A cold compress device for cerebral hemorrhage in patients with hypertension

By designing a cold compress device with supporting positioning, adjustment and locking structure, the problem of dirt being unable to be discharged due to unconscious adjustment of the head during cerebral hemorrhage in hypertensive patients is solved, the stability and safety of the patient's head tilt is achieved, the risk of suffocation and aspiration pneumonia is reduced, and the operational efficiency and treatment adaptability are improved.

CN119655950BActive Publication Date: 2025-09-12SHENZHEN UNIV
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Patent Information

Application Number
CN202510140983.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-08
Publication Date
2025-09-12
Estimated Expiration
2045-02-08

AI Technical Summary

Technical Problem

Existing cold compress caps lack a positioning structure when used on hypertensive patients with cerebral hemorrhage, causing the patients to unconsciously adjust their head position, resulting in the inability to effectively expel dirt from their mouths, increasing the risk of suffocation and aspiration pneumonia.

Method used

A cold compress device is designed, which includes a supporting and positioning structure, an adjustment structure and a locking structure. The supporting and positioning structure fixes the inclination angle of the patient's head, the adjustment structure facilitates position adjustment, the locking structure ensures stability, and the auxiliary clamping structure meets different treatment needs.

Benefits of technology

It effectively prevents the patient's head from adjusting unconsciously, ensures the discharge of dirt in the mouth, reduces the risk of suffocation and aspiration pneumonia, improves operational efficiency and safety, and meets the needs of different treatment scenarios.

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Abstract

The present application discloses a cold compress device for cerebral hemorrhage in patients with hypertension, which belongs to the field of cold compress cooling. The cold compress device includes a cold compress cap, a cold compress cavity provided inside the cold compress cap, a cold compress liquid bag provided in the cold compress cavity, and a sealing cover provided on the top of the cold compress cap; a support positioning structure is provided on the rear side of the cold compress cap, and the support positioning structure includes a reinforcement plate and a first triangular bevel provided on the reinforcement plate; an adjustment structure for adjusting the position of the first triangular bevel is provided on the reinforcement plate. The first triangular bevel in the support positioning structure can accurately and stably fix the inclination angle of the patient's head, preventing the patient from automatically adjusting the position of the head due to unconsciousness, resulting in the inability to discharge dirt. When the patient's head is in a tilted state, the dirt in the mouth can flow out naturally, avoiding medical accidents such as suffocation and aspiration pneumonia caused by automatic resetting of the head.
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Description

Technical Field

[0001] The present application relates to the technical field of cold compress cooling, and in particular to a cold compress device for treating cerebral hemorrhage in patients with hypertension. Background Art

[0002] Cerebral hemorrhage in patients with hypertension is an emergency requiring prompt and effective treatment. Cold compresses, as an adjunct treatment, reduce the temperature of the patient's head to control the amount of bleeding, buying valuable time for medical staff to provide further treatment. Existing cold compresses, particularly cold compress caps, have achieved some success in design and application, but some challenges remain in their practical application.

[0003] In particular, when a hypertensive patient suffers a cerebral hemorrhage and becomes unconscious, in order to maintain a clear airway, the patient's head must be tilted at a certain angle to allow dirt in the mouth to drain smoothly. However, existing cold compress caps often overlook this in their design and use. Because patients are in a state of low consciousness or unconsciousness, they may unconsciously adjust the position of their head to straighten it, which directly prevents dirt from being effectively drained from the mouth, increasing the risk of medical accidents such as suffocation and aspiration pneumonia.

[0004] Therefore, the present application provides a cold compress device for cerebral hemorrhage in patients with hypertension to solve the above problems. Summary of the Invention

[0005] The present application provides a cold compress device for cerebral hemorrhage in patients with hypertension, aiming to solve the problem that the existing cold compress cap proposed in the background technology lacks a positioning structure. Since the patients are in a state of weak consciousness or unconsciousness, they may unconsciously adjust the position of their heads to straighten them, which directly leads to the inability to effectively discharge dirt in the mouth, increasing the risk of medical accidents such as suffocation and aspiration pneumonia.

[0006] To achieve the above-mentioned objectives, the present application provides the following technical solutions: a cold compress device for cerebral hemorrhage in patients with hypertension, comprising a cold compress cap, a cold compress cavity opened inside the cold compress cap, a cold compress liquid bag arranged in the cold compress cavity, and a sealing cover arranged on the top of the cold compress cap; a support and positioning structure is provided on the rear side of the cold compress cap, and the support and positioning structure includes a reinforcement plate and a first triangular bevel block arranged on the reinforcement plate; when in use, the cold compress cap is put on the patient's head, and the medical staff first adjusts the first triangular bevel block in the support and positioning structure on the cold compress cap according to the inclination requirements of the patient's head, so that it fits tightly with the back of the patient's head, and fixes the position of the head to facilitate the discharge of dirt in the patient's mouth.

[0007] Preferably, to facilitate adjustment of the patient's head tilt, the reinforcement plate is provided with an adjustment structure for adjusting the position of the first triangular oblique block. The adjustment structure includes a limiting groove provided within the reinforcement plate, a connecting groove provided on the outside of the reinforcement plate and connected to the limiting groove, a limiting plate movably provided within the limiting groove, and a connecting plate movably provided within the connecting groove and fixedly connected to the limiting plate and the first triangular oblique block. The adjustment structure facilitates adjustment of the position of the first triangular oblique block according to the patient's needs. The friction between the limiting groove and the limiting plate can fix the adjusted position of the first triangular oblique block, thereby ensuring the stability of the patient's head tilt.

[0008] Preferably, to ensure the stability of the first triangular bevel block after adjustment, the limiting plate is provided with a locking structure, comprising a first vertical slot defined within the limiting plate, the connecting plate, and the first triangular bevel block, a lifting plate movably disposed within the first vertical slot, a rod fixedly connected to the lifting plate slidably inserted into the limiting plate, and a plurality of slots equidistantly defined within the limiting slot for receiving the rod. The locking structure can stably lock the position of the first triangular bevel block, preventing displacement during use and ensuring the stability of the patient's head tilt.

[0009] Preferably, in order to release the locked state of the first triangular bevel block, the locking structure also includes a first drive rod inserted into the first triangular bevel block and fixedly connected to the lifting plate, and a first spring disposed between the end of the lifting plate away from the first drive rod and the first vertical slot. Medical personnel only need to press the first drive rod to release the locked state, adjust the position of the first triangular bevel block, and automatically lock it after release, greatly improving operational efficiency. The elastic force of the first spring ensures that the insertion rod can be stably inserted into the slot, and even if it is subjected to external force during use, it can maintain the locked state, ensuring the safety of the patient.

[0010] Preferably, in order to facilitate the replacement of the cold compress liquid bag: the sealing cover is installed on the cold compress cap through an airtight zipper. The airtight zipper connection method allows medical staff to quickly and easily replace the cold compress liquid bag, greatly improving the efficiency of treatment.

[0011] Preferably, to prevent the cold compress cap from frostbiting the patient's head, a protective pad is provided on the inside of the cold compress cap, secured to the cap via Velcro. The provision of the protective pad effectively isolates the cold compress liquid bag from direct contact with the patient's head, significantly reducing the risk of frostbite and providing a safer cold compress treatment environment for the patient.

[0012] Preferably, to ensure a more comfortable fit for the patient's head, the cold compress cap is provided with curved grooves on both sides that align with the patient's ears, with the back of the cap lower than the front. These curved grooves ensure that the cap closely conforms to the contours of the patient's ears. When the cap is worn, the curved grooves naturally wrap around the patient's ears, improving both stability and comfort.

[0013] Preferably, in order to facilitate the treatment of medical personnel so that the patient's face is set upward: the reinforcement plate is provided with an auxiliary clamping structure for auxiliary clamping of the patient's head, the auxiliary clamping structure includes a detachable second triangular oblique block provided on the reinforcement plate, the second triangular oblique block is provided with a second vertical slot, the interior of the second vertical slot is provided with an L-clip plate for passing through the connecting slot and clamped in the limiting slot, a second driving rod is inserted into the second triangular oblique block and fixedly connected to the L-clip plate, and a second spring is provided between the end of the L-clip plate away from the second driving rod and the second vertical slot. The design of the auxiliary clamping structure allows the patient's head to be flexibly adjusted to different positions as needed, especially ensuring that the patient's face can be set upward when needed, meeting the needs of different treatment scenarios.

[0014] The present invention utilizes the first triangular bevel in the support and positioning structure to accurately and stably fix the tilt angle of the patient's head, preventing the patient from automatically adjusting their head position due to unconsciousness, which could prevent dirt from being discharged. When the patient's head is tilted, dirt in the mouth can flow out naturally, avoiding medical accidents such as suffocation and aspiration pneumonia caused by the head automatically repositioning.

[0015] The present application facilitates adjusting the position of the first triangular oblique block according to the patient's needs through an adjustment structure, and the position of the adjusted first triangular oblique block can be fixed by the friction between the limit groove and the limit plate, thereby ensuring the stability of the patient's head tilt.

[0016] The present application utilizes a locking structure to stably lock the position of the first triangular bevel block, preventing displacement during use and ensuring the stability of the patient's head tilt. Medical personnel can simply press the first drive lever to release the lock, adjust the position of the first triangular bevel block, and automatically lock it after release, greatly improving operational efficiency. The elastic force of the first spring ensures that the insertion rod can be stably inserted into the slot, maintaining the locked state even if subjected to external force during use, ensuring patient safety.

[0017] The design of the auxiliary clamping structure of the present application enables the patient's head to be flexibly adjusted to different positions as needed, especially ensuring that the patient's face can be set upward when needed, meeting the needs of different treatment scenarios. The coordinated use of the L-card plate, the second drive rod and the second spring achieves stable fixation of the second triangular bevel block on the reinforcement plate. The detachable design of the second triangular bevel block enables medical staff to easily perform disassembly and installation operations, which is both convenient and fast, and improves work efficiency. By adjusting the installation position of the second triangular bevel block, the patient's head can be tilted to either side, meeting the head position adjustment requirements for different treatment needs. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the structure of a cold compress device for treating cerebral hemorrhage in patients with hypertension;

[0019] Figure 2 A schematic diagram of a cold compress cap tilted to its side;

[0020] Figure 3 It is a structural diagram of the support positioning structure, the adjustment structure and the locking structure;

[0021] Figure 4 It is a structural schematic diagram of the reinforcement plate and the clamping structure;

[0022] Figure 5 It is a cross-sectional view of the structure of the cold compress cap;

[0023] Figure 6 This is a schematic diagram of the state in which the first triangular oblique block and the second triangular three blocks are symmetrically arranged.

[0024] In the picture:

[0025] 1. Cold compress cap; 11. Cold compress cavity; 12. Arc groove; 2. Cold compress liquid bag; 3. Sealing cover; 4. Support and positioning structure; 41. Reinforcement plate; 42. First triangular oblique block; 5. Adjustment structure; 51. Limiting groove; 52. Connecting groove; 53. Limiting plate; 54. Connecting plate; 6. Locking structure; 61. First vertical groove; 62. Lifting plate; 63. Insert rod; 64. Slot; 65. First driving rod; 66. First spring; 7. Protective pad; 8. Clamping structure; 81. Second triangular oblique block; 82. Second vertical groove; 83. L-clip plate; 84. Second driving rod; 85. Second spring. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0027] This embodiment provides a cold compress device for treating cerebral hemorrhage in patients with hypertension. Figure 1-6 As shown, the cold compress device includes a cold compress cap 1, a cold compress cavity 11 opened inside the cold compress cap 1, a cold compress liquid bag 2 arranged in the cold compress cavity 11, and a sealing cover 3 arranged on the top of the cold compress cap 1; the cold compress liquid bag 2 fits the patient's head to ensure that the cold compress effect is uniform and long-lasting, which helps to lower the temperature inside the brain and control the amount of bleeding.

[0028] In order to facilitate the support and positioning of the patient's head in a tilted state: a support and positioning structure 4 is provided on the back side of the cold compress cap 1, and the support and positioning structure 4 includes a reinforcement plate 41 and a first triangular bevel 42 provided on the reinforcement plate 41; through the first triangular bevel 42 in the support and positioning structure 4, the tilt angle of the patient's head can be accurately and stably fixed, preventing the patient from automatically adjusting the position of the head due to unconsciousness, resulting in the inability to discharge dirt. When the patient's head is in a tilted state, the dirt in the mouth can flow out naturally, avoiding medical accidents such as suffocation and aspiration pneumonia caused by automatic repositioning of the head. When in use, the cold compress cap 1 is put on the patient's head. The medical staff first adjusts the first triangular bevel 42 in the support and positioning structure 4 on the cold compress cap 1 according to the tilt requirements of the patient's head, so that it fits tightly with the back of the patient's head, and fixes the position of the head to facilitate the discharge of dirt in the patient's mouth.

[0029] To facilitate adjustment of the patient's head tilt, the reinforcement plate 41 is provided with an adjustment structure 5 for adjusting the position of the first triangular oblique block 42. The adjustment structure 5 comprises a limiting slot 51 defined within the reinforcement plate 41, a connecting slot 52 defined outside the reinforcement plate 41 and communicating with the limiting slot 51, a limiting plate 53 movably disposed within the limiting slot 51, and a connecting plate 54 movably disposed within the communicating slot 52 and fixedly connected to the limiting plate 53 and the first triangular oblique block 42. The adjustment structure 5 facilitates adjustment of the position of the first triangular oblique block 42 according to the patient's needs. The friction between the limiting slot 51 and the limiting plate 53 secures the adjusted position of the first triangular oblique block 42, ensuring stability of the patient's head tilt. When adjusting the position of the first triangular bevel block 42, you only need to hold the first triangular bevel block 42, and use the first triangular bevel block 42 to drive the connecting plate 54 and the limiting plate 53 to move in the connecting groove 52 and the limiting groove 51, and stop moving the first triangular bevel block 42 until it is adjusted to the appropriate position. The friction force between the limiting groove 51 and the limiting plate 53 can fix the position of the adjusted first triangular bevel block 42 to ensure the stability of the patient's head tilt.

[0030] To ensure the stability of the first triangular bevel block 42 after position adjustment, a locking structure 6 is provided on the limiting plate 53. The locking structure 6 includes a first vertical slot 61 provided in the limiting plate 53, the connecting plate 54, and the first triangular bevel block 42. A lifting plate 62 is movably provided in the first vertical slot 61. A plug rod 63 fixedly connected to the lifting plate 62 is slidably inserted into the limiting plate 53, and a plurality of slots 64 equidistantly provided in the limiting slot 51 for inserting the plug rod 63. To release the locked state of the first triangular bevel block 42, the locking structure 6 also includes a first driving rod 65 inserted into the first triangular bevel block 42 and fixedly connected to the lifting plate 62, and a first spring 66 provided between the end of the lifting plate 62 away from the first driving rod 65 and the first vertical slot 61. Through the locking structure 6, the first triangular bevel block 42 can be stably locked in position, preventing displacement during use and ensuring the stability of the patient's head tilt. Medical staff only need to press the first drive rod 65 to release the locked state and adjust the position of the first triangular bevel block 42. It will automatically lock after releasing, which greatly improves the operating efficiency. The elastic force of the first spring 66 ensures that the insertion rod 63 can be stably inserted into the slot 64. Even if it is impacted by external force during use, it can maintain the locked state to ensure the safety of the patient. When in use, the medical staff first holds the first triangular bevel block 42 and presses the first drive rod 65 according to the tilt requirement of the patient's head. The first drive rod 65 drives the lifting plate 62 to move downward in the first vertical slot 61, while squeezing the first spring 66 to contract and accumulate force. During the downward movement of the lifting plate 62, the insertion rod 63 is driven out of the slot 64, and the position of the first triangular bevel block 42 can be adjusted at this time. When the position adjustment of the first triangular bevel block 42 is completed, the medical staff releases the pressure on the first drive rod 65. Under the elastic force of the first spring 66, the lifting plate 62 quickly returns to its original position, driving the insertion rod 63 to insert into the corresponding slot 64 in the limiting groove 51, thereby locking the position of the first triangular bevel block 42. In this way, medical staff can conveniently and flexibly adjust and stably lock the position of the first triangular bevel block 42 according to the patient's head tilt requirements, ensuring that the patient's head is at the optimal tilt angle for easy dirt removal and cold compress treatment.

[0031] In order to facilitate the replacement of the cold compress liquid bag 2: the sealing cover 3 is installed on the cold compress cap 1 through an airtight zipper. The airtight zipper connection method allows medical staff to quickly and easily replace the cold compress liquid bag 2, greatly improving the efficiency of treatment.

[0032] To prevent frostbite on the patient's head, the cold compress cap 1 is fitted with a protective pad 7 inside, secured to the cap 1 with Velcro. This pad effectively isolates the cold compress bag 2 from direct contact with the patient's head, significantly reducing the risk of frostbite and providing a safer cold compress treatment environment. Made of a soft, breathable material (such as memory foam or special insulating fabric), the pad 7 conforms to the curve of the patient's head, providing a comfortable wearing experience and alleviating discomfort. The Velcro fastening allows for easy removal of the pad 7 from the cold compress cap 1 for cleaning or replacement, making it convenient and quick, and enhancing the device's hygiene and durability. During use, medical personnel place the cold compress cap 1 on the patient's head. The pad 7, positioned between the cold compress bag 2 and the patient's head, provides effective insulation, preventing the cold temperature of the cold compress bag 2 from being directly transferred to the patient's head and thus minimizing the risk of frostbite. Furthermore, because the pad 7 is made of a soft, breathable material, it conforms to the curve of the patient's head, providing a comfortable wearing experience. When the protective pad 7 needs to be cleaned or replaced, the medical staff only needs to gently tear off the Velcro to remove the protective pad 7 from the cold compress cap 1, and then clean or replace it. After completion, the new or cleaned protective pad 7 is fixed to the cold compress cap 1 using the Velcro.

[0033] To ensure a more comfortable fit for the patient's head, the cold compress cap 1 is provided with curved grooves 12 on both sides that align with the patient's ears. The back of the cold compress cap 1 is lower than the front. These curved grooves 12 ensure that the cold compress cap 1 closely conforms to the patient's ear contours. When worn, the curved grooves 12 naturally wrap around the patient's ears, improving both stability and comfort. Furthermore, the present invention employs a design where the back of the cold compress cap 1 is lower than the front. This design allows the cold compress cap 1 to naturally conform to the curves of the patient's head, particularly the back of the head, ensuring a close fit, further enhancing the cooling effect. During use, gently place the cold compress cap 1 on the patient's head, ensuring that the curved grooves 12 closely conform to the patient's ear contours. Since the back of the cold compress cap 1 is lower than the front, it naturally conforms to the back of the head, creating a close fit. Next, as the temperature of the cold compress liquid bag 2 drops, it will transfer the low temperature to the patient's head through the cold compress cap 1, thereby achieving the purpose of cold compress treatment.

[0034] To facilitate the upward positioning of the patient's face during treatment, the reinforcement plate 41 is provided with an auxiliary clamping structure 8 for assisting in clamping the patient's head. The auxiliary clamping structure 8 includes a detachable second triangular oblique block 81 disposed on the reinforcement plate 41. The second triangular oblique block 81 is provided with a second vertical slot 82. An L-shaped clip 83 is disposed within the second vertical slot 82 for passing through the connecting slot 52 and engaging within the limiting slot 51. A second driving rod 84 is inserted into the second triangular oblique block 81 and fixedly connected to the L-shaped clip 83. A second spring 85 is disposed between the end of the L-shaped clip 83 away from the second driving rod 84 and the second vertical slot 82. The design of the auxiliary clamping structure 8 allows the patient's head to be flexibly adjusted to different positions as needed, particularly ensuring that the patient's face can be positioned upward when needed, meeting the needs of different treatment scenarios. The coordinated use of the L-shaped clip 83, the second driving rod 84, and the second spring 85 ensures the stable fixation of the second triangular oblique block 81 on the reinforcement plate 41. The detachable design of the second triangular bevel block 81 allows medical staff to easily disassemble and install the operation, which is both convenient and quick, and improves work efficiency. By adjusting the installation position of the second triangular bevel block 81, the patient's head can be tilted to either side, meeting the head position adjustment under different treatment needs. When in use, the medical staff first determines the tilt angle of the patient's head according to the treatment needs. If the patient's face needs to be set up, ensure that the first triangular bevel block 42 and the second triangular bevel block 81 are symmetrically arranged along the axis of the cold compress cap 1. At this time, the L-clip plate 83 is stably clamped in the limit groove 51 on the reinforcing plate 41 under the elastic force of the second spring 85, ensuring the stability of the position of the second triangular bevel block 81. If the tilt angle of the patient's head needs to be adjusted, the medical staff can hold the second triangular bevel block 81 and then press the second drive rod 84. The second drive rod 84 drives the L-clip plate 83 to move to the other side of the second vertical slot 82, while squeezing the second spring 85 to contract and accumulate force. Once the L-shaped plate 83 can be removed from the retaining groove 51 and the connecting groove 52, the medical staff can remove the second triangular bevel block 81 from the reinforcing plate 41 and reinstall it on the reinforcing plate 41 at the positions on both sides of the first triangular bevel block 42. At this point, the second driving rod 84 is released, and under the elastic force of the second spring 85, the L-shaped plate 83 is once again stably engaged in the retaining groove 51 on the reinforcing plate 41, thereby fixing the second triangular bevel block 81 in the new position.

[0035] The above is only a preferred specific implementation method of the present application, but the scope of protection of the present application is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes based on the technical solution and concept of the present application within the technical scope disclosed in the present application, and they should be covered by the scope of protection of the present application.

Claims

1. A cold compress device for treating cerebral hemorrhage in patients with hypertension, comprising a cold compress cap (1), a cold compress cavity (11) provided inside the cold compress cap (1), a cold compress liquid bag (2) provided in the cold compress cavity (11), and a sealing cover (3) provided on the top of the cold compress cap (1); Its characteristics are: A support and positioning structure (4) is provided on the rear side of the cold compress cap (1), and the support and positioning structure (4) comprises a reinforcement plate (41) and a first triangular oblique block (42) provided on the reinforcement plate (41); The reinforcing plate (41) is provided with an adjustment structure (5) for adjusting the position of the first triangular bevel block (42); The regulating structure (5) comprises a limiting groove (51) provided in the reinforcing plate (41), a communicating groove (52) provided on the outer side of the reinforcing plate (41) and communicating with the limiting groove (51), a limiting plate (53) movably provided in the limiting groove (51), and a connecting plate (54) movably provided in the communicating groove (52) and fixedly connected to the limiting plate (53) and the first triangular oblique block (42); The limiting plate (53) is provided with a locking structure (6), the locking structure (6) comprising a first vertical slot (61) provided in the limiting plate (53), the connecting plate (54) and the first triangular oblique block (42), a lifting plate (62) being movably provided in the first vertical slot (61), an inserting rod (63) fixedly connected to the lifting plate (62) being slidably plugged into the limiting plate (53), and a plurality of slots (64) equidistantly provided in the limiting slot (51) for inserting the inserting rod (63); The reinforcing plate (41) is provided with an auxiliary clamping structure (8) for auxiliary clamping of the patient's head, the auxiliary clamping structure (8) comprising a detachable second triangular oblique block (81) provided on the reinforcing plate (41), a second vertical slot (82) provided on the second triangular oblique block (81), an L-shaped card plate (83) for passing through the connecting slot (52) and being clamped in the limiting slot (51) provided inside the second vertical slot (82), a second driving rod (84) plugged into the second triangular oblique block (81) and fixedly connected to the L-shaped card plate (83), and a second spring (85) provided between an end of the L-shaped card plate (83) away from the second driving rod (84) and the second vertical slot (82).

2. The cold compress device for treating cerebral hemorrhage in hypertensive patients according to claim 1, characterized in that: The locking structure (6) further comprises a first driving rod (65) inserted into the first triangular inclined block (42) and fixedly connected to the lifting plate (62), and a first spring (66) arranged between an end of the lifting plate (62) away from the first driving rod (65) and the first vertical slot (61).

3. The cold compress device for treating cerebral hemorrhage in hypertensive patients according to claim 1, characterized in that: The sealing cover (3) is mounted on the cold compress cap (1) via an airtight zipper.

4. The cold compress device for treating cerebral hemorrhage in hypertensive patients according to claim 1, characterized in that: A protective pad (7) is provided on the inner side of the cold compress cap (1), and the protective pad (7) is fixed inside the cold compress cap (1) via Velcro.

5. The cold compress device for treating cerebral hemorrhage in hypertensive patients according to claim 1, characterized in that: Both sides of the cold compress cap (1) are provided with arc-shaped grooves (12) adapted to the patient's ears, and the rear side of the cold compress cap (1) is lower than the front side of the cold compress cap (1).

Citation Information

Patent Citations

  • First-aid cold compress device for hypertensive cerebral hemorrhage patient

    CN114668575A

  • First-aid cold compress device for hypertensive cerebral hemorrhage patient

    CN218589230U