CN212327101U - Micro-pump push injection extravasation detection device - Google Patents
Micro-pump push injection extravasation detection device Download PDFInfo
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- CN212327101U CN212327101U CN201721384151.7U CN201721384151U CN212327101U CN 212327101 U CN212327101 U CN 212327101U CN 201721384151 U CN201721384151 U CN 201721384151U CN 212327101 U CN212327101 U CN 212327101U
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- pressure sensor
- detection device
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- sensor mounting
- extravasation
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Abstract
The utility model relates to a not only can in time detect the micropump and leak the agent when injecting, the micropump that the suitability is good moreover injects extravasation detection device, which comprises a supporting plate, be equipped with two arm rings on the layer board, it is located between two arm rings to be equipped with pressure sensor mounting band and pressure sensor mounting band on the layer board, be fixed with pressure sensor on the pressure sensor mounting band. The advantages are that: the micro-pump injection extravasation detection device can timely detect the problem of extravasation when the micro-pump injection is injected, so that medical personnel can timely treat the micro-pump injection extravasation detection device, and a large amount of saline water is prevented from entering subcutaneous tissues of a human body; secondly, the micro-pump injection extravasation detection device is convenient to use and has good applicability.
Description
Technical Field
The utility model relates to a not only can in time detect defeated micropump and appear leaking the agent when injecting, the micropump that the suitability is good moreover injects extravasation detection device belongs to transfusion system auxiliary assembly and makes the field.
Background
When some tissues or organs of a human body are subjected to image examination, in order to enhance the image observation effect, the micro pump needs to be injected into the corresponding tissues or organs of the human body by performing venipuncture on the arm in an X-ray room (the high pressure pump is injected and the radiography is performed at the same time), but the puncture needle is fixed on the arm of the human body through an adhesive bandage in the process of injecting the high pressure pump, the problem that the puncture needle slips out of the vein often occurs in the fixing mode in the venous transfusion process, medical personnel or family members need to be specially accompanied and observed, so that subcutaneous tissue damage caused by extravasation of the agent is avoided, adverse consequences such as red, swelling, pain and the like are caused, meanwhile, radiography enhancement failure is caused, and the radiography is influenced, and meanwhile, the medical personnel or the family members who accompany and care for the purpose suffer from X-ray damage, so as to receive unnecessary ray radiation.
Disclosure of Invention
The design purpose is as follows: in order to avoid the defects in the background technology, the device for detecting the extravasation in the injection of the micropump is designed, which not only can detect the extravasation in the injection of the micropump in time, but also has good applicability.
The design scheme is as follows: the design purpose is realized. 1. The design that is fixed with pressure sensor on the pressure sensor mounting band is one of the technical characteristics of the utility model. The purpose of this design is: the pressure sensor is fixed with pressure sensor on the pressure sensor mounting belt, when the patient was in infusion in-process pjncture needle just stayed the human body because of unexpected roll-off vein, because the micropump is injected and will be passed through the human hypodermis tissue of pjncture needle input and make pjncture needle position local swelling appear (local swelling can produce an extrusion force to pressure sensor), pressure sensor is in detecting pressure signal after with signal transport controller for the extravasation appears during the infusion can in time be detected, thereby the medical personnel of being convenient for in time deal with. 2. The design that is equipped with battery and wireless signal conveyer on the pressure sensor installation area is the utility model discloses a two technical characteristics. The purpose of this design is: the wireless signal transmitter is arranged to wirelessly transmit the signal detected by the pressure sensor to the controller in real time, and the controller can control the relevant equipment to perform corresponding treatment after receiving the signal. 3. The design that the battery is equipped with the anti-radiation guard shield outward is the utility model discloses a technical feature is three. The purpose of this design is: the battery is equipped with anti-radiation shield outward, and the anti-radiation shield ensures that the battery can work for a long time under the strong radiation environment. 4. Pressure sensor mounting band one side fixed mounting is passed through the primary and secondary area and is fixed the design on layer board right side edge at layer board left side edge, opposite side, is the utility model discloses a four of technical characteristic. The purpose of this design is: pressure sensor mounting band one side fixed mounting is fixed on layer board left side edge, opposite side through the primary and secondary area on layer board right side edge, and the setting of primary and secondary area can inject the micropump and extravasate detection device and wear on the people's of thickness difference arm to the suitability of the micropump injection extravasation detection device has been improved.
The technical scheme is as follows: the utility model provides a micropump injection extravasation detection device, includes the layer board, be equipped with two armlet on the layer board, be equipped with pressure sensor mounting band and pressure sensor mounting band on the layer board and be located between two armlet, be fixed with pressure sensor on the pressure sensor mounting band.
Compared with the background technology, the utility model has the advantages that firstly, the micro-pump injection extravasation detection device can detect the extravasation problem in time when the micro-pump injection is injected, so that medical personnel can deal with the extravasation problem in time, thereby preventing the large amount of saline from entering the subcutaneous tissues of the human body; secondly, the micro-pump injection extravasation detection device is convenient to use and has good applicability.
Drawings
Fig. 1 is a schematic structural diagram of a micro-pump bolus extravasation detection device.
Fig. 2 is a schematic view of the structure of the pressure sensor mounting belt of the micro-pump bolus extravasation detection device after being unfolded.
Detailed Description
Example 1: reference is made to figures 1 and 2. The utility model provides a micropump injection extravasation detection device, includes layer board 1, be equipped with two armlet 2 on the layer board 1, be equipped with pressure sensor mounting band 3 and pressure sensor mounting band 3 on the layer board 1 and be located two armlet 2 within a definite time, be fixed with pressure sensor 4 on the pressure sensor mounting band 3. The pressure sensor mounting belt 3 is provided with a battery 5 and a wireless signal conveyor 6, the signal input end of the wireless signal conveyor 6 is connected with the signal output end of the pressure sensor 4, and the battery 5 supplies power to the pressure sensor 4 and the wireless signal conveyor 6. And a radiation-resistant shield 7 is arranged outside the battery 5. And one side of the pressure sensor mounting belt 3 is fixedly mounted on the left side edge of the supporting plate 1, and the other side of the pressure sensor mounting belt is fixed on the right side edge of the supporting plate 1 through the primary and secondary belt 8.
When the device is used, the micropump is pushed to inject the extravasation detection device to be sleeved on an arm with a puncture needle, the detection head of the pressure sensor 4 is tightly attached to the woundplast for fixing the puncture needle (the detection head is just opposite to a gauze pad in the woundplast), the pressure sensor installation belt 3 is fixed through the primary and secondary belt 8, the sub-belt in the primary and secondary belt 8 is installed on one side of the lower end face of the pressure sensor installation belt 3, and the primary belt is installed on the outer wall face of one side of the supporting plate 1.
It is to be understood that: although above-mentioned embodiment is right the utility model discloses a design has done more detailed word description, but these word descriptions, are only right the utility model relates to a simple word description of idea, rather than right the utility model relates to a restriction of idea, any do not surpass the utility model relates to a combination, increase or the modification of idea all fall into the utility model discloses a within the protection scope.
Claims (4)
1. The utility model provides a micropump injection extravasation detection device, includes layer board (1), be equipped with two armlet (2) on layer board (1), characterized by: the pressure sensor mounting device is characterized in that a pressure sensor mounting belt (3) is arranged on the supporting plate (1), the pressure sensor mounting belt (3) is located between the two arm rings (2), and a pressure sensor (4) is fixed on the pressure sensor mounting belt (3).
2. The micro-pump bolus extravasation detection device of claim 1, wherein: the pressure sensor mounting belt (3) is provided with a battery (5) and a wireless signal conveyor (6), the signal input end of the wireless signal conveyor (6) is connected with the signal output end of the pressure sensor (4), and the battery (5) supplies power to the pressure sensor (4) and the wireless signal conveyor (6).
3. The micro-pump bolus extravasation detection device of claim 2, wherein: and a radiation-resistant shield (7) is arranged outside the battery (5).
4. The micro-pump bolus extravasation detection device of claim 1, wherein: one side of the pressure sensor mounting belt (3) is fixedly mounted on the left side edge of the supporting plate (1), and the other side of the pressure sensor mounting belt is fixed on the right side edge of the supporting plate (1) through the primary and secondary belt (8).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721384151.7U CN212327101U (en) | 2017-10-25 | 2017-10-25 | Micro-pump push injection extravasation detection device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721384151.7U CN212327101U (en) | 2017-10-25 | 2017-10-25 | Micro-pump push injection extravasation detection device |
Publications (1)
Publication Number | Publication Date |
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CN212327101U true CN212327101U (en) | 2021-01-12 |
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Family Applications (1)
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CN201721384151.7U Active CN212327101U (en) | 2017-10-25 | 2017-10-25 | Micro-pump push injection extravasation detection device |
Country Status (1)
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CN (1) | CN212327101U (en) |
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2017
- 2017-10-25 CN CN201721384151.7U patent/CN212327101U/en active Active
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