CN217068953U - Auxiliary frame of flying measurement semi-automatic bedside detector - Google Patents
Auxiliary frame of flying measurement semi-automatic bedside detector Download PDFInfo
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- CN217068953U CN217068953U CN202221034683.9U CN202221034683U CN217068953U CN 217068953 U CN217068953 U CN 217068953U CN 202221034683 U CN202221034683 U CN 202221034683U CN 217068953 U CN217068953 U CN 217068953U
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Abstract
The utility model discloses a fly to survey other detector auxiliary frame of semi-automatic bed relates to detector auxiliary frame technical field. The utility model comprises a placing rack which is in a ladder-shaped structure, wherein the placing rack comprises a first ladder, a second ladder and a third ladder from high to low; first ladder upside is equipped with a plurality of test tube standing grooves along length direction, and first ladder upside is equipped with the reference numeral corresponding with the test tube standing groove, and second ladder upside is equipped with two diluents that correspond with the test tube standing groove and places the hole, and the third ladder upside is equipped with and places the corresponding reagent card standing groove of hole with the diluent. The utility model discloses a be equipped with a plurality of test tube standing grooves along length direction at first ladder upside, the first ladder upside is equipped with the reference numeral corresponding with the test tube standing groove, is convenient for avoid placing the confusion of different patients' blood sampling test tubes to cause the sample mistake, also avoids the blood sampling test tube because of placing the improper possibility of dropping ground.
Description
Technical Field
The utility model belongs to the technical field of the detector auxiliary frame, especially, relate to a fly and survey semi-automatic other detector auxiliary frame of bed.
Background
The chest pain patient comes to diagnose first aid and handles and needs to draw blood and carry out two items of bedside detection cardiac muscle enzyme trinity and D-2 mer, and require two items of detection to go out the inspection result in 20 minutes after the blood drawing finishes, the detection of the machine on the three items of detection of cardiac muscle needs 15 minutes to accomplish, the detection of D-2 mer machine needs 5 minutes to accomplish, it samples to the appointed test area of test card from the test tube of drawing blood to mean that the nurse only carries out 5 minutes time, in-process need once sample to shake even back sample again and drip the test area downthehole of test card.
The prior semi-automatic bedside detector has the following problems;
1. the semi-automatic bedside detector needs manual sampling to a test area of a test card, often needs more objects, wherein the objects comprise a sampling handle, diluent bottle liquid and a detection reagent sheet, and one more diluent bottle liquid and one more test card are correspondingly arranged every time an inspection item is added;
2. the sampling handle is required to sample 75ul or 15ul in the operation process, the sampling liquid amount is small, the sampling action is fine, if the sample is added to the round hole area of the test card and shakes, the drip is not uniform, and the leakage outside the test area can also cause that the detector cannot give a result on time due to abnormal sampling, so that the treatment of a patient with chest pain is delayed;
3. if the result of the detection machine cannot be timely output due to abnormal sampling, a new detection agent needs to be added again, the cost of the detection agent is high, the burden of a patient is increased, and the resource waste is also caused.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a fly to survey other detector auxiliary frame of semi-automatic bed, the test area that current other detector of semi-automatic bed needs the artifical sample to the test card has been solved, often need more usefulness thing, wherein contain the sample handle, dilute the bottle liquid, the detect reagent piece, and every increase an inspection item, will corresponding a more dilute the bottle liquid and test card, if detect simultaneously several patients simultaneously, use the thing more in disorder, sample information mistake possibility increases, can influence operating efficiency also, the influence goes out the technical problem of result rate on time.
In order to achieve the purpose, the utility model is realized by the following technical proposal:
a flight measurement semi-automatic bedside detector auxiliary frame comprises a placing frame, wherein the placing frame is of a stepped structure and comprises a first step, a second step and a third step from high to low;
first ladder upside is equipped with a plurality of test tube standing grooves along length direction, and first ladder upside is equipped with the reference numeral corresponding with the test tube standing groove, and the second ladder upside is equipped with two diluent placing holes corresponding with the test tube standing groove, and the third ladder upside is equipped with and places the corresponding reagent card standing groove of hole with the diluent, and the cooperation of second ladder side has the locating piece corresponding with the reagent card standing groove, and the locating piece upside is equipped with the locating hole.
Optionally, the reagent card is placed in the reagent card standing groove, and the reagent card standing groove is the open slot, and the length of reagent card is greater than the length of reagent card standing groove, and reagent card one end stretches out the reagent card standing groove, and the reagent card upside is equipped with the district of instilling, and the locating hole is corresponding with the district of instilling.
Optionally, a guide cylinder is arranged on the side surface of the second step, a guide post fixedly connected with the positioning block is arranged in the guide cylinder in a sliding fit mode, a through hole is formed in one side of the second step along the length direction, a worm wheel corresponding to the positioning block is arranged on the inner wall of the through hole in a rotating fit mode, a threaded rod extending out of the through hole and in threaded fit with the guide post is fixed on the worm wheel, and a worm meshed with the worm wheels is arranged in the through hole in a rotating fit mode.
Optionally, the guide post is of a polygonal cylinder structure, and the vertical sections of the guide post and the guide cylinder are of polygonal structures.
Optionally, hand wheels are arranged on the through holes extending out of the two ends of the worm.
Optionally, the sampling device further comprises a sampling handle, wherein the sampling handle comprises a handle and a gun head connected to one end of the handle.
The embodiment of the utility model has the following beneficial effect:
through being equipped with a plurality of test tube standing grooves along length direction at first ladder upside, first ladder upside is equipped with the reference numeral corresponding with the test tube standing groove, be convenient for avoid placing the confusion of different patients 'blood sampling test tube to cause the sample mistake, also avoid the blood sampling test tube because of placing the improper possibility of dropping ground, be ladder-shaped structure through setting up the rack, it is bright to put the thing according to every layer, make things convenient for nurse's operation, save time, improve treatment efficiency, also improve work efficiency, there is the locating piece corresponding with reagent card standing groove through setting up the cooperation of second ladder side, the locating piece upside is equipped with the locating hole, be convenient for the application of sample to drip when dripping on the reagent card, the sample handle is difficult to rock, avoid leading to the problem that can not go out the result on time because of the sampling is unusual, the waste of consumptive material reagent has also been reduced, alleviate the burden for patient.
Of course, it is not necessary for any particular product to achieve all of the above-described advantages at the same time.
Drawings
The accompanying drawings, which form a part of the present application, are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the invention and not to limit the invention. In the drawings:
fig. 1 is a schematic perspective view of an embodiment of the present invention;
fig. 2 is a cross-sectional view of an embodiment of the present invention;
fig. 3 is a schematic structural view of a sampling handle according to an embodiment of the present invention.
Wherein the figures include the following reference numerals:
the reagent card placing device comprises a placing rack 1, a test tube placing groove 2, a diluent placing hole 3, a positioning block 4, a reagent card placing groove 5, a positioning hole 6, a reagent card 8, a dripping area 9, a guide cylinder 10, a guide column 11, a through hole 13, a worm wheel 14, a threaded rod 15, a worm 16 and a hand wheel 17;
a first step 101, a second step 102, a third step 103;
a handle 701 and a gun head 702.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. The following description of at least one exemplary embodiment is merely illustrative in nature and is in no way intended to limit the invention, its application, or uses.
To maintain the following description of the embodiments of the present invention clear and concise, detailed descriptions of well-known functions and components may be omitted.
Referring to fig. 1-3, in the present embodiment, an auxiliary frame of a flight measurement semi-automatic bedside detector is provided, which includes: the rack 1 is of a stepped structure, and the rack 1 comprises a first step 101, a second step 102 and a third step 103 from high to low;
By arranging a plurality of test tube placing grooves 2 along the length direction on the upper side of the first step 101 and arranging the labels corresponding to the test tube placing grooves 2 on the upper side of the first step 101, sampling errors caused by disordered placement of blood sampling test tubes of different patients can be avoided, the possibility that the blood sampling test tubes fall off the ground due to improper placement can be avoided, by arranging the placing rack 1 to be of a stepped structure, the objects are placed on each layer, the operation of nurses is facilitated, the time is saved, the treatment efficiency is improved, the working efficiency is also improved, by arranging the second step 102 with the side surface matched with the positioning block 4 corresponding to the reagent card placing groove 5 and the positioning hole 6 on the upper side of the positioning block 4, when the sample adding drip is dripped to the dripping area 9 on the reagent card 8, the sampling handle 7 is not easy to shake, the problem that the result cannot be output on time due to abnormal sampling is avoided, the waste of consumable reagents is reduced, and the burden of a patient is relieved.
In the embodiment, a reagent card 8 is placed in a reagent card placing groove 5, the reagent card placing groove 5 is an open groove, the length of the reagent card 8 is greater than that of the reagent card placing groove 5, one end of the reagent card 8 extends out of the reagent card placing groove 5, so that the reagent card 8 can be rapidly taken and placed through the end of the reagent card 8 extending out of the reagent card placing groove 5, an instillation area 9 is arranged on the upper side of the reagent card 8, a positioning hole 6 corresponds to the instillation area 9, a guide cylinder 10 is arranged on the side surface of a second step 102, a guide post 11 fixedly connected with a positioning block 4 is in sliding fit with the guide cylinder 10, a through hole 13 is formed in one side of the second step 102 along the length direction, a worm wheel 14 corresponding to the positioning block 4 is rotatably matched on the inner wall of the through hole 13, a threaded rod 15 extending out of the through hole 13 and in threaded fit with the guide post 11 is fixed on the worm wheel 14, a worm 16 meshed with the worm wheel 14 is in the through hole 13 in rotating fit, the worm 16 is convenient to rotate to drive the worm gears 14 to rotate simultaneously, the worm gears 14 drive the threaded rods 15 to rotate to drive the guide columns 11 and the positioning blocks 4 to slide, the positions of the positioning blocks 4 and the positioning holes 6 are further adjusted simultaneously, and the reagent cards 8 in different positions of the drip region 9 are convenient to drip.
The guide post 11 of this embodiment is a polygonal column structure, and the vertical cross-sections of the guide post 11 and the guide cylinder 10 are polygonal structures, so that the guide post 11 and the positioning block 4 can slide stably.
Both ends of the worm 16 of the embodiment extend out of the through holes 13 and are provided with hand wheels 17, so that the hand wheels 17 can be rotated manually to drive the worm 16 to rotate.
The still including sampling handle 7 of this embodiment, sampling handle 7 includes handle 701, connects the rifle head 702 in handle 701 one end, and the difficult horizontal migration of locating hole 6 restriction sampling handle 7 is inserted to the rifle head 702 end of sampling handle 7 of being convenient for, and then improves stability and the rate of accuracy that sampling handle 7 instilled district 9.
The working principle is as follows: place the sampling test tube in test tube standing groove 2, then to contain diluent A, the diluent bottle of diluent B places respectively in diluent standing hole 3, absorb the blood sample in the sampling test tube in test tube standing groove 2, drip to in the diluent in diluent standing hole 3, drip district 9 that drips on reagent card 8 after mixing and diluting, insert in locating hole 6 through rifle head 702 of sampling handle 7, handle 701 is kept off outside locating hole 6, the play liquid end of rifle head 702 just is located reagent card 8's drip district 9 tops, then extrude the interior liquid of sampling handle 7 and fall into in the test area of reagent card 9.
The above embodiments may be combined with each other.
The present invention is not limited to the above embodiments, and any person should learn the structural changes made under the teaching of the present invention, all fall within the protection scope of the present invention.
The technology, shape and construction parts which are not described in detail in the present invention are all known technology.
Claims (6)
1. The utility model provides a fly to survey other detector auxiliary frame of semi-automatic bedside which characterized in that includes: the rack (1), the rack (1) is of a stepped structure, and the rack (1) comprises a first step (101), a second step (102) and a third step (103) from high to low; first ladder (101) upside is equipped with a plurality of test tube standing grooves (2) along length direction, first ladder (101) upside is equipped with the reference numeral corresponding with test tube standing groove (2), second ladder (102) upside is equipped with two diluent placing holes (3) corresponding with test tube standing groove (2), third ladder (103) upside is equipped with reagent card standing groove (5) corresponding with diluent placing hole (3), second ladder (102) side cooperation has locating piece (4) corresponding with reagent card standing groove (5), locating piece (4) upside is equipped with locating hole (6).
2. The auxiliary frame for the flight testing semi-automatic bedside detector according to claim 1, wherein a reagent card (8) is placed in the reagent card placing groove (5), the reagent card placing groove (5) is an open groove, the length of the reagent card (8) is greater than that of the reagent card placing groove (5), one end of the reagent card (8) conveniently extends out of the reagent card placing groove (5), the dripping area (9) is arranged on the upper side of the reagent card (8), and the positioning hole (6) corresponds to the dripping area (9).
3. The auxiliary frame for the flight testing semi-automatic bedside detector of claim 1, wherein a guide cylinder (10) is arranged on the side surface of the second step (102), a guide column (11) fixedly connected with the positioning block (4) is arranged in the guide cylinder (10) in a sliding fit mode, a through hole (13) is formed in one side of the second step (102) along the length direction, a worm wheel (14) corresponding to the positioning block (4) is rotatably matched with the inner wall of the through hole (13), a threaded rod (15) extending out of the through hole (13) and in threaded fit with the guide column (11) is fixed on the worm wheel (14), and a worm (16) meshed with the worm wheels (14) is rotatably matched in the through hole (13).
4. The auxiliary frame for the flight testing semi-automatic bedside detector of claim 3, wherein the guide post (11) is of a polygonal column structure, and the vertical sections of the guide post (11) and the guide cylinder (10) are of polygonal structures.
5. The auxiliary frame for the flight testing semi-automatic bedside detector of claim 3, wherein hand wheels (17) are arranged at both ends of the worm (16) extending out of the through hole (13).
6. The auxiliary frame for the flight testing semi-automatic bedside detector of claim 1, further comprising a sampling handle (7), wherein the sampling handle (7) comprises a handle (701) and a gun head (702) connected to one end of the handle (701).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221034683.9U CN217068953U (en) | 2022-05-02 | 2022-05-02 | Auxiliary frame of flying measurement semi-automatic bedside detector |
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CN202221034683.9U CN217068953U (en) | 2022-05-02 | 2022-05-02 | Auxiliary frame of flying measurement semi-automatic bedside detector |
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CN217068953U true CN217068953U (en) | 2022-07-29 |
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CN202221034683.9U Active CN217068953U (en) | 2022-05-02 | 2022-05-02 | Auxiliary frame of flying measurement semi-automatic bedside detector |
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- 2022-05-02 CN CN202221034683.9U patent/CN217068953U/en active Active
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