Monotubular double-chamber syringe needle cylinder

The technology of a syringe barrel and a syringe is applied in the field of medical syringes, which can solve the problems of waste of resources, economic burden on patients, etc., and achieve the effects of reducing the amount of use, reducing the economic burden on patients, and reducing environmental pollution.

Inactive Publication Date: 2011-05-04
龚静山
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The technical problem to be solved by the present invention is to provide a low-cost and environmentally friendly single-barrel double-chamber syringe syringe for the problems that the syringes in the prior art bring economic burden to patients and waste resources.

Method used

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  • Monotubular double-chamber syringe needle cylinder
  • Monotubular double-chamber syringe needle cylinder
  • Monotubular double-chamber syringe needle cylinder

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0024] As shown in Figure 1, the embodiment of the present invention provides a single barrel double-chamber syringe, which includes a syringe body 1 and a syringe (not shown in the figure), the top of the syringe body 1 is provided with a drug outlet 5. The syringe 1 also includes pistons 21 and 22, the two pistons 21 and 22 divide the syringe 1 into a front chamber 12 and a rear chamber 11, and the piston 22 of the front chamber 12 is provided with a vent Hole 4 and sealing device 6. The present invention divides the syringe 1 into two chambers by arranging two pistons 21 and 22 in the syringe 1, so as to realize dual administration of CT and MR contrast agents and physiological saline. The agent quickly reaches the target organ, increases the contrast between the lesion and the surrounding tissue, and improves the detection of the lesion.

[0025] As shown in Figures 1-3, the sealing device 6 according to the embodiment of the present invention is provided with a one-way v...

Embodiment 2

[0034] This embodiment will be described with the different parts of Embodiment 1, and the same parts will not be repeated:

[0035] As shown in Figures 4-5, in the sealing device 8 described in the embodiment of the present invention, an interlayer 221 is arranged on the piston 22 of the front chamber 12, and a sealing valve 8 with a hole 81 is arranged in the interlayer 221, and the piston 8 is connected to the front chamber. One end connected to the edge of the piston 22 of the chamber 12 is set as an inclined plane, and the other end of the valve 8 is provided with a reset device 84, such as a return spring. The piston 22 of the front chamber 12 faces the side of the front chamber 12 leaving a vent hole 82, and the bottom of the syringe 1 is provided with a protrusion 83, which corresponds to the slope, so that the valve 8 can be squeezed through the protrusion 83 The inclined plane driving device makes the hole 81 on the sealing valve 8 communicate with or disconnect from...

Embodiment 3

[0039] This embodiment will be described with the different parts of Embodiment 1, and the same parts will not be repeated:

[0040] As shown in Figures 6-7, the sealing device 9 described in this embodiment is arranged in the through hole 4. The sealing device 9 is a material that can be repeatedly punctured, preferably rubber. The drug outlet 5 of the syringe 1 A bevel needle 52 with a side hole 51 protrudes inwardly corresponding to the sealing device 9 is provided. The material that can be repeatedly punctured according to the present invention communicates with the rear chamber 11 with the rear bevel needle 52 during puncture, and connects the drug outlet 5 with the rear chamber 11. When the bevel needle 52 is pulled out, the punctured hole is naturally closed together to form a sealed structure.

[0041] Embodiment injection method of the present invention is as follows:

[0042] In this embodiment, the syringe 1 is first connected to the automatic injector, and then e...

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Abstract

The invention provides a single-cylinder double-chamber injector needle cylinder; the needle cylinder is provided with two pistons which divide the needle cylinder into a front chamber and a back chamber; the two pistons are connected with each other by a flexible connecting piece; the front chamber piston is provided with a through hole and a sealing device, thus realizing double drug administration of CT and MR contrast agent and physiological saline; remaining contrast agent in the cylinder is injected into human body by a physiological saline washing pipe and enters vein after being driven, so that the contrast agent reaches the target organ rapidly, thus increasing contrast of pathological changes with surrounding tissues and improving checkout of the pathological changes; meanwhile,blood supply information of nidus is increased, which facilitates diagnosis and differential diagnosis and increases certainty factor of diagnosis by the doctors; when CT and MR angiogram is carried out, contrast between the blood vessel and surrounding tissues is increased, which improves the angiogram effect; perfusion imaging is carried out on CT and MR, so that the contrast agent which entersthe targeted organ has more constant rate and more accurate data is obtained; on the basis, more abundant information is expected to be obtained with the same amount of contrast agent used or the useamount of the contrast agent is expected to be reduced.

Description

technical field [0001] The invention relates to the field of medical syringes, in particular to a single-barrel double-chamber syringe syringe. Background technique [0002] At present, CT and MR examinations require venous bolus injection of contrast agent, which can enhance the scan and improve the detection of lesions and assist in qualitative diagnosis. At the same time, continuous scanning at the same level after venous bolus injection of contrast agent can obtain lesion or / and organ perfusion information. That is, CT and MR perfusion imaging, and non-invasive CT and MR angiography can also be performed. Both conventional contrast-enhanced scans, perfusion imaging, and CT and MR angiography require contrast agents to enter the blood circulation of the human body at a certain rate and amount. Quantity requirements are more stringent. At present, it is mainly realized clinically through automatic injectors, and the drug delivery rate is usually 3-5ml / s, and the volume r...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A61M5/315A61M5/31A61M5/178A61M5/00
Inventor 龚静山焦月新
Owner 龚静山
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