Cooling and analgesia device used in laser therapy operation and capable of being folded in partitioned mode
By designing a laser treatment device with a partitioned and foldable flexible base and a cold compress unit, the problem that existing cooling devices cannot be flexibly matched is solved, and flexible cooling and pain relief of the laser treatment area are achieved to meet the cooling needs of different patients.
Patent Information
- Application Number
- CN202422288829.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-09-19
AI Technical Summary
Existing cooling devices cannot flexibly match all treatment areas during laser therapy, the cooling effect is limited, and some patients cannot tolerate strong airflow. Ice packs are not suitable for laser therapy.
A laser treatment device with a partitioned and foldable flexible base and a cold compress unit is designed. The flexible base has a hollow area, and the cold compress unit can be folded to cover and expose the skin. A cold compress medium such as a polymer cooling gel is used for cold compress.
It achieves flexible cooling of the laser treatment area, relieves pain and prevents postoperative blisters and pigmentation, and adapts to the cooling needs of different patients.
Smart Images

Figure CN223453388U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of medical apparatus and instruments, and particularly relates to a laser treatment intraoperative cooling analgesia device capable of being folded in zones. BACKGROUND
[0002] During laser treatment, patients may still have obvious pain even if anesthetic is applied on the skin surface, and part of the patients cannot be anesthetized on the surface due to allergy or stimulation of lidocaine cream. How to relieve the pain reaction and skin thermal damage after photoelectric stimulation and timely repair is a clinical problem that needs to be solved at present.
[0003] The existing air cooler can relieve pain during laser treatment, but the number of air coolers is limited and cannot be flexibly matched with all treatments; the cooling part is a local area of blowing, and only stays in the local area for a short time, and is immediately moved to the next treatment position, so the cooling effect is limited; part of the patients cannot tolerate strong airflow blowing into the nasal cavity and strongly refuse the cold air due to suffocation.
[0004] The existing ice bag is a fixed shape large thick ice bag, which is usually applied after operation and is not suitable for laser treatment during operation.
[0005] The utility model provides a laser treatment intraoperative cooling analgesia device capable of being folded in zones aiming at the above problems. CONTENT OF THE UTILITY MODEL
[0006] In order to overcome the problems in the background art, the utility model adopts the following technical scheme:
[0007] A laser treatment intraoperative cooling analgesia device capable of being folded in zones comprises:
[0008] A flexible base, wherein the flexible base has a hollow area;
[0009] A plurality of cold compress units, wherein each cold compress unit is connected to the flexible base at least at one side, and wherein the plurality of cold compress units are located in the hollow area so that the hollow area is covered by the plurality of cold compress units.
[0010] The cold compress units are configured to be folded relative to the flexible base so that part of the hollow area is exposed.
[0011] In some embodiments of the present application, the flexible base has a first connecting part and a second connecting part which are mirror-inverted to each other, and wherein the first connecting part and the second connecting part are both connected to a plurality of cold compress units.
[0012] Further, the cold compress units are arranged in an array in the length extension direction of the first connecting part and the second connecting part.
[0013] In some embodiments of the present application, the outer edge of the flexible substrate is in one of a regular shape or an irregular shape, wherein the shape of the outer edge of the hollowed-out region is the same as the shape of the outer edge of the flexible substrate.
[0014] In some embodiments of the present application, each of the cold compress units comprises a containing layer and a cold compress medium, wherein the containing layer is connected to the flexible substrate, and the containing layer has a containing cavity in which the cold compress medium is arranged.
[0015] In some embodiments of the present application, the containing layer has a connecting edge, wherein the connecting edge of each of the containing layers is adhered to the flexible substrate.
[0016] Further, the flexible substrate further has a first surface, wherein the first surface is provided with an adhesive layer.
[0017] Further, the cold compress medium is one of a polymer cooling gel, a cold storage gel particle, a super absorbent resin, and blue ice.
[0018] Further, the flexible substrate is made of one of silica gel, rubber, latex, and non-woven fabric.
[0019] Further, the number of the cold compress units is 2-10.
[0020] The present application has the following beneficial effects:
[0021] By arranging the flexible substrate and the cold compress units connected to the flexible substrate, when in use, the flexible substrate is placed on the area of the patient to be treated by laser, at this time, the cold compress units cover the area, and when the laser treatment is performed, the cold compress units are opened one by one to expose the surface of the skin of the patient, so that the patient is treated by laser, and after the local skin of the patient is treated, the cold compress units in the area are reset, so that the face of the patient is cooled in real time to relieve the pain of the patient and prevent the occurrence of postoperative blister and pigmentation. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a schematic diagram of the overall structure of the present application;
[0023] Figure 2 It is a schematic diagram of the state of the cold compress unit when it is opened;
[0024] Figure 3 It is a schematic diagram of the structure of the cold compress unit when it is located in the hollowed-out region;
[0025] Figure 4 It is a schematic diagram of the state of the cold compress unit when it is opened;
[0026] Figure 5 It is a flexible base structure schematic diagram of the utility model;
[0027] Figure 6 It is a flexible base first surface structure schematic diagram of the utility model;
[0028] Figure 7 It is a containing layer and cold compress medium structure schematic diagram of the utility model;
[0029] Figure 8 It is a flexible base rectangular shape under use schematic diagram of the utility model;
[0030] Figure 9 It is a flexible base attached to the forehead part of the patient schematic diagram of the utility model
[0031] In the figure, 1, flexible base;11, hollow area;12, first connecting part;13, second connecting part;14, attached layer;2, cold compress unit;21, containing layer;22, cold compress medium. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the utility model will be described clearly and completely below by specific, concrete embodiments. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Those skilled in the art can easily understand other advantages and effects of the utility model from the content disclosed in the specification. The utility model can also be implemented or applied by other different specific embodiments. In the case of no conflict, the following embodiments and features in the embodiments can be combined with each other. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.
[0033] Figure 1 -3 shows the main technical content of the embodiment. The specific embodiment provides a partitioned folding laser treatment intraoperative cooling analgesia device, which comprises:
[0034] Flexible base, the flexible base has hollow area 11;
[0035] A plurality of cold compress units 2, each cold compress unit 2 is connected with the flexible base 1 at least one side, wherein the plurality of cold compress units 2 are located in the hollow area 11, so that the hollow area 11 is covered by the plurality of cold compress units 2;
[0036] Wherein, the cold compress unit 2 is configured to be able to be folded relative to the flexible base 1, so that the local of the hollow area 11 is exposed.
[0037] First, the device is refrigerated. During the operation, the flexible base 1 is attached to the patient's area to be treated. At this time, each cold compress unit 2 covers the area. Then, the doctor opens each cold compress unit 2 in turn to expose the patient's skin surface and treat the skin in that area. After the treatment, the cold compress unit 2 corresponding to the area is reset to provide real-time cold compress to the treatment area to relieve the patient's pain and prevent the occurrence of blisters and pigmentation after surgery.
[0038] refer to Figure 4 —5. In this embodiment, the flexible substrate 1 has a first connection portion 12 and a second connection portion 13 that are arranged in mirror orientation with each other, wherein the first connection portion 12 and the second connection portion 13 are both connected to a plurality of cold compress units 2. More specifically, the cold compress units 2 are arranged in an array in the length extension direction of the first connection portion 12 and the second connection portion 13. Under this arrangement, the cold compress units 2 connected to the first connection portion 12 and the cold compress units 2 connected to the second connection portion 13 are opened in opposite directions during use, so that the patient's skin exposed in the hollow area 11 will not be blocked by other cold compress units 2 and the flexible substrate 1, thereby better exposing the patient's facial skin and making it easier for the surgeon to perform laser treatment on the patient.
[0039] refer to Figure 1 —6 and Figure 8 In this embodiment, the outer edge of the flexible substrate 1 is a regular shape or an irregular shape, wherein when the outer edge of the flexible substrate 1 is a regular shape, the outer edge of the flexible substrate 1 is one of a rectangle and a circle. Similarly, the shape of the outer edge of the hollow area 11 is the same as the shape of the outer edge of the flexible substrate 1; and the plurality of cold compress units 2 are configured to completely cover the hollow area 11, so that after the surgeon completes the laser treatment for the patient, each cold compress unit 2 can completely cover the patient's treatment area; preferably, the shape of the outer edge of the flexible substrate 1 is a rectangle, and under this setting, the shape of each cold compress unit 2 is also a rectangle.
[0040] refer to Figure 9 When the outer edge of the flexible base 1 is an irregular shape, the outer edge of the flexible base 1 fits the local shape of the patient's face. For example, the shape of the outer edge of the flexible base 1 corresponds to the shape of the edge of the patient's forehead, wherein each cold compress unit 2 completely covers the hollow area 11.
[0041] As can be understood by those skilled in the art, the outer edge of the flexible base 1 can also be configured to have any shape that conforms to a part of the human face, so that it can fit the area to be treated of the patient during use.
[0042] Specifically, the number of cold compress units 2 is 2-10, and the number of cold compress units 2 connected between the first connecting portion 12 and the second connecting portion 13 is the same; wherein the number of cold compress units 2 is 6.
[0043] Alternatively (not shown), the shape of the hollowed-out area 11 is circular, and the shape of the combined cold compress units 2 can completely cover the circular hollowed-out area 11.
[0044] Reference Figure 1 and Figure 6 In this embodiment, each cold compress unit 2 comprises a containing layer 21 and a cold compress medium 22, the containing layer 21 is connected to the flexible base, wherein the containing layer 21 has a containing cavity, and the cold compress medium 22 is arranged in the containing cavity; more specifically, the containing layer 21 has a connecting edge, wherein the connecting edge of each containing layer 21 is bonded to the flexible base 1, or alternatively, the connecting edge of each containing layer 21 is combined with the flexible base 1 by heat pressing, under this arrangement, a fold line is formed between each containing layer 21 and the flexible base 1, when it is necessary to open one containing layer 21, the containing layer 21 rotates around the fold line in the circumferential direction, so as to expose the skin of the patient's face; more specifically, the containing layer 21 is made of flexible material, which can be made of polyvinyl chloride (PVC).
[0045] Reference Figure 6 In this embodiment, the side of the flexible base 1 in contact with the patient's face is the first surface, wherein the first surface is provided with an adhesive layer 14; in use, the flexible base 1 is fixed to the patient's face by the adhesive layer 14, so as to avoid the flexible base 1 from falling off the patient's face during the operation; specifically, the adhesive layer 14 can be made of hydrogel, which can enhance the friction between the adhesive layer 14 and the patient's face, so that the flexible base 1 is not easy to fall off the patient's face, and the adhesive layer 14 under this arrangement will not leave marks on the patient's face after use, so as to ensure that the surgical area is always clean.
[0046] In this embodiment, the cold compress medium 22 is a gel, which can be made of one of high molecular cooling gel, cold storage gel particles, superabsorbent resin, and blue ice, under this arrangement, the containing layer 21 can always be in contact with the curved surface of the patient's face after being attached to the patient's face, so as to enhance the cold compress effect, and preferably, the cold compress medium 22 is made of high molecular cooling gel.
[0047] In this embodiment, the flexible base 1 is made of one of silicone, rubber, latex, and non-woven fabric; preferably, the flexible base 1 is made of rubber.
[0048] The use method of the utility model discloses:
[0049] 1. Before operation, the flexible base is attached to the patient's face, at this time, the hollowed-out area corresponds to the patient's treatment area, and each cold compress unit after cold storage covers the area;
[0050] 2. The doctor successively lifts each cold compress unit to expose the patient's skin surface and perform laser treatment on the skin of the area;
[0051] 3. After laser treatment on the area corresponding to each cold compress unit, the cold compress unit corresponding to the area is reset to perform real-time cold compress on the treatment area to relieve the patient's pain and prevent the occurrence of postoperative blister and pigmentation;
[0052] 4. After complete treatment on the patient's lesion area, the flexible base and each cold compress layer are removed from the patient's face, and the device is cleaned and disinfected for cold storage.
[0053] The above description of the embodiments is only for understanding the present application. It should be noted that for those skilled in the art, without departing from the principles of the present application, some improvements can be made to the present application, and these improvements will also fall within the protection scope of the claims of the present application.
Claims
1. A zonally foldable laser treatment intraoperative cooling analgesia device, characterized in that, It comprises, a flexible base having a hollowed-out area; a plurality of cold compress units, each of which is connected to the flexible base at least at one side, wherein the plurality of cold compress units are all located in the hollowed-out area, so that the hollowed-out area is covered by the plurality of cold compress units; wherein the cold compress units are configured to be folded relative to the flexible base, so that part of the hollowed-out area is exposed.
2. The zonally foldable laser intraoperative cooling analgesia device of claim 1, wherein, The flexible base has a first connecting portion and a second connecting portion which are mirror-inverted to each other, wherein the first connecting portion and the second connecting portion are both connected to a plurality of cold compress units.
3. The zonally foldable laser intraoperative cooling analgesia device of claim 2, wherein, The cold compress units are arranged in an array in the length extension direction of the first connecting portion and the second connecting portion.
4. The zonally foldable laser intraoperative cooling analgesia device of claim 1, wherein, The cold compress units each comprise a containing layer and a cold compress medium, the containing layer being connected to the flexible base, wherein the containing layer has a containing cavity, and the cold compress medium is arranged in the containing cavity.
5. The zonally foldable laser intraoperative cooling analgesia device of claim 4, wherein, The containing layer has a connecting edge, wherein the connecting edge of each containing layer is bonded to the flexible base.
6. The zonally foldable laser intraoperative cooling analgesia device of claim 4, wherein, The flexible base further has a first surface, wherein the first surface is provided with an adhering layer.
7. The zonally foldable laser intraoperative cooling analgesic device of claim 4, wherein, The cold compress medium is one of a high-molecular cooling gel, a cold-storage gel particle, a superabsorbent resin, and blue ice.
8. The zonally foldable laser intraoperative cooling analgesic device of claim 1, wherein, The flexible base is made of one of silica gel, rubber, latex, and non-woven fabric.
9. The zonally foldable laser intraoperative cooling analgesic device of claim 1, wherein, The number of the cold compress units is 2-10.
Citation Information
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