CN217120326U - Novel blood sampling pipe support - Google Patents
Novel blood sampling pipe support Download PDFInfo
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- CN217120326U CN217120326U CN202122761853.5U CN202122761853U CN217120326U CN 217120326 U CN217120326 U CN 217120326U CN 202122761853 U CN202122761853 U CN 202122761853U CN 217120326 U CN217120326 U CN 217120326U
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Abstract
The utility model relates to the field of medical equipment, in particular to a novel blood sampling pipe support, which comprises a plurality of sub-supports, wherein each sub-support comprises a support body, a plurality of blind holes are arranged on the support body, and the bottom of the inner side of each blind hole is respectively provided with a weighing sensor; the rack body is provided with a data box, a controller and a battery are installed in the data box, and the upper end face of the data box is provided with a display screen, an initial key and a control key; the sub-frames are provided with a first connecting piece and a second connecting piece, and the first connecting piece of each sub-frame is detachably and fixedly connected with the second connecting piece of the adjacent sub-frame; all weighing sensors, the battery, the display screen, the start key and the control key are respectively connected with the controller. The utility model discloses reduced nurse's intensity of labour, shortened that the blood sampling is consuming time, it is long to reduce the patient and receive the acupuncture, has alleviateed the misery that the patient brought because of the blood sampling, still greatly reduced the occurence of failure of leaking the blood sampling.
Description
Technical Field
The utility model relates to the field of medical equipment, in particular to new-type blood sampling pipe support.
Background
The blood sampling refers to the process of taking blood samples through veins and arteries by medical staff due to inspection or related needs, the blood sampling is a piece of work which is carried out in a large number in a hospital every day, in the department of hospital, nurses need to place a large number of blood sampling tubes on a test tube rack every day, then place the test tube rack and related medical supplies on a treatment vehicle, push the treatment vehicle to each corresponding ward to draw blood for patients, and generally, each patient needs to draw unequal blood of four to eight tubes. The test-tube rack that uses at present is the integral type structure, and all patients 'test tubes are all placed on same test-tube rack, though all be marked with patient's bed number on every test tube, be unlikely to with the mistake, but a large amount of test tubes are put together, and the vision is chaotic, causes some patients to have adopted one or two tubs of blood less because of leaking to see easily, and the condition of following the prick needle again takes place after pulling out the needle. In addition, because the existing test tube rack can not be disassembled, a whole large rack is inconvenient to place on a bed surface, so that a nurse needs to turn to a treatment vehicle to find another test tube after taking a blood tube, the operation is troublesome, the physical strength is consumed, the time is wasted, and the pain of a patient is prolonged.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem mentioned in the background art, the utility model aims to provide a new-type blood sampling pipe support, the utility model discloses the technical scheme who adopts is:
a novel blood sampling pipe support comprises a plurality of sub-supports, each sub-support comprises a support body, each support body is of a cuboid structure, a plurality of blind holes are formed in the upper end face of each support body, and the bottom of the inner side of each blind hole is provided with a weighing sensor; a data box is arranged at one end of the frame body in the length direction, a controller and a battery are installed in the data box, and a display screen, an initial key and a control key are arranged on the upper end face of the data box; a first connecting piece is arranged at one end of the sub-frame in the width direction, a second connecting piece is arranged at the other end of the sub-frame in the width direction, and the first connecting piece of the sub-frame is detachably and fixedly connected with the second connecting piece of the adjacent sub-frame; all the weighing sensors, the battery, the display screen, the start key and the control key are respectively connected with the controller.
Preferably, the blind holes on each rack body are uniformly provided with two rows, each row is provided with four blind holes, and the arrangement direction is parallel to the length direction of the rack body.
Preferably, the load cell is a membrane pressure sensor.
Preferably, the first connecting piece is a magnet, and the second connecting piece is ferromagnetic stainless steel.
Preferably, the bottom of the sub-frame is covered with a magic tape hook layer.
Preferably, a handle is fixedly installed at one end of the data box, which is far away from the frame body; further, the handle is a square plate-shaped structure, the plate surface of the handle is vertically arranged and parallel to the length direction of the frame body, and the side length of the handle is one centimeter.
Preferably, the control keys comprise a unit increment key, a unit decrement key, a ten-position increment key and a ten-position decrement key; specifically, the shapes of the unit increment key, the unit decrement key, the ten increment key and the ten decrement key are all triangles, the base of the unit increment key is arranged away from the side where the rack body is located, the base of the ten increment key is arranged away from the side where the rack body is located, the base of the unit decrement key is arranged towards the side where the rack body is located, and the base of the ten decrement key is arranged towards the side where the rack body is located; furthermore, "ten" character identifiers are respectively arranged on the ten-position increment key and the ten-position decrement key.
To sum up, owing to adopted above-mentioned technical scheme, the beneficial effects of the utility model are that:
the utility model discloses a every is put up the patient that corresponds a bed number, and it is small to put up the branch, and each is put up mutual dismantled and assembled setting between the branch, makes the branch of taking a blood sample in-process can place on the bed surface by the blood sampling department by the patient very conveniently, makes the blood sampling tube and the position distance of taking a blood sample in-process very close, and the nurse can very fast put back the blood sampling tube of packing into blood and take out next blood sampling tube after having taken a tub of blood, has reduced nurse's intensity of labour, has shortened the blood sampling consuming time, and it is long to reduce the patient and receive the acupuncture, has alleviateed the patient because of the misery that the blood sampling brought; show the surplus in real time on the display screen, the nurse can see very directly perceivedly still how many tubes remain not to adopt, need not one root and carries the heparin tube and confirm whether still not to take a blood sample, has not only made things convenient for nurse's work, still greatly reduced the occurence of failure of blood sampling, reduce the misery of the adjacent secondary of patient's puncture.
Drawings
Fig. 1 is a schematic diagram of an embodiment of the present invention.
Fig. 2 is a schematic view of the sub-rack of the embodiment of the present invention.
Fig. 3 is a sectional view of a frame body according to an embodiment of the present invention.
Fig. 4 is a schematic diagram of a control relationship according to an embodiment of the present invention.
Wherein: 1-split frame, 11-frame body, 111-blind hole, 112-weighing sensor, 12-data box, 121-display screen, 122-start key, 123-control key, 1231-unit increment key, 1232-unit decrement key, 1233-ten-unit increment key, 1234-ten-unit decrement key, 13-first connecting piece, 14-second connecting piece, 15-magic hook layer and 16-handle.
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 accompanying drawings are only for illustrative purposes and are only schematic drawings rather than actual drawings, which are not intended to limit the present disclosure, and in order to better illustrate the embodiments of the present disclosure, some components of the drawings may be omitted, enlarged or reduced, and do not represent the size of an actual product.
Referring to fig. 1-4, in a preferred embodiment of the present invention, a novel blood sampling tube rack includes a plurality of sub-racks 1, each sub-rack 1 includes a rack body 11, the rack body 11 is a rectangular parallelepiped structure, a plurality of blind holes 111 are disposed on an upper end surface of the rack body 11, a weighing sensor 112 is respectively disposed at a bottom of an inner side of each blind hole 111, and the weighing sensor 112 preferably has a thin film pressure sensor with a small volume and sensitive sensing; a data box 12 is arranged at one end of the frame body 11 in the length direction, a controller and a battery are arranged in the data box 12, the controller can be a programmable micro singlechip, the battery can be a lithium battery, and a display screen 121, an initial key 122 and a control key 123 are arranged on the upper end surface of the data box 12; a first connecting piece 13 is arranged at one end of the sub-frame 1 in the width direction, a second connecting piece 14 is arranged at the other end of the sub-frame 1 in the width direction, the first connecting piece 13 of the sub-frame 1 is detachably and fixedly connected with the second connecting piece 14 of the adjacent sub-frame 1, so that the sub-frames 1 are sequentially detachably arranged along the width direction of the sub-frames, the first connecting piece 13 is a magnet, and the second connecting piece 14 is ferromagnetic stainless steel; all the load cells 112, the battery, the display screen 121, the start key 122 and the control key 123 are respectively connected with the controller.
The display screen 121 of the present embodiment is used to display the number of patient beds (hereinafter, referred to as "bed number") corresponding to the blood collection tubes, the total number (hereinafter, referred to as "total number") of blood collection tubes on the holder 11, and the number of blood collection tubes (hereinafter, referred to as "remaining amount") not containing blood. The bed number is input through the control key 123, after all the blood collection tubes corresponding to the bed number are placed in the blind holes 111 of the corresponding frame body 11, the start key 122 is clicked, the controller records the number of the weighing sensors 112 sensing the weight increase record and displays the number on the total number item of the display, and the controller records the weight of each empty blood collection tube; along with the blood collection, the blood collection tube is placed back into the blind hole 111 after being filled with blood, the controller records the number of the weighing sensors 112 sensing that the weighing weight is larger than the single weight of the empty blood collection tube, the number is recorded as N, the total number-N is the allowance, and the controller displays the allowance on the display.
Since the total number of the patient beds of the hospital institutions of most hospitals is more than one hundred, in order to facilitate the input of the patient bed numbers, the control key 123 preferably includes a unit increment key 1231, a unit decrement key 1232, a ten increment key 1233, and a ten decrement key 1234, specifically, the unit increment key 1231, the unit decrement key 1232, the ten increment key 1233, and the ten decrement key 1234 are all triangular in shape, the bottom side of the unit increment key 1231 is disposed away from the side where the rack 11 is located, the bottom side of the ten increment key 1233 is disposed away from the side where the rack 11 is located, the bottom side of the unit decrement key 1232 is disposed toward the side where the rack 11 is located, further, "ten" character identifiers are respectively disposed on the unit increment key 1231 and the unit decrement key 1232, and "ten" character identifiers are respectively disposed on the ten increment key 1233 and the ten decrement key 1234.
The number of the blood sampling tubes per time of the patient in the hospital department is generally between four and six, and some patients also have seven and eight blood sampling tubes per time, so that the requirement of placing the blood sampling tubes per day in the hospital department is met, and the use of the blood sampling tubes is not influenced by the overlarge volume of the frame body 11, preferably, two rows of the blind holes 111 on each frame body 11 are respectively arranged, four blind holes are respectively arranged in each row, and the arrangement direction of the blind holes is parallel to the length direction of the frame body 11.
In order to facilitate the separation between the sub-frame 1 and the sub-frame 1, preferably, a handle 16 is fixedly installed at one end of the data box 12 away from the frame body 11, specifically, the handle 16 is a square plate-shaped structure, a plate surface of the handle 16 is vertically arranged and parallel to the length direction of the frame body 11, and a side length of the handle 16 is one centimeter.
In order to improve the stability of the shelf body 11 on the bed surface, the bottom of the sub-shelf 1 is preferably covered with a hook-and-loop fastener layer 15. When the sub-frame 1 is placed on the bed surface, the hook layer 15 and the bed sheet can be stably connected, so that the placing stability of the sub-frame 1 is improved.
When in use, the bed number is respectively input on each sub-frame 1, the corresponding blood collection tube is loaded, and the start key 122 is clicked; placing all the sub-frames 1 to be used on the treatment trolley, and fixedly connecting the sub-frames 1 on the treatment trolley in sequence through a first connecting piece 13 and a second connecting piece 14, and arranging the sub-frames in order; the treatment trolley is pushed to the side of a bed number of a patient, the sub-frame 1 corresponding to the bed number is taken down and placed on a bed surface beside a position where the patient needs to take blood, so that the distance between a blood taking tube and the blood taking position is very close in the blood taking process, and a nurse can quickly put back the blood taking tube filled with the blood and take out the next blood taking tube after taking one tube of blood, so that the labor intensity of the nurse is reduced, the time consumed for taking blood is shortened, the length of time for the patient to be pricked by a needle is reduced, and the pain of the patient caused by blood taking is relieved; the display screen 121 displays the residual amount in real time, so that a nurse can visually see how many tubes are left without collecting blood, and the nurse does not need to lift the blood collection tubes to determine whether the blood is collected or not, thereby facilitating the work of the nurse, greatly reducing the occurrence of blood leakage accidents, and reducing the pain of the patient caused by secondary needle insertion; after the blood sampling is finished, the corresponding frame body 11 is put back to the treatment vehicle and is connected with other frame bodies 11 to be placed in order.
The above description is for the detailed description of the preferred possible embodiments of the present invention, but the embodiments are not intended to limit the scope of the present invention, and all equivalent variations or modifications made under the technical spirit of the present invention should fall within the scope of the present invention.
Claims (10)
1. The utility model provides a new-type blood sampling pipe support which characterized in that: the device comprises a plurality of sub-frames, wherein each sub-frame comprises a frame body which is of a cuboid structure, a plurality of blind holes are formed in the upper end face of the frame body, and the bottom of the inner side of each blind hole is provided with a weighing sensor; a data box is arranged at one end of the rack body in the length direction, a controller and a battery are installed in the data box, and a display screen, an initial key and a control key are arranged on the upper end face of the data box; a first connecting piece is arranged at one end of the sub-frame in the width direction, a second connecting piece is arranged at the other end of the sub-frame in the width direction, and the first connecting piece of the sub-frame is detachably and fixedly connected with the second connecting piece of the adjacent sub-frame; all the weighing sensors, the battery, the display screen, the start key and the control key are respectively connected with the controller.
2. The novel blood collection tube holder of claim 1, wherein: each blind hole on the frame body is uniformly provided with two rows, four blind holes are arranged on each row, and the arrangement direction of the blind holes is parallel to the length direction of the frame body.
3. The novel blood collection tube holder of claim 1, wherein: the weighing sensor is a film pressure sensor.
4. The novel blood collection tube holder of claim 1, wherein: the first connecting piece is a magnet, and the second connecting piece is made of ferromagnetic stainless steel.
5. The novel blood collection tube rack according to claim 1, characterized in that: the bottom of the sub-frame is covered with a magic tape hook layer.
6. The novel blood collection tube holder of claim 1, wherein: the data box is kept away from one end of the frame body is fixedly provided with a handle.
7. The novel blood collection tube holder of claim 6, wherein: the handle is a square plate-shaped structure, the plate surface of the handle is vertically arranged and is parallel to the length direction of the frame body, and the side length of the handle is one centimeter.
8. The novel blood collection tube holder of claim 1, wherein: the control keys comprise a unit increment key, a unit decrement key, a ten-position increment key and a ten-position decrement key.
9. The novel blood collection tube holder of claim 8, wherein: the shapes of the unit increment key, the unit decrement key, the ten increment key and the ten decrement key are all triangles, the base of the unit increment key is far away from the side where the rack body is located, the base of the ten increment key is far away from the side where the rack body is located, the base of the unit decrement key is arranged towards the side where the rack body is located, and the base of the ten decrement key is arranged towards the side where the rack body is located.
10. The novel blood collection tube holder of claim 8, wherein: the ones-bit increment key and the ones-bit decrement key are respectively provided with a 'number' character mark, and the ten-bit increment key and the ten-bit decrement key are respectively provided with a 'ten' character mark.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122761853.5U CN217120326U (en) | 2021-11-11 | 2021-11-11 | Novel blood sampling pipe support |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122761853.5U CN217120326U (en) | 2021-11-11 | 2021-11-11 | Novel blood sampling pipe support |
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CN217120326U true CN217120326U (en) | 2022-08-05 |
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CN202122761853.5U Active CN217120326U (en) | 2021-11-11 | 2021-11-11 | Novel blood sampling pipe support |
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- 2021-11-11 CN CN202122761853.5U patent/CN217120326U/en active Active
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