Fixing device for pediatric oxygen inhalation tube
Technical Field
The utility model belongs to the technical field of oxygen inhalation tube fixing, and particularly relates to a fixing device for a pediatric oxygen inhalation tube.
Background
Oxygen inhalation is the most commonly used treatment means in clinic, in the oxygen inhalation process, a patient needs to use an oxygen inhalation tube to inhale oxygen, the oxygen inhalation tube comprises a body and a tail tube, the body is provided with a nasal tube, when the oxygen inhalation tube is used, the tail tube is connected with an oxygen generating device, and oxygen enters the body along the tail tube, then enters the nasal tube, and escapes from the nasal tube to the nasal cavity of the patient.
According to the utility model, a slidable fixing ring and a lantern ring are arranged on an oxygen tube body, so that after the face size of a patient is determined, the oxygen tube body can be bent, the fixing ring is opened, the other section of the oxygen tube body is placed at the position of an anti-slip pad, the fixing buckle is closed, the purpose of hanging the ear can be achieved, in addition, the elastic bandage is stretched according to the size of the head of the patient, the elastic bandage is adapted to the patient, the fixing buckle is pressed to fix the length of the elastic bandage, the whole fixation is achieved, the situation that the nose tube falls off is avoided, and the safety of oxygen inhalation treatment is improved.
Therefore, the fixing device for the pediatric oxygen tube is designed to solve the problems.
Disclosure of utility model
To solve the problems set forth in the background art. The utility model provides a fixing device for a pediatric oxygen tube, wherein an oxygen tube body of the product is a polyurethane oxygen tube, the polyurethane material is a linear elastic plastic material with excellent quality of no toxicity, no smell and no irritation, the fixing device has the characteristics of excellent elasticity, wear resistance, good oxidation resistance, air tightness and the like, an elastic band can be pulled during operation, a first hydrocolloid dressing is attached to a nose wing, the nose wing tube of the oxygen tube body is aligned to nostrils at both sides, an upward C-shaped air inlet tube of the oxygen tube body is arranged, a second hydrocolloid dressing is vertically attached to the two sides of the nose wing tube and forms an I shape with the nose, in order to avoid air leakage at the nostrils, a worker can rotate a connecting rod along the inner side of a bracket, and the connecting rod drives a bottom rubber rod to swing inwards along the nose wing tube, so that a rubber pad can be attached to the outer side of the nostrils, and the nose wing tube is effectively prevented from falling off from the nostrils.
The water gel dressing is a semitransparent self-adhesive dressing consisting of a water-like adhesive, a cover layer film and an adhesive, is breathable, waterproof and antibacterial, can promote wound healing, effectively protects the upper layer of the water gel dressing of skin from being a semipermeable membrane consisting of polyurethane, and can avoid pressure sores through air and water vapor, on the other hand, in order to strengthen the stability of the connection of an oxygen inhalation tube body and the face of a child, two groups of anti-falling tubes are additionally arranged, the anti-falling tubes are of solid structures, prevent air inflow and increase the contact area with cheeks, a user can obliquely push a positioning support plate, and the positioning support plate can slide to the external auditory screen of the child through the cooperation of an internal clamping channel and the anti-falling tubes, and then the positioning support plate and the anti-falling tubes are adhered around the external auditory screen by using an adhesive tape, so that the stability is enhanced, and the oxygen inhalation tube body is prevented from falling.
The fixing device for the pediatric oxygen tube comprises an anti-compression oxygen tube body, an elastic band, a first hydrocolloid dressing, an anti-falling tube and a positioning supporting plate, wherein the top of the air outlet end of the oxygen tube body is fixedly connected with the bottom of the elastic band, the first hydrocolloid dressing is adhesively connected to the outer side of the top of the elastic band, the anti-falling tube is fixedly connected to two sides of the bottom of the oxygen tube body, and the positioning supporting plate is in sliding sleeve joint with the opposite side of the anti-falling tube.
As the fixing device for the pediatric oxygen tube, the fixing device is preferable, and a clamping channel with the size matched with that of the anti-drop tube is further formed on one side, close to the anti-drop tube, of the positioning supporting plate.
As the fixing device for the pediatric oxygen inhalation tube, the fixing device is preferable, the outer side of the positioning support plate is also connected with an adhesive tape in an adhesive mode, and one side of the adhesive tape is adhered to the external auditory screen.
As the fixing device for the pediatric oxygen inhalation tube, the fixing device is preferable, the two sides of the top of the elastic strap are also provided with the bracket, the connecting rod and the rubber pad, the bracket is fixedly connected to the outer wall of the elastic strap, the connecting rod is rotatably connected to the outer side of the bracket, and the rubber pad is fixedly connected to the bottom of the connecting rod.
As the fixing device for the pediatric oxygen inhalation tube, the fixing device is preferable, and the bottom of the rubber pad is also provided with a bayonet.
As the fixing device for the pediatric oxygen tube, the oxygen tube body is preferably made of polyurethane, and the oxygen tube body is sleeved on the outer side of the face.
Compared with the prior art, the utility model has the beneficial effects that:
1. In the utility model, the elastic band is pulled, the first hydrocolloid dressing is attached to the nasal wing, the nasal wing tube of the oxygen tube body is aligned to the nostrils at both sides, the air inlet tube of the oxygen tube body is upwards in a shape of C, the second hydrocolloid dressing is vertically attached to the two sides of the nasal wing tube, the two side of the nasal wing tube and the nose form an I shape, in order to avoid air leakage at the nostrils, a worker can rotate the connecting rod along the inner side of the bracket, and the connecting rod drives the bottom rubber rod to swing inwards along the nasal wing tube, so that the rubber pad can be attached to the outer side of the nostrils, and the nose wing tube is effectively prevented from falling off from the nostrils.
2. In the utility model, the hydrocolloid dressing is a semitransparent self-adhesive dressing consisting of a hydrocolloid adhesive, a cover layer film and an adhesive, is breathable, waterproof and antibacterial, can promote wound healing, effectively protects a semipermeable membrane formed by polyurethane on the upper layer of the hydrocolloid dressing of skin, can avoid pressure sores through air and water vapor, can be pushed out obliquely by a worker when in use, enables the positioning support plate to slide to the external auditory screen of a child through the cooperation of an embedded clamping channel and an anti-falling tube, and then adheres the positioning support plate and the anti-falling tube around the external auditory screen by using an adhesive tape, thereby enhancing stability and preventing the oxygen inhalation tube body from falling off.
Drawings
The accompanying drawings are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the embodiments of the utility model, serve to explain the utility model. In the drawings:
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a side view of an anti-compression oxygen inhalation holder according to the present utility model;
FIG. 3 is a schematic view of a positioning pallet according to the present utility model;
FIG. 4 is an exploded view of the elastic band and the nose tube of the present utility model;
In the figure:
1. The anti-compression oxygen inhalation fixer comprises an oxygen inhalation tube body 11, an elastic strap 12, a first hydrocolloid dressing 13, a first anti-falling tube 14, a 15 positioning support plate 2, a clamping channel 3, an adhesive tape 4, a bracket 5, a connecting rod 6, a rubber pad 7, a bayonet 8, a nose wing tube 9 and a second hydrocolloid dressing.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1:
the utility model provides a fixing device for paediatrics oxygen inhalation tube, it is known by CN217067332U, stretch elastic bandage according to the size of patient's head, make it adapt to the patient, and press fixed buckle to fix the length of elastic bandage, realize holistic fixed, thereby avoid the condition that the nose pipe drops, the security of oxygen inhalation therapy has been improved, but this device is when using, the oxygen hose is aimed at two side nostrils, still need hang along the neck front portion on two ears, reuse is lived and is detained and tighten up to comfortable length, this device is inapplicable in the paediatrics, the skin epidermis oppression is impaired easily appears, the nose oxygen pipe frequently drops, not only influence oxygen inhalation effect, still increase nurse's work load, on this basis, anti-compression formula oxygen inhalation fixer 1 has been added.
As shown in fig. 1, 2 and 4:
In an alternative embodiment, the anti-compression oxygen inhalation fixer 1 comprises an oxygen inhalation tube body 11, an elastic strap 12, a first hydrocolloid dressing 13, an anti-drop tube 14 and a positioning support plate 15, wherein the top of the air outlet end of the oxygen inhalation tube body 11 is fixedly connected with the bottom of the elastic strap 12, the first hydrocolloid dressing 13 is adhesively connected to the outer side of the top of the elastic strap 12, the anti-drop tube 14 is fixedly connected to two sides of the bottom of the oxygen inhalation tube body 11, the positioning support plate 15 is slidably sleeved on the opposite sides of the anti-drop tube 14, a support 4, a connecting rod 5 and a rubber gasket 6 are further arranged on two sides of the top of the elastic strap 12, the support 4 is fixedly connected to the outer wall of the elastic strap 12, the connecting rod 5 is rotatably connected to the outer side of the support 4, and the rubber gasket 6 is fixedly connected to the bottom of the connecting rod 5.
In the embodiment, the oxygen tube body 11 of the product is a polyurethane oxygen tube, the polyurethane material is a linear elastic plastic material with excellent quality, and has the characteristics of no toxicity, no smell, no irritation, excellent elasticity, excellent wear resistance, good oxidation resistance, air tightness and the like, the elastic band 12 can be pulled during operation, the first hydrocolloid dressing 13 is attached to the nose wing, the nose wing tube 8 of the oxygen tube body 11 is aligned to the nostrils at both sides, the air inlet pipe of the oxygen tube body 11 is upwards in a C shape, the second hydrocolloid dressing 9 is vertically attached to the two sides of the nose wing tube 8 to form an I shape with the nose, in order to avoid air leakage at the nostrils, a worker can rotate the connecting rod 5 along the inner side of the bracket 4, and the connecting rod 5 drives the bottom rubber rod to swing inwards along the nose wing tube 8, so that the rubber pad 6 can be attached to the outer side of the nostrils, and the nose wing tube 8 can be effectively prevented from falling off from the nostrils.
Further, the method comprises the following steps:
As shown in fig. 1, 2 and 3:
In an alternative embodiment, one side of the positioning support plate 15, which is close to the anti-drop tube 14, is also provided with a clamping channel 2 which is matched with the anti-drop tube 14 in size, the outer side of the positioning support plate 15 is also connected with an adhesive tape 3 in an adhesive mode, one side of the adhesive tape 3 is adhered to the external auditory screen, the bottom of the rubber pad 6 is also provided with a bayonet 7, the oxygen inhalation tube body 11 is made of polyurethane material, and the oxygen inhalation tube body 11 is sleeved on the outer side of the face.
In the embodiment, the hydrocolloid dressing is a semitransparent self-adhesive dressing consisting of a hydrocolloid adhesive, a cover layer film and an adhesive, is breathable, waterproof and antibacterial, can promote wound healing, effectively protects a semipermeable membrane formed by polyurethane on the upper layer of the hydrocolloid dressing of skin, can avoid pressure sores through air and water vapor, and on the other hand, in order to strengthen the stability of the connection of the oxygen inhalation tube body 11 and the face of a child, two groups of anti-falling tubes 14 are additionally arranged on the product, the anti-falling tubes 14 are of solid structures, prevent air from entering and increase the contact area with cheeks, a user can obliquely push out the positioning support plate 15, and the positioning support plate 15 can slide to the external auditory screen of the child through the cooperation of the built-in clamping channel 2 and the anti-falling tubes 14, and then the positioning support plate 15 and the anti-falling tubes 14 are adhered around the external auditory screen by the adhesive tape 3, so that the stability is enhanced and the oxygen inhalation tube body 11 is prevented from falling off.
The specific product model of the adhesive tape 3 in the device is a flesh color 3M adhesive tape.
It should be noted that the above-mentioned embodiments are merely preferred embodiments of the present utility model, and the present utility model is not limited thereto, but may be modified or substituted for some of the technical features thereof by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.