Biological sample detection platform
By employing left and right linear motor drive components and transmission chains on the biological detection platform, efficient sampling and imaging of biological samples from multiple directions are achieved, solving the problem of limited sampling angles in existing technologies and improving sampling efficiency and detection convenience.
Patent Information
- Application Number
- CN202423217924.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-25
AI Technical Summary
Existing biological detectors have limitations in sampling angle, making it impossible to flexibly sample biological samples from the front, back, left, or right, resulting in low sampling efficiency.
The biological sample detection platform employs left and right linear motor drive components in conjunction with a transmission chain and a high-definition sampling lens to achieve multi-directional sampling. The left linear motor moves left and right, while the right linear motor moves forward and backward, combined with a grating positioning component for efficient positioning and imaging.
It enables efficient sampling and imaging of biological samples from multiple directions, improving sampling efficiency and convenience of detection, and meeting the needs of biological planktonic detection.
Smart Images

Figure CN223770032U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a detection platform, specifically a biological sample detection platform. Background Technology
[0002] Bioplankton detection is the process of systematically detecting and analyzing plankton in water bodies, aiming to assess the ecological health of aquatic bodies and understand the structure and function of aquatic biological communities. It mainly includes the detection of phytoplankton and zooplankton, providing crucial data support for aquatic ecological monitoring, resource management, and environmental protection through species identification, quantity statistics, and biomass measurement. Bioplankton detection relies on a detection platform, where biological samples are collected by detection components and then analyzed by specialized equipment.
[0003] In the prior art, document number 202022644685.7 discloses a portable biological detector. This utility model relates to the field of biological detection equipment technology and addresses the problem of existing biological detectors being inconvenient to carry. The proposed solution includes a biological detector body. Receiving grooves are formed on the inner walls of both ends of the biological detector body. Support blocks are slidably connected inside each receiving groove. Extension blocks are slidably connected inside each support block. Connecting columns are fixed to the bottom of both sides of each extension block. The ends of the connecting columns away from the extension blocks are rotatably connected to the inner walls of the corresponding support blocks via bearings. Bolts are threadedly connected to the tops of each extension block. This utility model has a simple and reasonable structure, effectively supporting the biological detector and allowing for easy and convenient storage of the supporting components.
[0004] Existing detection instruments allow for flexible adjustment of the supporting components of the biological detector, offering high flexibility, portability, and ease of use. However, they cannot sample biological samples from the front-back or left-right angles, limiting the sampling angle. Utility Model Content
[0005] To overcome the shortcomings of existing technologies, this invention provides a biological sample detection platform.
[0006] This utility model is achieved using the following technical solution: a biological sample detection platform, comprising an assembly base plate, an assembly position on the assembly base plate, and strength support components on the assembly position. The strength support components are a left support frame and a right support frame. The left support frame has a left top support component, and the right support frame has a right top support component. The left top support component has a left linear motor drive component, and the right top support component has a right linear motor drive component. The left linear motor drive component has a left transmission chain, and the right linear motor drive component has a right transmission chain. The left linear motor drive component has a sampling head.
[0007] The left drive chain uses a left tank chain, the right drive chain uses a right tank chain, and the left linear motor drive component is equipped with a grating positioning component.
[0008] The bottom of the assembly base plate is provided with support columns for support. The support columns are symmetrically distributed on the assembly base plate and are fixed to the assembly base plate by bolts.
[0009] The left linear motor drive component is a left linear motor, and the right linear motor drive component is a right linear motor. The left linear motor moves left and right, and the right linear motor moves forward and backward.
[0010] Compared to existing technologies, this invention allows for back-and-forth movement of the left and right linear motor drive components when biological sample collection is required. During this movement, the left linear motor moves left and right, while the right linear motor moves forward and backward, enabling sampling from multiple directions. This makes sampling more convenient and efficient, meeting the needs of biological sample collection. A grating positioning component is installed on the left linear motor drive component, enabling efficient positioning and further improving positioning efficiency. A sampling head is also installed on the left linear motor drive component, allowing for the detection of planktonic organisms and the generation of images, facilitating the operator's detection and analysis of the sampled planktonic images. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of this utility model;
[0012] Figure 2 This is a schematic diagram of the structure of this utility model;
[0013] Figure 3 This is a schematic diagram of the structure of this utility model;
[0014] Figure 4 This is a schematic diagram of the structure of this utility model;
[0015] In the diagram: 1 is the assembly base plate, 2 is the left bracket, 3 is the right support frame, 4 is the left linear motor drive component, 5 is the right linear motor drive component, 6 is the left transmission chain, 7 is the right transmission chain, 8 is the grating positioning component, 9 is the support column, and 10 is the sampling head. Detailed Implementation
[0016] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0017] A biological sample detection platform includes an assembly base plate 1 with assembly positions. Strength support components, namely a left support frame 2 and a right support frame 3, are located on the assembly base plate 1. The left support frame 1 has a left top support component, and the right support frame 3 has a right top support component. The left top support component has a left linear motor drive component 4, and the right top support component has a right linear motor drive component 5. The left linear motor drive component has a left transmission chain 6, and the right linear motor drive component has a right transmission chain 7. A sampling head 10, which is a high-definition sampling lens, is also located on the left linear motor drive component. This high-definition sampling lens facilitates the detection of multiple groups of planktonic organisms with different configurations, making the detection of these planktonic organisms more convenient.
[0018] When left and right biological sampling is required, the left linear motor drive component 4 can be moved left and right to perform left and right sampling operations. When front and back biological sampling is required, the right linear motor drive component 5 can be used to perform front and back sampling operations. This allows the detection platform to perform detection from multiple directions, further improving detection efficiency. When the left linear motor drive component 4 and the right linear motor drive component 5 move, the left transmission chain 6 and the right transmission chain 7 are used for local traction. The left transmission chain 6 is a left tank chain, and the right transmission chain 7 is a right tank chain. The left linear motor drive component is equipped with a grating positioning component 8.
[0019] The bottom of the assembly base plate 1 is provided with support columns 9 for support. The support columns 9 are symmetrically distributed on the assembly base plate and are fixed to the assembly base plate 1 by bolts. The support columns provide support to the bottom of the detection platform, allowing the bottom platform to better support the multiple components on the assembly base plate, making the detection platform run more stably. The left linear motor drive component 4 is used to effectively sample biological samples. The left linear motor drive component 4 is a left linear motor. The right linear motor drive component 5 can also be used to sample biological samples, further improving the sampling efficiency. The right linear motor drive component 5 is a right linear motor. The left linear motor moves left and right, and the right linear motor moves back and forth. When biological sampling is required, sampling components can be further installed on the left linear motor drive component 4 and the right linear motor drive component 5. The sampling component adopts a sampling head 10, which is a high-definition lens. The high-definition lens can be used to image the biological planktonic matter. After imaging, it is transmitted to the computer and displayed on the computer monitor, allowing the operator to understand the state of the biological planktonic matter in the liquid.
[0020] The above embodiments are merely preferred embodiments of this utility model and should not be construed as limiting the scope of protection of this utility model. Any non-substantial changes and substitutions made by those skilled in the art based on this utility model shall fall within the scope of protection claimed by this utility model.
Claims
1. A biological sample testing platform, a mounting base is arranged, a mounting position is arranged on the mounting base, a strength supporting component is arranged on the mounting position, the strength supporting component is a left supporting frame and a right supporting frame, a left top supporting component is arranged on the left supporting frame, and a right top supporting component is arranged on the right supporting frame, characterized in that: The left top supporting part is provided with a left linear motor driving part, the right top supporting part is provided with a right linear motor driving part, the left linear motor driving part is provided with a left transmission chain, the right linear motor driving part is provided with a right transmission chain, and the left linear motor driving part is provided with a sampling head. 2. The biological sample testing platform of claim 1, wherein: The left transmission chain is a left tank chain, the right transmission chain is a right tank chain, and the left linear motor driving part is provided with a grating positioning part.
3. The biological sample testing platform of claim 1, wherein: The bottom of the assembly base plate is provided with supporting support columns, the support columns are symmetrically distributed on the assembly base plate, and the support columns and the assembly base plate are fixed by bolts.
4. The biological sample testing platform of claim 1, wherein: The left linear motor driving part is a left linear motor, the right linear motor driving part is a right linear motor, the left linear motor moves left and right, and the right linear motor moves forward and backward.
Citation Information
Patent Citations
Portable biological detector
CN213576477U