The present invention is related to a safety intravenous needle set, which is equipped with an anti-piercing safety device to prevent the needle from piercing the healthcare worker accidentally.
A healthcare worker many need to inject a medicine into the body of a patient or to draw blood from a blood vessel of a patient by means of an intravenous needle. However, when handling an intravenous needle during a medical procedure, the healthcare worker may be injured by the needle accidentally.
The needle cap 10 is detachably capped on the medical needle 11 for protection before the use of the intravenous needle set 100. The infusion tube 15 is a fluid passage for intravenous infusion or drawing blood, having its one end connected to the needle hub 13 and its other end provided with a connector 151 for the connection of a feeding tube of an infusion bag, saline bag or blood bag, or a medical device. Further, the needle hub 13 has two wings 22 arranged at two opposite lateral sides thereof.
When using the intravenous needle set 100, the healthcare worker can remove the needle cap 10 from the medical needle 11 to expose the medical needle 11. By means of the wings 12, the healthcare worker can conveniently insert the medical needle 11 into the patient's vein, blood vessel or body, and then secure the wings 12 to the patient's skin by a medical adhesive tape. At this time, the healthcare worker can start an intravenous infusion or blood draw.
After the service of the intravenous needle set 100, the healthcare worker will remove the medical needle 11 from the body of the patient and then cap the needle cap 10 on the medical needle 11 again. However, as the needle cap 10 defines therein a small cap hole, it is difficult to accurately cap the needle cap 10 onto the medical needle 11 at a time, and the healthcare worker may be injured by the medical needle 11 accidentally, leading to a higher risk of virus infection (AIDS, HIV SARS, etc.). Handling a intravenous needle set in this manner is dangerous to healthcare workers.
Therefore, there is a strong demand for a safety intravenous needle set, which enhances safe needle disposal, preventing infections in healthcare workers due to accidental needle injury.
It is, therefore, the main object of the present invention to provide a safety intravenous needle set, which is equipped with a safety device that can be biased relative to the needle hub to have the medical needle be received inside the safety device after the service of the safety intravenous needle set, avoiding accidental needle stick injury.
It is another object of the present invention to provide a safety intravenous needle set, which enables the medical needle to be accommodated inside a safety device after its service, protecting waste needle handling person against accidental needle stick injury and avoiding a repeat use of the medical needle.
To achieve above objects, the present invention provides a safety intravenous needle set, comprising: a needle hub holding a medical needle at one end thereof and an infusion tube at an opposite end thereof; and a safety device, said safety device comprising a base block, a recessed guard and a pivot, said recessed guard comprises two opposing inner walls, an outer wall and at least one pair of retaining lugs located on said two opposing inner walls, each said pair of retaining lugs defining therebetween a constraint gap, said base block being fixedly mounted at said needle hub, said recessed guard being pivotally connected to said base block by said pivot for allowing said recessed guard to be biased relative to said base block and said needle hub toward said medical needle to let said medical needle be forced through said constraint gap into the inside of said recessed guard.
In one embodiment of the present invention, wherein said recessed guard has a relatively wider top side and a relatively narrower bottom side so that said outer wall defines a bevel face at each of two opposite lateral sides thereof.
In one embodiment of the present invention, wherein said recessed guard comprises an anti-slip structure located on said outer wall.
In one embodiment of the present invention, wherein said anti-slip structure comprises at least one longitudinal rib, at least one transverse rib, at least one raised portion, at least one recessed portion, at least one finger notch and/or at least one finger retaining means.
In one embodiment of the present invention, wherein said needle hub comprises a wing located on at least one of two opposite lateral sides thereof.
In one embodiment of the present invention, wherein each said retaining lug is configured to provide a bevel face, or in the shape of a planar thin sheet member.
In one embodiment of the present invention, wherein said retaining lugs of said safety device are arranged in a staggered manner, defining a longitudinal pitch between each two adjacent said retaining lugs.
In one embodiment of the present invention, wherein said constraint gap has a width equal to or smaller than the diameter of said medical needle.
The present invention further provides a safety intravenous needle set, comprising: a needle hub holding a medical needle at one end thereof and an infusion tube at an opposite end thereof; and a safety device, said safety device comprising a base block, a recessed guard and a pivot, said recessed guard comprises two opposing inner walls, an outer wall and at least one retaining lug located on one said inner wall, said base block being fixedly mounted at said needle hub, said recessed guard being pivotally connected to said base block by said pivot for allowing said recessed guard to be biased relative to said base block and said needle hub toward said medical needle to let said medical needle be forced over said at least one retaining lug into the inside of said recessed guard and then retaining inside said recessed guard by said at least one retaining lug.
In one embodiment of the present invention, wherein each said retaining lug has a length greater than one half of the internal width of said recessed guard.
In one embodiment of the present invention, wherein the other end of said infusion tube is connected to a connector.
In one embodiment of the present invention, wherein the connector is provided with a transfixion needle connected to the infusion tube, wherein the length of the connector is longer than the length of the transfixion needle.
Please refer to
The needle hub 23 has its one end connected with the medical needle 21 and its other end connected with the infusion tube 25. Further, the needle hub 23 has two wings 22 arranged at two opposite lateral sides thereof. Further, a needle cap 20 is detachably capped on the medical needle 21 for protection.
The infusion tube 25 is a fluid passage for intravenous infusion or drawing blood, having its one end connected to the needle hub 23 and its other end provided with a connector 251 for the connection of a feeding tube of an infusion bag, saline bag or blood bag, or a medical device.
The safety device 27 is an anti-piercing device, comprising a base block 270, a recessed guard 271, and a pivot 277. The recessed guard 271 comprises two inner walls 2711, an outer wall 2713, and at least one retaining lug 273 located on one inner wall 2711. The base block 270 is mounted at the needle hub 23. The recessed guard 271 is pivotally connected to the base block 270 by the pivot 277. By means of the pivot 277, the recessed guard 271 is biasable relative to the base block 270.
Before the use of the safety intravenous needle set 200, as shown in
After the service of the safety intravenous needle set 200, the healthcare worker will remove the medical needle 21 from the body of the patient. As illustrated in
Referring to
In one embodiment of the present invention, the base block 270 of the safety device 27 comprises a hollow passage 279 (see the imaginary line in
Further, if only one single retaining lug 273 is provided, the length of the retaining lug 273 should be greater than one half of the internal width of the recessed guard 271, i.e., the retaining end 2733 will extend across the middle line of the recessed guard 271 where the medical needle 21 is to be accommodated. When forcing the medical needle 21 toward the inside of the recessed guard 271, the retaining lug 273 will be forced to curve inwardly by the medical needle 21, and the medical needle 21 will be forced to displace sideways and then to enter the gap between the retaining lug 273 and the recessed guard 271.
After the medical needle 21 entered the recessed guard 271, the medical needle 21 and the retaining lug 273 immediately return to their former position or shape so that the medical needle 21 can be positively positioned in the middle position inside the recessed guard 271 and the retaining end 2733 of the retaining lug 273 can transversely extend over the medical needle 21. Under normal impact or external pressure, the medical needle 21 will not be forced to displace sideways or to move out of the recessed guard 271. Thus, the medical needle 21 can be well accommodated after its service, avoiding a repeat use.
Further, as shown in
It is to be understood that the needle hub 23 can be made without the wing 22. A safety intravenous needle set 202 without the wing 22 saves much the manufacturing cost and is applicable for use as a regular injection syringe needle, for example, intramuscular injection syringe needle.
Further, a constraint gap 275 is defined between the two retaining lugs 273 or 276 (or each pair of retaining lugs) that are symmetrically arranged at the two inner walls of the recessed guard 27. The constraint gap 275 has a width W approximately equal to the diameter of the medical needle 21 so that the medical needle 21 cannot be easily forced out of the recessed guard 27 through the constraint gap 275. Preferably, the width W of the constraint gap 275 is shorter than the diameter of the medical needle 21.
When the healthcare worker is going to recover the used medical needle 21, bias the recessed guard 271 of the safety device 27 toward the medical needle 21, and then force the medical needle 21 through the constraint gap 275 into the inside of the recessed guard 271, enabling the used medical needle 21 to be held inside the recessed guard 271 by the retaining lugs 273. Thus, the retaining lugs 273 hold down the used medical needle 21 inside the recessed guard 271, avoiding exposure of the used medical needle 21 to the outside of the recessed guard 271 or a repeated use of the safety intravenous needle set 203.
Further, as shown in
When the healthcare worker or any other user is going to dispose of the used medical needle 21, hold the outer wall 2713 with the fingers and then bias the recessed guard 271 toward the medical needle 21. Subject to the anti-slip effect of the anti-slip structure 371, the healthcare worker or user can hold the outer wall 2713 of the recessed guard 271 with the fingers positively, avoiding finger slipping or accidental needle stick injury.
It is to be understood that the anti-slip structure 371 is not limited to the transverse ribs 3715 and/or longitudinal ribs 3717. Alternatively, the anti-slip structure 371 can be formed of raised portions, or longitudinally and/or transversely extending grooves 3719, achieving the safe anti-slip effect.
Further, as shown in
As the user's thumb and/or forefinger is (are) rested in the at least one finger notch 3711 of the recessed guard 271 when holding the recessed guard 271, the user's thumb and/or forefinger is (are) prohibited from displacement relative to the recessed guard 271, avoiding accidental needle stick injury.
Further, the width W1 of the top side and the width W2 of the bottom side of the recessed guard 271 are unequal. The width W2 of the bottom side of the recessed guard 271 is greater than the width W1 of the top side of the recessed guard 271. Thus, the two opposite lateral sides of the outer wall 2713 of the recessed guard 271 of the safety device 27 provide one respective bevel face. If the user's fingers slip away when moving the recessed guard 271 of the safety device 27, the bevel faces of the outer wall 2713 of the recessed guard 271 guide the user's fingers away from the effective range of the medical needle 21, assuring a high level of safety of the use of the safety intravenous needle set 204.
Further,
When the blood collection tube 47 is filled with enough blood or body fluid, the blood collection tube 47 is pulled out of the connector 451. Since the length L2 of the connector 451 is longer than the length L1 of the transfixion needle 41, the transfixion needle 41 with blood or body fluid is retained in the connector 451 for avoiding accidental needle stick injury. The medical needle 21 at the front of the safety intravenous needle set 400 is also secured by the safety device 27.
In conclusion, the invention provides a safety intravenous needle set 200/201/202/203/204 equipped with a safety device 27. After the service of the medical needle 21, the recessed guard 271 of the safety device 27 can be biased to the medical needle 21 to let the medical needle 21 be forced into the inside of the recessed guard 271 and secured therein, avoiding accidental needle stick injury or a repeat use of the safety intravenous needle set and assuring a high level of medical waste disposal safety.
The foregoing description is merely one embodiment of the present invention and not considered as restrictive. All equivalent variations and modifications in shape, structure, feature, and spirit in accordance with the appended claims may be made without in any way from the scope of the invention.
Number | Date | Country | Kind |
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100224058 | Dec 2011 | TW | national |