Dynamic sphygmomanometer cuff and dynamic sphygmomanometer assembly

By employing an elastic mesh structure and anti-slip ring design in the ambulatory blood pressure monitor cuff, the problems of cuff slippage and incompatibility between left and right arms are solved, improving the accuracy of blood pressure monitoring and user experience.

CN223731393UActive Publication Date: 2025-12-30合肥京东方医院有限公司 +1
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Patent Information

Application Number
CN202422603626.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-12-30
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

Ambulatory blood pressure monitor cuffs are prone to slipping off and are not interchangeable between left and right arms, affecting the accuracy of blood pressure monitoring and user experience.

Method used

Design a mesh structure sleeve based on elastic material, combined with anti-slip rings and additional openings to increase the friction between the sleeve and the arm, and set multiple openings and fasteners on the main body of the sleeve to accommodate wearing on the left and right arms.

Benefits of technology

The cuff's fixation and applicability have been improved, ensuring the accuracy of blood pressure monitoring, reducing user discomfort, and enabling it to be worn on both arms.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a dynamic sphygmomanometer cuff and a dynamic sphygmomanometer assembly, and relates to the field of medical supplies, and the dynamic sphygmomanometer cuff comprises a sleeve which is of a net structure woven based on an elastic material; the first side edge of the cuff main body is fixedly connected with the side wall of the sleeve. Based on the scheme, the problem that the cuff of the dynamic sphygmomanometer is prone to slipping is solved.
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Description

Technical Field

[0001] This application relates to the field of medical supplies, and more specifically, to ambulatory blood pressure monitor cuffs and ambulatory blood pressure monitor assemblies. Background Technology

[0002] In clinical practice, blood pressure is mainly monitored by occasional clinic blood pressure (CBP) measurements. However, CBP is often affected by psychological and human factors and cannot fully reflect the fluctuations in an individual's blood pressure. Therefore, in order to better understand the patient's blood pressure status, ambulatory blood pressure monitors were developed to continuously and accurately monitor the user's blood pressure.

[0003] However, because ambulatory blood pressure monitors need to be worn for extended periods—for example, the cuff needs to be secured to the user's arm via a cuff, and the cuff needs to be repeatedly inflated and deflated—the cuff can easily become loose and slip off, reducing the accuracy of blood pressure monitoring. Furthermore, currently available ambulatory blood pressure monitors typically restrict the cuff to one arm, offering limited flexibility. Utility Model Content

[0004] This application provides an ambulatory blood pressure monitor cuff and an ambulatory blood pressure monitor assembly, which helps to avoid the problem of the ambulatory blood pressure monitor cuff easily slipping off; on the other hand, it can solve the problem that the same ambulatory blood pressure monitor cuff is not interchangeable between the left and right arms.

[0005] In a first aspect, a dynamic blood pressure monitor cuff is provided, comprising: a cuff tube, the cuff tube being a mesh structure woven from an elastic material; and a cuff body, the first side of the cuff body being fixedly connected to the side wall of the cuff tube.

[0006] In conjunction with the first aspect, in some implementations of the first aspect, the first cuff and / or the second cuff of the sleeve are provided with anti-slip rings.

[0007] In conjunction with the first aspect, in some implementations of the first aspect, the anti-slip ring is made of silicone or rubber.

[0008] In conjunction with the first aspect, in some implementations of the first aspect, a pocket is provided on the first surface of the cuff body for housing an air bladder, the air bladder including a tube opening for connecting a first end of a trachea, and a second end of the trachea connected to a dynamic blood pressure monitor; a first opening and a second opening are provided on the first side of the pocket, the position of the first opening corresponds to the position of the tube opening when the second surface of the air bladder is opposite to the first inner surface of the pocket, and the position of the second opening corresponds to the position of the tube opening when the third surface of the air bladder is opposite to the first inner surface; a third opening and a fourth opening are provided on the top edge of the cuff body, the third opening communicating with the first opening for passing through the trachea, and the fourth opening communicating with the second opening for passing through the trachea.

[0009] In conjunction with the first aspect, in some implementations of the first aspect, a fastener is provided on the top or bottom edge of the sleeve body, which is used to fix the sleeve body to the user's sleeve.

[0010] In conjunction with the first aspect, in some implementations of the first aspect, the cuff body further includes an extension strap extending from a second side of the cuff body, the second side being opposite to the first side, and a first hook and loop fastener being provided on a fourth surface of the extension strap; a second hook and loop fastener being provided on a fifth surface of the cuff body, wherein the first hook and loop fastener is a looped surface and the second hook and loop fastener is a hooked surface, or the first hook and loop fastener is a hooked surface and the second hook and loop fastener is a looped surface.

[0011] In conjunction with the first aspect, in some implementations of the first aspect, the top and bottom edges of the sleeve body are curved when the sleeve body is unfolded.

[0012] In conjunction with the first aspect, in some implementations of the first aspect, the opening of the pocket is adjacent to the first side of the cuff body, or the opening of the pocket is adjacent to the second side of the cuff body.

[0013] In conjunction with the first aspect, in some implementations of the first aspect, the opening of the pocket is provided with an opening and closing part for opening and closing the pocket opening.

[0014] In a second aspect, a dynamic blood pressure monitor assembly is provided, comprising: a dynamic blood pressure monitor; an air bladder; a trachea, a first end of which is connected to the inlet of the air bladder, and a second end of which is connected to the dynamic blood pressure monitor; and a dynamic blood pressure monitor cuff as in any possible implementation of the dynamic blood pressure monitor cuff design of the first aspect. Attached Figure Description

[0015] Figure 1 This is a schematic diagram illustrating the wearing of an ambulatory blood pressure monitor component;

[0016] Figure 2 This is a schematic diagram of the structure of a dynamic blood pressure monitor cuff 200 according to an embodiment of this application;

[0017] Figure 3 This is a schematic diagram of the structure of another dynamic blood pressure monitor cuff 200 proposed in the embodiments of this application;

[0018] Figure 4 This is a schematic diagram of the structure of another dynamic blood pressure monitor cuff 200 proposed in the embodiments of this application;

[0019] Figure 5 This is a schematic diagram showing the positional relationship of the pocket 221 containing the airbag 310 as proposed in the embodiments of this application. Detailed Implementation

[0020] The technical solutions in this application will now be described with reference to the accompanying drawings.

[0021] This application will present various aspects, embodiments, or features relating to a system comprising multiple devices, components, modules, etc. It should be understood and appreciated that individual systems may include additional devices, components, modules, etc., and / or may not include all the devices, components, modules, etc. discussed in conjunction with the accompanying drawings. Furthermore, combinations of these approaches are also possible.

[0022] Furthermore, in the embodiments of this application, the words "exemplary," "for example," etc., are used to indicate that they are examples, illustrations, or descriptions. Any embodiment or design scheme described as "exemplary" in the embodiments of this application should not be construed as being better or more advantageous than other embodiments or design schemes. Specifically, the use of the term "exemplary" is intended to present the concept in a concrete manner.

[0023] The business scenarios described in the embodiments of this application are for the purpose of more clearly illustrating the technical solutions of the embodiments of this application, and do not constitute a limitation on the technical solutions provided in the embodiments of this application. As those skilled in the art will know, with the evolution of technology and the emergence of new business scenarios, the technical solutions provided in the embodiments of this application are also applicable to similar technical problems.

[0024] References to "one embodiment" or "some embodiments" as described in this specification mean that one or more embodiments of this application include a specific feature, structure, or characteristic described in connection with that embodiment. Therefore, the phrases "in one embodiment," "in some embodiments," "in other embodiments," "in still other embodiments," etc., appearing in different parts of this specification do not necessarily refer to the same embodiment, but rather mean "one or more, but not all, embodiments," unless otherwise specifically emphasized. The terms "comprising," "including," "having," and variations thereof mean "including but not limited to," unless otherwise specifically emphasized.

[0025] In this application embodiment, "at least one" refers to one or more, and "more than one" refers to two or more. "And / or" describes the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A alone, A and B simultaneously, and B alone, where A and B can be singular or plural. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship. "At least one of the following" or similar expressions refer to any combination of these items, including any combination of single or plural items. For example, at least one of a, b, or c can represent: a, b, c, ab, ac, bc, or abc, where a, b, and c can be single or multiple.

[0026] In the description of the embodiments of this application, the terms "upper," "lower," "left," "right," "inner," "outer," "vertical," and "horizontal," etc., indicate the orientation or positional relationship relative to the orientation or position of the components shown in the accompanying drawings. It should be understood that these directional terms are relative concepts, used for relative description and clarification, and not to indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. They can change accordingly depending on the orientation of the components in the accompanying drawings, and therefore should not be construed as limiting this application.

[0027] In the embodiments of this application, the same reference numerals are used to denote the same component or part. For the same part in the embodiments of this application, only one part or component may be labeled with reference numerals in the figures. It should be understood that the reference numerals also apply to other identical parts or components. In addition, the various parts in the figures are not drawn to scale, and the dimensions and sizes of the parts shown in the figures are only exemplary and should not be construed as limiting this application.

[0028] While resting blood pressure monitors (such as CBP devices) can reflect a patient's blood pressure status to some extent, they have significant limitations. For example, CBP devices typically only allow measurements at specific locations and times, failing to comprehensively reflect the patient's blood pressure fluctuations throughout the day. Furthermore, during CBP device blood pressure monitoring, the patient's blood pressure is easily affected by psychological and human factors, leading to inaccurate results.

[0029] To overcome the aforementioned limitations, and in response to increased health awareness and the growing prevalence of chronic diseases, the medical field has developed the ambulatory blood pressure monitor.

[0030] Ambulatory blood pressure monitors continuously measure and record blood pressure values ​​to provide a more comprehensive understanding of blood pressure fluctuations over a period of time (such as a day). This monitoring method helps doctors more accurately assess a patient's blood pressure status, thereby enabling them to develop more effective treatment plans accordingly.

[0031] With the continuous maturation and development of ambulatory blood pressure monitoring technology, it has become a very important clinical examination method. However, because the ambulatory blood pressure monitor needs to be worn on the user (or patient) for extended periods—for example, the cuff needs to be secured to the user's arm via a cuff, and the cuff needs to be repeatedly inflated and deflated—the cuff can easily become loose and slip off, thus reducing the accuracy of blood pressure monitoring.

[0032] Additionally, the cuffs in currently available ambulatory blood pressure monitors are typically designed to be worn on one arm only. Considering that the right hand is usually the dominant hand, it is generally recommended to wear the cuff on the left arm. However, if the cuff recommended for the left arm is worn on the right arm, the way the tubing in the ambulatory blood pressure monitor is wrapped around the user's body needs to be changed.

[0033] Figure 1 This is a schematic diagram of wearing a dynamic blood pressure monitor component.

[0034] refer to Figure 1 As shown, the ambulatory blood pressure monitor assembly may include: an ambulatory blood pressure monitor, a cuff, a tubing, an air bag, and a carrying strap. Figure 1 In the middle, the airbag is wrapped inside the cuff, in Figure 1 It was not presented directly in the text.

[0035] The cuff includes a pocket, and the airbag needs to be placed in the pocket during use. The pocket and the top edge of the cuff are provided with an opening that connects them. One end of the trachea can be inserted into the pocket through the opening and connected to the airbag, while the other end of the trachea is connected to the ambulatory blood pressure monitor.

[0036] To facilitate portability, ambulatory blood pressure monitors can be equipped with a shoulder strap that is worn over the user's shoulder, allowing for convenient long-term blood pressure monitoring without restricting the user's movement. Some ambulatory blood pressure monitor components may also include a pouch to which the shoulder strap can be directly attached, providing storage for the ambulatory blood pressure monitor.

[0037] However, it's important to note that the ambulatory blood pressure monitor and the cuff are connected via a tubing, which passes through the user's skin to connect to both the monitor and the cuff. Considering the right hand is usually the dominant hand in daily life, most ambulatory blood pressure monitor cuffs are designed to be worn on the left arm. While some are designed for the right arm, for the same ambulatory blood pressure monitor cuff, the wearing method for the left or right arm is not interchangeable, ensuring a consistent user experience. The reasons are as follows:

[0038] refer to Figure 1 As shown in (a), the cuff of the ambulatory blood pressure monitor assembly is recommended to be worn on the left arm. When the user wears the cuff on their left arm, the tubing, connected at one end to the cuff, extends along the user's left upper arm to the user's left shoulder, then passes through the back of the user's neck and extends to the user's right shoulder, and then extends from the right shoulder towards the ambulatory blood pressure monitor so that the other end of the tubing connects to the ambulatory blood pressure monitor. Alternatively, refer to... Figure 1 As shown in (b), the trachea can also extend along the user's left upper arm to the user's left shoulder, then from the left shoulder along the user's back to the user's right waist, extending to the front wall of the user's outer garment, and then extending towards the position of the ambulatory blood pressure monitor, so that the other end of the trachea can be connected to the ambulatory blood pressure monitor. To prevent the trachea from slipping off the user's left shoulder, it can also be fixed to the user's outer garment at the user's left shoulder using adhesive or other fasteners. This method of wrapping the trachea can minimize the user's discomfort when wearing the ambulatory blood pressure monitor assembly.

[0039] However, if Figure 1 When the cuff of the ambulatory blood pressure monitor assembly shown in (a) is worn on the user's right arm, the way the trachea is wrapped around the user's body needs to be adjusted accordingly. It should be understood that the position of the opening on the cuff for the trachea remains unchanged regardless of whether the cuff is worn on the user's left or right arm. Therefore, in... Figure 1 In (a), the trachea extends from the cuff relative to the outside of the user's left arm, while... Figure 1 In (c), since the opening position of the trachea on the cuff remains unchanged, the trachea emerges from the cuff relative to the inside of the user's right arm. This requires the trachea to extend from the user's armpit to the user's right shoulder, then across the back of the neck from the right shoulder to the user's left shoulder, and then from both shoulders towards the ambulatory blood pressure monitor so that the other end of the trachea connects to the monitor. Because the trachea needs to extend from the user's armpit to the user's right shoulder, this increases the user's discomfort when wearing the ambulatory blood pressure monitor assembly.

[0040] Similarly, in Figure 1The above-mentioned problem also exists when the cuff is worn on the user's right arm in the method of wearing the dynamic blood pressure monitor component shown in (b) in the figure, which will not be repeated here.

[0041] In view of this, this application proposes a dynamic blood pressure monitor cuff, which solves the problem of the dynamic blood pressure monitor cuff easily slipping off by adding a specially designed anti-slip component; and solves the problem of the same dynamic blood pressure monitor cuff not being compatible with the left and right arms by adding an extra opening to the cuff.

[0042] Figure 2 This is a schematic diagram of the structure of a dynamic blood pressure monitor cuff 200 proposed in an embodiment of this application.

[0043] refer to Figure 2 As shown, the ambulatory blood pressure monitor cuff 200 includes:

[0044] Sleeve 210, sleeve 210 is a mesh structure based on elastic material;

[0045] The sleeve body 220 has its first side 01 fixedly connected to the side wall 02 of the sleeve tube 210.

[0046] It should be noted that when the user wears the above-mentioned dynamic blood pressure monitor cuff 200 normally, the user's arm passes through the sleeve 210 and the middle position of the sleeve 210 corresponds to the user's elbow crease, and the cuff body 220 is tightly wrapped around the side wall 02 of the sleeve 210, thus wrapping the sleeve 210. At this time, the middle position of the air bladder placed inside the cuff body 220 corresponds to the user's elbow crease.

[0047] It should be understood that the sleeve 210 is made of an elastic material, which helps to fit the sleeve 210 tightly against the user's arm (or the clothing on the arm, hereinafter referred to as the arm), increasing the friction between the sleeve 210 and the user's arm, thereby helping to increase the fixation between the ambulatory blood pressure monitor cuff 200 and the user's arm.

[0048] In addition, since the sleeve 210 is a woven mesh structure, it can further increase the friction between the sleeve 210 and the user's arm, thereby further increasing the fixation between the ambulatory blood pressure monitor cuff 200 and the user's arm.

[0049] In some possible embodiments, the width of the sidewall 02 of the sleeve 210 may be the same as the width of the first side 01 of the sleeve body 220; or, the width of the sidewall 02 of the sleeve 210 may be greater than the width of the first side 01 of the sleeve body 220, thereby increasing the contact area between the sleeve 210 and the user's arm, and further increasing the friction between the sleeve 210 and the user's arm.

[0050] Based on the above technical solution, by fixing the first side 01 of the cuff body 220 to the side wall 02 of the newly added cuff 210, and based on the material properties of the elastic material of the cuff 210 and the structural characteristics of the mesh structure of the cuff 210, there is a large friction between the cuff 210 and the user's arm, thereby increasing the fixation between the ambulatory blood pressure monitor cuff 200 and the user's arm. Even if the air bladder inside the cuff body 220 is repeatedly inflated and deflated, the ambulatory blood pressure monitor cuff 200 is not easy to loosen or slip off, thus ensuring the accuracy of blood pressure monitoring.

[0051] Figure 3 This is a schematic diagram of the structure of another dynamic blood pressure monitor cuff 200 proposed in the embodiments of this application.

[0052] Figure 3 The dynamic blood pressure monitor cuff 200 has been further improved in terms of the structure of the cuff 210.

[0053] In some possible embodiments, reference Figure 3 As shown, compared to Figure 2 Sleeve 210, Figure 3 The first cuff 211 and / or the second cuff 212 of the sleeve 210 are also provided with anti-slip rings 213.

[0054] In some possible embodiments, the anti-slip ring 213 can be made of silicone or rubber, or it can be made of a material with a rough surface.

[0055] In some possible embodiments, the anti-slip ring 213 located at the first cuff 211 may be made of a different material than the anti-slip ring 213 located at the second cuff 212.

[0056] Based on the above technical solution, by providing anti-slip rings 213 at the first cuff 211 and / or the second cuff 212 of the sleeve 210, the friction between the sleeve 210 and the user's arm can be further increased, thereby further increasing the fixation between the dynamic blood pressure monitor cuff 200 and the user's arm, and further ensuring the accuracy of blood pressure monitoring.

[0057] Figure 4 This is a schematic diagram of the structure of another dynamic blood pressure monitor cuff 200 proposed in the embodiments of this application.

[0058] Figure 4 The dynamic blood pressure monitor cuff 200 has some further improvements on the structure of the cuff body 220.

[0059] It should be understood that Figure 4 The sleeve body 220 shown can be connected to any of the sleeves 210 mentioned in the foregoing embodiments, and is not limited to it. Figure 4 The sleeve 210 shown is connected.

[0060] In some possible embodiments, reference Figure 4 As shown in (a), the cuff body 220 also includes a pocket 221, which is disposed on the first surface 03 of the cuff body 220. The pocket 221 is used to house an airbag 310, which includes a tube opening 311 for connecting the first end of the trachea 320, and the second end of the trachea 320 is connected to the dynamic blood pressure monitor 300.

[0061] The first side panel 04 of the pocket 221 is provided with a first opening 2211 and a second opening 2212. When the second surface 05 of the airbag 310 is opposite to the first inner surface 06 of the pocket 221, the position of the first opening 2211 corresponds to the position of the tube opening 311. When the third surface 07 of the airbag 310 is opposite to the first inner surface 06, the position of the second opening 2212 corresponds to the position of the tube opening 311.

[0062] The top edge 08 of the cuff body 220 is provided with a third opening 2201 and a fourth opening 2202. The third opening 2201 is connected to the first opening 2211 for passing through the trachea 320, and the fourth opening 2202 is connected to the second opening 2212 for passing through the trachea 320.

[0063] In some possible embodiments, the aforementioned pocket 221 is matched with the geometric parameters of the airbag 310. For example, the capacity of the pocket 221 is equal to or slightly larger than the volume of the airbag 310, that is, when the airbag 310 is full, the airbag 310 can fill the entire pocket 221 without being squeezed out of the pocket 221.

[0064] For ease of understanding, the following provides a detailed explanation of the relationship between the positions of the first opening 2211 and the second opening 2212 and the position of the opening 311 of the airbag 310.

[0065] Figure 5 This is a schematic diagram showing the positional relationship of the pocket 221 containing the airbag 310 as proposed in the embodiments of this application.

[0066] For example, see reference Figure 5In (a), assuming the user wears the ambulatory blood pressure monitor cuff 200 on their left arm, the air bladder 310 needs to be placed upright in the pocket 221, that is, the second surface 05 of the air bladder 310 is opposite to the first inner surface 06 of the pocket 221. In this case, the position of the first opening 2211 of the pocket 221 should correspond to the position of the tube opening 311. The first opening 2211 is connected to the third opening 2201 of the cuff body 220. At this time, the trachea 320 can extend from inside the cuff body 220 through the first opening 2211 and the third opening 2201, and then extend along the user's left upper arm to the user's left shoulder, then pass through the back of the user's neck from the left shoulder and extend to the user's right shoulder, and then extend from the right shoulder to the position of the ambulatory blood pressure monitor so that the other end of the trachea is connected to the ambulatory blood pressure monitor.

[0067] For example, see reference Figure 5 In (b), assuming the user wears the ambulatory blood pressure monitor cuff 200 on their right arm, the air bladder 310 needs to be placed in reverse in the pocket 221, that is, the third surface 07 of the air bladder 310 is opposite to the first inner surface 06 of the pocket 221. In this case, the position of the second opening 2212 of the pocket 221 should correspond to the position of the tube opening 311. The second opening 2212 is connected to the fourth opening 2202 of the cuff body 220. At this time, the trachea 320 can extend from inside the cuff body 220 through the second opening 2212 and the fourth opening 2202, and then extend along the user's right upper arm to the user's right shoulder, then pass through the back of the user's neck from the right shoulder and extend to the user's left shoulder, and then extend from the left shoulder to the position of the ambulatory blood pressure monitor so that the other end of the trachea is connected to the ambulatory blood pressure monitor.

[0068] In summary, regardless of whether the ambulatory blood pressure monitor cuff 200 is worn on the user's left or right arm, simply reversing the placement of the air bladder 310 in the pocket 221 will allow the trachea 320 to pass over the user's arm instead of under the armpit.

[0069] Based on the above technical solution, by setting an additional opening in the ambulatory blood pressure monitor cuff 200, the way the trachea 320 passes through the user's body surface remains unchanged regardless of whether the ambulatory blood pressure monitor cuff 200 is worn on the user's left or right arm. It extends from above the user's arm to the shoulder, rather than passing through the user's armpit. This helps to reduce the discomfort caused by the trachea 320 having to pass through the user's armpit when the cuff is worn on a different arm, thus realizing the function of the same ambulatory blood pressure monitor cuff 200 being usable on both arms.

[0070] In some possible embodiments, reference Figure 4As shown, the top edge 08 or bottom edge 09 of the sleeve body 220 may also be provided with a fastener, which is used to fix the sleeve body 220 to the user's sleeve.

[0071] In some possible embodiments, the aforementioned fastener may be a fastener clip, a fastener adhesive, or a paperclip, etc.

[0072] In some possible embodiments, the type of fastener located at the top edge 08 may be different from the type of fastener located at the bottom edge 09.

[0073] In some possible embodiments, a fastener may also be provided on the air tube 320 to secure the air tube 320 to the user's clothing.

[0074] Based on the above technical solution, the fastener can further increase the fixation between the cuff body 220 and the user's arm, thereby further ensuring the accuracy of blood pressure monitoring.

[0075] In some possible embodiments, reference Figure 4 As shown in (a), the cuff body 220 also includes an extension strap 223, which extends from the second side 10 of the cuff body 220, which is opposite to the first side 01, and the fourth surface 11 of the extension strap 223 is provided with a first Velcro 224.

[0076] refer to Figure 4 As shown in (b), the fifth surface 12 of the sleeve body 220 is provided with a second hook and loop fastener 225, wherein the second hook and loop fastener 225 is a hook side when the first hook and loop fastener 224 is a loop side, or the second hook and loop fastener 225 is a loop side when the first hook and loop fastener 224 is a hook side.

[0077] Based on the above technical solution, by adding an extension strap 223 to the cuff body 220, the ambulatory blood pressure monitor cuff 200 can be applied to a wider range of arm circumferences, thus increasing the applicability of the ambulatory blood pressure monitor cuff 200.

[0078] In some possible embodiments, reference Figure 4 As shown, when the above-mentioned sleeve body 220 is in the unfolded state, the top edge 08 and bottom edge 09 of the sleeve body 220 are curved.

[0079] It should be understood that the main body of the sleeve 220 presents an overall trapezoidal fan shape when unfolded.

[0080] Based on the above technical solution, the fan-shaped cuff body 220, which is wider at the top and narrower at the bottom, conforms to the physiological structure of the human upper arm, making the cuff body 220 fit the user's arm more closely and making the dynamic blood pressure monitor cuff 200 less likely to slip off.

[0081] In some possible embodiments, because pocket 221 is used to house airbag 310, pocket 221 needs to be provided with an opening for placing airbag 310 into pocket 221. (See reference...) Figure 4 As shown, the opening 2211 of the pocket 221 is adjacent to the first side 01 of the sleeve body 220; or, the opening 2211 of the pocket 221 may also be adjacent to the second side 10 of the sleeve body 220.

[0082] In some possible embodiments, reference Figure 4 As shown, the opening 2211 of the pocket 221 is also provided with an opening and closing part, which is used to open and close the opening 2211 of the pocket 221.

[0083] In some possible embodiments, the opening and closing part can be a zipper, or the opening and closing part can be a pair of hook and loop fasteners, including a loop fastener and a hook fastener, respectively disposed on both sides of the opening 2211.

[0084] Based on the above technical solution, by setting an opening and closing part in the opening 2211 of the pocket 221, the airbag 310 can be effectively prevented from being squeezed out of the pocket 221 during use, thus ensuring the accuracy of blood pressure monitoring.

[0085] Furthermore, embodiments of this application also propose an ambulatory blood pressure monitor assembly, the components of which are described above. Figure 5 This is reflected in all of them, so you can refer to it. Figure 5 As shown, the ambulatory blood pressure monitor assembly includes:

[0086] Ambulatory blood pressure monitor 300;

[0087] Airbag 310;

[0088] The trachea 320 has a first end for connecting to the port 311 of the air bag 310 and a second end for connecting to the dynamic blood pressure monitor 300.

[0089] And a dynamic blood pressure cuff 200 as described in any of the embodiments of this application.

[0090] In some possible embodiments, a fastener may be provided on the air tube 320 to secure the air tube 320 to the user's clothing.

[0091] In some possible embodiments, the length of the trachea 320 can be appropriately extended to accommodate users of more body types, thereby preventing the trachea 320 from falling off the user or breaking due to the trachea being too short and affecting the user's activities.

[0092] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A dynamic blood pressure meter cuff, characterized by, The application relates to a dynamic blood pressure meter cuff. The application relates to a dynamic blood pressure meter cuff. The first sleeve opening and / or the second sleeve opening of the sleeve is provided with an anti-skid ring.

2. The dynamic blood pressure meter cuff according to claim 1, characterized in that, The anti-skid ring is made of silica gel or rubber.

3. The dynamic blood pressure meter cuff of claim 2, wherein, The first surface of the cuff body is provided with a pocket for arranging an air bag, the air bag comprising a pipe opening for connecting a first end of an air tube, a second end of the air tube being connected with a dynamic blood pressure meter.

4. The dynamic blood pressure meter cuff according to any one of claims 1 to 3, characterized in that The first side of the pocket is provided with a first opening and a second opening, when a second surface of the air bag is opposite to a first inner surface of the pocket, the first opening is located at a position corresponding to the pipe opening, when a third surface of the air bag is opposite to the first inner surface, the second opening is located at a position corresponding to the pipe opening. The top edge of the cuff body is provided with a third opening and a fourth opening, the third opening is communicated with the first opening for passing through the air tube, the fourth opening is communicated with the second opening for passing through the air tube. The top edge or the bottom edge of the cuff body is provided with a fixing member for fixing the cuff body to a user's sleeve.

5. The dynamic blood pressure meter cuff of claim 4, wherein, The cuff body further comprises an extension belt, the extension belt extending from a second side of the cuff body, the second side being opposite to the first side, a fourth surface of the extension belt being provided with a first magic tape.

6. The dynamic blood pressure meter cuff of claim 4, wherein, A fifth surface of the cuff body is provided with a second magic tape, wherein the first magic tape is a hook surface, and the second magic tape is a loop surface, or the first magic tape is a loop surface, and the second magic tape is a hook surface. In the unfolded state, the top edge and the bottom edge of the cuff body present as an arc line.

7. The dynamic blood pressure meter cuff of claim 4, wherein, The opening of the pocket is adjacent to the first side of the cuff body, or the opening of the pocket is adjacent to the second side of the cuff body.

8. The dynamic blood pressure meter cuff of claim 4, wherein, The opening of the pocket is provided with an opening and closing part for opening and closing the opening of the pocket.

9. The dynamic blood pressure meter cuff of claim 4, wherein, The application relates to a dynamic blood pressure meter cuff.

10. A dynamic blood pressure meter assembly, characterized by The application relates to a dynamic blood pressure meter cuff. The first sleeve opening and / or the second sleeve opening of the sleeve is provided with an anti-skid ring. The anti-skid ring is made of silica gel or rubber. The first surface of the cuff body is provided with a pocket for arranging an air bag, the air bag comprising a pipe opening for connecting a first end of an air tube, a second end of the air tube being connected with a dynamic blood pressure meter. The first side of the pocket is provided with a first opening and a second opening, when a second surface of the air bag is opposite to a first inner surface of the pocket, the first opening is located at a position corresponding to the pipe opening, when a third surface of the air bag is opposite to the first inner surface, the second opening is located at a position corresponding to the pipe opening. The top edge of the cuff body is provided with a third opening and a fourth opening, the third opening is communicated with the first opening for passing through the air tube, the fourth opening is communicated with the second opening for passing through the air tube. The top edge or the bottom edge of the cuff body is provided with a fixing member for fixing the cuff body to a user's sleeve. The cuff body further comprises an extension belt, the extension belt extending from a second side of the cuff body, the second side being opposite to the first side, a fourth surface of the extension belt being provided with a first magic tape. A fifth surface of the cuff body is provided with a second magic tape, wherein the first magic tape is a hook surface, and the second magic tape is a loop surface, or the first magic tape is a loop surface, and the second magic tape is a hook surface. In the unfolded state, the top edge and the bottom edge of the cuff body present as an arc line. The opening of the pocket is adjacent to the first side of the cuff body, or the opening of the pocket is adjacent to the second side of the cuff body. The opening of the pocket is provided with an opening and closing part for opening and closing the opening of the pocket. The application relates to a dynamic blood pressure meter cuff. The application relates to a dynamic blood pressure meter cuff. The first sleeve opening and / or the second sleeve opening of the sleeve is provided with an anti-skid ring. The anti-skid ring is made of silica gel or rubber. The first surface of the cuff body is provided with a pocket for arranging an air bag, the air bag comprising a pipe opening for connecting a first end of an air tube, a second end of the air tube being connected with a dynamic blood pressure meter. The first side of the pocket is provided with a first opening and a second opening, when a second surface of the air bag is opposite to a first inner surface of the pocket, the first opening is located at a position corresponding to the pipe opening, when a third surface of the air bag is opposite to the first inner surface, the second opening is located at a position corresponding to the pipe opening. The top edge of the cuff body is provided with a third opening and a fourth opening, the third opening is communicated with the first opening for passing through the air tube, the fourth opening is communicated with the second opening for passing through the air tube. The top edge or the bottom edge of the cuff body is provided with a fixing member for fixing the cuff body to a user's sleeve. The cuff body further comprises an extension belt, the extension belt extending from a second side of the cuff body, the second side being opposite to the first side, a fourth surface of the extension belt being provided with a first magic tape. A fifth surface of the cuff body is provided with a second magic tape, wherein the first magic tape is a hook surface, and the second magic tape is a loop surface, or the first magic tape is a loop surface, and the second magic tape is a hook surface. In the unfolded state, the top edge and the bottom edge of the cuff body present as an arc line. The opening of the pocket is adjacent to the first side of the cuff body, or the opening of the pocket is adjacent to the second side of the cuff body. The opening of the pocket is provided with an opening and closing part for opening and closing the opening of the pocket. The application relates to a dynamic blood pressure meter cuff. The application relates to a dynamic blood pressure meter cuff.