A blood sample sampling and testing machine for health check-ups

By adopting an anti-slip-off push mechanism and motor drive design in the blood sample sampling and detection machine, the problem of messy slides and mixed samples is solved, and the neat arrangement and detection accuracy of the slides are achieved, reducing labor intensity.

CN119747246BActive Publication Date: 2025-06-10HOHAI UNIV
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Patent Information

Application Number
CN202510245340.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2025-06-10
Estimated Expiration
2045-03-04

AI Technical Summary

Technical Problem

When existing blood sample sampling and detection machines process large amounts of blood sample samples, the slides are prone to mess, resulting in mixing abnormal and non-abnormal samples, affecting classification management and analysis, and manual sorting increases labor intensity.

Method used

A healthy physical examination blood sample sampling and detection machine is designed, using an anti-slip-off push mechanism. Through the cooperation of the push plate and the slide, the lateral movement and neat arrangement of the slides are achieved, ensuring the separation of abnormal and non-abnormal samples. The distance between the microscope body and the slide is adjusted through the driving of the motor and the threaded rod to ensure accurate detection.

Benefits of technology

The neat arrangement of slides is achieved, which is convenient for classification management and analysis, reduces labor intensity, avoids sample slips and mixes, and improves the accuracy and efficiency of detection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of blood sample detection, and specifically relates to a blood sample sampling detection machine for health check-ups, which includes a base. In the middle of the front side of the upper end surface of the base, a chute plate is fixedly connected. A microscope main body is slidably connected inside the chute plate. The microscope main body is electrically connected to a blood sample detector. A non-slip dropping type pushing mechanism for separately placing glass slides is also provided on the frame body. The present invention realizes the use of the non-slip dropping type pushing mechanism. After the detection of one blood sample is completed, the connecting block can be driven to move horizontally, and the push plate is used to push the glass slide to move horizontally, so that the glass slide moves left or right, and the abnormal and non-abnormal blood sample slides can be unified and concentrated on the same side, thereby realizing the separate placement of the glass slide carrying the abnormal blood sample and the glass slide carrying the non-abnormal blood sample, which is convenient for subsequent classification management and analysis work.
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Description

Technical Field

[0001] The present invention belongs to the technical field of blood sample detection, and specifically relates to a blood sample sampling and detection machine for health check-ups. Background Art

[0002] Blood is an important part of the human body, which contains a large amount of physiological and pathological information. During a physical examination, by extracting a certain amount of blood sample from the examinee's blood and detecting the blood sample, multiple indicators such as hemoglobin level, blood sugar, blood lipid, liver function, and kidney function can be obtained. These indicators can reflect the overall health status of the human body, and doctors can judge whether the examinee has potential health problems such as anemia, diabetes, and hyperlipidemia based on these indicators.

[0003] The patent with the publication number CN216792041U discloses a blood sample sampling and detection machine for health check-ups, including a base. On the upper surface of the base, a fixing plate is fixedly installed through a support rod. On the upper surface of the fixing plate, a lifting cylinder is fixedly installed, and the top end of the piston rod of the lifting cylinder is fixedly installed with a microscope; a sliding opening is formed on the upper surface of the fixing plate, and two sliding rods are horizontally and fixedly installed in the sliding opening. An L-shaped moving plate for placing a glass slide is slidably sleeved on the two sliding rods; a driving component is arranged on the back of the fixing plate, and the driving component includes two second gears, two second rack bars, and a transmission component for controlling the rotation of the second gears. As long as the glass slide is placed on the moving plate, when the microscope moves downward, at this time the moving plate will drive the glass slide to move and fix it, and when the microscope moves upward, at this time the moving plate will drive the glass slide to move and release the fixation of it, which is convenient and fast, and improves the efficiency of blood sample detection work.

[0004] However, the above technical solution still has the following deficiencies in the actual application process:

[0005] By placing the blood sample on the glass slide and then using a microscope to observe the blood sample on the glass slide for detection work. After the detection is completed, the glass slide is manually removed from the detection position. In some cases, when the detected blood sample is abnormal, it needs to be placed separately from the non-abnormal blood sample for subsequent classification management and analysis. When the number of detected blood samples is large, the frequency of removing the glass slide from the detection position will also increase accordingly. This may cause the removed glass slides to be placed in a messy state, which is likely to lead to the mixing of the glass slides carrying abnormal blood samples and the glass slides carrying non-abnormal blood samples, thereby affecting the subsequent classification management and analysis work. Moreover, when the glass slides are placed in a messy state, it is also not conducive to the staff to search for a certain glass slide, which is easy to be confused, and when manually sorting out the glass slides, it will also increase the labor intensity of the staff.

[0006] To this end, the present invention provides a blood sample sampling and detection machine for health check-ups. Summary of the Invention

[0007] In order to make up for the deficiencies of the prior art and solve at least one technical problem proposed in the background art, the present invention proposes a blood sample sampling and detection machine for health check-ups.

[0008] The technical solution adopted by the present invention to solve its technical problems is: a blood sample sampling and detection machine for health check-ups, including a base. In the middle of the front side of the upper end surface of the base, a chute plate is fixedly connected. Inside the chute plate, a microscope main body is slidably connected. On one side of the upper end surface of the base, a frame body is fixedly connected. On one side of the base, a blood sample detector is provided. The microscope main body is electrically connected to the blood sample detector. On the left side of the upper end of the frame body, a placement plate one and a placement plate two are slidably connected. On the frame body, there is also a non-slip dropping type pushing mechanism for separating and placing the glass slides.

[0009] The non-slip dropping type pushing mechanism includes a connection block slidably connected to one side of the front end surface of the placement plate two. On one side of the connection block, two sliding rods two are slidably connected. One end of the sliding rod two is fixedly connected to a pushing plate. The pushing plate can pass through the chute on the placement plate two. At both ends of the upper side of the frame body, sliding rods one are fixedly connected. The sliding rods one are slidably connected to a sliding plate. On one side of the lower end surface of the sliding plate, a telescopic rod is fixedly connected. The piston end of the telescopic rod is fixedly connected to an adjusting disc. On the adjusting disc, a plurality of limiting plates are slidably connected. One end of the sliding plate is threadedly connected to a threaded rod one. Both ends of the threaded rod one are rotatably arranged on the frame body.

[0010] Preferably, on one side of the left end of the frame body, a motor one is fixedly connected. The output end of the motor one is fixedly connected to the left end of the threaded rod one.

[0011] Preferably, on one side of the lower end surface of the sliding plate, a threaded cylinder is rotatably arranged. Inside the threaded cylinder, a threaded rod two is threadedly connected. The lower end of the threaded rod two is fixedly connected to one side of the upper end of the adjusting disc. On one side of the upper end surface of the sliding plate, a motor two is fixedly connected. The output end of the motor two is fixedly connected to the upper end of the threaded cylinder.

[0012] Preferably, in the middle of the upper end surface of the adjusting disc, a turntable is rotatably arranged. On the lower end surface of the turntable, a plurality of connecting rods are rotatably arranged. One end of the connecting rod is rotatably connected to the upper end of the adjusting rod. On one side of the upper end of the adjusting disc, a motor three is fixedly connected. The output end of the motor three is fixedly connected to the turntable.

[0013] Preferably, on the left ends of both the placement plate one and the placement plate two, a bidirectional threaded rod is threadedly connected. Both ends of the bidirectional threaded rod are rotatably arranged on the frame body. On one side of the left end of the frame body, a motor five is fixedly connected. The output end of the motor five is fixedly connected to one end of the bidirectional threaded rod.

[0014] Preferably, one end of the connecting block is threadedly connected to a third threaded rod, both ends of the third threaded rod are rotatably arranged on the frame body, and a sixth motor is fixedly connected to one side of the front end face of the second placing plate, and the output end of the sixth motor is fixedly connected to one end of the third threaded rod.

[0015] Preferably, one side of the connecting block is fixedly connected to a first electric push rod, and the piston end of the first electric push rod is fixedly connected to one side of the pushing plate.

[0016] Preferably, third slide bars are fixedly connected to the left and right sides of the frame body, a threaded plate is slidably connected to the third slide bars, fourth slide bars are slidably connected to both sides of the threaded plate, and a top plate is fixedly connected to the upper ends of the fourth slide bars.

[0017] Preferably, one side of the threaded plate is threadedly connected to a fourth threaded rod, both ends of the fourth threaded rod are rotatably arranged on the frame body, a fourth motor is fixedly connected to one side of the left end face of the frame body, the output end of the fourth motor is fixedly connected to one end of the fourth threaded rod, a second electric push rod is fixedly connected to one side of the lower end face of the threaded plate, and the piston end of the second electric push rod is fixedly connected to the bottom of the top plate.

[0018] Preferably, fifth threaded rods are rotatably arranged at both ends of the chute plate, the fifth threaded rods are threadedly connected to one side of the microscope body, and a seventh motor is fixedly connected to one side of the upper end face of the chute plate, and the output end of the seventh motor is fixedly connected to the upper end of the fifth threaded rod.

[0019] The beneficial effects of the present invention are as follows:

[0020] 1. A blood sample sampling and testing machine for health check - ups according to the present invention utilizes an anti - slipping pushing mechanism. After the detection of a blood sample is completed, the connecting block can be driven to move horizontally, and the push plate is used to push the glass slide horizontally, so that the glass slide moves left or right. In this way, abnormal and non - abnormal blood samples can be unified and concentrated on the same side, thus realizing the separate placement of the glass slide carrying the abnormal blood sample and the glass slide carrying the non - abnormal blood sample, which is convenient for subsequent classification management and analysis work. Moreover, since the glass slides are neatly arranged, it is also convenient for the staff to search for a certain glass slide, not easy to be confused, and the process of manually arranging the glass slides is omitted, reducing the labor intensity of the staff. And when the glass slide starts to be pushed, according to the area of the blood sample on the surface of the glass slide, the bottom of the limiting plate can be made to fit the upper surface of the glass slide to cover the blood sample. When the push plate moves horizontally, the slide plate will also move horizontally synchronously. When the blood sample slides, it will only be concentrated in the cavity formed by multiple limiting plates and will not slide off the edge of the glass slide, thus avoiding the situation that the blood sample slides as the glass slide moves, and further avoiding the blood sample sliding off the edge of the glass slide, ensuring the smooth progress of subsequent analysis work. And when it is necessary to take out a certain glass slide alone, according to the position of the glass slide to be taken out, the top plate is aligned with the bottom of the glass slide, and then the top plate is driven to rise, and the top plate can be used to lift the glass slide upward. At this time, it is convenient for the staff to pick up the glass slide, thus avoiding the situation that it is not easy to take it out due to the small distance between adjacent glass slides.

[0021] 2. A blood sample sampling and testing machine for health check - ups according to the present invention utilizes the motor seven to drive the rotation of the threaded rod five, so that the microscope body can slide up and down to adjust the distance between the microscope body and the glass slide, thereby ensuring that the observed image is consistent with the actual blood sample, and further avoiding detection errors caused by improper focal length.

[0022] 3. A blood sample sampling and testing machine for health check - ups according to the present invention, the blood sample detector can receive the image data transmitted by the microscope body and use artificial intelligence algorithms for rapid processing and analysis, thus realizing the accurate diagnosis of blood samples and improving the accuracy and efficiency of detection. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The present invention will be further described below with reference to the drawings.

[0024] Figure 1 is a three - dimensional structure schematic diagram of the present invention;

[0025] Figure 2 is Figure 1 a partial enlarged view of part A in

[0026] Figure 3 a three - dimensional structure schematic diagram of the cross - section at the first placement plate and the second placement plate;

[0027] Figure 4 It is a three-dimensional structure schematic diagram of the skateboard part;

[0028] Figure 5 It is a three-dimensional structure schematic diagram of the adjustment disk part;

[0029] Figure 6 It is a three-dimensional structure schematic diagram of the limiting plate part;

[0030] Figure 7 It is a three-dimensional structure schematic diagram of the motor four part;

[0031] Figure 8 It is a three-dimensional structure schematic diagram of the microscope main body part;

[0032] Figure 9 It is a three-dimensional structure schematic diagram of the top plate part.

[0033] In the figure: 1, base; 2, frame; 3, chute plate; 4, motor one; 5, threaded rod one; 6, microscope main body; 7, slide bar one; 8, skateboard; 9, motor two; 10, telescopic rod; 11, threaded cylinder; 12, threaded rod two; 13, adjustment disk; 14, motor three; 15, turntable; 16, connecting rod; 17, adjustment rod; 18, limiting plate; 19, motor four; 20, bidirectional threaded rod; 21, motor five; 22, placement plate one; 23, placement plate two; 24, threaded rod three; 25, connecting block; 26, electric push rod one; 27, slide bar two; 28, push plate; 29, slide bar three; 30, threaded rod four; 31, electric push rod two; 32, slide bar four; 33, top plate; 34, threaded plate; 35, motor six; 36, motor seven; 37, threaded rod five; 38, blood sample detector. Specific implementation manners

[0034] Next, the technical solutions of the present invention will be clearly and completely described in conjunction with the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0035] Please refer to Figures 1-9 , the present invention provides a technical solution: a blood sample sampling and detecting machine for health check-ups, including a base 1, a chute plate 3 is fixedly connected to the middle of the front side of the upper end surface of the base 1, a microscope main body 6 is slidably connected inside the chute plate 3, a frame 2 is fixedly connected to one side of the upper end surface of the base 1, a blood sample detector 38 is arranged on one side of the base 1, the microscope main body 6 is electrically connected to the blood sample detector 38, a placement plate one 22 and a placement plate two 23 are slidably connected to the left side of the upper end of the frame 2, and an anti-slip and anti-falling pushing mechanism for separately placing the glass slides is further arranged on the frame 2;

[0036] The anti-slip pushing mechanism includes a connection block 25 slidably connected to one side of the front end face of the second placing plate 23. Two second sliding rods 27 are slidably connected to one side of the connection block 25. One end of each second sliding rod 27 is fixedly connected to a pushing plate 28. The pushing plate 28 can pass through the sliding groove on the second placing plate 23. Both ends of the upper side of the frame 2 are fixedly connected to first sliding rods 7. The first sliding rods 7 are slidably connected to a sliding plate 8. One side of the lower end face of the sliding plate 8 is fixedly connected to a telescopic rod 10. The piston end of the telescopic rod 10 is fixedly connected to an adjusting disc 13. A plurality of limiting plates 18 are slidably connected to the adjusting disc 13. One end of the sliding plate 8 is threadedly connected to a first threaded rod 5. Both ends of the first threaded rod 5 are rotatably arranged on the frame 2.

[0037] In this embodiment, as Figures 1-7 、 Figure 9 shown, one side of the left end of the frame 2 is fixedly connected to a first motor 4. The output end of the first motor 4 is fixedly connected to the left end of the first threaded rod 5.

[0038] One side of the lower end face of the sliding plate 8 is rotatably provided with a threaded cylinder 11. The inner cavity of the threaded cylinder 11 is threadedly connected to a second threaded rod 12. The lower end of the second threaded rod 12 is fixedly connected to one side of the upper end of the adjusting disc 13. One side of the upper end face of the sliding plate 8 is fixedly connected to a second motor 9. The output end of the second motor 9 is fixedly connected to the upper end of the threaded cylinder 11.

[0039] The middle part of the upper end face of the adjusting disc 13 is rotatably provided with a turntable 15. A plurality of connecting rods 16 are rotatably arranged on the lower end face of the turntable 15. One end of each connecting rod 16 is rotatably connected to the upper end of an adjusting rod 17. One side of the upper end of the adjusting disc 13 is fixedly connected to a third motor 14. The output end of the third motor 14 is fixedly connected to the turntable 15.

[0040] Both the left ends of the first placing plate 22 and the second placing plate 23 are threadedly connected to a bidirectional threaded rod 20. Both ends of the bidirectional threaded rod 20 are rotatably arranged on the frame 2. One side of the left end of the frame 2 is fixedly connected to a fifth motor 21. The output end of the fifth motor 21 is fixedly connected to one end of the bidirectional threaded rod 20.

[0041] One end of the connection block 25 is threadedly connected to a third threaded rod 24. Both ends of the third threaded rod 24 are rotatably arranged on the frame 2. One side of the front end face of the second placing plate 23 is fixedly connected to a sixth motor 35. The output end of the sixth motor 35 is fixedly connected to one end of the third threaded rod 24.

[0042] One side of the connection block 25 is fixedly connected to a first electric push rod 26. The piston end of the first electric push rod 26 is fixedly connected to one side of the pushing plate 28.

[0043] Both the left and right sides of the frame 2 are fixedly connected to third sliding rods 29. The third sliding rods 29 are slidably connected to a threaded plate 34. Both sides of the threaded plate 34 are slidably connected to fourth sliding rods 32. The upper ends of the fourth sliding rods 32 are fixedly connected to a top plate 33.

[0044] One side of the threaded plate 34 is threadedly connected to the fourth threaded rod 30. Both ends of the fourth threaded rod 30 are rotatably arranged on the frame body 2. One side of the left end face of the frame body 2 is fixedly connected to the fourth motor 19. The output end of the fourth motor 19 is fixedly connected to one end of the fourth threaded rod 30. One side of the lower end face of the threaded plate 34 is fixedly connected to the second electric push rod 31. The piston end of the second electric push rod 31 is fixedly connected to the bottom of the top plate 33.

[0045] Specifically, when the existing blood sample sampling detector is in use, the blood sample is placed on a glass slide, and then a microscope is used to observe the blood sample on the glass slide for detection. After the detection is completed, the glass slide is manually removed from the detection position. In some cases, when the detected blood sample is abnormal, it needs to be placed separately from the non-abnormal blood sample for subsequent classification management and analysis. When the number of detected blood samples is large, the frequency of removing the glass slide from the detection position will also increase accordingly. This may cause the removed glass slides to be placed in a messy state, which is likely to cause the glass slides carrying abnormal blood samples to be mixed with the glass slides carrying non-abnormal blood samples, thus affecting subsequent classification management and analysis work. Moreover, when the glass slides are placed in a messy state, it is not conducive for the staff to search for a certain glass slide, and it is easy to be confused. When manually sorting the glass slides, the labor intensity of the staff will also increase.

[0046] Therefore, to solve the above problems, in this embodiment, when in use, the same batch of glass slides with the same specifications are used. According to the length of the glass slide, the fifth motor 21 is started to drive the bidirectional threaded rod 20 to rotate, and the distance between the first placing plate 22 and the second placing plate 23 is adjusted so that the glass slide can just be placed between the first placing plate 22 and the second placing plate 23. Moreover, the glass slide can slide horizontally between the first placing plate 22 and the second placing plate 23 without deviation.

[0047] And, the glass slide is positioned at the middle position between the first placing plate 22 and the second placing plate 23. At this time, the glass slide can just be aligned with the microscope main body 6. The blood sample detector 38 can receive the image data transmitted by the microscope main body 6 and use artificial intelligence algorithms for rapid processing and analysis, thereby realizing the accurate diagnosis of blood samples and improving the accuracy and efficiency of detection.

[0048] After the detection of a blood sample is completed, the electric push rod 26 can be used to drive the push plate 28 through the sliding groove on the second placing plate 23, and the motor 35 can be used to drive the third threaded rod 24 to rotate, so that the connecting block 25 moves horizontally, and the push plate 28 is used to push the slide horizontally, so that the slide moves left or right, so that the abnormal and non-abnormal blood samples can be unified and concentrated on the same side, thus realizing the separate placement of the slide carrying the abnormal blood sample and the slide carrying the non-abnormal blood sample, which is convenient for subsequent classification management and analysis work. Moreover, since the slides are arranged neatly, it is also convenient for the staff to find a certain slide among them, not easy to be confused, and the process of manually sorting the slides is omitted, reducing the labor intensity of the staff;

[0049] However, when the slide is pushed by the push plate 28, the blood sample on its surface may slide with the displacement of the slide, and the blood sample may slide off the edge of the slide, which will affect the subsequent analysis work. Therefore, in order to avoid this situation, when the slide starts to be pushed, according to the area of the blood sample on the surface of the slide, the motor 14 can be used to drive the turntable 15 to rotate, so that multiple connecting rods 16 rotate simultaneously, and multiple limiting plates 18 move radially at the same time. Then the internal volume of the multiple limiting plates 18 will also change until the limiting plates 18 can cover the blood sample. Then the motor 9 can be used to drive the threaded cylinder 11 to rotate, so that the adjusting disk 13 descends, and the bottom of the limiting plate 18 fits with the upper surface of the slide to cover the blood sample. When the push plate 28 moves horizontally, the slide plate 8 will also move horizontally synchronously with the push plate 28 under the action of the motor 4 driving the first threaded rod 5 to rotate. When the blood sample slides, it will only be concentrated in the cavity formed by the multiple limiting plates 18 and will not slide off the edge of the slide, thus avoiding the situation that the blood sample slides with the displacement of the slide and then slides off the edge of the slide, ensuring the smooth progress of the subsequent analysis work. Moreover, since the areas of the blood samples on the slides of the same specification are also similar, after the adjustment of the limiting plate 18, it can be used multiple times without frequently adjusting the limiting plate 18;

[0050] In order to make full use of the placement spaces of the first placement plate 22 and the second placement plate 23, it is necessary to make the edge spacing of the arranged glass slides relatively small. When the spacing between adjacent glass slides is small, if a staff member wants to take out a certain glass slide alone for further in-depth analysis, it will be difficult to take out because the four sides of the glass slide are limited, thus causing a difficult situation for taking out. Therefore, to avoid this situation, according to the position of the glass slide to be taken out, the fourth motor 19 is used to drive the fourth threaded rod 30 to rotate, so that the threaded plate 34 moves horizontally, aligning the top plate 33 with the bottom of the glass slide. Then, the second electric push rod 31 is used to drive the top plate 33 to rise, and the top plate 33 can be used to jack up the glass slide. At this time, it is convenient for the staff member to pick up the glass slide, thus avoiding the situation that it is difficult to take out the glass slide due to the small spacing between adjacent glass slides.

[0051] In this embodiment, as Figure 8 shown, the two ends of the chute plate 3 are rotatably provided with the fifth threaded rod 37, and the fifth threaded rod 37 is threadedly connected to one side of the microscope body 6. One side of the upper end surface of the chute plate 3 is fixedly connected with the seventh motor 36, and the output end of the seventh motor 36 is fixedly connected to the upper end of the fifth threaded rod 37.

[0052] Specifically, by using the seventh motor 36 to drive the fifth threaded rod 37 to rotate, the microscope body 6 can be slid up and down to adjust the distance between the microscope body 6 and the glass slide, so as to ensure that the observed image is consistent with the actual blood sample, thereby avoiding detection errors caused by improper focal length.

[0053] Working principle: According to the length of the glass slide, the motor five 21 is started to drive the bidirectional threaded rod 20 to rotate, adjusting the distance between the first placement plate 22 and the second placement plate 23, so that the glass slide can be just placed between the first placement plate 22 and the second placement plate 23. Moreover, the glass slide can slide horizontally between the first placement plate 22 and the second placement plate 23 without deviation. And, the glass slide is positioned at the middle position between the first placement plate 22 and the second placement plate 23. At this time, the glass slide can be just aligned with the microscope main body 6. By driving the threaded rod five 37 to rotate with the motor seven 36, the microscope main body 6 can be slid up and down to adjust the distance between the microscope main body 6 and the glass slide, thus ensuring that the observed image is consistent with the actual blood sample, and further avoiding detection errors caused by improper focal length. The blood sample detector 38 can receive the image data transmitted by the microscope main body 6 and perform rapid processing and analysis using artificial intelligence algorithms, thereby achieving accurate diagnosis of the blood sample and improving the accuracy and efficiency of detection. When the detection of a blood sample is completed, the electric push rod one 26 can be used to drive the push plate 28 to pass through the chute on the second placement plate 23, and the motor six 35 is used to drive the threaded rod three 24 to rotate, making the connecting block 25 move horizontally, so as to use the push plate 28 to push the glass slide to move horizontally, moving the glass slide to the left or right, so that the abnormal and non-abnormal blood samples can be uniformly concentrated on the same side, thus realizing the separate placement of the glass slides carrying abnormal blood samples and the glass slides carrying non-abnormal blood samples, facilitating subsequent classification management and analysis work. And, because the glass slides are neatly arranged, it is also convenient for the staff to search for a certain glass slide, not easy to be confused, and the process of manually sorting the glass slides is omitted, reducing the labor intensity of the staff;When the slide is pushed by the push plate 28, the blood sample on its surface may slide with the displacement of the slide, resulting in the blood sample slipping from the edge of the slide, which will affect the subsequent analysis work. Therefore, to avoid this situation, when the slide starts to be pushed, according to the area of the blood sample on the slide surface, the motor three 14 drives the turntable 15 to rotate, so that multiple connecting rods 16 rotate simultaneously, and multiple limiting plates 18 move radially at the same time. Then the internal cavity volume of the multiple limiting plates 18 will also change until the limiting plates 18 can cover the blood sample. Then, the motor two 9 drives the threaded cylinder 11 to rotate, so that the adjusting plate 13 descends, and the bottom of the limiting plate 18 fits with the upper surface of the slide to cover the blood sample. When the push plate 28 moves horizontally, the slide plate 8 will also move horizontally synchronously with the push plate 28 under the action of the motor one 4 driving the threaded rod one 5 to rotate. When the blood sample slides, it will only be concentrated in the cavity formed by the multiple limiting plates 18 and will not slip from the edge of the slide, thus avoiding the situation that the blood sample slides with the displacement of the slide and then slips from the edge of the slide, ensuring the smooth progress of the subsequent analysis work. And since the areas of the blood samples on slides of the same specification are also similar, after the adjustment of the limiting plates 18, they can be used multiple times without frequently adjusting the limiting plates 18. In order to make full use of the placement space of the placement plate one 22 and the placement plate two 23, it is necessary to make the edge spacing of the arranged slides smaller. When the spacing between adjacent slides is small, if the staff wants to take out a certain slide alone for further in-depth analysis, it will be difficult to take out because the four sides of the slide are limited. Therefore, to avoid this situation, according to the position of the slide to be taken out, the motor four 19 drives the threaded rod four 30 to rotate, so that the threaded plate 34 moves horizontally, aligning the top plate 33 with the bottom of the slide. Then, the electric push rod two 31 drives the top plate 33 to rise, and the top plate 33 can be used to lift the slide upward. At this time, it is convenient for the staff to pick up the slide, thus avoiding the situation that it is difficult to take out the slide due to the small spacing between adjacent slides.

[0054] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A blood sample sampling and testing machine for health examination, comprising a base (1), characterized in that: A slide plate (3) is fixedly connected to the middle of the front side of the upper end of the base (1), and a microscope body (6) is slidably connected to the inner side of the slide plate (3). A frame (2) is fixedly connected to one side of the upper end of the base (1), and a blood sample detector (38) is arranged on one side of the base (1). The microscope body (6) is electrically connected to the blood sample detector (38). A placement plate 1 (22) and a placement plate 2 (23) are slidably connected to the left side of the upper end of the frame (2). The frame (2) is also provided with an anti-slip push mechanism for separating and placing the slides. The anti-slip push mechanism comprises a connecting block (25) slidably connected to one side of the front end surface of the second placement plate (23); one side of the connecting block (25) is slidably connected to two second slide bars (27); one end of the second slide bar (27) is fixedly connected to a push plate (28); the push plate (28) can pass through a slide groove on the second placement plate (23); two ends of the upper side of the frame (2) are fixedly connected to a first slide bar (7); the first slide bar (7) is slidably connected to a slide plate (8); one side of the lower end surface of the slide plate (8) is fixedly connected to a telescopic rod (10); the piston end of the telescopic rod (10) is fixedly connected to an adjustment disk (13); a plurality of limiting plates (18) are slidably connected to the adjustment disk (13); one end of the slide plate (8) is threadedly connected to a first threaded rod (5); both ends of the first threaded rod (5) are The frame (2) is rotatably arranged on the frame (2), and the frame (2) is fixedly connected with a sliding rod three (29) on the left and right sides, and the sliding rod three (29) is slidably connected with a threaded plate (34), and the two sides of the threaded plate (34) are slidably connected with sliding rods four (32), and the upper end of the sliding rod four (32) is fixedly connected with a top plate (33), and one side of the threaded plate (34) is threadedly connected with a threaded rod four (30), and both ends of the threaded rod four (30) are rotatably arranged on the frame (2), and one side of the left end surface of the frame (2) is fixedly connected with a motor four (19), and the output end of the motor four (19) is fixedly connected to one end of the threaded rod four (30), and one side of the lower end surface of the threaded plate (34) is fixedly connected with an electric push rod two (31), and the piston end of the electric push rod two (31) is fixedly connected to the bottom of the top plate (33).

2. A blood sample sampling and testing machine for health examination according to claim 1, characterized in that: A motor 1 (4) is fixedly connected to one side of the left end of the frame (2), and an output end of the motor 1 (4) is fixedly connected to the left end of the threaded rod 1 (5).

3. A blood sample sampling and testing machine for health examination according to claim 1, characterized in that: A threaded barrel (11) is rotatably provided on one side of the lower end surface of the slide plate (8); a second threaded rod (12) is threadedly connected to the inner cavity of the threaded barrel (11); the lower end of the second threaded rod (12) is fixedly connected to one side of the upper end of the adjustment disk (13); a second motor (9) is fixedly connected to one side of the upper end surface of the slide plate (8); and the output end of the second motor (9) is fixedly connected to the upper end of the threaded barrel (11).

4. A blood sample sampling and testing machine for health examination according to claim 1, characterized in that: A rotating disk (15) is rotatably provided at the middle of the upper end surface of the adjusting disk (13), and a plurality of connecting rods (16) are rotatably provided at the lower end surface of the rotating disk (15), one end of the connecting rod (16) is rotatably connected to the upper end of an adjusting rod (17), and a third motor (14) is fixedly connected to one side of the upper end of the adjusting disk (13), and an output end of the third motor (14) is fixedly connected to the rotating disk (15).

5. The blood sampling and testing machine for health examination according to claim 1, characterized in that: The left ends of the placement plate 1 (22) and the placement plate 2 (23) are both threadedly connected to a bidirectional threaded rod (20), both ends of the bidirectional threaded rod (20) are rotatably arranged on the frame (2), and one side of the left end of the frame (2) is fixedly connected to a motor 5 (21), and the output end of the motor 5 (21) is fixedly connected to one end of the bidirectional threaded rod (20).

6. A blood sample sampling and testing machine for health examination according to claim 1, characterized in that: One end of the connection block (25) is threadedly connected to a threaded rod (24), and both ends of the threaded rod (24) are rotatably arranged on the frame (2). One side of the front end surface of the placement plate (23) is fixedly connected to a motor (35), and the output end of the motor (35) is fixedly connected to one end of the threaded rod (24).

7. The blood sampling and testing machine for health examination according to claim 1, characterized in that: One side of the connection block (25) is fixedly connected to an electric push rod 1 (26), and a piston end of the electric push rod 1 (26) is fixedly connected to one side of a push plate (28).

8. The blood sampling and testing machine for health examination according to claim 1, characterized in that: The two ends of the slide plate (3) are rotatably provided with threaded rods five (37), the threaded rod five (37) is threadedly connected to one side of the microscope body (6), and one side of the upper end surface of the slide plate (3) is fixedly connected to a motor seven (36), and the output end of the motor seven (36) is fixedly connected to the upper end of the threaded rod five (37).

Citation Information

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