CN215694191U - Clinical trial detects uses blood sample strorage device - Google Patents

Clinical trial detects uses blood sample strorage device Download PDF

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Publication number
CN215694191U
CN215694191U CN202122073535.XU CN202122073535U CN215694191U CN 215694191 U CN215694191 U CN 215694191U CN 202122073535 U CN202122073535 U CN 202122073535U CN 215694191 U CN215694191 U CN 215694191U
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baffle
supporting plate
blood sample
cooling
placing
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CN202122073535.XU
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Chinese (zh)
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李春玲
孟祥建
张海玲
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SHANDONG GREEN TESTING CO Ltd
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SHANDONG GREEN TESTING CO Ltd
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Abstract

The utility model relates to the technical field of detection articles, in particular to a blood sample storage device for clinical test detection, which comprises a base, wherein a first baffle and a second baffle which are perpendicular to the base are respectively arranged at two ends of the base; the first supporting plate is provided with a plurality of first placing holes, and the second supporting plate is provided with a plurality of first placing grooves matched with the first placing holes; the third backup pad is equipped with a plurality of second and places the hole, is equipped with a plurality of and places the second standing groove of hole mutual adaptation in the fourth backup pad. Adopt the strorage device of above-mentioned structure, realized placing a plurality of test tubes on the one hand, on the other hand has satisfied the demand of different length test tubes, has improved adaptability.

Description

Clinical trial detects uses blood sample strorage device
Technical Field
The utility model relates to the technical field of detection articles, in particular to a blood sample storage device for clinical test detection.
Background
At present, in order to promote the release of oral cefuroxime axetil in vivo, pharmaceutical companies prepare the oral cefuroxime axetil dispersible tablets from the oral cefuroxime axetil. In order to detect the release, absorption and metabolism of drugs in vivo, it is necessary to collect blood of a subject for a predetermined period of time and then perform detection. The blood that prior art will draw is stored with the test tube and is placed in on the test-tube rack afterwards, but for experimental accuracy, need gather the blood sample of a plurality of subjects in different time quantums, the volume of gathering of blood sample is different in different time quantums in the needs for detecting, this test tube that just means to be used for storing the blood sample is more, and test tube length is also different, however current test-tube rack simple structure, the jack depth that is used for placing the test tube on the test-tube rack is certain, adaptability is poor, can not satisfy the demand of different length test tubes, the space that is used for placing the test tube is limited in addition. Therefore, in order to solve the above problems, it is necessary to develop a blood sample storage device for clinical test.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is as follows: to prior art's not enough, provide a clinical trial detects and uses blood sample strorage device, this strorage device can place a plurality of blood sample test tubes, satisfies placing of different length test tubes moreover, has improved the adaptability.
In order to solve the technical problems, the technical scheme of the utility model is as follows:
a blood sample storage device for clinical test detection comprises a base, wherein a first baffle and a second baffle which are perpendicular to the base are respectively arranged at two ends of the base, a first supporting plate is arranged between the first baffle and the second baffle, a movable second supporting plate is arranged below the first supporting plate, a movable third supporting plate is arranged below the second supporting plate, and a movable fourth supporting plate is arranged below the third supporting plate; the first supporting plate is provided with a plurality of first placing holes, and the second supporting plate is provided with a plurality of first placing grooves matched with the first placing holes; the third supporting plate is provided with a plurality of second placing holes, and the fourth supporting plate is provided with a plurality of second placing grooves matched with the second placing holes.
As an improved technical scheme, the second supporting plate, the third supporting plate and the fourth supporting plate are in sliding connection with the first baffle plate and the second baffle plate.
As an improved technical scheme, a first sliding groove is vertically formed in the inner walls of the first baffle and the second baffle, and first sliding blocks matched with the first sliding groove are respectively arranged on two sides of the second supporting plate.
As an improved technical scheme, second sliding grooves are respectively formed in the inner walls of the first baffle and the second baffle along the width of the respective baffle, and second sliding blocks matched with the second sliding grooves are respectively arranged on two sides of the third supporting plate.
As an improved technical scheme, third sliding grooves are respectively formed in the inner walls of the first baffle and the second baffle along the width of the respective baffle, and third sliding blocks matched with the third sliding grooves are respectively arranged on two sides of the bottom of the fourth supporting plate.
As an improved technical scheme, a third baffle and a fourth baffle are respectively movably arranged inside the first baffle and the second baffle, fourth sliding grooves are respectively arranged on the inner walls of the third baffle and the fourth baffle along the length of the respective baffle, and fourth sliding blocks matched with the fourth sliding grooves are respectively arranged on two side walls of the third supporting plate and the fourth supporting plate.
As an improved technical scheme, two adjacent columns are arranged between the first placing holes and two adjacent columns, a cooling structure is arranged between the second placing holes respectively and comprises a plurality of cooling grooves, each cooling groove is provided with a plurality of auxiliary cooling portions, the cooling grooves and the auxiliary cooling portions are cylindrical, and cooling media are arranged inside the cooling grooves and the auxiliary cooling portions respectively.
After the technical scheme is adopted, the utility model has the beneficial effects that:
the blood sample storage device for clinical test detection comprises a base, wherein a first baffle and a second baffle which are perpendicular to the base are respectively arranged at two ends of the base, a first supporting plate is arranged between the first baffle and the second baffle, a movable second supporting plate is arranged below the first supporting plate, a movable third supporting plate is arranged below the second supporting plate, and a movable fourth supporting plate is arranged below the third supporting plate; the first supporting plate is provided with a plurality of first placing holes, and the second supporting plate is provided with a plurality of first placing grooves matched with the first placing holes; the third backup pad is equipped with a plurality of second and places the hole, is equipped with a plurality of and places the second standing groove of hole mutual adaptation in the fourth backup pad. In practical application, medical staff place a plurality of collected test tubes filled with blood samples in the first placing holes of the first supporting plate, and the requirements of different test tube lengths are met by moving the position of the second supporting plate up and down; after the test tube was filled to first backup pad, pull out third backup pad and fourth backup pad from between first baffle and the second baffle again, place the downthehole portion at the second of third backup pad with the test tube that is equipped with the blood sample again, increased the test tube and placed the space. Adopt the strorage device of above-mentioned structure, realized placing a plurality of test tubes on the one hand, on the other hand has satisfied the demand of different length test tubes, has improved adaptability.
Because the inner walls of the first baffle and the second baffle are respectively and vertically provided with a first sliding groove, the two sides of the second supporting plate are respectively provided with a first sliding block matched with the first sliding grooves. The sliding block and the sliding groove are adopted, so that the position of the second supporting plate can be conveniently adjusted up and down.
Because the inner walls of the first baffle and the second baffle are respectively provided with a second sliding groove along the width of each baffle, and the two sides of the third supporting plate are respectively provided with a second sliding block matched with the second sliding grooves. Adopt slider and spout design, be convenient for pull out the third backup pad from between first baffle and the second baffle.
Because the inner walls of the first baffle and the second baffle are respectively provided with a third sliding groove along the width of each baffle, and the two sides of the bottom of the fourth supporting plate are respectively provided with a third sliding block matched with the third sliding grooves. Adopt spout and slider design, be convenient for pull out the fourth backup pad from between first baffle and the second baffle.
Because the inside of first baffle and second baffle is equipped with third baffle and fourth baffle respectively movably, is equipped with the fourth spout respectively along the length of baffle separately on the inner wall of third baffle and fourth baffle, is equipped with the fourth slider with the mutual adaptation of fourth spout on two lateral walls of third backup pad and fourth backup pad respectively. The third supports originally and the back is pulled out from between first baffle and the second baffle to the fourth backup pad, and the fourth slider in third backup pad and the fourth backup pad slides in the spout of third baffle and fourth baffle, has realized the adjustment to position about third backup pad and the fourth backup pad, has further satisfied the demand of different length test tubes.
Because adjacent two are listed as between the first hole of placing and adjacent two are listed as the second and place and be equipped with the cooling structure between the hole respectively, the cooling structure includes a plurality of cooling grooves, is equipped with a plurality of supplementary cooling portions around every cooling groove, and the shape of cooling groove and supplementary cooling portion is cylindrical, and the inside of cooling groove and supplementary cooling portion is equipped with the cooling medium respectively. The cooling groove and the inside ice bag that is equipped with of a plurality of supplementary cooling portions have realized the cold-stored cooling to the blood sample through setting up cooling structure.
Drawings
FIG. 1 is a schematic structural diagram of a blood sample storage device for clinical test and examination according to the present invention;
the cooling device comprises a base 1, a first baffle 2, a first sliding groove 20, a second sliding groove 21, a second baffle 3, a first supporting plate 4, a first placing hole 40, a second supporting plate 5, a first placing groove 50, a third supporting plate 6, a second placing hole 60, a second sliding block 61, a fourth sliding block 62, a fourth supporting plate 7, a second placing groove 70, a third sliding block 71, a third baffle 8, a fourth sliding groove 80, a fourth baffle 9, a cooling structure 10, a cooling groove 100, an auxiliary cooling part 101 and a square groove 11.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in further detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
A blood sample storage device for clinical test detection is shown in figure 1 and comprises a base 1, wherein a first baffle 2 and a second baffle 3 which are perpendicular to the base 1 are respectively arranged at two ends of the base 1, a first supporting plate 4 is arranged between the first baffle 2 and the second baffle 3, a movable second supporting plate 5 is arranged below the first supporting plate 4, a movable third supporting plate 6 is arranged below the second supporting plate 5, and a movable fourth supporting plate 7 is arranged below the third supporting plate 6; a plurality of first placing holes 40 are formed in the first supporting plate 4, and a plurality of first placing grooves 50 matched with the first placing holes 40 are formed in the second supporting plate 5; the third supporting plate 6 is provided with a plurality of second placing holes 60, and the fourth supporting plate 7 is provided with a plurality of second placing grooves 70 adapted to the second placing holes 60.
In practical application, medical staff place a plurality of collected test tubes filled with blood samples in the first placing holes of the first supporting plate, and the requirements of different test tube lengths are met by moving the position of the second supporting plate up and down; after the test tube was filled to first backup pad, pull out third backup pad and fourth backup pad from between first baffle and the second baffle again, place the downthehole portion at the second of third backup pad with the test tube that is equipped with the blood sample again, increased the test tube and placed the space. Adopt the strorage device of above-mentioned structure, realized placing a plurality of test tubes on the one hand, on the other hand has satisfied the demand of different length test tubes, has improved adaptability.
Wherein the inner walls of the first baffle 2 and the second baffle 3 are respectively and vertically provided with a first chute 20, and the two sides of the second supporting plate 5 are respectively provided with a first slide block matched with the first chute 20. In practical application, the second supporting plate is adjusted up and down through sliding the second supporting handle door up and down.
Wherein, the inner walls of the first baffle 2 and the second baffle 3 are respectively provided with a second sliding chute 21 along the width of the respective baffle, and the two sides of the third supporting plate 6 are respectively provided with a second sliding block 61 which is matched with the second sliding chute 21. Adopt slider and spout design, be convenient for pull out the third backup pad from between first baffle and the second baffle.
Wherein, the inner walls of the first baffle 2 and the second baffle 3 are respectively provided with a third sliding chute 22 along the width of the respective baffle, and the two sides of the bottom of the fourth supporting plate 7 are respectively provided with a third sliding block 71 which is matched with the third sliding chute 22. Adopt spout and slider design, be convenient for pull out the fourth backup pad from between first baffle and the second baffle.
Wherein the inside of first baffle 2 and second baffle 3 is equipped with third baffle 8 and fourth baffle 9 (the bottom of third baffle and fourth baffle is equipped with the slide respectively, be equipped with the spout with the mutual adaptation of slide on the bottom inner wall of first baffle and second baffle), be equipped with fourth spout 80 respectively along the length of baffle separately on the inner wall of third baffle 8 and fourth baffle 9, be equipped with the fourth slider 62 with the mutual adaptation of fourth spout 80 on two lateral walls of third backup pad 6 and fourth backup pad 7 respectively. The third supports originally and the back is pulled out from between first baffle and the second baffle to the fourth backup pad, and the fourth slider in third backup pad and the fourth backup pad slides in the spout of third baffle and fourth baffle, has realized the adjustment to position about third backup pad and the fourth backup pad, has further satisfied the demand of different length test tubes.
Wherein be equipped with cooling structure 10 between two adjacent first placing holes 40 and two adjacent second placing holes 60 respectively, cooling structure includes a plurality of cooling grooves 100, is equipped with a plurality of supplementary cooling portion 101 around every cooling groove 100, and the shape of cooling groove 100 and supplementary cooling portion 101 is cylindrical, and the inside of cooling groove and supplementary cooling portion is equipped with the cooling medium respectively. The cooling groove and the inside ice bag that is equipped with of a plurality of supplementary cooling portions have realized the cold-stored cooling to the blood sample through setting up cooling structure.
Wherein adjacent two first standing grooves and adjacent two second standing grooves between be equipped with square groove 11 respectively, put into the ice bag in the square groove, realized the cooling to the blood sample.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents and improvements made within the spirit and principle of the present invention are intended to be included within the scope of the present invention.

Claims (7)

1. The utility model provides a clinical trial detects uses blood sample strorage device which characterized in that: the novel adjustable type base is characterized by comprising a base, wherein a first baffle and a second baffle which are perpendicular to the base are respectively arranged at two ends of the base, a first supporting plate is arranged between the first baffle and the second baffle, a movable second supporting plate is arranged below the first supporting plate, a movable third supporting plate is arranged below the second supporting plate, and a movable fourth supporting plate is arranged below the third supporting plate; the first supporting plate is provided with a plurality of first placing holes, and the second supporting plate is provided with a plurality of first placing grooves matched with the first placing holes; the third supporting plate is provided with a plurality of second placing holes, and the fourth supporting plate is provided with a plurality of second placing grooves matched with the second placing holes.
2. The device for storing a blood sample for clinical laboratory test according to claim 1, wherein: the second supporting plate, the third supporting plate and the fourth supporting plate are connected with the first baffle and the second baffle in a sliding mode.
3. The device for storing a blood sample for clinical laboratory test according to claim 2, wherein: the inner walls of the first baffle and the second baffle are respectively and vertically provided with a first sliding groove, and two sides of the second supporting plate are respectively provided with a first sliding block matched with the first sliding grooves.
4. The device for storing a blood sample for clinical laboratory test according to claim 2, wherein: and second sliding grooves are respectively formed in the inner walls of the first baffle and the second baffle along the width of each baffle, and second sliding blocks matched with the second sliding grooves are respectively arranged on two sides of the third supporting plate.
5. The device for storing a blood sample for clinical laboratory test according to claim 2, wherein: third sliding grooves are formed in the inner walls of the first baffle and the second baffle along the width of the respective baffle, and third sliding blocks matched with the third sliding grooves are arranged on two sides of the bottom of the fourth supporting plate respectively.
6. The device for storing a blood sample for clinical laboratory test according to claim 2, wherein: the inner parts of the first baffle and the second baffle are respectively and movably provided with a third baffle and a fourth baffle, the inner walls of the third baffle and the fourth baffle are respectively provided with a fourth chute along the length of each baffle, and two side walls of the third support plate and the fourth support plate are respectively provided with a fourth sliding block matched with the fourth chute.
7. The device for storing a blood sample for clinical laboratory test according to claim 1, wherein: two adjacent are listed as between the first hole of placing and two adjacent are listed as be equipped with the cooling structure between the hole is placed to the second respectively, the cooling structure includes a plurality of cooling grooves, every be equipped with a plurality of supplementary cooling portions around the cooling groove, the cooling groove with the shape of supplementary cooling portion is cylindrical, the cooling groove with the inside of supplementary cooling portion is equipped with the cooling medium respectively.
CN202122073535.XU 2021-08-30 2021-08-30 Clinical trial detects uses blood sample strorage device Active CN215694191U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122073535.XU CN215694191U (en) 2021-08-30 2021-08-30 Clinical trial detects uses blood sample strorage device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122073535.XU CN215694191U (en) 2021-08-30 2021-08-30 Clinical trial detects uses blood sample strorage device

Publications (1)

Publication Number Publication Date
CN215694191U true CN215694191U (en) 2022-02-01

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CN202122073535.XU Active CN215694191U (en) 2021-08-30 2021-08-30 Clinical trial detects uses blood sample strorage device

Country Status (1)

Country Link
CN (1) CN215694191U (en)

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