CN213456683U - Microscopic examination device and gynecological secretion detection device - Google Patents

Microscopic examination device and gynecological secretion detection device Download PDF

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Publication number
CN213456683U
CN213456683U CN202022219878.8U CN202022219878U CN213456683U CN 213456683 U CN213456683 U CN 213456683U CN 202022219878 U CN202022219878 U CN 202022219878U CN 213456683 U CN213456683 U CN 213456683U
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sample
pushing
card
sample detection
detection card
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CN202022219878.8U
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刘剑
林冲
袁云东
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Shenzhen Reetoo Biotechnology Co Ltd
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Shenzhen Reetoo Biotechnology Co Ltd
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Abstract

The utility model discloses a device is examined to mirror and gynecological secretion detection device, wherein, the device is examined to mirror includes: the carrying mechanism is used for carrying the sample detection card; push away card mechanism includes: the pushing and clamping piece is arranged at the power output end of the pushing and clamping driving assembly, and the pushing and clamping driving assembly is used for driving the pushing and clamping piece to push the sample detection card into the carrying mechanism or move the sample detection card out of the carrying mechanism; and the microscope mechanism is used for carrying out microscopic scanning on the sample detection card on the carrying mechanism. The sample detection card is pushed to the loading mechanism in a mode that the pushing and clamping part is driven by the pushing and clamping driving assembly to move, operation steps are simplified, automation is realized, and detection efficiency is improved.

Description

Microscopic examination device and gynecological secretion detection device
Technical Field
The application relates to the technical field of medical equipment, in particular to a microscopic examination device and a gynecological secretion detection device.
Background
At present, the detection of gynecological secretion is mainly completed through manual operation of inspectors, a sample detection card is manually placed under a microscope, and then the microscope is used for microscopic scanning of the sample, so that diseases can be diagnosed. The manual operation mode has complex steps, wastes time and labor and seriously influences the detection efficiency.
SUMMERY OF THE UTILITY MODEL
The application aims at providing a device is examined to mirror and gynaecology secretion detection device pushes sample detection card to carrying thing mechanism through the mode that pushes away the card drive assembly drive and push away the removal of fastener, simplifies the operating procedure, realizes automaticly to improve detection efficiency.
According to a first aspect of the present application, there is provided a microscopic examination apparatus comprising:
the carrying mechanism is used for carrying the sample detection card;
push away card mechanism includes: the pushing and clamping piece is arranged at the power output end of the pushing and clamping driving assembly, and the pushing and clamping driving assembly is used for driving the pushing and clamping piece to push the sample detection card into the carrying mechanism or move the sample detection card out of the carrying mechanism;
and the microscope mechanism is used for carrying out microscopic scanning on the sample detection card on the carrying mechanism.
Further, the microscopic examination device, wherein the pushing piece comprises: the pushing arm is used for abutting against a first side wall of the sample detection card when the sample detection card is pushed into the carrying mechanism, or abutting against a second side wall of the sample detection card when the sample detection card is moved out; the first side wall and the second side wall of the sample detection card are opposite side walls, and the direction from the first side wall to the second side wall is the direction for pushing the sample detection card into the carrying mechanism.
Further, the microscopic examination device, wherein the card pushing mechanism further comprises: and the detection unit is used for detecting whether the sample detection card exists or not when the card pushing piece pushes the sample detection card.
Further, the device is examined to microscope, wherein, push away the card arm and be provided with two, be respectively for pushing away the card arm along the first card arm that pushes away that vertical direction set up to and push away the card arm along the second that the horizontal direction set up, first card arm that pushes away is used for butt sample detection card's first lateral wall, the second pushes away the card arm and is used for butt sample detection card's second lateral wall.
Further, the microscopic examination device, wherein the carrying mechanism comprises: supporting platform, scanning platform and scanning driving piece, it all sets up to push away card drive assembly and microscope mechanism supporting platform is last, scanning platform slidable connects supporting platform is last, the last sample transfer tank that is provided with of scanning platform, the sample transfer tank is used for leading the sample test card that pushes in or shift out, the scanning driving piece be used for doing scanning platform's reciprocal slip provides power.
Further, the microscopy apparatus, wherein the microscope mechanism comprises: the microscope comprises a microscope frame body, a focusing lens and an microscopic light source, wherein the focusing lens and the microscopic light source are arranged on the microscope frame body; the scanning platform with all be provided with visual window on the supporting platform, visual window is used for supplying the light incidence that the microscopic examination light source sent to the sample detection card.
Further, the microscopic examination device, wherein the carrying mechanism further comprises: the elastic clamping pieces are respectively arranged on two sides of the width direction of the sample conveying groove and used for pressing the pushed sample detection card.
According to a second aspect of the present application, there is provided a gynaecological secretion detection apparatus comprising: sample transport mechanism to reach the microscopic examination device.
Further, gynaecology's secretion detection device, wherein, be provided with a plurality of sample positions on the sample transport mechanism, the sample position is used for transporting sample detection card.
Further, gynaecology's secretion detection device, wherein, the sample transport mechanism includes: a rotating disc type transfer mechanism or a linear type transfer mechanism; the plurality of sample positions are along the rotating disc type transfer mechanism circumference equally-divided array, or the plurality of sample positions are sequentially arrayed in the linear type transfer mechanism along the linear direction.
According to the specular microscopy device that this application provided and gynaecology's secretion detection device, wherein, the specular microscopy device includes: the carrying mechanism is used for carrying the sample detection card; push away card mechanism includes: the pushing and clamping piece is arranged at the power output end of the pushing and clamping driving assembly, and the pushing and clamping driving assembly is used for driving the pushing and clamping piece to push the sample detection card into the carrying mechanism or move the sample detection card out of the carrying mechanism; and the microscope mechanism is used for carrying out microscopic scanning on the sample detection card on the carrying mechanism. The sample detection card is pushed to the loading mechanism in a mode that the pushing and clamping part is driven by the pushing and clamping driving assembly to move, operation steps are simplified, automation is realized, and detection efficiency is improved.
Drawings
Fig. 1 is a perspective view of a microscopic examination apparatus provided in the present application;
fig. 2 is an exploded view of the microscopic examination apparatus provided in the present application.
Detailed Description
The present application will be described in further detail below with reference to the accompanying drawings by way of specific embodiments.
The first embodiment,
Referring to fig. 1 and 2, the microscopic examination apparatus provided in the present embodiment mainly includes: loading mechanism 10, card pushing mechanism 20 and microscope mechanism 30
The loading mechanism 10 is used for loading a sample detection card, the card pushing mechanism 20 is used for pushing the sample detection card into the loading mechanism 10, and the microscope mechanism 30 is used for performing microscopic scanning on the sample detection card on the loading mechanism 10. After the scanning is completed, the card pushing mechanism 20 moves out the sample detection card on the carrying mechanism 10, wherein the sample detection card pushed into the carrying mechanism 10 by the card pushing mechanism 20 is a sample detection card which is not scanned by microscopy, the sample detection card bears a sample to be detected, the sample detection card moved out of the carrying mechanism 10 is a sample detection card which is carried on the sample detection card and is scanned by microscopy, and the operation of waste card collection can be performed on the moved sample detection card.
Specifically, the card pushing mechanism 20 includes: the pushing and clamping device comprises a pushing and clamping driving assembly 21 and a pushing and clamping piece, wherein the pushing and clamping piece is arranged at a power output end of the pushing and clamping driving assembly 21, the pushing and clamping driving assembly 21 can output power in a mode of adopting an air cylinder, a motor-driven linear sliding pair, a motor-driven belt transmission assembly and the like, the pushing and clamping driving assembly 21 is used for driving the pushing and clamping piece to push a sample detection card into the loading mechanism 10, or the pushing and clamping driving assembly 21 is used for driving the pushing and clamping piece to move the sample detection card out of the loading mechanism 10. Wherein the sample detection card is transported by an external device.
In this embodiment, the card pushing member includes: at least one card pushing arm, the card pushing arm is used for abutting with the first side wall of the sample detection card when pushing the sample detection card into the carrying mechanism 10, or the card pushing arm is used for abutting with the second side wall of the sample detection card when moving the sample detection card out of the carrying mechanism 10. The first sidewall and the second sidewall of the sample detection card are opposite sidewalls, and the direction from the first sidewall to the second sidewall is the direction in which the sample detection card is pushed into the loading mechanism 10.
In the above embodiment, two pushing arms are provided, namely, the first pushing arm 22 and the second pushing arm 23 are both fixedly mounted at the power output end of the pushing driving assembly 21, the first pushing arm 22 is disposed along the vertical direction, the first pushing arm 22 is used for abutting against the first side wall of the sample detection card when the sample detection card is pushed into the loading mechanism 10, the second pushing arm 23 is disposed along the horizontal direction, and the second pushing arm 23 is used for abutting against the second side wall of the sample detection card when the sample detection card is moved out of the loading mechanism 10.
As shown in fig. 2, the card pushing mechanism 20 further includes: a detecting unit 24, the detecting unit 24 being disposed on the carrying mechanism 10, the detecting unit 24 being used for detecting whether the sample detection card exists when the card pushing member pushes the sample detection card, so as to control the external device to convey the detection card through the controller.
In some embodiments, the card pushing mechanism 20 further comprises: a first limit detection unit 25 and a second limit detection unit 26, wherein the first limit detection unit 25 and the second limit detection unit 26 are both electrically connected to the card pushing driving assembly 21 (e.g., a motor), and the first limit detection unit 25 is configured to control the card pushing driving assembly 21 to stop outputting power when the first card pushing arm 22 moves to a position where the sample detection card can be pushed in. The second limit detection unit is used for controlling the card pushing driving assembly 21 to stop outputting power when the second card pushing arm 23 moves to a position where the sample detection card can be moved out.
The loading mechanism 10 includes: the supporting platform 11, the scanning platform 12 and the scanning driving member 13, the aforementioned card pushing driving assembly 21 and the microscope mechanism 30 are all disposed on the supporting platform 11, the scanning platform 12 is slidably connected to the supporting platform 11 through a linear guide pair, a sample transport slot 15 is disposed on the scanning platform 12, and the sample transport slot 15 is used for guiding a sample detection card pushed in or moved out, in other words, the pushed sample detection card is carried on the scanning platform 12. The scanning driving member 13 is used to provide power for the reciprocating sliding of the scanning platform 12, so that after the sample detection card is pushed onto the scanning platform 12 along the sample conveying slot 15, the sample detection card carried on the scanning platform 12 is moved to a position suitable for microscopic scanning by the driving of the scanning driving member 13.
In one embodiment, carrier mechanism 10 further comprises: at least two elasticity cards 16, all elasticity cards 16 set up respectively in the both sides of sample conveyer trough 15 width direction to can compress tightly the sample detection card of pushing into in the sample conveyer trough 15, avoid the sample detection card to shift.
The microscope mechanism 30 includes: the microscope frame 31, the focusing lens 32 and the microscopic light source 33, wherein the focusing lens 32 and the microscopic light source 33 are both disposed on the microscope frame 31, the focusing lens 32 is disposed above the microscopic light source 33, the scanning platform 12 of the carrying mechanism 10 is disposed between the focusing lens 32 and the microscopic light source 33, and the focusing lens 32 and the microscopic light source 33 are both facing the scanning platform 12 of the carrying mechanism 10. The scanning platform 12 and the supporting platform 11 are both provided with a visible window, and the visible windows on the scanning platform 12 and the supporting platform 11 are both used for allowing light rays emitted by the microscopic examination light source 33 to enter the sample detection card, so as to perform microscopic examination scanning on the sample detection card.
Example II,
The embodiment provides a gynaecology's secretion detection device, includes: a sample transfer mechanism and the microscopic examination device of the first embodiment.
The sample transfer mechanism is the external device for transporting the sample detection card in the first embodiment, and a plurality of sample positions are arranged on the sample transfer mechanism and are all used for transferring the sample detection card.
Wherein, sample transport mechanism includes: the rotating disc type transferring mechanism or the linear transferring mechanism is used for equally dividing all samples along the circumference of the rotating disc type transferring mechanism into arrays, or all samples are sequentially arrayed on the linear transferring mechanism along the linear direction.
In summary, the microscopic examination device provided in this embodiment drives the pushing member to move back and forth through the pushing driving assembly, so as to push the sample detection card into the loading mechanism, or move out of the loading mechanism. Therefore, the device has the advantages of simple structure, stable operation and low manufacturing cost.
The foregoing is a more detailed description of the present application in connection with specific embodiments thereof, and it is not intended that the present application be limited to the specific embodiments thereof. For those skilled in the art to which the present application pertains, a number of simple deductions or substitutions can be made without departing from the inventive concept of the present application.

Claims (10)

1. A microscopic examination apparatus, comprising:
the carrying mechanism is used for carrying the sample detection card;
push away card mechanism includes: the pushing and clamping piece is arranged at the power output end of the pushing and clamping driving assembly, and the pushing and clamping driving assembly is used for driving the pushing and clamping piece to push the sample detection card into the carrying mechanism or move the sample detection card out of the carrying mechanism;
and the microscope mechanism is used for carrying out microscopic scanning on the sample detection card on the carrying mechanism.
2. The microscopy apparatus of claim 1, wherein the push-latch comprises: the pushing arm is used for abutting against a first side wall of the sample detection card when the sample detection card is pushed into the carrying mechanism, or abutting against a second side wall of the sample detection card when the sample detection card is moved out; the first side wall and the second side wall of the sample detection card are opposite side walls, and the direction from the first side wall to the second side wall is the direction for pushing the sample detection card into the carrying mechanism.
3. The microscopy device of claim 2, wherein the card pushing mechanism further comprises: and the detection unit is used for detecting whether the sample detection card exists or not when the card pushing piece pushes the sample detection card.
4. The microscopy apparatus according to claim 2, wherein the pushing arm is provided with two, a first pushing arm disposed along a vertical direction and a second pushing arm disposed along a horizontal direction, the first pushing arm is configured to abut against a first side wall of the sample detection card, and the second pushing arm is configured to abut against a second side wall of the sample detection card.
5. The microscopy device of claim 1, wherein the loading mechanism comprises: supporting platform, scanning platform and scanning driving piece, it all sets up to push away card drive assembly and microscope mechanism supporting platform is last, scanning platform slidable connects supporting platform is last, the last sample transfer tank that is provided with of scanning platform, the sample transfer tank is used for leading the sample test card that pushes in or shift out, the scanning driving piece be used for doing scanning platform's reciprocal slip provides power.
6. The microscopy apparatus of claim 5, wherein the microscopy mechanism comprises: the microscope comprises a microscope frame body, a focusing lens and an microscopic light source, wherein the focusing lens and the microscopic light source are arranged on the microscope frame body; the scanning platform with all be provided with visual window on the supporting platform, visual window is used for supplying the light incidence that the microscopic examination light source sent to the sample detection card.
7. The microscopy device of claim 5, wherein the loading mechanism further comprises: the elastic clamping pieces are respectively arranged on two sides of the width direction of the sample conveying groove and used for pressing the pushed sample detection card.
8. A gynecological secretion detection device, comprising: a sample transport mechanism, and a microscopy device according to any one of claims 1-7.
9. The gynecological secretion detection device of claim 8, wherein the sample transfer mechanism is provided with a plurality of sample sites for transferring the sample detection cards.
10. The gynecological secretion detection device of claim 9, wherein the sample transfer mechanism comprises: a rotating disc type transfer mechanism or a linear type transfer mechanism; the plurality of sample positions are along the rotating disc type transfer mechanism circumference equally-divided array, or the plurality of sample positions are sequentially arrayed in the linear type transfer mechanism along the linear direction.
CN202022219878.8U 2020-09-30 2020-09-30 Microscopic examination device and gynecological secretion detection device Active CN213456683U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022219878.8U CN213456683U (en) 2020-09-30 2020-09-30 Microscopic examination device and gynecological secretion detection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022219878.8U CN213456683U (en) 2020-09-30 2020-09-30 Microscopic examination device and gynecological secretion detection device

Publications (1)

Publication Number Publication Date
CN213456683U true CN213456683U (en) 2021-06-15

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022219878.8U Active CN213456683U (en) 2020-09-30 2020-09-30 Microscopic examination device and gynecological secretion detection device

Country Status (1)

Country Link
CN (1) CN213456683U (en)

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