CN213964845U - Minimally invasive tumor treatment equipment for radiology department - Google Patents
Minimally invasive tumor treatment equipment for radiology department Download PDFInfo
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- CN213964845U CN213964845U CN202020978825.1U CN202020978825U CN213964845U CN 213964845 U CN213964845 U CN 213964845U CN 202020978825 U CN202020978825 U CN 202020978825U CN 213964845 U CN213964845 U CN 213964845U
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Abstract
The utility model discloses a minimally invasive tumor treatment device for radiology department, including laser generator, still include the organism, locate two sets of first fixing device that the organism both ends are used for two shoulders of fixed patient, locate the second fixing device that is used for fixed patient back in the middle of the organism, locate the third fixing device that the organism upper end is used for fixed patient's brain bag, locate the adjusting device that is used for adjusting the laser generator position in the middle of the organism. The utility model can be installed on the body of the patient according to the body shape of the patient, and relieves the pain of the patient in the treatment process.
Description
Technical Field
The utility model belongs to the technical field of the medical instrument technique and specifically relates to a tumour wicresoft treatment equipment of radiology department is related to.
Background
At present, neck tumors become important diseases threatening the health of people, the treatment of the neck tumors generally needs radiotherapy, the position of a laser generator of the conventional radiotherapy device is generally fixed, the position between the laser generator and an affected part is difficult to be accurately adjusted, and the treatment effect is influenced.
SUMMERY OF THE UTILITY MODEL
The utility model provides a minimally invasive tumor treatment device for radiology department, which overcomes the defects of the prior art and has good treatment effect.
In order to achieve the above purpose, the utility model adopts the following technical scheme: a minimally invasive tumor treatment device for radiology department comprises a laser generator, a body, support legs arranged at two ends of the body and matched with two shoulders of a patient, and an adjusting device arranged in the middle of the body and used for adjusting the position of the laser generator, wherein the adjusting device comprises a first arc-shaped frame, a second arc-shaped frame, one end of the second arc-shaped frame is rotatably arranged on the first arc-shaped frame, a clamping piece fixedly arranged at the other end of the second arc-shaped frame and used for fixing the other end of the first arc-shaped frame, a first T-shaped groove arranged at the inner side of the first arc-shaped frame, a second T-shaped groove arranged at the inner side of the second arc-shaped frame, an arc-shaped sliding block arranged in the first T-shaped groove, an adjusting frame fixedly arranged on the arc-shaped sliding block and used for adjusting the height of the laser generator and the distance from an affected part, a second screw rod arranged on the arc-shaped sliding block and used for fixing the arc-shaped sliding block, a circular ring rotatably arranged at the lower end of the second screw rod, and a third rotating wheel fixedly arranged at the upper end of the second screw rod, the first arc-shaped frame and the second arc-shaped frame enclose a circle; after the neck of the patient is positioned in the first arc-shaped frame, the second arc-shaped frame is rotated, so that the clamping piece on the second arc-shaped frame can fix the first arc-shaped frame and the second arc-shaped frame, the first arc-shaped frame and the second arc-shaped frame form a finished circle, the arc-shaped sliding block can move in the first T-shaped groove and the second T-shaped groove, the arc-shaped sliding block can move 360 degrees, the laser generator is driven to move 360 degrees, the tumor part is better moved to move the arc-shaped sliding block, the third rotating wheel is rotated by hand after the position is confirmed, the second screw rod is driven to move downwards, the ring is driven to move downwards, and finally the neck of the patient is propped against the first arc-shaped frame or the second arc-shaped frame, and the arc-shaped sliding block is fixed; finally, the accurate position of the laser generator is adjusted through the adjusting frame.
The adjusting frame comprises a second fixed seat, a fourth sliding seat arranged above the second fixed seat, a plurality of third guide posts penetrating through the second fixed seat and fixed on the fourth sliding seat, a third screw rod with one end rotatably arranged on the second fixed seat and arranged on the fourth sliding seat, a fourth rotating wheel fixedly arranged at the upper end of the third screw rod, a fifth sliding seat slidably arranged on the fourth sliding seat, a fourth screw rod rotatably arranged on the fourth sliding seat and arranged on the fifth sliding seat, a fifth rotating wheel fixedly arranged at one end of the fourth screw rod, a disc fixedly arranged on the fifth sliding seat, a rotating disc rotatably arranged on the disc, a motor fixedly arranged on the fifth sliding seat and used for driving the rotating disc to rotate, and an electronic telescopic rod arranged on the rotating disc, wherein the laser generator is fixedly arranged on the rotating disc, and the distance from the electronic telescopic rod to the center of the motor is equal to the distance from the laser generator to the center of the motor; firstly, rotating a fourth rotating wheel by hand to rotate a third screw rod, so that a fourth sliding seat rises, moving a fifth sliding seat arranged on the fourth sliding seat integrally along the direction of a third guide post in the rising process of the fourth sliding seat through a plurality of second guide posts arranged on the fourth sliding seat, adjusting until an electronic telescopic rod is just opposite to a tumor, stopping rising, starting the electronic telescopic rod to move towards the tumor, rotating the fifth rotating rod to rotate the fourth screw rod, so that the fifth sliding seat integrally moves towards the tumor, enabling a moving rod on the electronic telescopic rod to lightly touch the tumor part, then driving the electronic telescopic rod to close, retracting the moving rod on the electronic telescopic rod into the electronic telescopic rod, starting a motor, rotating a rotary disc by 180 degrees, even if the laser generator and the electronic telescopic rod exchange positions, starting the laser generator to treat the tumor, and controlling the distance from the laser generator to the tumor through the extending length of the moving rod on the electronic telescopic rod, and the length that the flexible pole stretches out on the electronic telescopic link at every turn is certain to guarantee that laser generator is certain to the distance of tumour, can make laser generator to the treatment of tumour best through this appointed distance.
The utility model has the advantages of it is following: move through 360 of arc slider, drive 360 removals of laser generator, finally through the position of the accurate adjustment laser generator of alignment jig, guarantee that laser generator is certain to the distance of tumour, promote treatment.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is an enlarged view of a portion a in fig. 1.
Fig. 3 is a schematic view of a part of the structure of the present invention.
Detailed Description
As shown in figures 1-3, a minimally invasive tumor therapy device for radiology department comprises a laser generator 1, a body 2, two sets of support legs 3 arranged at two ends of the body for fixing two shoulders of a patient, and an adjusting device 6 arranged in the middle of the body for adjusting the position of the laser generator, wherein the adjusting device 6 comprises a first arc-shaped frame 61, a second arc-shaped frame 62 with one end rotatably arranged on the first arc-shaped frame, a fastener 63 fixedly arranged at the other end of the second arc-shaped frame and used for fixing the other end of the first arc-shaped frame, a first T-shaped groove 64 arranged at the inner side of the first arc-shaped frame, a second T-shaped groove 65 arranged at the inner side of the second arc-shaped frame, an arc-shaped sliding block 66 arranged in the first T-shaped groove, an adjusting frame 67 fixedly arranged on the arc-shaped sliding block and used for adjusting the height and distance between the laser generator and an affected part, and a second screw 68 arranged on the arc-shaped sliding block and used for fixing the arc-shaped sliding block, A circular ring 69 arranged at the lower end of the second screw rod is rotated, a third rotating wheel 610 fixedly arranged at the upper end of the second screw rod is fixedly arranged, and the first arc-shaped frame and the second arc-shaped frame enclose a circle; the adjusting frame 67 comprises a second fixed seat 671, a fourth sliding seat 672 arranged above the second fixed seat, a plurality of third guide posts 673 penetrating through the second fixed seat and fixed on the fourth sliding seat, a third screw 674 with one end rotatably arranged on the second fixed seat and arranged on the fourth sliding seat, a fourth rotating wheel 675 fixedly arranged at the upper end of the third screw, a fifth sliding seat 676 slidably arranged on the fourth sliding seat, a fourth screw 677 rotatably arranged on the fourth sliding seat and arranged on the fifth sliding seat, a fifth rotating wheel 678 fixedly arranged at one end of the fourth screw, a disk 679 fixedly arranged on the fifth sliding seat, a rotating disk 71 rotatably arranged on the disk, a motor 72 fixedly arranged on the fifth sliding seat and used for driving the rotating disk to rotate, and an electronic telescopic rod 73 arranged on the rotating disk, the laser generator is fixedly arranged on the turntable, and the distance from the electronic telescopic rod to the center of the motor is equal to the distance from the laser generator to the center of the motor; after the neck of the patient is positioned in the first arc-shaped frame, the second arc-shaped frame is rotated, so that the clamping piece on the second arc-shaped frame can fix the first arc-shaped frame and the second arc-shaped frame, the first arc-shaped frame and the second arc-shaped frame form a finished circle, the arc-shaped sliding block can move in the first T-shaped groove and the second T-shaped groove, the arc-shaped sliding block can move 360 degrees, the laser generator is driven to move 360 degrees, the tumor part is better moved to move the arc-shaped sliding block, the third rotating wheel is rotated by hand after the position is confirmed, the second screw rod is driven to move downwards, the ring is driven to move downwards, and finally the neck of the patient is propped against the first arc-shaped frame or the second arc-shaped frame; finally, the accurate position of the laser generator is adjusted through the adjusting frame. Firstly, rotating a fourth rotating wheel by hand to rotate a third screw rod, so that a fourth sliding seat rises, moving a fifth sliding seat arranged on the fourth sliding seat integrally along the direction of a third guide post in the rising process of the fourth sliding seat through a plurality of second guide posts arranged on the fourth sliding seat, adjusting until an electronic telescopic rod is just opposite to a tumor, stopping rising, starting the electronic telescopic rod to move towards the tumor, rotating the fifth rotating rod to rotate the fourth screw rod, so that the fifth sliding seat integrally moves towards the tumor, enabling a moving rod on the electronic telescopic rod to lightly touch the tumor part, then driving the electronic telescopic rod to close, retracting the moving rod on the electronic telescopic rod into the electronic telescopic rod, starting a motor, rotating a rotary disc by 180 degrees, even if the laser generator and the electronic telescopic rod exchange positions, starting the laser generator to treat the tumor, and controlling the distance from the laser generator to the tumor through the extending length of the moving rod on the electronic telescopic rod, and the length that the flexible pole stretches out on the electronic telescopic link at every turn is certain to guarantee that laser generator is certain to the distance of tumour, can make laser generator to the treatment of tumour best through this appointed distance.
The motor and the electronic telescopic rod are purchased from the market.
Claims (4)
1. The utility model provides a minimal access therapy equipment of radiology department's tumour, includes laser generator (1), organism (2), locates organism both ends and two shoulder matched with stabilizer blades of patient, locates adjusting device (6) that are used for adjusting the laser generator position in the middle of the organism, its characterized in that: adjusting device (6) include first arc frame (61), second arc frame (62) on first arc frame is located in one end rotation, fixed be used for on the second arc frame other end with first arc fixed fastener (63), locate first arc frame inboard first T type groove, locate second arc frame inboard second T type groove (65), locate first T type inslot arc slider (66), the fixed alignment jig who is used for adjusting laser generator on the arc slider and locate the height and with the affected part distance, be used for on the arc slider to fixed second screw rod (68) to the arc slider, rotate ring (69) of locating second screw rod lower extreme, fixed third runner (610) of locating second screw rod upper end.
2. The minimally invasive treatment device for the radiology tumor according to claim 1, wherein: the first arc-shaped frame and the second arc-shaped frame enclose a circle.
3. The minimally invasive treatment device for the radiology tumor according to claim 1, wherein: the adjusting frame (67) comprises a second fixing seat (671), a fourth sliding seat (672) arranged above the second fixing seat, a plurality of third guide columns (673) penetrating through the second fixed seat and fixed on the fourth sliding seat, a third screw (674) arranged on the second fixing seat and arranged on the fourth sliding seat in a rotating mode at one end, a fourth rotating wheel (675) fixedly arranged at the upper end of the third screw, a fifth sliding seat (676) slidably arranged on the fourth sliding seat, a fourth screw (677) rotatably arranged on the fourth sliding seat and arranged on the fifth sliding seat, a fifth rotating wheel (678) fixedly arranged at one end of the fourth screw, a disc (679) fixedly arranged on the fifth sliding seat, a rotating disc (71) rotatably arranged on the disc, a motor (72) fixedly arranged on the fifth sliding seat and used for driving the rotating disc to rotate, and an electronic telescopic rod (73) arranged on the rotating disc.
4. The minimally invasive radiotherapy apparatus of claim 3, wherein: laser generator is fixed to be located on the carousel, electron telescopic link equals laser generator to motor center distance to the motor center distance.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202020978825.1U CN213964845U (en) | 2020-06-02 | 2020-06-02 | Minimally invasive tumor treatment equipment for radiology department |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202020978825.1U CN213964845U (en) | 2020-06-02 | 2020-06-02 | Minimally invasive tumor treatment equipment for radiology department |
Publications (1)
Publication Number | Publication Date |
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CN213964845U true CN213964845U (en) | 2021-08-17 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202020978825.1U Active CN213964845U (en) | 2020-06-02 | 2020-06-02 | Minimally invasive tumor treatment equipment for radiology department |
Country Status (1)
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CN (1) | CN213964845U (en) |
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2020
- 2020-06-02 CN CN202020978825.1U patent/CN213964845U/en active Active
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