SUMMERY OF THE UTILITY MODEL
The utility model provides a solve for military use embedded cheek hemostasis device that current hemostasis mode can not play fine hemostasis effect to the wounded hemorrhage of fighter's face cheek in the battlefield.
In order to achieve the above object, the utility model adopts the following technical scheme:
the military embedded cheek hemostasis device comprises a compression air bag and a hollow hose, wherein a part of the hollow hose is arranged in the compression air bag, an inflation mechanism is detachably connected with one end, outside the compression air bag, of the hollow hose, and the inflation mechanism is communicated with the hollow hose.
By way of limitation, the compression balloon is dumbbell-shaped.
As another limitation, the compression air bag comprises an inflation layer, the inflation layer is communicated with the hollow hose, and the hemostasis layer is coated on the outer surface of the inflation layer.
As a further limitation, the hemostatic layer is a medical gelatin sponge.
As a further limitation, the hemostatic layer is a medical gauze layer, and the medical gauze layer is soaked with a liquid hemostatic agent.
As a further limitation, a liquid anesthetic is infiltrated on the hemostatic layer.
As a further limitation, a switch is arranged on the hollow hose.
By way of further limitation, the inflation mechanism is a pressurized ball, the pressurized ball is provided with an air inlet, and an air check valve is arranged in the air inlet.
As further inject, the material of oppression gasbag is medical silica gel, the material of cavity hose is medical silica gel.
The utility model discloses owing to adopted foretell structure, it compares with prior art, and the technical progress who gains lies in: the utility model discloses a military embedded cheek hemostasis device, including oppression gasbag, the hollow hose, a part of hollow hose is located in the oppression gasbag, inflation mechanism, with the hollow hose locate the outer one end of oppression gasbag and can dismantle the connection, and inflation mechanism and hollow hose are linked together, when soldier's face cheek injury needs stanch, the outer packing of military embedded cheek hemostasis device is opened to the rescuer, take out military embedded cheek hemostasis device, put the oppression gasbag in the military embedded cheek hemostasis device into the wound, link together inflator mechanism and hollow hose, then, the rescuer operates inflation mechanism and inflates for the oppression gasbag, make the outer surface of oppression gasbag oppress the wound bleeding face, in order to reach hemostasis purpose; to sum up, the utility model provides a current hemostasis mode can not play fine hemostasis effect to the wounded hemorrhage of fighter's face cheek in the battlefield, be applicable to the wounded hemostasis of face cheek.
Detailed Description
The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for purposes of illustration and explanation only and are not intended to limit the invention.
Embodiment of the invention relates to a military embedded cheek hemostatic device
The embodiment discloses a military embedded cheek hemostasis device, as shown in fig. 1, which comprises a compression air bag 1, wherein the compression air bag 1 is made of an elastic material, preferably medical silica gel, a hollow hose 2, the hollow hose 2 is made of an elastic material, preferably medical silica gel, a part of the hollow hose 2 is arranged in the compression air bag 1, the hollow hose 2 and the compression air bag 1 can be integrally formed or can be connected in an existing conventional connection mode, an inflation mechanism 4 is an existing mechanism capable of inflating the compression air bag 1, such as a pressurized rubber ball applied in an existing sphygmomanometer, and is detachably connected with one end of the hollow hose 2, which is arranged outside the compression air bag 1, the connection mode of the inflation mechanism 4 and the hollow hose 2 can be directly connected in an inserting mode, the inflation mechanism 4 can also be connected with the hollow hose 2 through a metal pipe joint, the metal pipe joint is a hollow pipe, the diameter of the joint end of the metal pipe is slightly smaller than the diameter of the joint of the 4 end of the inflating mechanism and the diameter of the hollow hose 2, the joint of the 4 end of the inflating mechanism and the outside of the joint end of the metal pipe can also be provided with fastening parts, the fastening parts can be formed by binding through soft ropes, the fastening parts can also be formed by the existing annular structures with adjustable diameters, and the inflating mechanism 4 is communicated with the hollow hose 2; a pressure sensor can be further arranged in the hollow hose 2 and can collect the pressure in the compression air bag 1, the pressure sensor is arranged outside the compression air bag and is connected with a display screen, the display screen is arranged outside the compression air bag and can be a liquid crystal display screen, the display screen is used for displaying pressure numerical values, the display screen is electrically connected with a power supply, a switch is arranged between the display screen and the power supply, and the power supply can be a button cell; the military embedded cheek hemostasis device is packaged independently, preferably, the military embedded cheek hemostasis device can be sterilized by using the existing sterilization mode and then packaged independently, so that the infection probability of wounds can be reduced in the process of applying the military embedded cheek hemostasis device, in a battlefield, when the cheek of a soldier is injured and needs hemostasis, an ambulance man opens the outer package of the military embedded cheek hemostasis device, takes out the military embedded cheek hemostasis device, puts the compression air bag 1 in the military embedded cheek hemostasis device into the through wound, connects the inflation mechanism 4 with the hollow hose 2 together, and then operates the inflation mechanism 4 to inflate the compression air bag 1, so that the outer surface of the compression air bag 1 compresses the bleeding surface of the wound to achieve the hemostasis purpose; the advantages of this embodiment are thus: by adopting the arrangement, the treatment of the bleeding of the cheek of the wounded by the ambulance men in the battlefield can be facilitated, the operation is simple, the fixation is easy, and the problem that the existing hemostasis mode cannot play a good hemostasis effect on the bleeding of the cheek of the fighter in the battlefield is solved.
As a preferred structure of the compression air bag 1 of this embodiment, as shown in fig. 1 and fig. 2, the compression air bag 1 is dumbbell-shaped, and the dumbbell-shaped compression air bag can increase the stability of the military embedded cheek hemostatic device, so as to prevent the military embedded cheek hemostatic device from moving and falling off in a wound and causing failure of compression hemostasis, the compression air bag 1 includes an inflation layer 101, the inflation layer 101 is communicated with the hollow hose 2, and a hemostatic layer 5 is coated on the outer surface of the inflation layer 101, so as to increase the hemostatic effect of the hemostatic layer 5 by using the hemostatic function of the drug, so as to achieve rapid hemostasis, the hemostatic layer 5 can be fixed on the outer surface of the compression air bag 1 by a fixing mechanism 6, the fixing mechanism 6 is made of an elastic material, preferably, the fixing of the hemostatic layer 5 on the outer surface of the inflation layer 101 is realized by using, the binding effect of the medical silica gel band is equal to that of the rubber band in the prior art, and the hemostatic layer 5 can be medical gelatin sponge; the hemostatic layer 5 can also be a medical gauze layer, and the liquid hemostatic is soaked on the medical gauze layer to form the hemostatic layer 5; the advantages of this embodiment are thus: adopt above-mentioned setting, can avoid removing the wounded in-process, what for military use embedded cheek hemostasis device deviates from, causes the failure of stanching, increases the hemostasis function that the hemostasis medicine was utilized to the hemostasis layer, reaches quick hemostasis, reduces wounded's blood loss volume.
As a preferred structure of the liquid anesthetic in this embodiment, as shown in fig. 1 and fig. 2, the liquid anesthetic is soaked on the hemostatic layer 5, and the liquid anesthetic can be soaked on the hemostatic layer 5 when manufacturing the military embedded cheek hemostatic device, and then is packaged through sterilization treatment, so that volatilization failure of the liquid anesthetic can be avoided, and when a wounded person uses the military embedded cheek hemostatic device, the liquid anesthetic is soaked on the hemostatic layer 5 and added, so that the liquid anesthetic can be used to perform an anesthetic action on nerves around the wound of the wounded person, and discomfort such as pain of the wounded person can be relieved; the advantages of this embodiment are thus: adopt above-mentioned setting, can avoid when using for military use embedded cheek hemostasis device, because the bleed face that oppresses the wound of oppression gasbag 1 causes uncomfortable feelings such as pain to the wounded.
As a preferred structure of the switch 3 of the present embodiment, as shown in fig. 1, the switch 3 is provided on the hollow hose 2, and the switch 3 is a switch 3 which can close the inner cavity of the hollow hose 2 and is air-tight in the existing switch 3, such as a cuff deflation switch used in the existing sphygmomanometer, or a manner of folding the hollow hose 2 in half and binding the hollow hose with a silk thread can be adopted to realize air-tightness of the hollow hose 2, so as to keep the pressure in the compression balloon 1 unchanged and continuously form pressure on the bleeding surface, thereby realizing the continuity of compression hemostasis; therefore, the present embodiment has the advantage that, with the above arrangement, after the hollow hose 2 and the inflation mechanism 4 are detached and separated, the pressure in the compression air bag 1 can be kept unchanged by closing the switch 3, and continuous compression can be formed on the bleeding surface, so that the continuity of compression hemostasis can be realized.
As a preferable structure of the inflation mechanism 4 in the present embodiment, as shown in fig. 1, the inflation mechanism 4 is a pressurized ball, the pressurized ball is provided with an air inlet 401, an air check valve is provided in the air inlet 401, and the pressurized ball may be an inflatable ball used in an existing sphygmomanometer; the advantage of this embodiment is thus; by adopting the arrangement, the research and development cost can be saved, and the use and the carrying are convenient.
The embodiment of the utility model provides a theory of operation as follows:
when the military embedded cheek hemostatic device is used, firstly, an ambulance man needs to open an outer package of the military embedded cheek hemostatic device, connect the hollow hose 2 and the pressurizing rubber ball, and a switch 3 arranged on the hollow hose 2 is in an open state, so that the pressurizing rubber ball is communicated with the pressurizing air bag 1 through the hollow hose 2, then, take out the military embedded cheek hemostatic device, the ambulance man puts the pressurizing air bag 1 in the military embedded cheek hemostatic device into a penetrating wound of a cheek part, then, the ambulance man operates the pressurizing rubber ball to cause the pressurizing rubber ball to tighten, expand and other repeated actions to inflate the pressurizing air bag 1, so that the outer surface of the pressurizing air bag 1 presses a bleeding surface around the cheek part wound to achieve the purpose of hemostasis, and then, the switch 3 on the hollow hose 2 is closed to keep the pressure in the pressurizing air bag 1 unchanged, the pressurized rubber ball is separated from the hollow hose 2.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the scope of the protection of the claims of the present invention.