CN216695634U - Tumor sampling device for medical oncology - Google Patents

Tumor sampling device for medical oncology Download PDF

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Publication number
CN216695634U
CN216695634U CN202220017312.3U CN202220017312U CN216695634U CN 216695634 U CN216695634 U CN 216695634U CN 202220017312 U CN202220017312 U CN 202220017312U CN 216695634 U CN216695634 U CN 216695634U
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China
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fixedly connected
groove
sampling
round
oncology
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Expired - Fee Related
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CN202220017312.3U
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Chinese (zh)
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宁廷忠
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Individual
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Individual
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Abstract

The utility model discloses a tumor sampling device for medical oncology, which comprises a workbench and is characterized in that: the workstation fixed connection riser, the U-shaped pole two of workstation fixed connection symmetry, the workstation is provided with half slot and cross slot, the half slot intercommunication the cross slot, workstation fixed connection sampling mechanism. The utility model relates to the field of sampling equipment, in particular to a tumor sampling device for medical oncology. The utility model relates to a tumor sampling device for medical oncology, which is beneficial to realizing tumor sampling.

Description

Tumor sampling device for medical oncology
Technical Field
The utility model relates to the field of sampling equipment, in particular to a tumor sampling device for medical oncology.
Background
Tumor is a new organism formed by local tissue cell proliferation under the action of various tumorigenic factors, because the new organism mostly presents space-occupying blocky bulges, also called neoplasms, and the internal components of the tumor need to be sampled and decomposed to treat patients. Tumor sampling refers to small-scale sampling and assay according to the tumor condition of a patient, so as to achieve the purpose of diagnosing malignancy and facilitate the symptomatic treatment of doctors.
When the small pieces are processed, they are uniformly sliced again to perform a physicochemical test. At present, slicing again mainly depends on manual work, and the efficiency is lower, moreover, is difficult to guarantee that the slice thickness is unanimous. This is a disadvantage of the prior art.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a tumor sampling device for medical oncology, which is beneficial to realizing tumor sampling.
The utility model adopts the following technical scheme to realize the purpose of the utility model:
the utility model provides a tumour sampling device for medical oncology, includes the workstation, characterized by: the workstation fixed connection riser, the U-shaped pole two of workstation fixed connection symmetry, the workstation is provided with half slot and cross slot, the half slot intercommunication the cross slot, workstation fixed connection sampling mechanism.
As a further limitation of the technical solution, the sampling mechanism includes a motor, the working platform is fixedly connected to the motor, and an output shaft of the motor passes through the working platform.
As a further limitation of the technical scheme, the output shaft of the motor is fixedly connected with a sliding chute, a square block is arranged in the sliding chute, the square block is fixedly connected with a second round rod, and the second round rod is hinged with a cross block.
As a further limitation of the present technical solution, the second round bar matches the semicircular groove, and the second round bar matches the transverse groove.
As a further limitation of the technical scheme, two symmetrical U-shaped rods respectively penetrate through one end of a cross groove, and the cross groove is fixedly connected with a straight groove.
As a further limitation of the technical scheme, a round rod of the L-shaped rod III is arranged in the straight groove, the L-shaped rod III is fixedly connected with a round shaft, the round shaft bearing is connected with the vertical plate, and the round shaft is fixedly connected with a group of uniformly distributed round rods I.
As a further limitation of the present invention, the cross block is disposed in the cross slot.
As a further limitation of the technical scheme, the cross block is fixedly connected with a second L-shaped rod, and the second L-shaped rod is fixedly connected with a rack.
As a further limitation of the technical scheme, the workbench bearing is connected with a central shaft of a gear, the gear is matched with the rack, and the central shaft of the gear is fixedly connected with a first L-shaped rod.
As a further inject of this technical scheme, the round bar setting of L shape pole one is in the square groove, the square groove passes through spring fixed connection the workstation, square groove fixed connection U-shaped pole one, the montant of U-shaped pole one passes the workstation, a U-shaped pole fixed connection cutting board, a set of evenly distributed's of cutting board fixed connection cutter, a set of the cutter matches a set of the round bar one.
Compared with the prior art, the utility model has the advantages and positive effects that:
(1) according to the device, the first round rod is arranged, so that a small piece can be conveniently placed when the first round rod swings upwards, and the small piece is pressed when the first round rod is horizontal, so that slicing is convenient;
(2) the device is provided with the group of cutters, and the cutters realize uniform slicing of the small pieces, so that the follow-up physical and chemical tests are conveniently realized;
(3) this device passes through the motor and drives, under the drive of relevant component, realizes that the round bar one presses down the small piece, and the section is realized to the cutter, easy operation, and it is convenient to realize.
The utility model relates to a tumor sampling device for medical oncology, which is beneficial to realizing tumor sampling.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a partial perspective view of the first embodiment of the present invention.
Fig. 3 is a partial perspective view of the second embodiment of the present invention.
Fig. 4 is a schematic view of a partial three-dimensional structure of the present invention.
Fig. 5 is a partial perspective view illustrating a fourth embodiment of the present invention.
Fig. 6 is a schematic perspective view of the present invention.
In the figure: 1. the cutting tool comprises a cutting board, 2, a cutter, 3, a first round rod, 4, a round shaft, 5, a first U-shaped rod, 7, a square groove, 8, a workbench, 9, a spring, 10, a first L-shaped rod, 11, a motor, 12, a vertical plate, 13, a second U-shaped rod, 14, a semicircular groove, 15, a transverse groove, 16, a straight groove, 17, a sliding groove, 18, a cross groove, 19, a square block, 20, a second round rod, 21, a rack, 22, a gear, 23, a second L-shaped rod, 24, a cross block, 25 and a third L-shaped rod.
Detailed Description
Specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings, but it should be understood that the scope of the present invention is not limited to the specific embodiments.
The first embodiment is as follows: the automatic sampling device comprises a workbench 8, wherein the workbench 8 is fixedly connected with a vertical plate 12, the workbench 8 is fixedly connected with two symmetrical U-shaped rods 13, the workbench 8 is provided with a semicircular groove 14 and a transverse groove 15, the semicircular groove 14 is communicated with the transverse groove 15, and the workbench 8 is fixedly connected with a sampling mechanism.
The sampling mechanism comprises a motor 11, the workbench 8 is fixedly connected with the motor 11, and an output shaft of the motor 11 penetrates through the workbench 8.
The motor 11 is a 6GU300K speed reducing motor.
An output shaft of the motor 11 is fixedly connected with a sliding groove 17, a square block 19 is arranged in the sliding groove 17, the square block 19 is fixedly connected with a second round rod 20, and the second round rod 20 is hinged with a cross block 24.
The second round rod 20 is matched with the semicircular groove 14, and the second round rod 20 is matched with the transverse groove 15.
The two symmetrical U-shaped rods 13 respectively penetrate through one end of a cross groove 18, and the cross groove 18 is fixedly connected with a straight groove 16.
The straight flute 16 is internally provided with a round rod with a third L-shaped rod 25, the third L-shaped rod 25 is fixedly connected with a round shaft 4, the round shaft 4 is in bearing connection with the vertical plate 12, and the round shaft 4 is fixedly connected with a group of evenly distributed round rods 3.
The cross block 24 is disposed within the cross slot 18.
The working flow of this embodiment is: in the initial state, as shown in fig. 1, the second rod 20 is located at the upper end of the semicircular groove 14.
The small piece is placed on the workbench 8, the motor 11 is started, the motor 11 drives the sliding groove 17 to swing, the sliding groove 17 drives the square block 19 to swing, the square block 19 drives the round rod two 20 to move along the semicircular groove 14, the round rod two 20 drives the square block 19 to move along the sliding groove 17, the round rod two 20 drives the cross block 24 to swing and simultaneously move along the cross groove 18, the cross block 24 drives the cross groove 18 to move along the U-shaped rod two 13, the cross groove 18 drives the straight groove 16 to move, the straight groove 16 drives the L-shaped rod three 25 to swing, the L-shaped rod three 25 drives the round shaft 4 to rotate, the round shaft 4 drives the round rod one 3 to swing, when the round rod two 20 is located at the joint of the semicircular groove 14 and the transverse groove 15, the round rod one 3 horizontally presses the small piece, and the motor 11 is closed. The small pieces were evenly sliced manually using a cutter.
Example two: in this embodiment, based on the first embodiment, the cross block 24 is fixedly connected to the second L-shaped rod 23, and the second L-shaped rod 23 is fixedly connected to the rack 21.
The workbench 8 is in bearing connection with a central shaft of a gear 22, the gear 22 is matched with the rack 21, and the central shaft of the gear 22 is fixedly connected with the first L-shaped rod 10.
The round bar of the L-shaped rod I10 is arranged in the square groove 7, the square groove 7 is fixedly connected with the workbench 8 through the spring 9, the square groove 7 is fixedly connected with the U-shaped rod I5, the vertical rod of the U-shaped rod I5 penetrates through the workbench 8, the U-shaped rod I5 is fixedly connected with the knife board 1, the knife board 1 is fixedly connected with a set of uniformly distributed cutters 2, and the cutters 2 are matched with one set of round bar I3.
The working flow of this embodiment is: in the initial state, as shown in fig. 1, the second rod 20 is located at the upper end of the semicircular groove 14.
Placing the small pieces on a workbench 8, turning on a motor 11, driving a sliding chute 17 to swing by the motor 11, driving a square block 19 to swing by the sliding chute 17, driving a second round rod 20 to move along a semicircular groove 14 by the square block 19, driving the square block 19 to move along the sliding chute 17 by the second round rod 20, driving a cross block 24 to swing and simultaneously move along a cross groove 18 by the second round rod 20, driving an L-shaped rod 23 and a rack 21 to swing by the cross block 24, driving the cross groove 18 to move along a second U-shaped rod 13 by the cross block 24, driving a straight groove 16 to move by the cross groove 18, driving a third L-shaped rod 25 to swing, driving a round shaft 4 to rotate by the third L-shaped rod 25, driving the first round rod 3 to swing by the round shaft 4, when the second round rod 20 is positioned at the joint of the semicircular groove 14 and the transverse groove 15, pressing the small pieces horizontally by the first round rod 3, starting to be meshed with a rack 21, driving the second round rod 20 to move along the transverse groove 15, driving the cross block 24 to move horizontally, and preventing the cross block 24 from driving the cross groove 18 to move, the cross block 24 drives the second L-shaped rod 23 and the rack 24 to move, the rack 24 drives the gear 22 to rotate, the gear 22 drives the first L-shaped rod 10 to swing and move along the square groove 7 simultaneously, the square groove 7 stretches the spring 9, the square groove 7 drives the first U-shaped rod 5 to move downwards, the first U-shaped rod 5 drives the knife board 1 and the cutter 2 to move downwards, the cutter 2 contacts with the small piece downwards to uniformly cut the small piece, the second round rod 20 moves to the end part of the transverse groove 15, the cutter 2 contacts with the workbench 8, the motor 11 is reversely turned on, the device is enabled to be restored to the state shown in the figure 1, and the motor 11 is turned off.
The above disclosure is only one specific embodiment of the present invention, but the present invention is not limited thereto, and any variations that can be made by those skilled in the art are intended to fall within the scope of the present invention.

Claims (10)

1. A tumour sampling device for oncology, includes workstation (8), characterized by:
the workbench (8) is fixedly connected with a vertical plate (12), and the workbench (8) is fixedly connected with a second symmetrical U-shaped rod (13);
the workbench (8) is provided with a semicircular groove (14) and a transverse groove (15), and the semicircular groove (14) is communicated with the transverse groove (15);
the workbench (8) is fixedly connected with the sampling mechanism.
2. The device for oncology sampling of claim 1, wherein: the sampling mechanism comprises a motor (11), the workbench (8) is fixedly connected with the motor (11), and an output shaft of the motor (11) penetrates through the workbench (8).
3. The device for oncology sampling of claim 2, wherein: an output shaft of the motor (11) is fixedly connected with a sliding groove (17), a square block (19) is arranged in the sliding groove (17), the square block (19) is fixedly connected with a second round rod (20), and the second round rod (20) is hinged with a cross block (24).
4. A tumor sampling apparatus for use in oncology according to claim 3, wherein: the second round rod (20) is matched with the semicircular groove (14), and the second round rod (20) is matched with the transverse groove (15).
5. A tumor sampling apparatus for use in oncology according to claim 3, wherein: the symmetrical U-shaped rods (13) respectively penetrate through one ends of the cross grooves (18), and the cross grooves (18) are fixedly connected with the straight grooves (16).
6. The device for oncology sampling of claim 5, wherein: the straight flute (16) is internally provided with a round rod with three L-shaped rods (25), the three L-shaped rods (25) are fixedly connected with a round shaft (4), the round shaft (4) is in bearing connection with the vertical plate (12), and the round shaft (4) is fixedly connected with a group of evenly distributed round rods (3).
7. The device for oncology sampling of claim 5, wherein: the cross block (24) is arranged in the cross groove (18).
8. The device for oncology sampling of claim 6, wherein: the cross block (24) is fixedly connected with a second L-shaped rod (23), and the second L-shaped rod (23) is fixedly connected with the rack (21).
9. The device for oncology sampling of claim 8, wherein: the workbench (8) is connected with a central shaft of a gear (22) in a bearing mode, the gear (22) is matched with the rack (21), and the central shaft of the gear (22) is fixedly connected with a first L-shaped rod (10).
10. The device for oncology sampling of claim 9, wherein: the utility model discloses a cutting tool, including workstation (8), square groove (7), cutter board (1), the round bar of L shape pole (10) sets up in square groove (7), square groove (7) are through spring (9) fixed connection workstation (8), square groove (7) fixed connection U-shaped pole (5), the montant of U-shaped pole (5) passes workstation (8), U-shaped pole (5) fixed connection cutting board (1), a set of evenly distributed's of cutting board (1) fixed connection cutter (2), a set of cutter (2) match a set of round bar (3).
CN202220017312.3U 2022-01-06 2022-01-06 Tumor sampling device for medical oncology Expired - Fee Related CN216695634U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220017312.3U CN216695634U (en) 2022-01-06 2022-01-06 Tumor sampling device for medical oncology

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220017312.3U CN216695634U (en) 2022-01-06 2022-01-06 Tumor sampling device for medical oncology

Publications (1)

Publication Number Publication Date
CN216695634U true CN216695634U (en) 2022-06-07

Family

ID=81825527

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220017312.3U Expired - Fee Related CN216695634U (en) 2022-01-06 2022-01-06 Tumor sampling device for medical oncology

Country Status (1)

Country Link
CN (1) CN216695634U (en)

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Granted publication date: 20220607

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