stacked one on another such that the tapered thin-walled portions 3-21 of the respective elastic seals 3-2 form a conical seal, thereby allowing the surgical instrument passing through the seal assembly 3 to be actively sealed with the seal assembly 3. Fitted; the bottom of the tapered thin portion of each elastic seal 3-2 has a circumference of 300 to 340 (preferably 320).
  • the annular portion 3-22 is provided with a bottom edge notch 3-220 opposite to the scalloped notch 3-20 and penetrating therethrough; the annular portion 3-22 is evenly distributed with a pair for being worn in the pair Holes 3-23 in the pins on the rigid ring 3-1 to secure the respective elastic seals 3-2.
  • the width of the bottom edge notch 3-220 is smaller than the bottom width of the sector notch 3-20, and the bottom edge notch 3-220 faces the center of the sector notch 3-20 to fix each elasticity. While fixing the bottom circumference of the tapered thin portion of the sealing member 3-2, the position of the radial edge of the scalloped notch 3-20 of each elastic sealing member 3-2 is fixed as much as possible, and the adjacent elastic sealing member 3 of the laminated layer is secured.
  • the scallops 3-20 on the -2 can be staggered at a sufficient angle to avoid leakage passages between adjacent scallops 3-20, ultimately ensuring a tight seal between adjacent elastomeric seals 3-2.
  • the wall thickness on the edge of the scalloped 3-20 or at least the top edge 3-24 is smaller than the remainder of the tapered thin-walled portion 3-21.
  • the remaining portions of the tapered thin-walled portions 3-21 have the same wall thickness; in specific implementation, on the outer edge of the scalloped notch 3-20, or the top edge 3-24 (Fig. 5D) and / Or having an outer edge 3-30 adjacent the top edge 3-24 having a chamfer 3-29 (Fig. 5E) such that the thinnest portion of the wall thickness of the respective outer edge is the thin portion of the tapered surface Less than 1/2 of the rest.
  • the top edge may also be an edge having a uniform thickness and a thinner thickness than the remaining portion of the tapered thin-walled portion 3-21, the thickness of the top edge being the tapered thin wall 1/2 to 1/4 of the rest of the department.
  • the scalloped notch on the elastic sealing member of the embodiment is small (that is, the bottom of the tapered thin portion of each elastic sealing member 3-2 has a circumference of 300° to 340°),
  • the side walls of the surgical instrument are tightly wrapped with the radial edges of the scallops 3-20 of the respective elastic seals 3, thereby improving the sealing performance;
  • the technology has no reinforcing pad portion on the thin portion of the tapered surface, and the corresponding production process is simpler and less materials are used; in addition, in the prior art elastic sealing member, the most leaking or liquid leakage portion is The top edge of the scalloped notch.
  • the edge of the scalloped notch is thinner, or at least the wall thickness of the top edge is thinner, and a larger air pressure in the abdominal cavity is suitable for squeezing the top edge to facilitate closerness of the top edge.
  • Wrapped and attached to the puncture rod or other surgical instruments, and the tension of the top edge of the plurality of elastic seals is evenly distributed to avoid the occurrence of bulging of the individual top edges due to uneven tension distribution.
  • the outer side wall of the annular cover plate 2-22 is evenly distributed with at least two mounting grooves 2-26 for setting the back-shaped buckles 2-23; on the inner side wall of the back-shaped locks 2-23 a spring 2-24 is disposed; a top surface of the annular cover plate 2-22 is disposed with an insertion interface 2-25 that penetrates the mounting groove 2-26; the bottom of the conversion cap 2-1 extends downward.
  • locking tongues 2-11 for inserting the insertion interfaces 2-25 respectively, the inside of the locking tongue 2-11 having a locking groove 2-12 through which the locking tongue 2-11 passes in sequence 2-25, after the through holes 2-27 on the back-shaped locks 2-23, under the action of the springs 2-24, the lock grooves 2-12 are fixedly fitted to the back-shaped locks 2-23 Through holes 2-27.
  • a choke valve 7 is disposed on the working passage in the bowl 2-20 of the sleeve seat 2-2; the choke valve 7 includes a cup portion 71 made of an elastic material, the cup body
  • the bottom surface 72 of the portion 71 is a flat surface, and the bottom surface 72 is provided with a cross-shaped slit 73 at the center; the side wall of the cup portion 71 is provided with four arcuate grooves 74 respectively opposite to the four angles of the cross-shaped slit.
  • the surgical instrument is adapted to pass through the cruciform slit 73, and the bottom surface 72 of the cup portion is adapted to seal the working channel 10 when no surgical instrument is passed, thereby preventing passage of the plug valve 4, the barrel 2 -21 Leakage of the perfusion gas delivered into the body cavity.
  • the air pressure in the cup portion 71 acts on the four arcuate grooves 74 and presses the four corners of the cross-shaped slit 73 to close the cross-shaped slit 73 when no surgical instrument passes. Sealing The working channel is sealed by the seal assembly 3 as the surgical instrument passes through the cross-shaped slit 73.
  • the elastic seal 3-2 and the choke valve 7 are made of rubber.
  • the top of the cup portion 71 has an integrally formed flange 75 for central through hole with the annular cover 2-22 of the sleeve holder 2-2, and the bottom of the conversion cap 2-1
  • the sealing fit is such that the conversion cap 2-1 is sealingly fitted to the sleeve 2-2.
  • the trocar further includes a puncturing rod extending through the sleeve assembly, the puncturing rod including a shaft portion of the ABS material and a head of PC material attached to the end of the shaft portion.
  • the invention has the characteristics of low cost, simple process and higher safety.
  • the housing 22 of the present invention adopts a split structure, which facilitates timely replacement or cleaning of the conversion cap 2-1 according to actual conditions during the operation; meanwhile, the sleeve seat 2-2 can be cleaned during the operation. Bowl 2-20.
  • the remaining components can be used in conjunction with another set of punctors to facilitate economy.
  • the outer wall of the tapered thin-walled portion 3-21 is provided with annular reinforcing ribs 3-25 and 3-26 coaxially distributed with the tapered thin-walled portion (Figs. 6A and 6B).
  • the outer wall of the tapered thin-walled portion 3-21 is provided with an annular reinforcing strip 3-27 (as shown in FIGS. 7A and 7B) coaxially distributed with the tapered thin-walled portion, the reinforcing rib or the belt being The scallops have corresponding gaps.
  • the annular rib or the annular reinforcing strip allows the tapered thin-walled portion to be more tightly wrapped around the piercing rod or other surgical instrument, ie, has better encapsulation, even if there is a local bulge in the rest of the tapered thin-walled portion Does not affect the air tightness, so that the airtightness between the sealing component and the puncture rod or other surgical instruments is better; in addition, the annular reinforcing rib or the annular reinforcing band can prevent the insertion of the sealing component into the puncture rod or other surgical instruments, When the elastic force of the individual elastic seals is excessively large, the annular reinforcing ribs or belts can control the deformation amount of the above-mentioned individual elastic seals, prevent excessive deformation and damage, and increase the tear resistance of the thin-walled portion of the tapered surface.
  • annular reinforcing ribs or belts distributed coaxially with the tapered thin-walled portions are advantageous for improving the sealing performance between adjacent elastic seals laminated to each other.
  • a region 3-28 (which includes the top edge 3-24) opposite to the scalloped notch 3-20 on the tapered thin-walled portion 3-21, from the tapered thin-walled portion 3
  • the wall thickness of the bottom to the top of the -21 is gradually thinned by thickness (the wall thickness of the bottom of the tapered thin portion is 1.5 to 3 times near the top end thereof), and the rest of the tapered thin portion 3-21
  • the wall thickness is consistent with the bottom of the tapered thin-walled portion 3-21, and the structure is adapted to prevent local bulging, which facilitates that the tapered thin-walled portion is integrally wrapped around the puncture rod or other surgical instrument to improve the sealing assembly and the puncture. Air tightness between rods or other surgical instruments.
  • the thickness transition between the regions 3-28 and the remainder of the tapered thin-walled portion 3-21 is gradual and smooth, and the structure facilitates the tightly wrapped portion of the tapered thin-walled portion in the puncture rod or other surgical instrument Further, the airtightness between the sealing assembly and the puncture rod or other surgical instruments is further improved.
  • the wall thickness from the bottom to the tip end of the tapered thin-walled portion 3-21 is gradually thinned from the thickness (the wall thickness at the bottom of the tapered thin-walled portion is adjacent)
  • the shape and structure of the elastic sealing member 3-2 in a gradual manner of combining the wall thickness, is suitable for closer sealing and sealing between the adjacently fitted elastic sealing members 3-2. Preventing local uplift and leakage or liquid leakage, and facilitating that the thin portion of the tapered surface is more tightly wrapped around the puncture rod or other surgical instruments to improve the gas between the sealing assembly and the puncture rod or other surgical instruments. Confidentiality.

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Abstract

一种穿刺器包括密封组件(3)。密封组件(3)包括多个弹性密封件(3-2),各弹性密封件(3-2)包括呈圆锥形的锥面薄壁部(3-21)和连接在锥面薄壁部(3-21)底部的环形部(3-22)。锥面薄壁部(3-21)上设有扇形缺口(3-20),且扇形缺口(3-20)的顶端即为锥面薄壁部(3-21)的顶端。在扇形缺口(3-20)边缘上的至少扇形缺口(3-20)的顶端边缘的壁厚小于锥面薄壁部(3-21)的其余部分;和/或锥面薄壁部(3-21)上的至少在与扇形缺口(3-20)相对的区域,从锥面薄壁部(3-21)底部至顶端的壁厚由厚逐渐变薄。这样的结构利于顶端边缘紧密包裹、贴合在穿刺杆或其他手术器械上,且利于多个弹性密封件上的顶端边缘的张力均匀分布,避免因张力分布不均而出现个别顶端边缘发生隆起的情况,因此具有更好的包裹性和气密性。

Description

密封性能较好的穿刺器
本发明涉及一种微创手术器械,特别是涉及在腹腔镜手术中使用的密封性能较好的穿刺器。
穿刺器是一种刺穿腹壁并为其他手术器械提供进入体腔通道的手术器械,属于一种微创手术器械。
穿刺器通常包括作为其他手术器械进入通道的套筒组件和贯穿于所述套筒组件内的穿刺杆。为了穿透皮肤,先用手术刀切开皮肤表皮,然后穿刺杆穿透皮肤并进入体腔。通过向所述穿刺杆的近端施加压力,推动所述穿刺杆的尖端穿过皮肤,直到穿刺器进入体腔,抽出穿刺杆,套筒组件就可以作为执行内窥镜外科手术和内窥镜检查操作的微创器械通道。
套筒组件用于将各种器械和工具引入腹腔内,而且提供灌气使腹壁升高到器官上方。在这类手术期间,通过套筒组件插入探测装置( 例如,内窥镜或腹腔镜) ,以允许外科医生在连接到探测装置的外部监视器上观察手术过程。
在手术期间,为阻止腹腔内气体泄漏,现有技术采用了一种穿刺器,其套筒组件的顶部具有一壳体,该壳体内设有仪器密封组件,其包括一对刚性环,以及多个分开的压在该对环之间的柔性密封件,各弹性密封件具有180°到270°的圆周且彼此一起叠成层,以形成圆锥形密封件,并且适于密封穿过所述密封组件的手术器械,以阻止腹腔内气体泄漏。
上述现有技术的不足之处在于:上述密封组件的密封性能较低,当腹腔内外气压差大于4KPa时,漏气明显;同时,在腹腔内外气压差在2KPa时,也存在慢性漏气的情况。
本发明所要解决的技术问题是提供一种结构简单、密封组件与手术器械之间的密封性能较好的穿刺器。
为了解决上述问题,本发明提供了一种穿刺器,包括:密封组件,该密封组件包括多个弹性密封件;各弹性密封件包括:呈圆锥形的锥面薄壁部和连接在该锥面薄壁部底部的环形部;锥面薄壁部上设有扇形缺口,且该扇形缺口的顶端即为所述锥面薄壁部的顶端,且呈弧形角;作为第一种方案,在所述扇形缺口边缘上的至少所述扇形缺口的顶端边缘的壁厚小于所述锥面薄壁部的其余部分;所述锥面薄壁部的其余部分的壁厚一致。或,作为第二种方案,所述锥面薄壁部上的至少在与所述扇形缺口相对的区域,从锥面薄壁部底部至顶端的壁厚由厚逐渐变薄。
上述第二种方案,可以在上述第一种方案的基础上实施,即构成第三种方案。
上述第一或第三种方案在具体实施时,在所述扇形缺口的外边缘上、或至少在所述顶端的外边缘上具有倒角,以使至少所述顶端边缘的壁厚小于所述锥面薄壁部的其余部分。所述边缘也可以是厚度均匀、壁厚薄于所述锥面薄壁部的其余部分的边缘。
上述各方案的基础上,优选的方案是,所述锥面薄壁部的外壁上设有至少一条与该锥面薄壁部同轴分布的环形加强筋或带,该加强筋或带上在所述扇形缺口处具有相应的缺口。环形加强筋或环形加强带,可防止在穿刺杆或其他手术器械插入密封组件、并出现个别弹性密封件受力过大时,所述环形加强筋或带可控制上述的个别弹性密封件的变形量,防止其过量变形而损坏,增加锥面薄壁部的抗撕裂性能。此外,与所述锥面薄壁部同轴分布的环形加强筋或带,利于提高相邻的、彼此叠层的弹性密封件之间的密封性能。
上述第二种方案的基础上,优选的方案是,所述的整个锥面薄壁部上,从锥面薄壁部底部至顶端的壁厚由厚逐渐变薄(锥面薄壁部底部的壁厚是临近其顶端处的1.5-3倍),上述弹性密封件的形状、结构,结合壁厚的逐渐变薄方式,适于使相邻贴合的弹性密封件之间的贴合密封更紧密,使所述锥面薄壁部上的应力合理分布,以防止局部隆起而发生漏气或渗液,以进一步利于所述锥面薄壁部紧密包裹在穿刺杆或其他手术器械上,进一步提高密封组件与穿刺杆或其他手术器械之间的包裹性和气密性。
在上述各方案的基础上,进一步优选:各弹性密封件的锥面薄壁部的底部具有不小于180°的圆周,或300°到340°的圆周。所述扇形缺口的顶端边缘呈圆弧形; 所述环形部上设有与所述扇形缺口相对的底边缺口;该底边缺口的宽度小于所述扇形缺口的底部宽度,且底边缺口正对所述扇形缺口的中央,以在固定各弹性密封件的锥面薄壁部的底部圆周的同时,尽可能固定各弹性密封件的扇形缺口的径向边缘的位置,确保叠层的相邻弹性密封件上的扇形缺口能错开足够角度,避免相邻的扇形缺口之间产生泄漏通道,最终确保了相邻弹性密封件之间的密封性。
在上述各方案的基础上,进一步优选的方案是:该穿刺器还包括:套筒组件,所述密封组件设于该套筒组件顶部的壳体中;所述密封组件还包括一对刚性环,各弹性密封件设于该对环之间;各弹性密封件的环形部彼此一起叠成层,以使各弹性密封件的锥面薄壁部形成圆锥形密封件,进而使穿过所述密封组件的手术器械与该密封组件活动密封配合。所述套筒组件顶部的壳体包括:上下密封配合的转换帽和套筒座;所述密封组件设于转换帽中的工作通道上。
在上述各方案的基础上,所述套筒座包括:碗状体、纵向连接在该碗状体底部中央且与该碗状体一体的筒体、密封固定在该碗状体顶部的环形盖板,以及设于该碗状体侧壁上的旋塞阀;旋塞阀用于允许和阻止灌注流体通过筒体进入或排出体腔;所述环形盖板的外侧壁上均匀分布有至少两个用于设置回字形锁扣的安装槽;回字形锁扣的内侧壁上设有弹簧;所述环形盖板的顶面上分布有与所述安装槽上下贯通的插接口;所述转换帽的底部向下延伸有多个用于分别插入所述插接口的锁舌,该锁舌的内侧具有锁槽,在该锁舌依次穿过所述插接口、回字形锁扣上的通孔后,在所述弹簧的作用下,所述锁槽固定配合在所述回字形锁扣的通孔中,进而使转换帽和套筒座接插固定。
在上述各方案的基础上,所述套筒座的碗状体内的工作通道上设有阻气阀;该阻气阀包括弹性材料制成的杯体部,该杯体部的底面为平面,该底面中央设有十字形缝;该杯体部的侧壁上设有分别与所述十字形缝的四个夹角相对的四个弧形槽;所述手术器械适于穿过所述十字形缝,且该杯体部的底面在没有手术器械穿过时适于密封所述工作通道,由此防止通过旋塞阀、筒体输送至体腔的灌注气体的发生泄漏。
使用时,杯体部中的气压作用在四个弧形槽上并挤压所述十字形缝的四个夹角,在没有手术器械穿过时使所述十字形缝闭合,进而密封;当手术器械穿过所述十字形缝时,所述工作通道由所述密封组件实现密封。该杯体部的底面通过十字形缝与柱形手术器械滑动配合,相对于鸭嘴式阻气阀的夹缝式结构,材料变形小,相应的作用于手术器械上的阻力减小。
各弧形槽的深度,自上而下逐渐增大,以使挤压所述十字形缝的四个夹角的压力的作用效果更好,进而提高密封效果。所述四个弧形槽中心对称分布,以使挤压所述十字形缝的四个夹角的压力均匀。
进一步优选的方案是:所述杯体部的顶部具有一体成型的凸缘,该凸缘用于与所述套筒座的环形盖板的中央通孔、以及转换帽的底部密封配合,以使所述转换帽与套筒座上下密封配合。
进一步优选的方案是:该穿刺器还包括贯穿于所述套筒组件内的穿刺杆,该穿刺杆包括ABS材料的杆体部和连接在该杆体部末端的PC材料的头部。相对于采用金属制成的杆体部,本发明具有成本低廉、工艺简便、安全性更高的特点。
本发明相对于现有技术具有积极的效果:
(1)本发明的穿刺器相对于现有技术,所述锥面薄壁部上无加强垫部分,相应的生产工艺更简便、用料较少;此外,现有技术弹性密封件中,最易发生漏气或渗液的部位,即为所述扇形缺口的顶端边缘上。本发明中,所述扇形缺口边缘上的至少所述顶端边缘的壁厚较薄,腹腔内较大的气压适于挤压所述顶端边缘,利于所述顶端边缘紧密包裹、贴合在穿刺杆或其他手术器械上,且利于所述多个弹性密封件上的顶端边缘的张力均匀分布,避免因张力分布不均而出现个别顶端边缘发生隆起的情况,因此具有更好的包裹性和气密性; 经仿真实验,即便腹腔内的气压与外界气压之差达到8KPa,也不存在明显漏气或渗液的情况(即5分钟,腹腔内外压差变化幅度在5%以内)。在腹腔内外压差达到4KPa,也不存在慢性漏气或渗液的情况(即半小时内,腹腔内外压差变化幅度在5%以内)。
(2)本发明的穿刺器的密封组件中,弹性密封件的锥面薄壁部的底部具有不小于180°的圆周,优选不小于270°;当采用300°到340°的圆周时,相应地,所述弹性密封件上扇形缺口就较小,其相应产生的技术效果是:在手术时,手术器械穿过所述密封组件后,手术器械的侧壁与各弹性密封件的扇形缺口的径向边缘包裹更紧密,进而提高密封性能,即便腹腔内外气压差达到8.5KPa,也不存在明显漏气的情况。此外,若所述弹性密封件的锥面薄壁部的底部圆周大于340°,则会导致手术器械插入困难,同时导致所述弹性密封件的扇形缺口的径向边缘变型较大,进而影响叠层的相邻弹性密封件之间的密封性。若所述弹性密封件的锥面薄壁部的底部圆周小于300°,则手术器械的侧壁与各弹性密封件的扇形缺口的径向边缘的包裹力逐渐变弱;
(3)本发明的套筒组件顶部的壳体包括:上下密封配合的转换帽和套筒座;相对于一体结构,该分体结构的优点:利于在手术过程中,根据实际情况及时更换或清理转换帽;同时,在手术过程中,可以清理套筒座的碗状体。此外,一旦转换帽和套筒座之一发生损坏,剩余的部件可以与另一组穿刺器配合使用,利于节约;本发明的转换帽和套筒座的接插配合结构,具有使用简便,可靠性较高的特点;
(4)本发明的阻气阀的底面中央设有十字形缝;该杯体部的侧壁上设有分别与所述十字形缝的四个夹角相对的四个弧形槽;使用时,杯体部中的气压作用在四个弧形槽上并挤压所述十字形缝的四个夹角,在没有手术器械穿过时使所述十字形缝闭合,进而密封当手术器械穿过所述十字形缝时,所述工作通道由所述密封组件实现密封。
为了清楚说明本发明的创新原理及其相比于现有产品的技术优势,下面借助于附图通过应用所述原理的非限制性实例说明一个可能的实施例。在图中:
图1A为本发明的穿刺器的结构示意图;
图1B为本发明的穿刺器的俯视图;
图1C为图1A中的穿刺器的A-A剖面结构图;
图1D为图1A中的穿刺器的B-B剖面结构图;
图1E为本发明的穿刺器的立体图;
图1F为本发明的穿刺器的壳体部分的剖面结构图;
图1G为本发明的穿刺器中的转换帽剖面结构图;
图2为本发明的穿刺器的分解结构示意图;
图3A为本发明的套筒座的俯视图;
图3B为本发明的套筒座的C-C剖面结构图;
图3C为本发明的套筒座的D-D剖面结构图;
图4A为本发明的阻气阀的结构示意图;
图4B为图4A中的阻气阀的右视图;
图4C为图4A中的阻气阀的立体图;
图4D为图4A中的阻气阀的左视图;
图5A为本发明的弹性密封件的结构示意图;
图5B为图5A中的弹性密封件的仰视图;
图5C为图5A中的弹性密封件的立体图;
图5D为图5B中的弹性密封件的E-E剖面结构示意图;
图5E为图5B中的弹性密封件的E-E剖面的另一结构示意图;
图6A为本发明的另一种弹性密封件的结构示意图;
图6B为图6A的俯视图;
图7A为本发明的第三种弹性密封件的结构示意图;
图7B为图7A的俯视图;
图8为本发明的第四种弹性密封件的结构示意图。
实施例1
见图1至4,本实施例的穿刺器,包括:套筒组件1,该套筒组件顶部的壳体2包括:上下密封配合的转换帽2-1和套筒座2-2;所述套筒座2-2包括:碗状体2-20、纵向连接在该碗状体2-20底部中央且与该碗状体2-20一体的筒体2-21、密封固定在该碗状体2-20顶部的环形盖板2-22,以及设于该碗状体2-20侧壁上的旋塞阀4。该旋塞阀4用于允许和阻止灌注流体通过筒体2-21进入或排出体腔;
转换帽2-1和套筒座2-2的中心轴线上设有用于穿设手术器械或穿刺杆的工作通道10;一密封组件3设于转换帽2-1中的工作通道上,密封组件3上方设有保护器6。
如图2、图5A至5C,所述密封组件3包括一对刚性环3-1,以及3至6个(优选4个)设于该对环3-1之间的弹性密封件3-2;各弹性密封件3-2包括:呈圆锥形的锥面薄壁部3-21和连接在该锥面薄壁部3-21底部的环形部3-22;锥面薄壁部3-21上设有扇形缺口3-20,且该扇形缺口3-20的顶端即为所述锥面薄壁部3-21的顶端边缘3-24,且各弹性密封件3-2的环形部3-22彼此一起叠成层,以使各弹性密封件3-2的锥面薄壁部3-21形成圆锥形密封件,进而使穿过所述密封组件3的手术器械与该密封组件3活动密封配合;各弹性密封件3-2的锥面薄壁部的底部具有300°到340°(优选320°)的圆周。
所述环形部3-22上设有与所述扇形缺口3-20相对、且贯通的底边缺口3-220;所述环形部3-22还均匀分布有用于穿设在所述的一对刚性环3-1上的销钉上的孔3-23,以固定各弹性密封件3-2。
如图5A,所述底边缺口3-220的宽度小于所述扇形缺口3-20的底部宽度,且底边缺口3-220正对所述扇形缺口3-20的中央,以在固定各弹性密封件3-2的锥面薄壁部的底部圆周的同时,尽可能固定各弹性密封件3-2的扇形缺口3-20的径向边缘的位置,确保叠层的相邻弹性密封件3-2上的扇形缺口3-20能错开足够角度,避免相邻的扇形缺口3-20之间产生泄漏通道,最终确保了相邻弹性密封件3-2之间的密封性。
在所述扇形缺口3-20边缘上或至少是所述顶端边缘3-24的壁厚小于所述锥面薄壁部3-21的其余部分。所述锥面薄壁部3-21的其余部分的壁厚一致;具体实施时,在所述扇形缺口3-20的外边缘上、或所述顶端边缘3-24(如图5D)和/或邻近该顶端边缘3-24的外边缘3-30上具有倒角3-29(如图5E),以使所述相应外边缘的壁厚的最薄处是所述锥面薄壁部的其余部分的1/2以下。
作为另一种可选的方案,所述顶端边缘也可以是厚度均匀、壁厚薄于所述锥面薄壁部3-21的其余部分的边缘,该顶端边缘的厚度是所述锥面薄壁部的其余部分的1/2至1/4。
其相应产生的技术效果是:本实施例的所述弹性密封件上扇形缺口较小(即各弹性密封件3-2的锥面薄壁部的底部具有300°到340°的圆周),在手术时,手术器械穿过所述密封组件3后,手术器械的侧壁与各弹性密封件3的扇形缺口3-20的径向边缘包裹更紧密,进而提高密封性能;此外,相对于现有技术,所述锥面薄壁部上无加强垫部分,相应的生产工艺更简便、用料较少;此外,现有技术弹性密封件中,最易发生漏气或渗液的部位,即为所述扇形缺口的所述顶端边缘上。本实施例中,所述扇形缺口的边缘壁厚较薄,或至少所述顶端边缘的壁厚较薄,腹腔内较大的气压适于挤压所述顶端边缘,利于所述顶端边缘更紧密地包裹、贴合在穿刺杆或其他手术器械上,且利于所述多个弹性密封件上的顶端边缘的张力均匀分布,避免因张力分布不均而出现个别顶端边缘发生隆起的情况,因此具有更好的包裹性和气密性;经仿真实验,即便腹腔内外气压差达到8KPa,也不存在明显漏气或渗液的情况(即5分钟,腹腔内外压差变化幅度在5%以内)。在腹腔内外压差达到4KPa,也不存在慢性漏气或渗液的情况(即半小时,腹腔内外压差变化幅度在5%以内)。
如图2,所述环形盖板2-22的外侧壁上均匀分布有至少两个用于设置回字形锁扣2-23的安装槽2-26;回字形锁扣2-23的内侧壁上设有弹簧2-24;所述环形盖板2-22的顶面上分布有与所述安装槽2-26上下贯通的插接口2-25;所述转换帽2-1的底部向下延伸有多个用于分别插入所述插接口2-25的锁舌2-11,该锁舌2-11的内侧具有锁槽2-12,在该锁舌2-11依次穿过所述插接口2-25、回字形锁扣2-23上的通孔2-27后,在所述弹簧2-24的作用下,所述锁槽2-12固定配合在所述回字形锁扣2-23的通孔2-27中。
如图4,所述套筒座2-2的碗状体2-20内的工作通道上设有阻气阀7;该阻气阀7包括弹性材料制成的杯体部71,该杯体部71的底面72为平面,该底面72中央设有十字形缝73;该杯体部71的侧壁上设有分别与所述十字形缝的四个夹角相对的四个弧形槽74;所述手术器械适于穿过所述十字形缝73,且该杯体部的底面72在没有手术器械穿过时适于密封所述工作通道10,由此防止通过旋塞阀4、筒体2-21输送至体腔内的灌注气体的发生泄漏。
使用时,杯体部71中的气压作用在四个弧形槽74上并挤压所述十字形缝73的四个夹角,在没有手术器械穿过时使所述十字形缝73闭合,进而密封当手术器械穿过所述十字形缝73时,所述工作通道由所述密封组件3实现密封。弹性密封件3-2和阻气阀7采用橡胶制成。
所述杯体部71的顶部具有一体成型的凸缘75,该凸缘75用于与所述套筒座2-2的环形盖板2-22的中央通孔、以及转换帽2-1的底部密封配合,以使所述转换帽2-1与套筒座2-2上下密封配合。
该穿刺器还包括贯穿于所述套筒组件内的穿刺杆,该穿刺杆包括ABS材料的杆体部和连接在该杆体部末端的PC材料的头部。相对于采用金属制成的杆体部,本发明具有成本低廉、工艺简便、安全性更高的特点。
相对于一体结构,本发明的壳体22采用分体结构,利于在手术过程中,根据实际情况及时更换或清理转换帽2-1;同时,在手术过程中,可以清理套筒座2-2的碗状体2-20。此外,一旦转换帽2-1和套筒座2-2之一发生损坏,剩余的部件可以与另一组穿刺器配合使用,利于节约。
实施例2
在实施例1的基础上,本实施例存在如下变型:
如图6A和6B,所述锥面薄壁部3-21的外壁上设有与该锥面薄壁部同轴分布的环形加强筋3-25和3-26(如图6A和6B),或所述锥面薄壁部3-21的外壁上设有与该锥面薄壁部同轴分布的环形加强带3-27(如图7A和7B),该加强筋或带上在所述扇形缺口处具有相应的缺口。
环形加强筋或环形加强带可使锥面薄壁部更紧密地包裹在穿刺杆或其他手术器械上,也即具有更好的包裹性,即便所述锥面薄壁部的其余部分存在局部隆起,也不影响气密性,使密封组件与穿刺杆或其他手术器械之间的气密性更好;此外,环形加强筋或环形加强带,可防止在穿刺杆或其他手术器械插入密封组件、并出现个别弹性密封件受力过大时,所述环形加强筋或带可控制上述的个别弹性密封件的变形量,防止其过量变形而损坏,增加锥面薄壁部的抗撕裂性能。
此外,与所述锥面薄壁部同轴分布的环形加强筋或带,利于提高相邻的、彼此叠层的弹性密封件之间的密封性能。
经仿真实验,即便腹腔内外气压差达到8.5KPa,所述密封组件也不存在明显漏气或渗液的情况(即5分钟,腹腔内外压差变化幅度在5%以内)。在腹腔内外压差达到5KPa,也不存在慢性漏气或渗液的情况(即半小时内,腹腔内外压差变化幅度在5%以内)。
实施例3
在实施例1或2的基础上,本实施例存在如下变型:
如图8,在所述锥面薄壁部3-21上的与所述扇形缺口3-20相对的区域3-28(其包括所述顶端边缘3-24),从锥面薄壁部3-21的底部至顶端的壁厚由厚逐渐变薄(锥面薄壁部底部的壁厚是临近其顶端处的1.5-3倍),所述锥面薄壁部3-21的其余部分的壁厚与锥面薄壁部3-21的底部的一致,该结构适于防止局部隆起,利于所述锥面薄壁部整体紧密包裹在穿刺杆或其他手术器械上,以提高密封组件与穿刺杆或其他手术器械之间的气密性。
所述区域3-28与所述锥面薄壁部3-21的其余部分的厚度过渡是渐变的、平滑的,该结构利于所述锥面薄壁部紧密整体包裹在穿刺杆或其他手术器械上,进一步提高密封组件与穿刺杆或其他手术器械之间的气密性。
经仿真实验,即便腹腔内外气压差达到8.5KPa,所述密封组件也不存在明显漏气或渗液的情况(即5分钟,腹腔内外压差变化幅度在5%以内)。在腹腔内外压差达到5KPa,也不存在慢性漏气或渗液的情况(即半小时,腹腔内外压差变化幅度在5%以内)。
实施例4
在实施例1或2的基础上,本实施例存在如下变型:
如图8,所述锥面薄壁部3-21上,从锥面薄壁部3-21的底部至顶端的壁厚整体由厚逐渐变薄(锥面薄壁部底部的壁厚是临近其顶端处的1.5-3倍),弹性密封件3-2的形状、结构,结合壁厚的渐变方式,适于使相邻贴合的弹性密封件3-2之间的贴合密封更紧密,防止局部隆起而发生漏气或渗液,同时利于所述锥面薄壁部整体更紧密地包裹在穿刺杆或其他手术器械上,以提高密封组件与穿刺杆或其他手术器械之间的气密性。
经仿真实验,即便腹腔内外气压差达到8.8KPa,所述密封组件也不存在明显漏气或渗液的情况(即5分钟,腹腔内外压差变化幅度在5%以内)。在腹腔内外压差达到5.2KPa,也不存在慢性漏气或渗液的情况(即半小时,腹腔内外压差变化幅度在5%以内)。
显然,上述实施例仅仅是为清楚地说明本发明所作的举例,而并非是对本发明的实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。而这些属于本发明的精神所引伸出的显而易见的变化或变动仍处于本发明的保护范围之中。

Claims (10)

  1. 一种穿刺器,包括密封组件,该密封组件包括多个弹性密封件;各弹性密封件包括:呈圆锥形的锥面薄壁部和连接在该锥面薄壁部底部的环形部;锥面薄壁部上设有扇形缺口,且该扇形缺口的顶端即为所述锥面薄壁部的顶端;其特征在于:
    在所述扇形缺口边缘上的至少所述扇形缺口的顶端边缘的壁厚小于所述锥面薄壁部的其余部分;
    和/或,所述锥面薄壁部上的至少在与所述扇形缺口相对的区域,从锥面薄壁部底部至顶端的壁厚由厚逐渐变薄。
  2. 根据权利要求1所述的穿刺器,其特征在于:在所述扇形缺口的外边缘上、或至少在所述顶端的外边缘上具有倒角,以使至少所述顶端边缘的壁厚小于所述锥面薄壁部的其余部分。
  3. 根据权利要求1所述的穿刺器,其特征在于:所述锥面薄壁部的外壁上设有至少一条与该锥面薄壁部同轴分布的环形加强筋或带,该加强筋或带上在所述扇形缺口处具有相应的缺口。
  4. 根据权利要求1所述的穿刺器,其特征在于:所述锥面薄壁部上,从锥面薄壁部底部至顶端的壁厚由厚逐渐变薄。
  5. 根据权利要求1所述的穿刺器,其特征在于:各弹性密封件的锥面薄壁部的底部具有不小于180°的圆周,或具有300°到340°的圆周;
    所述扇形缺口的顶端边缘呈圆弧形;所述环形部上设有与所述扇形缺口相对的底边缺口;该底边缺口的宽度小于所述扇形缺口的底部宽度,且底边缺口正对所述扇形缺口的中央。
  6. 根据权利要求1-5之一所述的穿刺器,其特征在于:该穿刺器还包括:套筒组件,所述密封组件设于该套筒组件顶部的壳体中;所述密封组件还包括一对刚性环,各弹性密封件设于该对环之间;各弹性密封件的环形部彼此一起叠成层,以使各弹性密封件的锥面薄壁部形成圆锥形密封件,进而使穿过所述密封组件的手术器械与该密封组件活动密封配合;
    所述套筒组件顶部的壳体包括:上下密封配合的转换帽和套筒座;所述密封组件设于转换帽中的工作通道上。
  7. 根据权利要求6所述的穿刺器,其特征在于:所述套筒座包括:碗状体、纵向连接在该碗状体底部中央且与该碗状体一体的筒体、密封固定在该碗状体顶部的环形盖板,以及设于该碗状体侧壁上的旋塞阀;旋塞阀用于允许和阻止灌注流体通过筒体进入或排出体腔;
    所述环形盖板的外侧壁上均匀分布有至少两个用于设置回字形锁扣的安装槽;回字形锁扣的内侧壁上设有弹簧;
    所述环形盖板的顶面上分布有与所述安装槽上下贯通的插接口;
    所述转换帽的底部向下延伸有多个用于分别插入所述插接口的锁舌,该锁舌的内侧具有锁槽,在该锁舌依次穿过所述插接口、回字形锁扣上的通孔后,在所述弹簧的作用下,所述锁槽固定配合在所述回字形锁扣的通孔中。
  8. 根据权利要求7所述的穿刺器,其特征在于:所述套筒座的碗状体内的工作通道上设有阻气阀;该阻气阀包括弹性材料制成的杯体部,该杯体部的底面为平面,该底面中央设有十字形缝;
    该杯体部的侧壁上设有分别与所述十字形缝的四个夹角相对的四个弧形槽;所述手术器械适于穿过所述十字形缝,且该杯体部的底面在没有手术器械穿过时适于密封所述工作通道。,由此防止通过套针2 输送至体腔的灌注气体的泄漏。
  9. 根据权利要求8所述的穿刺器,其特征在于:所述杯体部的顶部具有一体成型的凸缘,该凸缘用于与所述套筒座的环形盖板的中央通孔、以及转换帽的底部密封配合,以使所述转换帽与套筒座上下密封配合;该穿刺器还包括贯穿于所述套筒组件内的穿刺杆,该穿刺杆包括ABS材料的杆体部和连接在该杆体部末端的PC材料的头部。
  10. 根据权利要求8所述的穿刺器,其特征在于:所述四个弧形槽中心对称分布,且各弧形槽的深度,自上而下逐渐增大。
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CN109259826B (zh) * 2018-08-20 2024-03-29 荣佳(惠州)医疗器械制造有限公司 高密封性的穿刺器
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CN114533215A (zh) * 2022-02-08 2022-05-27 浙江天松医疗器械股份有限公司 一种多通道单孔穿刺器
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