Postoperative ice compress and pressure bandage facilitating temperature control

By introducing a cooling layer and temperature sensor into the postoperative ice pack pressure bandage, the ice pack temperature can be dynamically monitored and adjusted, solving the problem of simultaneous postoperative hemostasis and analgesia, and improving patient comfort.

CN224292076UActive Publication Date: 2026-05-29DEHUA COUNTY HOSPITAL

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DEHUA COUNTY HOSPITAL
Filing Date
2025-04-09
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

In existing technologies, postoperative ice pack devices cannot simultaneously achieve compression hemostasis and ice pack analgesia, and the temperature of the ice pack is not easy to control, affecting the patient's comfort.

Method used

A postoperative ice pack pressure bandage with easy temperature control was designed, which includes an ice pack pressure bag and a bandage. The bag is equipped with a cooling layer and a temperature sensor. The temperature of the liquid inside the ice pack is dynamically monitored and adjusted by a control box. Combined with the pressure pack, it can achieve hemostasis and analgesia.

Benefits of technology

This allows for simultaneous compression hemostasis and ice pack analgesia post-surgery, meeting the nursing requirements of different patients and improving their comfort.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224292076U_ABST
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Abstract

The utility model relates to the field of medical auxiliary equipment, concretely relates to a postoperative ice compress pressurizing band convenient for temperature control, including ice compress pressurizing capsule and bandaging, ice compress pressurizing capsule is equipped with ice compress and pressurizing bag, ice compress includes flexible capsule bag, waterproof temperature transfer layer, refrigeration layer and temperature sensor, pressurizing bag is placed in the liquid in capsule bag, and bandaging is fixed on ice compress pressurizing capsule. The utility model discloses utilize refrigeration layer and temperature sensor to carry out refrigeration to the liquid in ice compress and can dynamically monitor temperature to facilitate the regulation and control according to the need, utilize the pressurizing bag integrated into the ice compress that contains liquid, make ice compress pressurizing capsule can carry out compression hemostasis to patient postoperative and can ice compress analgesia simultaneously, to meet the different requirements of patient postoperative nursing, can improve the comfort of patient.
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Description

Technical Field

[0001] This utility model relates to the field of medical auxiliary equipment, specifically to a postoperative ice pack pressure band that is easy to control temperature. Background Technology

[0002] Clinically, surgical wounds often ooze blood, requiring timely pressure to stop the bleeding and reduce postoperative fluid accumulation or seroma. Therefore, postoperative care often involves using sandbags to compress the wound for hemostasis and applying ice packs wrapped in towels for pain relief and to reduce seroma. However, because sandbags are inconvenient to use simultaneously with ice packs during hemostasis, even if the patient is in pain, ice packs must be applied only after hemostasis is complete, leading to discomfort due to the inability to provide timely pain relief. Furthermore, the temperature of ice packs fluctuates during use and is difficult to control, making it difficult to meet the varying temperature requirements of different patients or the same patient at different times, thus affecting patient comfort. Therefore, medical staff desire an ice pack compression bandage that integrates easily adjustable cooling and pressure functions to simultaneously provide postoperative hemostasis and pain relief with adjustable temperature, thus meeting diverse postoperative care needs and improving patient comfort. This case arises from this need. Utility Model Content

[0003] To overcome the shortcomings of existing technologies, this utility model discloses a postoperative ice pack pressure bandage with easy temperature control, comprising an ice pack pressure bladder and a binding strap. The ice pack pressure bladder includes an ice pack and a pressure pack. The ice pack includes a flexible bladder, a waterproof heat-conducting layer, a cooling layer, and a temperature sensor. The pressure pack is placed in a liquid filled with water in the bladder, and the binding strap is fixed to the ice pack pressure bladder. This utility model utilizes the cooling layer and temperature sensor to cool the liquid in the ice pack, and the temperature can be dynamically monitored for adjustment as needed. By integrating the pressure pack into the liquid-filled ice pack, the ice pack pressure bladder can both apply pressure to stop bleeding and simultaneously provide ice pack analgesia after surgery, thereby meeting different postoperative care requirements and improving patient comfort.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0005] A postoperative ice pack pressure bandage with easy temperature control includes a binding band, the binding band having two ear loops that can be glued together. The bandage is characterized by further including an ice pack pressure bladder, which comprises an ice pack and a pressure pack. The ice pack is a flexible, sealed cavity capable of holding liquid. The ice pack is equipped with a cooling element and a temperature measuring element for cooling and measuring the temperature of the liquid contained within the cavity. The pressure pack is placed inside the liquid contained within the cavity of the ice pack. The two ear loops of the binding band are respectively fixed to the left and right ends of the ice pack pressure bladder.

[0006] The ice pack includes a pouch, a waterproof heat transfer layer, and a cooling layer. The pouch is a flexible sac with a sealed cavity. The inner wall of the pouch is provided with a waterproof heat transfer layer that is both waterproof and heat-conducting. A cooling layer that can be cooled is embedded in the upper half of the pouch wall, and the cooling surface of the cooling layer is in contact with the waterproof heat transfer layer.

[0007] The cooling layer is a flexible sheet made of thermoelectric cooling element.

[0008] Preferably, the bag is made of medical-grade rubber, and the waterproof and heat-conducting layer is made of aluminum foil.

[0009] The upper half of the bag has several heat dissipation pits on its wall. These pits are distributed above the cooling layer and their openings face outwards.

[0010] The ice pack also includes a temperature sensor, which is fixed to the wall of the pack in the middle of the pack to detect the water temperature inside the pack.

[0011] The pressure pack is a flexible gravity pack with a waterproof layer on the outer surface of the sandbag.

[0012] Furthermore, the binding strap is a flexible cloth strap, and its two ear straps are respectively equipped with a male and female Velcro buckle for bonding the ends of the two ear straps together.

[0013] The external part of the postoperative ice pack pressure bandage that is easy to control temperature can also be equipped with a control box. The control box includes a control motherboard and a display screen. The cooling layer and the temperature sensor are electrically connected to the control box. The control box can receive the water temperature information inside the ice pack dynamically collected by the temperature sensor and display it on the display screen. The control box can control the working status of the cooling layer.

[0014] As described above, the advantages of this invention's easily temperature-controlled postoperative ice pack pressure band are as follows: By setting an ice pack pressure bladder on the binding band, the ice pack pressure bladder is inserted into an ice pack containing liquid. The ice pack has a cooling layer made of thermoelectric cooling elements and a temperature sensor. The cooling layer and temperature sensor can be used to cool the liquid inside the ice pack, and the temperature can be dynamically monitored for adjustment as needed. By integrating the pressure bladder into the liquid-filled ice pack, the ice pack pressure bladder can both apply pressure to stop bleeding and simultaneously provide ice pack analgesia after surgery, thus meeting different postoperative care requirements and improving patient comfort. This invention has a reasonable design, simple structure, low cost, and is easy to promote. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of a postoperative ice pack pressure band that is easy to control temperature, as described in this utility model.

[0016] Figure 2 for Figure 1 An enlarged diagram of AA with the binding straps pointing downwards;

[0017] Figure 3 This is an enlarged diagram of an ice pack;

[0018] Figure 4 for Figure 3 Enlarged schematic diagram of part B in the diagram;

[0019] Figure 5 for Figure 3 Enlarged schematic diagram of part C in the diagram;

[0020] Figure 6 This is an enlarged schematic diagram of the pressure pack.

[0021] Figure label:

[0022] 1. Ice pack pressure bag; 11. Ice pack; 111. Bag; 1111. Heat dissipation recess; 112. Waterproof heat transfer layer; 113. Cooling layer; 114. Temperature sensor; 12. Pressure pack; 2. Bandaging strap. Detailed Implementation

[0023] The present invention will be further described below through specific embodiments.

[0024] like Figure 1 and Figure 2 As shown, the present invention discloses a postoperative ice pack pressure band for easy temperature control, comprising an ice pack pressure bladder 1 and a binding strap 2. The ice pack pressure bladder 1 is provided with an ice pack 11 and a pressure pack 12. The main body of the ice pack 11 is a flexible, sealed cavity that can hold liquid. The ice pack 11 is equipped with a cooling element and a temperature measuring element for cooling and measuring the temperature of the liquid held in the cavity of the ice pack 11. The pressure pack 12 is placed in the liquid held in the cavity of the ice pack 11. The binding strap 2 includes two interlocking loops. The binding strap 2 is a flexible fabric strip, and each of the two loops is provided with a Velcro closure for interlocking the ends of the loops. The two loops of the binding strap 2 are respectively fixed to the left and right ends of the ice pack pressure bladder 1.

[0025] like Figures 1 to 5As shown, the ice pack 11 of this invention includes a pouch 111, a waterproof and heat-conducting layer 112, a cooling layer 113, and a temperature sensor 114. The pouch 111 is a flexible pouch with a sealed cavity. A waterproof and heat-conducting layer 112 is provided on the inner wall of the pouch 111. A cooling layer 113 is embedded in the upper part of the pouch wall, with the cooling surface of the cooling layer 113 adhering to the waterproof and heat-conducting layer 112. The pouch 111 also has a water inlet for adding liquid. In this embodiment, the pouch 111 is made of medical rubber, and the waterproof and heat-conducting layer 112 is made of aluminum foil. The cooling layer 113 is a flexible sheet made of a thermoelectric cooling element. Thermoelectric cooling elements are a known technology, also known as semiconductor cooling elements, which are made of semiconductor materials and have one side capable of cooling and the other side capable of dissipating heat. The upper half of the bladder 111 has several heat dissipation pits 1111 on its wall, which are distributed above the cooling layer 113 with their openings facing outwards. The temperature sensor 114 is fixed to the bladder wall in the middle of the bladder 111 for detecting the water temperature inside the bladder 111.

[0026] like Figure 6 As shown, the pressure bag 12 of this utility model is a flexible gravity bag with a waterproof layer on the outer surface of the sandbag.

[0027] The external part of the postoperative ice pack pressure bandage that is easy to control temperature described in this utility model can also be equipped with a control box. The control box includes a control motherboard and a display screen. The cooling layer 113 and the temperature sensor 114 are electrically connected to the control box. The control box can receive the water temperature information inside the ice pack 11 dynamically collected by the temperature sensor 114 and display it on the display screen. The control box can control the working status of the cooling layer 113.

[0028] Before use, the ice pack 111 is filled with water. The cooling layer 113 cools the water to the desired temperature, either pre-set or as required by the patient. The ice pack 111 is then placed on the bandaged surgical wound and secured with the binding strap 2. The weight of the pack 12 and the cold liquid inside the ice pack 11 apply pressure to the wound for hemostasis and pain relief. The cooling layer 113 can be paused during the cooling process. If, after a period of time, the temperature sensor 114 detects that the water temperature has risen and reached the preset maximum temperature, affecting the cooling effect, the cooling layer 113 can be restarted to cool the water again, maintaining the ice temperature within the set comfortable range.

[0029] The ice pack pressure bandage of this utility model has an ice pack pressure bladder 1 set on the binding strap 2. The ice pack pressure bladder 1 contains a pressure pack 12 inside an ice pack 11 filled with water. The ice pack 11 is equipped with a cooling layer 113 made of thermoelectric cooling element and a temperature sensor 114. The cooling layer 113 and the temperature sensor 114 can be used to cool the water in the ice pack 11 and the temperature can be dynamically monitored for adjustment as needed. By integrating the pressure pack 12 into the ice pack 11 filled with water, the ice pack pressure bladder 1 can both compress and stop bleeding after surgery and simultaneously apply ice for pain relief, thereby meeting the different requirements of postoperative care and improving the patient's comfort.

[0030] The above is only one specific embodiment of the present utility model, but the design concept of the present utility model is not limited thereto. Any non-substantial modifications made to the present utility model using this concept shall be deemed as an infringement of the protection scope of the present utility model.

Claims

1. A postoperative ice pack compression bandage for easy temperature control, comprising a binding band (2), wherein the binding band (2) includes two ear loops that can be adhesively connected to each other, characterized in that: It also includes an ice pack pressure bag (1), which is provided with an ice pack (11) and a pressure bag (12). The main body of the ice pack (11) is a flexible, sealed cavity that can hold liquid water. The ice pack (11) is provided with a cooling component and a temperature measuring component for cooling and measuring the temperature of the liquid water contained in the cavity of the ice pack (11). The pressure bag (12) is placed in the liquid water contained in the cavity of the ice pack (11). The two ear loops of the binding strap (2) are respectively fixed to the left and right ends of the ice pack pressure bag (1).

2. The postoperative ice pack pressure bandage with easy temperature control according to claim 1, characterized in that: The ice pack (11) includes a bag (111), a waterproof heat transfer layer (112), and a cooling layer (113). The bag (111) is a flexible bag with a sealed cavity. The inner wall of the bag (111) is provided with a waterproof heat transfer layer (112) that is waterproof and can conduct heat. The upper half of the bag (111) is embedded in the bag wall and a cooling layer (113) is provided, with the cooling surface of the cooling layer (113) in contact with the waterproof heat transfer layer (112).

3. The postoperative ice pack pressure bandage with easy temperature control according to claim 2, characterized in that: The cooling layer (113) is a flexible sheet made of thermoelectric cooling chip.

4. The postoperative ice pack pressure bandage with easy temperature control according to claim 2, characterized in that: The upper half of the bag (111) has several heat dissipation pits (1111) on its wall. The heat dissipation pits (1111) are distributed above the cooling layer (113) and the openings of the heat dissipation pits (1111) face outward.

5. A postoperative ice pack pressure bandage with easy temperature control according to claim 2, characterized in that: The ice pack (11) also includes a temperature sensor (114), which is fixed to the wall of the bag (111) in the middle and is used to detect the water temperature inside the bag (111).

6. The postoperative ice pack pressure bandage with easy temperature control according to claim 1, characterized in that: The pressure pack (12) is a flexible gravity pack with a waterproof layer on the outer surface of the sandbag.

7. The postoperative ice pack pressure bandage with easy temperature control according to claim 1, characterized in that: The binding strap (2) is a flexible cloth strap, with a male and female Velcro buckle on each of its two ear straps.