Preheating device for visible component detection module

By designing a preheating device for the formed component detection module, the problem of the state of formed components in the suspension being affected by temperature changes is solved, a suitable temperature environment and shaking operation are provided, the measurement accuracy and recognition accuracy are improved, and the temperature requirements of microscopic examination samples and reagents are met.

CN223426388UActive Publication Date: 2025-10-10SHENZHEN ANLV MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202421885260.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-10-10
Estimated Expiration
2034-08-06

AI Technical Summary

Technical Problem

The state of formed elements in suspensions is easily affected by temperature changes, resulting in decreased measurement accuracy and identification accuracy. In addition, microscopic samples and staining reagents have specific temperature requirements, and existing technologies make it difficult to effectively control temperature.

Method used

A preheating device for a formed component detection module is designed, which includes a heating plate, a control module, a support assembly and a shaker. The temperature is controlled by a temperature sensor and a heating module to provide a suitable temperature environment. The shaker and motor are used to achieve the integrated operation of shaking and preheating the sample.

Benefits of technology

Ensure that the formed component detection module reaches the set temperature range, improve measurement accuracy and recognition accuracy, meet the temperature requirements of microscopic examination samples and reagents, and achieve uniform mixing and safe shaking operations of samples.

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Abstract

The visible component detection module preheating device comprises a control module, a heating plate and a supporting assembly. The supporting assembly is used for supporting; the control module is installed in the supporting assembly. The heating plate is mounted on the supporting assembly; the heating plate is used for placing a component detection module; the heating plate is used for raising the temperature of the visible component detection module; the control module is electrically connected with the heating plate; the control module is used for providing electric energy for the heating plate. And a suitable temperature condition is provided for the visible component detection module, so that the state of the visible component in the visible component detection module is ensured to be a state suitable for microscopic imaging and recognition.
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Description

Technical Field

[0001] The present application belongs to the technical field of formed component analysis, and in particular relates to a preheating device for a formed component detection module. Background Art

[0002] The applicant filed a series of Chinese patents, such as

[0003] 1. CN2020112669290, “Cell analysis method and system and quantitative method and system”;

[0004] 2. CN2020112669182, “Cell Suspension Sample Imaging Method, System, and Kit”;

[0005] 3. CN2022104799126, “Fast focusing method for microscopic image acquisition device and microscopic image acquisition method”;

[0006] 4. CN2023100423151, “Blood imaging analysis system and method”;

[0007] 5. CN2023118576607, “Labeled light-assisted microscopy method and device”;

[0008] Using a new technical solution to measure the content of target substances in blood, urine, and feces, it has opened up a new technical route to detect formed components in suspensions.

[0009] This series of methods is based on the precise measurement of the liquid test sample in the cavity of the formed component detection module, including the identification and size measurement of microscopic formed component particles. It also requires the precise measurement of the volume of the liquid in the cavity. The cavity height is generally less than 0.5 mm, and there are special requirements for the accuracy of the cavity height value. If the cavity height changes, it will directly affect the measurement accuracy. The external temperature causes the object to expand and contract, and the cavity height changes due to temperature changes. This change also directly affects the measurement accuracy.

[0010] On the other hand, many detection components in microscopic samples need to remain active. For example, red blood cells and white blood cells have different morphological characteristics at different temperatures. Therefore, the microscopic samples need to be in a set temperature range. The volume of microscopic samples is small, and their temperature is directly affected by the temperature of the formed component detection module. Therefore, the temperature of the formed component detection module needs to be controlled.

[0011] In addition, staining reagents behave differently in different temperature ranges and time periods, and the temperature of the formed component detection module also needs to be controlled.

[0012] In addition, the internal cavity of the formed component detection module includes some reagents. In order to prevent the reagents from becoming ineffective, the formed component detection module is generally required to be placed in a low-temperature scene such as a refrigerator. In order to use the formed component detection module normally, the temperature of the formed component detection module needs to be controlled.

[0013] In practical applications, visible component detection is often based on stable detection conditions, such as specific temperature conditions, which keep the visible components in a relatively suitable and recognizable state. If environmental conditions change, the state of the visible components in the suspension will change, seriously affecting the accuracy of identification. Summary of the Invention

[0014] In this application, in order to solve the problem in the prior art that the state of formed components in the suspension changes with temperature, the applicant proposes a formed component detection module preheating device to provide suitable temperature conditions for the formed component detection module to ensure that the state of the formed components therein is suitable for microscopic imaging and identification.

[0015] The technical solution of this application to solve the above-mentioned technical problems is a preheating device for a shaped component detection module, including a control module, a heating plate, and a support assembly; the support assembly is used for support; the control module is installed inside the support assembly; the heating plate is installed on the support assembly; the heating plate is used to place the shaped component detection module; the heating plate is used to increase the temperature of the shaped component detection module; the control module is electrically connected to the heating plate; and the control module is used to provide electrical energy to the heating plate.

[0016] The above-mentioned shaped component detection module preheating device also includes a shaped component detection module placement plate, which is arranged on the heating plate and is used to place the shaped component detection module.

[0017] The shaped component detection module placement plate includes a placement groove, and the placement groove is used for placing the shaped component detection module.

[0018] The above-mentioned preheating device for the formed component detection module also includes a shaker and a power module; the support assembly includes a shaker support; the shaker support supports the above-mentioned shaker, the shaker is mechanically connected to the power module, the shaker is used to place reagents or samples, and the power module is used to output power to drive the shaker to move.

[0019] The power module includes a motor and a rocker arm; one end of the rocker arm is mechanically connected to the motor output shaft, and the other end of the rocker arm is connected to the rocking table. The motor is used to output power to drive the rocking table to move.

[0020] The shaking table includes a heating module and a temperature sensor module. The temperature sensor module is electrically connected to the control module, and the heating module is electrically connected to the control module. The control module is used to obtain the temperature detected by the temperature sensor module; the control module is used to provide electrical energy to the heating module.

[0021] The above-mentioned preheating device for the formed component detection module also includes a test tube pad, which is placed in the above-mentioned shaking table and is used to place reagent test tubes or sample test tubes.

[0022] The test tube pad includes a groove, and the reagent test tube or the sample test tube is placed in the groove.

[0023] The above-mentioned shaped component detection module preheating device also includes a display module, the display module includes a display screen, and the above-mentioned display module is in electrical signal communication with the control module.

[0024] The above-mentioned tangible component detection module preheating device includes any one of the following technical features: TA1: It also includes a button, and the button is connected to the control module by electrical signals; the button is set on the support component; TA2: It also includes a rotary knob, and the rotary knob is connected to the control module by electrical signals; the rotary knob is set on the support component.

[0025] The above-mentioned preheating device for the formed component detection module also includes a temperature sensor, which is used to detect the temperature of the above-mentioned heating plate. The temperature sensor is electrically connected to the control module.

[0026] The above-mentioned preheating device for the formed component detection module further includes an openable protective cover, which is used to shield the heating plate and / or shaking table, and the protective cover is made of transparent, opaque or partially transparent material.

[0027] The technical solution of the present application to solve the above-mentioned technical problems can also be a method for preparing a tangible component microscopic examination sample, which comprises taking a tangible component detection module and allowing the tangible component detection module to reach a set temperature range; taking a sample and a reagent, mixing the sample and the reagent to obtain a microscopic examination sample; and adding the above-mentioned microscopic examination sample into the detection cavity of the above-mentioned tangible component detection module.

[0028] Before mixing the sample with the reagent, the sample temperature should be within the set temperature range; before mixing the sample with the reagent, the reagent temperature should be within the set temperature range.

[0029] The above-mentioned shaped component detection module is placed in any of the above-mentioned devices and reaches the set temperature.

[0030] Place the microscopic sample into the device, set the preheating temperature and preheating time, and preheat for the set preheating time.

[0031] The above-mentioned method for preparing a tangible component microscopic sample further includes placing the above-mentioned microscopic sample into the above-mentioned tangible component detection module preheating device to mix the microscopic sample.

[0032] The microscopic sample is placed in the device, a mixing time is set, and the sample is shaken and mixed for the mixing time.

[0033] The above-mentioned method for preparing a sample for microscopic examination of a tangible component further comprises placing the above-mentioned sample or reagent into the above-mentioned device of claim 4 or 5 so that the sample and the reagent are uniform.

[0034] The above set temperature range is greater than 15 degrees and less than 45 degrees.

[0035] The technical effects of the above technical solution include: the heating plate can increase the temperature of the formed component detection module, ensuring that the temperature conditions of the formed component detection module meet the requirements.

[0036] The technical effects of the above technical solution include: the shaped component detection module placement plate is arranged on the heating plate, which facilitates the placement and movement of multiple shaped component detection modules based on the shaped component detection module placement plate.

[0037] The technical effects of the above technical solution include: the placement groove is used to place the formed component detection module, which is convenient for placement, ensures stable placement, and uniform preheating.

[0038] The technical effects of the above technical solution include: the motor provides power for the shaker and the power module provides power for shaking the sample, saving manpower.

[0039] The technical effects of the above technical solution include: shaking and preheating in one, which is convenient for the integrated preparation of samples for tangible component detection.

[0040] The technical effects of the above technical solution include: the test tube pad is used to place reagent test tubes or sample test tubes, which facilitates the placement of the test tubes and is shaken smoothly to ensure the safety of the samples; the test tube pad includes grooves to further improve the smoothness and reliability of the shaking.

[0041] The technical effects of the above technical solution include: the display module is used to display information such as temperature, shaking time of the shaker, etc., which is convenient for observation.

[0042] The technical effects of the above technical solution include: the buttons and rotary knobs are convenient for operation and control.

[0043] The technical effects of the above technical solution include: the temperature sensor can accurately control the temperature, ensuring the preheating effect of the preheating device of the formed component detection module.

[0044] The technical effects of the above technical solution include: the shaking table includes a heating module, and the temperature can be controlled during the shaking process.

[0045] The technical effects of the above technical solution include: the protective cover can have a heat-insulating effect and is more energy-efficient.

[0046] The technical effects of the above technical solution include: the formed component detection module reaches the set temperature range, providing a temperature environment for microscopic examination samples.

[0047] The technical effects of the above technical solution include: the temperature of the reagents before and after the sample is mixed reaches the set temperature range, further improving the temperature environment stability of the microscopically examined samples.

[0048] The technical effects of the above technical solution include: the preheating temperature and preheating time can be set, which facilitates the preparation of different types of microscopic examination samples.

[0049] The technical effects of the above technical solution include: the temperature range is greater than 15 degrees and less than 45 degrees, and the temperature range is suitable. BRIEF DESCRIPTION OF THE DRAWINGS

[0050] Figures 1 to 3 Schematic diagram of the preheating device for the formed component detection module Figures 1 to 3 ;

[0051] Figure 4 Schematic diagram of a preheating device for a formed component detection module;

[0052] Figure 5 and Figure 6 It is a partial schematic diagram of a preheating device for a formed component detection module;

[0053] Figure 7 This is a schematic diagram of the decomposition state of the preheating device of the formed component detection module. DETAILED DESCRIPTION

[0054] The contents of this application are further described in detail below in conjunction with the accompanying drawings. It should be noted that the following is a description of the preferred embodiments of this application and does not constitute any limitation to this application. The description of the preferred embodiments of this application is only an illustration of the general principles of this application. The numbers such as "first", "second" and "A" and "B" involved in this application are only for the convenience of explanation and do not represent the order relationship in time or space. The combination of letters and numbers "TA", "TB" and "H" involved in this application are only for the convenience of explanation, and the specific meaning is determined by the specific words referred to.

[0055] The visible component detection module, which holds the suspension and is equipped with a transparent cavity, is typically used for visible component detection. In practical applications, visible component detection is often based on stable detection conditions, such as specific temperature conditions, to ensure that the visible components are in a suitable, recognizable state. Changes in environmental conditions can cause changes in the state of the visible components in the suspension, severely impacting identification accuracy.

[0056] like Figures 1 to 3In an embodiment of a preheating device for a formed component detection module, the device includes a control module, a heating plate, and a support assembly; the support assembly is used for support; the control module is installed inside the support assembly; the heating plate is installed on the support assembly; the heating plate is used to place the formed component detection module; the heating plate is used to increase the temperature of the formed component detection module; the control module is electrically connected to the heating plate; and the control module is used to provide electrical energy to the heating plate.

[0057] like Figures 2 to 3 In an embodiment of a shaped component detection module preheating device, the above-mentioned shaped component detection module preheating device also includes a shaped component detection module placement plate, which is arranged on the heating plate, and the shaped component detection module placement plate is used to place the shaped component detection module.

[0058] like Figure 4 and Figure 7 In an embodiment of a preheating device for a formed ingredient detection module, the formed ingredient detection module placement plate includes a placement groove for placing the formed ingredient detection module. The formed ingredient detection module can be a glass slide in the form of a thin chip or a detection device in the form of a test kit, and is used to hold a suspension for formed ingredient detection.

[0059] like Figures 3 to 7 In an embodiment of a preheating device for a formed component detection module, it also includes a shaker and a power module; the support assembly includes a shaker support; the shaker support supports the above-mentioned shaker, the shaker is mechanically connected to the power module, the shaker is used to place reagents or samples, and the power module is used to output power to drive the shaker to move.

[0060] like Figures 5 and 6 In an embodiment of a preheating device for a formed component detection module, the power module includes a motor and a rocker arm; one end of the rocker arm is mechanically connected to the motor output shaft, and the other end of the rocker arm is connected to the rocking table, and the motor is used to output power to drive the rocking table to move.

[0061] like Figures 5 to 7 In an embodiment of the preheating device for the formed component detection module, a test tube pad is further included. The test tube pad is placed in the above-mentioned shaking table and is used to place reagent tubes or sample tubes.

[0062] like Figures 5 to 7 In an embodiment of the preheating device for a formed component detection module, the test tube pad is a wavy test tube pad, and the test tube pad includes a groove, and the reagent test tube or the sample test tube is placed in the groove.

[0063] like Figures 4 to 7 In an embodiment of the preheating device for the formed component detection module, a display module is further included. The display module includes a display screen, and the display module is electrically connected to the control module.

[0064] like Figures 4 to 7 In one embodiment of the preheating device for a formed component detection module, the device further includes a key, the key being in electrical communication with the control module; the key being disposed on the support assembly. The key is used to control the preheating device on and off. The key is also used to control the swing of the rocking bed.

[0065] like Figures 4 to 7 In an embodiment of the preheating device for the formed component detection module, a rotary knob is further provided. The rotary knob is in electrical communication with the control module; the rotary knob is disposed on the support assembly. The rotary knob is used to control the countdown time or the temperature.

[0066] In an embodiment of the preheating device for the shaped component detection module, a temperature sensor is further included, the temperature sensor being used to detect the temperature of the heating plate, the temperature sensor being electrically connected to the control module, and the temperature sensor being arranged near the heating plate.

[0067] The preheating device for a formed component detection module includes a control module, a heating plate, and a support assembly. The support assembly is used for support. The control module is mounted inside the support assembly. The heating plate is mounted on the support assembly. The heating plate is used to place the formed component detection module. The heating plate is used to increase the temperature of the formed component detection module. The control module is electrically connected to the heating plate, and the control module is used to provide electrical energy to the heating plate. This device provides suitable temperature conditions for the formed component detection module, ensuring that the formed components within it are in a state suitable for microscopic imaging and identification.

[0068] In an embodiment of a method for preparing a tangible component microscopic sample, a tangible component detection module is taken and the tangible component detection module is allowed to reach a set temperature range; a sample and a reagent are taken, the sample and the reagent are mixed to obtain a microscopic sample; and the microscopic sample is added to the detection cavity of the tangible component detection module.

[0069] In an embodiment of a method for preparing a sample for microscopic examination of a tangible component, the sample temperature is brought to a set temperature range before the sample is mixed with the reagent; the reagent temperature is brought to a set temperature range before the sample is mixed with the reagent. The tangible component detection module is placed in any of the above-mentioned devices and brought to the set temperature.

[0070] In an embodiment of a method for preparing a microscopic sample of a tangible component, the microscopic sample is placed in the device, the preheating temperature and preheating time are set, and the sample is preheated for the set preheating time. The method for preparing a microscopic sample of a tangible component further includes placing the microscopic sample in the preheating device of the tangible component detection module to mix the microscopic sample. The microscopic sample is placed in the device, the mixing time is set, and the sample is shaken and mixed for the mixing time. The method for preparing a microscopic sample of a tangible component further includes placing the sample or reagent in the device of claim 4 or 5 to make the sample and the reagent uniform. The set temperature range is greater than 15 degrees and less than 45 degrees.

[0071] Although the present application is illustrated and described according to the preferred embodiment and several alternatives, the application is not limited by the specific description in this specification. Other additional replacement or equivalent components can also be used to practice the present application.

Claims

1. A preheating device for a shaped component detection module, characterized in that: Including control module, heating plate, and support assembly; The support assembly is used for supporting; the control module is installed inside the support assembly; the heating plate is installed on the support assembly; The heating plate is used to place the formed component detection module; the heating plate is used to increase the temperature of the formed component detection module; The control module is electrically connected to the heating plate; The control module is used to provide electrical energy to the heating plate.

2. The preheating device for a tangible component detection module according to claim 1, characterized in that: It also includes a formed component detection module placement plate, which is arranged on the heating plate and is used to place the formed component detection module.

3. The preheating device for a tangible component detection module according to claim 2, characterized in that: The shaped component detection module placement plate includes a placement groove, and the placement groove is used for placing the shaped component detection module.

4. The preheating device for a tangible component detection module according to claim 1, characterized in that: It also includes a shaker and a power module; the support assembly includes a shaker support; the shaker support supports the shaker, the shaker is mechanically connected to the power module, the shaker is used to place reagents or samples, and the power module is used to output power to drive the shaker to move.

5. The preheating device for a shaped component detection module according to claim 4, characterized in that: The power module includes a motor and a rocker arm; one end of the rocker arm is mechanically connected to the motor output shaft, and the other end of the rocker arm is connected to the rocking table. The motor is used to output power to drive the rocking table to move.

6. The preheating device for a shaped component detection module according to claim 4, characterized in that: The shaking table includes a heating module and a temperature sensor module. The temperature sensor module is electrically connected to the control module, and the heating module is electrically connected to the control module. The control module is used to obtain the temperature detected by the temperature sensor module; the control module is used to provide electrical energy to the heating module.

7. According to the claim 4 The tangible component detection module preheating device is characterized in that: It also includes a test tube pad, which is placed in the shaking table and is used to place reagent test tubes or sample test tubes.

8. According to the claim 7 The tangible component detection module preheating device is characterized in that: The test tube pad includes a groove, and the reagent test tube or the sample test tube is placed in the groove.

9. The preheating device for a tangible component detection module according to claim 1, characterized in that: Include any one of the following technical features: TA1: Also includes a button, the button is connected to the control module by electrical signals; the button is set on the support assembly; TA2: Also includes a rotary knob, the rotary knob being in electrical signal communication with the control module; the rotary knob is disposed on the support assembly; TA3: Also includes a display module, the display module includes a display screen, and the display module is in electrical signal communication with the control module; TA4: Also includes a temperature sensor, the temperature sensor is used to detect the temperature of the heating plate, and the temperature sensor is connected to the control module by electrical signals.

10. The preheating device for a shaped component detection module according to claim 1 or 4, characterized in that: The device further comprises an openable protective cover, which is used to shield the heating plate and / or the shaking table, and the protective cover is made of transparent, opaque or partially transparent material.