CN108186168B - Integrated frame type lumbar intervertebral cage with lateral access screw - Google Patents

Integrated frame type lumbar intervertebral cage with lateral access screw Download PDF

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Publication number
CN108186168B
CN108186168B CN201810115219.4A CN201810115219A CN108186168B CN 108186168 B CN108186168 B CN 108186168B CN 201810115219 A CN201810115219 A CN 201810115219A CN 108186168 B CN108186168 B CN 108186168B
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China
Prior art keywords
frame
slotting
bit
outer frame
chisel
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CN201810115219.4A
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CN108186168A (en
Inventor
吴爱悯
赵杰
张凯
田海军
李训林
周唐俊
王昕�
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Second Affiliated Hospital and Yuying Childrens Hospital of Wenzhou Medical University
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Second Affiliated Hospital and Yuying Childrens Hospital of Wenzhou Medical University
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Priority to CN201810115219.4A priority Critical patent/CN108186168B/en
Publication of CN108186168A publication Critical patent/CN108186168A/en
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F2/00Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
    • A61F2/02Prostheses implantable into the body
    • A61F2/30Joints
    • A61F2/44Joints for the spine, e.g. vertebrae, spinal discs
    • A61F2/4455Joints for the spine, e.g. vertebrae, spinal discs for the fusion of spinal bodies, e.g. intervertebral fusion of adjacent spinal bodies, e.g. fusion cages

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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Neurology (AREA)
  • Orthopedic Medicine & Surgery (AREA)
  • Cardiology (AREA)
  • Oral & Maxillofacial Surgery (AREA)
  • Transplantation (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Vascular Medicine (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Surgical Instruments (AREA)

Abstract

The utility model provides a side way screw integration frame lumbar vertebrae interbody fusion cage, including supporting the examination mould, hold the pole, external frame and inside bone grafting fusion cage, it is the circular arc backup pad to support the examination mould, be equipped with on the support examination mould and support the examination mould and hold the screw hole, hold and be equipped with on the pole front end and hold the pole screw thread, be equipped with the external frame on the external frame and hold the screw hole, external frame bone grafting up-down through-hole and external frame front side inside bone grafting fusion cage mounting groove, be equipped with inside bone grafting fusion cage upper and lower bone grafting hole and inside bone grafting fusion cage and hold the screw hole and support the examination mould and can insert in the inside bone grafting fusion cage mounting groove of external frame front side, the external frame is fixed through installation fixing bolt on the external frame and the installation fixing bolt under the external frame, make inside bone grafting fusion cage can light steady pack into the external frame, can not drop the condition of losing because of beating with the interior bone piece of power fusion cage, thereby can't reach effective bone grafting volume.

Description

Integrated frame type lumbar intervertebral cage with lateral access screw
Technical Field
The invention relates to a side access screw integrated frame type lumbar intervertebral fusion device.
Background
Lumbar intervertebral disc protrusion, lumbar spinal stenosis, unstable lumbar vertebra segment, lumbar vertebra slippage and other diseases caused by lumbar vertebra degeneration are quite common clinically. However, lumbar degeneration can cause lumbago and numbness of lower limbs, intermittent claudication, and even clinical symptoms of urination and defecation and sexual dysfunction, which seriously affect the life health and quality of life of patients. Lancet journal shows according to world disease burden data analysis: lumbago is the first disease with great burden of Chinese 10, and from 1990 to 20 years of 2010, lumbago is always the primary reason for the incapacitation of Chinese, and causes great economic and social burden to individuals, families and the whole Chinese society.
Lumbar fusion is currently the most common way to treat lumbar degenerative changes, and its development has been known for centuries. The number of spinal fusion patients in the United states in 1990 reaches 46500 cases, and in 1998 to 2008, the number of cervical vertebra, thoracic vertebra and lumbar vertebra fusion cases is respectively increased by 90%,61% and 141% in every 10 ten thousands of people, and the average treatment cost of each lumbar vertebra fusion case reaches US $ 80,888.
The existing lumbar fusion device has some defects: 1 in the operation process, after the intervertebral is placed into the test mould, the intervertebral space can be restored to the original position naturally again, the compression is narrowed, the difficulty of beating the intervertebral fusion cage is often caused, the angle is sometimes changed, the end plate is damaged, the path is changed, and the intervertebral fusion cage is wrongly placed into the vertebral body; 2, because the bone blocks in the fusion device are easy to drop and lose due to the fact that the beating is needed by forceful beating, the effective bone grafting quantity cannot be achieved, the intervertebral fusion is affected, even the operation is failed, and then the operation is performed. The need for post-operative fixation of the rod system also increases trauma, surgical incision, surgical time, and surgical costs for some patients.
Disclosure of Invention
In view of the above technical problems, the present invention provides: the external frame is inserted into the lumbar spine for fixation through the fixing bolt and consists of an internal fusion device body and an external frame, namely, after the test mould enters the intervertebral space, the external frame is not directly taken out, but is directly put in along the periphery of the test mould to play a role in keeping the intervertebral space open, then the test mould is taken out, and the internal fusion device matched with the bone grafting is put in the fusion device along the internal track of the external frame.
In order to solve the technical problems, the invention adopts the following technical scheme: the side implantation screw integrated frame type lumbar intervertebral fusion device comprises a support test mold, a holding rod, an external frame and an internal bone grafting fusion device, wherein the support test mold is an arc support plate, the support test mold is provided with a holding threaded hole of the support test mold, the front end of the holding rod is provided with a holding rod thread, the external frame is provided with an external frame holding threaded hole, an external frame bone grafting upper and lower through hole and an external frame front side internal bone grafting fusion device mounting groove, the internal bone grafting fusion device is provided with an internal bone grafting fusion device upper and lower bone grafting hole and an internal bone grafting fusion device holding threaded hole, after the internal bone grafting fusion device is inserted into the external frame front side internal bone grafting fusion device mounting groove, the external frame bone grafting upper and lower through hole is communicated with the internal bone grafting fusion device upper and lower bone grafting hole, the supporting test die can be inserted into the mounting groove of the bone grafting fusion device on the front side of the outer frame, the holding rod screw thread can be matched with the holding screw hole of the supporting test die, the holding rod screw thread can be matched with the holding screw hole of the outer frame, the holding rod screw thread can be matched with the holding screw hole of the bone grafting fusion device on the inner side, the upper end of the front side of the outer frame is provided with an outer frame upper mounting fixing vertical plate, the outer frame upper mounting fixing vertical plate is provided with an outer frame upper mounting fixing oblique screw hole which is obliquely upwards arranged, the outer frame upper mounting fixing oblique screw hole is provided with an outer frame upper mounting fixing bolt, the lower end of the front side of the outer frame is provided with an outer frame lower mounting fixing vertical plate, the outer frame lower mounting fixing vertical plate is provided with an outer frame lower mounting fixing oblique screw hole which is obliquely downwards arranged, the outer frame lower mounting fixing inclined threaded hole is provided with an outer frame lower mounting fixing bolt.
The integrated frame type lumbar intervertebral cage with the lateral access screw has the beneficial effects that: the support test mold is an arc support plate, the support test mold is provided with a holding screw hole, the front end of the holding rod is provided with a holding screw thread, the outer frame is provided with an outer frame holding screw hole, an upper and lower outer frame bone grafting through hole and an inner bone grafting fusion device mounting groove at the front side of the outer frame, the inner bone grafting fusion device is provided with an upper and lower inner bone grafting fusion device hole and an inner bone grafting fusion device holding screw hole, the upper and lower outer frame bone grafting through hole is communicated with the upper and lower inner bone grafting fusion device mounting groove at the front side of the outer frame after the inner bone grafting fusion device is inserted into the outer frame mounting groove, the support test mold can be inserted into the inner bone grafting fusion device mounting groove at the front side of the outer frame, the holding screw thread can be matched with the holding screw hole of the outer frame, the upper and lower outer frame end of the outer frame is provided with an upper and lower outer frame fixing screw hole, the upper and lower outer frame fixing screw hole is arranged at the front side of the outer frame is provided with an inclined fixing screw hole, the upper and lower outer frame fixing screw hole is arranged at the upper and lower outer frame fixing screw,
Therefore, when the external frame is used, the holding rod is screwed into the holding threaded hole of the supporting test mold, the supporting test mold is inserted into the lumbar intervertebral space through the holding rod to prop up the lumbar intervertebral space, then the holding rod is detached and installed on the external frame, the external frame is inserted into the lumbar intervertebral space propped up by the supporting test mold along the periphery of the supporting test mold through the holding rod, after the external frame is installed in place, the external frame is fixed on the lumbar by installing the fixing bolts on the external frame and installing the fixing bolts under the external frame, so that the external frame is stably installed without the need of fixing a post nail rod system, the wound and the operation incision are not increased, the external frame is easy to insert after the lumbar intervertebral space is propped up by the supporting test mold, the holding rod is detached from the outer frame and is arranged on the supporting test mold, the supporting test mold is taken out, finally the holding rod is detached from the supporting test mold and is arranged on the holding threaded hole of the inner bone grafting fusion device, the inner bone grafting fusion device with the bone grafting block is arranged in the inner bone grafting fusion device mounting groove at the front side of the outer frame, the inner bone grafting fusion device can be easily and stably arranged in the outer frame, under the support of the outer frame, the intervertebral space can not be restored to the original position naturally again, the bone grafting fusion device can not be extruded by the upper lumbar vertebra and the lower lumbar vertebra, the situation that the bone grafting fusion device is difficult to be beaten and placed in the intervertebral bone grafting fusion device can not be frequently caused, the bone grafting block in the beating force fusion device can not fall and be lost due to beating, and the situation of effective bone grafting quantity can not be achieved,
That is, the device consists of an inner fusion cage body and an outer frame, namely, after a supporting test mold enters an intervertebral space, the supporting test mold is not directly taken out, but the outer frame is directly put in along the periphery of the supporting test mold, the supporting test mold plays a role in keeping the intervertebral space open, then the supporting test mold is taken out, and then the inner bone grafting fusion cage matched with bone grafting is put in along an inner track of the outer frame, so that the characteristic of high success rate of operation is realized.
Further, the slotting chisel comprises a slotting chisel, an upward-lifting external frame fixing pin is arranged on the external frame, an external frame fixing pin slot is arranged on the external frame fixing pin, an external frame fixing pin expanding insert is arranged in the external frame fixing pin slot, the external frame fixing pin expanding insert is larger than the external frame fixing pin slot, after the external frame fixing pin expanding insert is inserted into the external frame fixing pin slot, the external frame fixing pin is expanded towards two sides, an external frame fixing pin expanding insert positioning slot is arranged on the inner wall of the external frame fixing pin slot, an external frame fixing pin expanding insert positioning raised strip is arranged on the outer wall of the external frame fixing pin expanding insert, the external frame fixing pin expanding insert positioning raised strip is matched with the external frame fixing pin expanding insert positioning slot,
Therefore, the effect is, when using, chisel out the fixed plug slot of external frame on the lumbar vertebra through fluting chisel, external frame fixed plug on the external frame inserts in the fluting chisel out slot, only need with external frame fixed plug strut the inserted sheet insert external frame fixed plug slot in, external frame fixed plug will strut to both sides, make the outer wall of external frame fixed plug and the inseparable butt cooperation of slot inner wall that fluting chisel out, make external frame firm installation, the installation is very convenient, and external frame fixed plug strut the inserted sheet location sand grip insert external frame fixed slot after, make external frame fixed plug strut the inserted sheet insert the time more steady, can not reciprocate and walk the off tracking, avoid external frame fixed plug strut the inserted sheet insert the lumbar vertebra, thereby the installation is more smooth, the success rate is higher, external frame fixed plug strut the inserted sheet insert also can be more firm after installing.
Further, the outer frame fixing pins comprise an outer frame left upper fixing pin, an outer frame left lower fixing pin, an outer frame right upper fixing pin and an outer frame right lower fixing pin, and the outer frame left upper fixing pin, the outer frame left lower fixing pin, the outer frame right upper fixing pin and the outer frame right lower fixing pin are distributed on the upper side and the lower side of the outer frame in pairs, and are fixed on four corners of the outer frame due to the fact that the four outer frame fixing pins are arranged.
Further, the slotting chisel comprises a slotting chisel bit, a slotting chisel sleeve and a slotting chisel beating boss, the slotting chisel bit comprises a bit frame beam, a bit frame left vertical beam and a bit frame right vertical beam, the bit frame beam is arranged at the front end of the slotting chisel sleeve, the slotting chisel beating boss is arranged at the tail end of the slotting chisel sleeve, the bit frame left vertical beam is arranged at the left end of the bit frame beam, the bit frame right vertical beam is arranged at the right end of the bit frame beam, the upper end of the bit frame left vertical beam is provided with an upper left bit, the lower end of the bit frame left vertical beam is provided with a lower left bit, the upper end of the bit frame right vertical beam is provided with an upper right bit, the lower end of the right vertical beam of the tool bit frame is provided with a right lower tool bit, the tool bit frame cross beam, the left vertical beam of the tool bit frame, the right vertical beam of the tool bit frame, the left upper tool bit, the left lower tool bit, the right upper tool bit and the right lower tool bit are matched to form a cutting tool bit displacement space, the support test die can enter the cutting tool bit displacement space, the tool bit frame cross beam is provided with a tool bit frame cross beam displacement hole, the cutting tool bit frame cross beam displacement hole, the hole on the cutting tool sleeve and the cutting tool tapping boss displacement Kong Yici are communicated, so that the tool bit frame cross beam, the cutting tool sleeve and the cutting tool tapping boss sleeve are sleeved on the holding rod and can move back and forth,
Therefore, the utility model has the advantages that when in use, the beam of the cutter head frame, the sleeve of the slotting chisel and the knocking boss of the slotting chisel are sleeved on the holding rod, the supporting test die can enter the displacement space of the slotting chisel, which is equivalent to the claw shape of the slotting chisel, the supporting test die can be inserted into the hollow part of the claw-shaped slotting chisel, the front and back movement can be realized, thus, the external frame fixed pin installation groove can be opened by the slotting chisel only through the hammer, the supporting test die can be slotted without disassembly, the depth of the groove is deeper, the supporting test die enters the displacement space of the slotting chisel,
And tool bit frame crossbeam, fluting chisel sleeve pipe and fluting chisel beat boss cover and establish behind the grip lever, grip lever play the locate action to the fluting chisel, prevent that the fluting chisel from rocking about when fluting for it is more laborsaving accurate when fluting, prevent that the groove from opening the off tracking, have four tool bits of upper left tool bit, lower left tool bit, upper right tool bit and lower right tool bit in addition, can offer four external frame fixed pin mounting grooves simultaneously.
Further, the front ends of the left upper tool bit, the left lower tool bit, the right upper tool bit and the right lower tool bit are all obliquely arranged, the front end of the left upper tool bit is provided with a left upper tool bit slot so that the left upper tool bit is provided with a left upper tool bit positioning tip, the inner wall of the left upper tool bit is provided with a left upper tool bit bone slot, the left upper tool bit slot is communicated with the left upper tool bit bone slot, the front end of the left lower tool bit is provided with a left lower tool bit positioning tip, the inner wall of the left lower tool bit is provided with a left lower tool bit bone slot, the left upper tool bit bone slot is communicated with the left lower tool bit bone slot, the front end of the right upper tool bit is provided with a right upper tool bit slot so that the right upper tool bit is positioned on the right upper tool bit, the inner wall of the right upper tool bit is provided with a right upper tool bit bone slot, the front end of the right lower tool bit is provided with a right lower tool bit bone slot so that the left lower tool bit bone slot is communicated with the right upper tool bit bone slot, the front end of the left lower tool bit is provided with a right lower tool bit bone slot,
Therefore, the effect is, when using, upper left tool bit location point portion, lower left tool bit location point portion, upper right tool bit location point portion and lower right tool bit location point portion can insert the lumbar vertebrae more easily, play the positioning action, the piece that the fluting produced can follow upper left tool bit slotting, upper left tool bit play bone groove, lower left tool bit slotting, upper right tool bit play bone groove, lower right tool bit slotting and lower right tool bit play bone groove and fall out for the fluting tool bit is smooth when advancing, and the resistance is littleer, prevents to beat excessively and produces the injury to the patient.
Further, the anti-rotation positioning pin is arranged on the slotting chisel beating boss, the front end of the anti-rotation positioning pin enters the slotting chisel beating boss displacement hole, the holding rod is provided with an anti-rotation positioning groove, when the slotting chisel beating boss is sleeved on the holding rod, the anti-rotation positioning pin on the slotting chisel beating boss enters the anti-rotation positioning groove to be in butt fit,
Therefore, the anti-rotation positioning pin on the knocking boss of the slotting chisel enters the anti-rotation positioning groove to be in butt fit when the slotting chisel is used, the slotting chisel can be prevented from rotating, the slotting chisel can only move forwards and backwards, and slotting is more accurate.
The invention is further described below with reference to the drawings and detailed description.
Drawings
Fig. 1 is a schematic structural view of a support test mold, a holding rod and a slotting chisel of a side access screw integrated frame type lumbar intervertebral fusion device provided by the invention;
Fig. 2 is a second schematic structural view of a supporting test mold, a holding rod and a slotting chisel of the side access screw integrated frame type lumbar intervertebral fusion device provided by the invention;
Fig. 3 is a schematic structural view of a support test mold, a holding rod and an external frame of the side access screw integrated frame type lumbar intervertebral cage according to the present invention;
fig. 4 is a schematic structural view of an external frame and an internal bone grafting fusion device of a side access screw integrated frame type lumbar intervertebral fusion device according to the present invention;
FIG. 5 is a schematic view of a second embodiment of an external frame and an internal bone graft fusion cage of a side access screw integrated frame lumbar interbody fusion cage according to the present invention;
Fig. 6 is a schematic structural view of an external frame of a side access screw integrated frame lumbar interbody fusion cage provided by the present invention;
fig. 7 is a schematic structural view of an internal bone grafting fusion device of a lateral approach screw integrated frame type lumbar intervertebral fusion device provided by the invention;
Fig. 8 is a schematic structural view of a supporting test mold of a side access screw integrated frame lumbar interbody fusion cage provided by the invention;
Fig. 9 is a schematic structural view of a holding rod and an external frame of a side access screw integrated frame type lumbar intervertebral cage according to the present invention;
Fig. 10 is a schematic structural view of a holding rod and an internal bone grafting fusion device of a lateral approach screw integrated frame type lumbar intervertebral fusion device provided by the invention;
FIG. 11 is a schematic structural view of a slotted chisel of a side access screw integrated frame lumbar interbody fusion cage according to the present invention;
figure 12 is a schematic diagram of a side access screw integrated frame type lumbar interbody fusion cage slotted chisel of the second embodiment of the present invention;
figure 13 is a schematic diagram III of a grooved chisel of a side access screw integrated frame lumbar interbody fusion cage according to the present invention;
Figure 14 is a schematic structural view of a slotted chisel of a side access screw integrated frame lumbar interbody fusion cage according to the present invention;
Fig. 15 is a schematic structural view of an external frame fixing pin expanding insert for a side access screw integrated frame lumbar interbody fusion cage according to the present invention.
Detailed Description
As shown in fig. 1 to 15, the embodiment of a lateral implantation screw integrated frame type lumbar intervertebral fusion device provided by the invention comprises a support test mold 1, a holding rod 2, an outer frame 4 and an inner bone grafting fusion device 5, wherein the support test mold 1 is an arc support plate, the support test mold 1 is provided with a holding threaded hole 6 of the support test mold, the front end of the holding rod 2 is provided with a holding rod thread 7, the outer frame 4 is provided with an outer frame holding threaded hole 8, an outer frame bone grafting upper through hole 10 and an outer frame front inner bone grafting fusion device mounting groove 11, the inner bone grafting fusion device 5 is provided with an inner bone grafting fusion device upper and lower bone grafting hole 12 and an inner bone grafting fusion device holding threaded hole 13, after the inner bone grafting fusion device 5 is inserted into the outer frame front inner bone grafting fusion device mounting groove 11, the upper and lower through holes 10 of the outer frame bone grafting are communicated with the upper and lower bone grafting holes 12 of the inner bone grafting fusion device, the supporting test die 1 can be inserted into the inner bone grafting fusion device mounting groove 11 at the front side of the outer frame, the holding rod screw thread 7 can be matched with the holding screw hole 6 of the supporting test die, the holding rod screw thread 7 can be matched with the holding screw hole 8 of the outer frame, the holding rod screw thread 7 can be matched with the holding screw hole 13 of the inner bone grafting fusion device, the upper end of the front side of the outer frame 4 is provided with an outer frame upper mounting fixing vertical plate b1, the outer frame upper mounting fixing vertical plate b1 is provided with an outer frame upper mounting fixing inclined screw hole b2 which is obliquely arranged, the outer frame upper mounting fixing inclined screw hole b2 is provided with an outer frame upper mounting fixing bolt b3, the lower mounting fixing vertical plate b4 is arranged at the front side lower end of the outer frame 4, the outer frame lower mounting fixing vertical piece b4 is provided with an outer frame lower mounting fixing inclined threaded hole b5 which is arranged obliquely downwards, and the outer frame lower mounting fixing inclined threaded hole b5 is provided with an outer frame lower mounting fixing bolt b6.
Including slotting chisel 3, be equipped with the outer frame fixed pin 9 that rises on the outer frame 4, be equipped with outer frame fixed pin slot 14 on the outer frame fixed pin 9, be equipped with outer frame fixed pin and strut inserted sheet 15 in the outer frame fixed pin slot 14, outer frame fixed pin struts inserted sheet 15 is greater than outer frame fixed pin slot 14, outer frame fixed pin struts inserted sheet 15 inserts in the outer frame fixed pin slot 14 after, outer frame fixed pin 9 struts to both sides, be equipped with outer frame fixed pin and strut inserted sheet constant head tank 16 on the inner wall of outer frame fixed pin slot 14, be equipped with outer frame fixed pin and strut inserted sheet constant head tank 17 on the outer wall of outer frame fixed pin struts inserted sheet 15, outer frame fixed pin struts inserted sheet constant head tank 16 cooperatees.
The outer frame fixing pins 9 comprise an outer frame left upper fixing pin 18, an outer frame left lower fixing pin 19, an outer frame right upper fixing pin 20 and an outer frame right lower fixing pin 21, and the outer frame left upper fixing pin 18, the outer frame left lower fixing pin 19, the outer frame right upper fixing pin 20 and the outer frame right lower fixing pin 21 are distributed on the upper side and the lower side of the outer frame 4 in pairs.
The slotting chisel 3 comprises a slotting chisel bit a1, a slotting chisel sleeve a2 and a slotting chisel beating boss a3, the slotting chisel bit a1 comprises a bit frame beam a4, a bit frame left vertical beam a5 and a bit frame right vertical beam a6, the bit frame beam a4 is arranged at the front end of the slotting chisel sleeve a2, the slotting chisel beating boss a3 is arranged at the tail end of the slotting chisel sleeve a2, the bit frame left vertical beam a5 is arranged at the left end of the bit frame beam a4, the bit frame right vertical beam a6 is arranged at the right end of the bit frame beam a4, the upper end of the bit frame left vertical beam a5 is provided with an upper left bit a7, the lower end of the bit frame left vertical beam a5 is provided with a lower left bit a8, the upper end of the bit frame right vertical beam a6 is provided with an upper right bit a9, the lower end of the bit frame right vertical beam a6 is provided with a lower right bit a10, the tool bit frame beam a4, the tool bit frame left vertical beam a5, the tool bit frame right vertical beam a6, the left upper tool bit a7, the left lower tool bit a8, the right upper tool bit a9 and the right lower tool bit a10 are matched to form a slotting cutter bit displacement space a11, the support test die 1 can enter the slotting cutter bit displacement space a11, the tool bit frame beam a4 is provided with a tool bit frame beam displacement hole a12, a slotting cutter beating boss displacement hole a13 is formed in a slotting cutter beating boss a3, and the tool bit frame beam displacement hole a12, a hole in a slotting cutter sleeve a2 and the slotting cutter beating boss displacement hole a13 are sequentially communicated, so that the tool bit frame beam a4, the slotting cutter sleeve a2 and the slotting cutter beating boss a3 are sleeved on the holding rod 2 and can move back and forth.
The front ends of the left upper cutter head a7, the left lower cutter head a8, the right upper cutter head a9 and the right lower cutter head a10 are all obliquely arranged, the front end of the left upper cutter head a7 is provided with a left upper cutter head slotting a14, the left upper cutter head a7 is provided with a left upper cutter head locating tip a15, the inner wall of the left upper cutter head a7 is provided with a left upper cutter head slotting a16, the left upper cutter head slotting a14 is communicated with the left upper cutter head slotting a16, the front end of the left lower cutter head a8 is provided with a left lower cutter head slotting a17, the left lower cutter head slotting a19 is arranged on the inner wall of the left lower cutter head a8, the left upper cutter head slotting a16 is communicated with the left lower cutter head slotting a19, the front end of the right upper cutter head slotting a9 is provided with a right upper cutter head slotting a20, the right upper cutter head slotting a21 is communicated with the right lower cutter head slotting a22, the right cutter head slotting a25 is arranged on the inner wall of the right lower cutter head slotting a10, the left lower cutter head slotting a9 is communicated with the right lower cutter head slotting a10, and the lower cutter head slotting a25 is arranged on the inner wall of the right lower cutter head slotting a 10.
The anti-rotation positioning pin a26 is arranged on the slotting chisel beating boss a3, the front end of the anti-rotation positioning pin a26 enters the slotting chisel beating boss displacement hole a13, the holding rod 2 is provided with an anti-rotation positioning groove a27, and when the slotting chisel beating boss a3 is sleeved on the holding rod 2, the anti-rotation positioning pin a26 on the slotting chisel beating boss a3 enters the anti-rotation positioning groove a27 to be in butt fit.
The external frame 4 and the internal bone grafting fusion device 5 are fixed through screw bolts screwed into the external frame holding threaded holes 8, the tail parts of the screw bolts on the external frame holding threaded holes 8 are pressed on the external frame 4 and the internal bone grafting fusion device 5, and the structure enables the external frame holding threaded holes to be dual-purpose, one is holding, the other is fixing the external frame 4 and the internal bone grafting fusion device, and the structure is simple and convenient to install.
As required, detailed embodiments of the present invention are disclosed herein, but it is to be understood that the disclosed embodiments are merely exemplary of the invention that may be embodied in various and alternative forms. The figures are not necessarily drawn to scale. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a representative basis for teaching one skilled in the art to variously employ the present invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.

Claims (1)

1. A side access screw integration frame lumbar vertebrae interbody fusion cage which characterized in that: the device comprises a supporting test die (1), a holding rod (2), an outer frame (4) and an inner bone grafting fusion device (5), wherein the supporting test die (1) is an arc supporting plate, the supporting test die (1) is provided with a supporting test die holding threaded hole (6), the front end of the holding rod (2) is provided with a holding rod thread (7), the outer frame (4) is provided with an outer frame holding threaded hole (8), an upper through hole (10) of an outer frame bone grafting and a lower through hole (11) of the outer frame and an inner bone grafting fusion device mounting groove (11) on the front side of the outer frame, the inner bone grafting fusion device (5) is provided with an inner bone grafting fusion device upper and lower bone grafting hole (12) and an inner bone grafting fusion device holding threaded hole (13), after the inner bone grafting fusion device (5) is inserted into the inner bone grafting fusion device mounting groove (11) on the front side of the outer frame, the upper through hole (10) of the outer frame bone grafting and the lower through hole (12) are communicated with each other, the supporting test die (1) can be inserted into the inner bone grafting fusion device mounting groove (11) on the front side of the outer frame, the supporting test die (1) can be matched with the holding threaded hole (7) in the holding threaded hole (11) on the front side of the inner frame, the front side upper end of the outer frame (4) is provided with an outer frame upper mounting fixing vertical piece (b 1), the outer frame upper mounting fixing vertical piece (b 1) is provided with an outer frame upper mounting fixing oblique threaded hole (b 2) which is obliquely arranged upwards, the outer frame upper mounting fixing oblique threaded hole (b 2) is provided with an outer frame upper mounting fixing bolt (b 3), the front side lower end of the outer frame (4) is provided with an outer frame lower mounting fixing vertical piece (b 4), the outer frame lower mounting fixing vertical piece (b 4) is provided with an outer frame lower mounting fixing oblique threaded hole (b 5) which is obliquely arranged downwards, and the outer frame lower mounting fixing oblique threaded hole (b 5) is provided with an outer frame lower mounting fixing bolt (b 6);
The external frame fixing pin (9) is arranged on the external frame (4) and is vertically upwards lifted, the external frame fixing pin (9) is used for being inserted into a slot formed in the lumbar vertebra by the slotting chisel (3), an external frame fixing pin slot (14) is arranged on the external frame fixing pin (9), an external frame fixing pin expanding insert piece (15) is arranged in the external frame fixing pin slot (14), the external frame fixing pin expanding insert piece (15) is larger than the external frame fixing pin slot (14), after the external frame fixing pin expanding insert piece (15) is inserted into the external frame fixing pin slot (14), the external frame fixing pin (9) is expanded to two sides, an external frame fixing pin expanding insert piece positioning groove (16) is arranged on the inner wall of the external frame fixing pin slot (14), an external frame fixing pin expanding insert piece positioning protruding strip (17) is arranged on the outer wall of the external frame fixing pin expanding insert piece (15), and the external frame fixing pin expanding protruding strip positioning protruding strip (17) is matched with the external frame fixing pin expanding insert piece positioning groove (16);
The outer frame fixing pins (9) comprise outer frame left upper fixing pins (18), outer frame left lower fixing pins (19), outer frame right upper fixing pins (20) and outer frame right lower fixing pins (21), and the outer frame left upper fixing pins (18), the outer frame left lower fixing pins (19), the outer frame right upper fixing pins (20) and the outer frame right lower fixing pins (21) are distributed on the upper side and the lower side of the outer frame (4) in pairs;
The slotting chisel (3) comprises a slotting chisel bit (a 1), a slotting chisel sleeve (a 2) and a slotting chisel beating boss (a 3), the slotting chisel bit (a 1) comprises a bit frame cross beam (a 4), a bit frame left vertical beam (a 5) and a bit frame right vertical beam (a 6), the bit frame cross beam (a 5) is arranged at the front end of the slotting chisel sleeve (a 2), the slotting chisel beating boss (a 3) is arranged at the tail end of the slotting chisel sleeve (a 2), the bit frame left vertical beam (a 5) is arranged at the left end of the bit frame cross beam (a 4), the bit frame right vertical beam (a 6) is arranged at the right end of the bit frame cross beam (a 4), the upper end of the bit frame left vertical beam (a 5) is provided with an upper left bit (a 7), the lower end of the bit frame left vertical beam (a 5) is provided with a lower left bit (a 8), the upper end of the bit frame right vertical beam (a 6) is provided with an upper bit 9, the lower bit frame (a) is formed with a lower bit frame (a) and the lower bit frame (a) is matched with the left bit frame (a 5), the lower bit frame (a) is formed with the left bit frame (a 5), the bit frame lower bit (a 5) is matched with the bit frame lower bit (a 5) and the bit frame lower bit (a 5) is formed with the bit frame lower bit (a 5), the support test die (1) can enter a slotting chisel bit displacement space (a 11), a bit frame beam (a 4) is provided with a bit frame beam displacement hole (a 12), a slotting chisel beating boss (a 3) is provided with a slotting chisel beating boss displacement hole (a 13), and the bit frame beam displacement hole (a 12), a hole on a slotting chisel sleeve (a 2) and the slotting chisel beating boss displacement hole (a 13) are communicated in sequence, so that the bit frame beam (a 4), the slotting chisel sleeve (a 2) and the slotting chisel beating boss (a 3) are sleeved on the holding rod (2) and can move back and forth;
The front ends of the left upper cutter (a 7), the left lower cutter (a 8), the right upper cutter (a 9) and the right lower cutter (a 10) are all obliquely arranged, the front end of the left upper cutter (a 7) is provided with a left upper cutter slotting (a 14) so that the left upper cutter (a 7) is provided with a left upper cutter positioning tip part (a 15), the inner wall of the left upper cutter (a 7) is provided with a left upper cutter slotting (a 16), the left upper cutter slotting (a 14) is communicated with the left upper cutter slotting (a 16), the front end of the left lower cutter (a 8) is provided with a left lower cutter slotting (a 17) so that the left lower cutter (a 8) is provided with a left lower cutter positioning tip part (a 18), the inner wall of the left lower cutter (a 8) is provided with a left lower cutter slotting (a 19), the left upper cutter slotting (a 16) is communicated with the left lower cutter positioning tip part (a 19), the left upper cutter slotting (a 16) is communicated with the left upper cutter slotting (a 20), the front end of the right upper cutter (a 20) is provided with the front end of the right upper cutter (a 9) and the front end of the right upper cutter (a 20), the lower right cutter head (a 10) is provided with a lower right cutter head positioning tip (a 24), a lower right cutter head bone outlet groove (a 25) is formed in the inner wall of the lower right cutter head (a 10), the lower right cutter head slotting (a 23) is communicated with the lower right cutter head bone outlet groove (a 25), and the upper right cutter head bone outlet groove (a 22) and the lower right cutter head bone outlet groove (a 25) are oppositely arranged;
The anti-rotation positioning pin (a 26) is arranged on the slotting chisel beating boss (a 3), the front end of the anti-rotation positioning pin (a 26) enters the slotting chisel beating boss displacement hole (a 13), the holding rod (2) is provided with an anti-rotation positioning groove (a 27), and when the slotting chisel beating boss (a 3) is sleeved on the holding rod (2), the anti-rotation positioning pin (a 26) on the slotting chisel beating boss (a 3) enters the anti-rotation positioning groove (a 27) to be in butt fit;
The external frame (4) and the internal bone grafting fusion device (5) are fixed through screw bolts screwed into the external frame holding threaded holes (8), and the tail parts of the screw bolts on the external frame holding threaded holes (8) are tightly pressed on the external frame (4) and the internal bone grafting fusion device (5).
CN201810115219.4A 2018-02-06 2018-02-06 Integrated frame type lumbar intervertebral cage with lateral access screw Active CN108186168B (en)

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CN111588521B (en) * 2020-05-29 2023-02-03 四川大学华西医院 Cervical vertebra side front approach double-cortical fixation uncinate vertebra joint fusion cage
CN111714167A (en) * 2020-06-15 2020-09-29 中国人民解放军总医院 Split-assembly type lateral approach lumbar intervertebral fusion system
CN112022452A (en) * 2020-08-13 2020-12-04 温州医科大学附属第二医院、温州医科大学附属育英儿童医院 Combined lateral approach lumbar interbody fusion cage

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CN1555771A (en) * 2004-01-05 2004-12-22 贾连顺 Cap type cervical vertebra pyramid fusion apparatus
WO2006033067A2 (en) * 2004-09-23 2006-03-30 Spine Solutions Inc. System and method for an intervertebral implant
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