CN215874656U - Bandage structure and oximeter with same - Google Patents

Bandage structure and oximeter with same Download PDF

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Publication number
CN215874656U
CN215874656U CN202122074232.XU CN202122074232U CN215874656U CN 215874656 U CN215874656 U CN 215874656U CN 202122074232 U CN202122074232 U CN 202122074232U CN 215874656 U CN215874656 U CN 215874656U
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China
Prior art keywords
strap
bandage
probe
oximeter
binding belt
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CN202122074232.XU
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Chinese (zh)
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毛圣乾
肖强
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SHENZHEN VIATOM TECHNOLOGY CO LTD
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SHENZHEN VIATOM TECHNOLOGY CO LTD
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Abstract

The bandage structure comprises a first bandage, a second bandage and a third bandage which are sequentially connected, wherein the first bandage and the third bandage are respectively suitable for being bound to a part to be bound in a surrounding mode, the first bandage is used for being connected with a host of a detector, and the third bandage is used for being connected with a probe of the detector; when the first bandage and the third bandage are all around to be bound the position after, probe and host computer are fixed separately, and the relative position between probe and the host computer is held fixedly by virtue of the connection of second bandage, so, can keep stable relation of connection between host computer and the probe, be difficult to the disconnection between probe and the host computer, can guarantee the continuity of monitoring process, make the user can obtain continuous monitoring result. The oximeter with the bandage structure is suitable for being worn on the body of an infant and carrying out continuous monitoring.

Description

Bandage structure and oximeter with same
Technical Field
The application relates to the technical field of medical equipment, in particular to a bandage structure and an oximeter with the same.
Background
The blood oxygen saturation instrument is used for monitoring the proportion of hemoglobin carrying oxygen and hemoglobin not carrying oxygen in an artery, and can be used for reflecting the health condition of a human body in real time. At present, oximeters for monitoring blood oxygen of infants are applied more and more widely in families. For wearing of infant oximeter, a strap is used to surround the wrist or ankle of an infant to fix a probe, and the probe is connected to a host through a wire. Because the infant has the characteristics of good movement, good grabbing and the like, the bandage is easy to shift, the disconnection between the probe and the host machine due to the falling of the lead is further caused, the blood oxygen monitoring process is interrupted, and a continuous monitoring result cannot be obtained.
SUMMERY OF THE UTILITY MODEL
An object of the embodiment of this application is to provide a bandage structure, aim at solving current oximetry and drop easily and cause the technical problem that blood oxygen monitoring was interrupted when wearing on infant's body.
The embodiment of the application is realized like this, a bandage structure, including first bandage, second bandage and the third bandage that connects gradually, wherein, first bandage and third bandage are suitable for respectively to encircle to be binded in the position of waiting to bind, first bandage is used for connecting the host computer of detector, the third bandage is used for connecting the probe of detector.
In one embodiment, the second strap is formed with a receiving pocket that opens toward both a side of the first strap and a side of the second strap, the receiving pocket for passing at least a portion of the connecting wires between the probe and the host computer.
In one embodiment, the second strap includes a first panel connected to the first strap and a second panel connected to the third strap, the first and second panels being connected to one another in a stacked relationship, the receiving pocket being formed between the first and second panels.
In one embodiment, the first sheet is integrally formed with the first strap, the second sheet is integrally formed with the third strap, and both sides of the first sheet and the second sheet are connected respectively.
In one embodiment, a width of any one of the first strap, the second strap, and the third strap is 5mm to 20 mm.
In one embodiment, the strap arrangement further comprises a connector;
the connecting piece comprises a first connecting part and a second connecting part which can be connected with each other, the first connecting part is arranged at one end of the first bandage and/or the third bandage, and the second connecting part is arranged at the other end of the first bandage and the third bandage; or the connecting piece is arranged at one end of the first binding band and/or the third binding band and is correspondingly connected with the other end of the first binding band and/or the third binding band.
In one embodiment, the connector comprises one or more of a turnbuckle, a snap, a hook and loop fastener, and a pin fastener.
In one embodiment, any one of the first strap, the second strap and the third strap comprises a skin layer, a support layer and a decorative layer which are sequentially stacked.
Another object of the present application is to provide an oximeter, which comprises the strap structure of the above embodiments, a main unit connected to the first strap, and a probe connected to the third strap; the probe is used for monitoring the blood oxygen saturation of the human body.
In one embodiment, the probe is also used to monitor one or more of pulse rate, blood perfusion index and body movement.
The bandage structure and the oximetry that this application embodiment provided's beneficial effect lies in:
the bandage structure that the embodiment of the application provided, first bandage, second bandage and third bandage connect gradually, first bandage and third bandage all are suitable for to encircle to bind in waiting to bind the position, first bandage is used for connecting the host computer of detector, the third bandage is used for connecting the probe of detector, all encircle in waiting to bind the position back when first bandage and third bandage, probe and host computer are fixed separately, and the relative position between probe and the host computer is borrow and is fixed by the connection of second bandage, so, can keep stable relation of connection between host computer and the probe, be difficult to the disconnection between probe and the host computer, can guarantee the continuity of monitoring process, make the user can obtain continuous monitoring result. The oximeter with the bandage structure is suitable for being worn on the body of an infant and carrying out continuous monitoring.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is an expanded front view of an oximeter provided by an embodiment of the instant application;
FIG. 2 is a front exploded view of the oximeter of FIG. 1;
FIG. 3 is a rear expanded view of the oximeter of FIG. 1;
FIG. 4 is an exploded rear exploded view of the oximeter of FIG. 1;
FIG. 5 is an exploded perspective view of the oximeter of FIG. 1;
fig. 6 is a schematic diagram of the oximeter shown in fig. 1 in a use state.
The designations in the figures mean:
100-oximeter, 1-host, 2-probe, 3-connecting wire;
4-strap configuration, 41-first strap, 42-second strap, 420-receiving pocket, 421-first panel, 422-second panel, 43-third strap, 441-first attachment, 442-second attachment.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more apparent, the present application is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
It will be understood that when an element is referred to as being "secured to" or "disposed on" another element, it can be directly or indirectly secured to or disposed on the other element. When an element is referred to as being "connected to" another element, it can be directly or indirectly connected to the other element. The terms "upper", "lower", "left", "right", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description, but do not indicate or imply that the referred devices or elements must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the patent. The terms "first", "second" and "first" are used merely for descriptive purposes and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features. The meaning of "plurality" is two or more unless specifically limited otherwise.
Referring to fig. 1, 5 and 6, the present application first provides a bandage structure 4 for use in a detector and for fixing the detector to a portion of a human body to be bound. Specifically, as shown in fig. 1 and 3, the bandage structure 4 includes a first bandage 41, a second bandage 42 and a third bandage 43 which are connected in sequence, wherein the first bandage 41 and the third bandage 43 are respectively adapted to surround and be bound to a portion to be bound, the first bandage 41 is used for connecting with the main machine 1 of the measuring instrument, and the third bandage 43 is used for connecting with the probe 2 of the measuring instrument. In this way, the main body 1 and the probe 2 are fixed and bound to the portion to be bound by the first binding band 41 and the third binding band 43, respectively.
As shown in fig. 2 and 4, the connection between the main unit 1 and the probe 2 is made by a connection wire 3. The probe 2 is used for fitting the skin surface of a human body so as to monitor some physiological indexes of the human body, such as one or more of blood oxygen saturation, pulse rate and blood flow perfusion index. In some embodiments, the probe 2 may also be used to monitor body motion.
The part to be bound can be the upper limb or the lower limb of the human body. For example, referring to fig. 6 in combination, the first strap 41 may be looped around the ankle of the person and the third strap 43 may be looped around the foot of the person. In other alternative embodiments, the first strap 41 may be wrapped around the arm of the person, and the third strap 43 may be wrapped around the arm of the person or the palm of the person, etc.
The bandage structure 4 that this application embodiment provided, its first bandage 41, second bandage 42 and third bandage 43 connect gradually, first bandage 41 is used for connecting the host computer 1 of detector, third bandage 43 is used for connecting the probe 2 of detector, after first bandage 41 and third bandage 43 all encircle in waiting to bind the position, the probe 2 of detector is fixed with host computer 1 respectively, and the relative position between probe 2 and host computer 1 is fixed by the connection of second bandage 42, so, can keep stable relation of connection between host computer 1 and the probe 2, be difficult for breaking off between connecting wire 3 and host computer 1, the probe 2, guarantee the continuity of monitoring process, make the user can obtain continuous monitoring result.
The above-mentioned detector can be any instrument that can be applied to human body for human body physiological index monitoring portably, such as oximeter 100 (refer to fig. 1), smart bracelet (having functions of counting, monitoring sleep, etc.), and so on. The following description will take the example of the blood oximeter 100 as the detector.
The bandage structure 4 provided by the embodiment of the present application can be applied to the oximeter 100 for monitoring an infant, and even if the infant has the characteristics of good movement and being grabbed, the oximeter 100 with the bandage structure 4 can also be stably bound to the body of the infant and obtain a continuous monitoring result. Of course, the band structure 4 may be applied to the oximeter 100 for monitoring adults, toddlers, etc. according to specific needs.
Referring to fig. 5, in one embodiment, a receiving pocket 420 is formed on the second strap 42, and the receiving pocket 420 is opened at both sides facing the first strap 41 and the second strap 42 for receiving at least a portion of the connecting wires 3 of the oximeter 100 connected between the probe 2 and the main unit 1, as shown in fig. 1 and 3. In this way, the second strap 42 can substantially fix and house the connecting wire 3 while connecting the first strap 41 and the third strap 43, and the connecting wire 3 is not completely exposed, so that the infant or the like can be prevented from catching the connecting wire 3.
Without being limited thereto, in other alternative embodiments, the connecting wires 3 may be fixedly disposed on the second strap 42 by other means, such as gluing, sewing, or being pressed against the second strap 42 by other structures. It is not necessary here to describe any further details, but it is generally advantageous to be able to achieve a substantial fixing of the connecting leads 3.
Referring to fig. 2 and 4, in one embodiment, the second strap 42 includes a first sheet 421 connected to the first strap 41 and a second sheet 422 connected to the third strap 43, the first sheet 421 and the second sheet 422 are connected to each other in a stacked manner, and both sides of the first sheet 421 and the second sheet 422 are connected to each other, so that a receiving pocket 420 opened toward both sides thereof is formed between the first sheet 421 and the second sheet 422.
The first sheet 421 and the second sheet 422 may be attached to each other on both sides by gluing, sewing, or the like.
Further, as shown in fig. 2 and 4, the first sheet 421 is integrally formed with the first strap 41, and the second sheet 422 and the third strap 43 are integrally formed.
In other alternative embodiments, the first sheet 421 of the second strap 42 may be integrally formed with the first strap 41 and the third strap 43, the second sheet 422 may be stacked on the first sheet 421, and the second sheet 422 may be connected to both sides of the first sheet 421. In this manner, the receiving pocket 420 having both ends opened may be formed.
In another alternative embodiment, the first sheet 421 and the second sheet 422 can be integrally formed as a single sheet, and the receiving pocket 420 can be formed by folding in half.
In one embodiment, referring to fig. 1 to 4, a width of any one of the first strap 41, the second strap 42, and the third strap 43 is 5mm to 20 mm. Within this width, the strap structure 4 can accommodate the size of the infant's wrist, ankle, etc. Further, the width of any one of the first strap 41, the second strap 42, and the third strap 43 is 8mm to 15mm, for example, optionally 10 mm. Of course, in alternative embodiments, the widths of first strap 41, second strap 42, and third strap 43 may vary as appropriate depending on the particular population for which oximeter 100 is intended.
In one embodiment, the strap structure 4 further includes two connecting members respectively provided at the first strap 41 and the second strap 42 for connecting both ends of the first strap 41 and the third strap 43 so that the first strap 41 and the third strap 43 are respectively wound in a loop shape.
Specifically, the connector includes a first connecting portion 441 and a second connecting portion 442 that are connectable to each other, the first connecting portion 441 being provided at one end of the first strap 41 and the third strap 43, and the second connecting portion 442 being provided at the other end of the first strap 41 and the third strap 43. Both ends of the first and third straps 41 and 43 may be connected by the connection of the first and second connecting portions 441 and 442, respectively.
For example, the connecting member may be a snap fastener, one of the first connecting portion 441 and the second connecting portion 442 is a male snap, and the other of the first connecting portion 441 and the second connecting portion 442 is a female snap.
Or, the connecting member is a hook and loop fastener, one of the first connecting portion 441 and the second connecting portion 442 is a hook surface portion, and the other of the first connecting portion 441 and the second connecting portion 442 is a hair surface portion.
In one embodiment, any of the first strap 41, second strap 42 and third strap 43 includes a skin layer, a support layer and a decorative layer in a stacked arrangement in that order. The skin sticking layer is used for directly sticking to the skin of a human body and can be made of breathable and comfortable cloth such as cotton cloth and the like so as to reduce the stimulation to the skin of the human body. The support layer is for providing a certain strength so that the first strap 41, the second strap 42, and the third strap 43 are not too soft, and thus the first strap 41, the second strap 42, and the third strap 43 are prescribed to be able to maintain a certain shape after the portion of the human body to be fixed, respectively. The decorative layer provides a certain decorative effect through the material, texture, pattern, etc., and can improve the appearance of the binding band structure 4.
Wherein, optionally, the decorative layer is a matte layer. The purpose of this arrangement is that, when the above-mentioned connecting piece is a magic tape, at least a part of the hair surface layer is used as a hair surface part. Therefore, the hook face part can be directly bonded with at least one part of the decorative layer. Of course, in other alternative embodiments, it is also possible that the frosted surface is additionally provided on the decorative layer.
In other alternative embodiments, the connector may be in the form of a pin buckle, a herringbone buckle, or the like. The pin buckle and the Chinese character 'ri' buckle are arranged at one ends of the first binding band 41 and the third binding band 43, and a part of the other ends of the first binding band 41 and the third binding band 43 directly passes through the pin buckle and the Chinese character 'ri' buckle to form connection with the pin buckle and the Chinese character 'ri' buckle.
The form of the two connectors may be different, for example, it is also possible that one of the connectors is a hook and loop fastener and the other connector is a pin and loop fastener.
Another object of the embodiments of the present application is to provide an oximeter 100, as shown in fig. 1, 3 and 5, which comprises a strap structure 4, a main unit 1 connected to a first strap 41, and a probe 2 connected to a third strap 43, as described in the above embodiments. In the oximeter 100 provided in the embodiment of the present application, in the binding band structure 4, the first binding band 41, the second binding band 42, and the third binding band 43 are sequentially connected, after the first binding band 41 and the third binding band 43 are all surrounded at the to-be-bound portion, the probe 2 of the oximeter 100 and the host 1 are respectively fixed, and the relative position between the probe 2 and the host 1 is fixed by the connection of the second binding band 42, so that the host 1 and the probe 2 can maintain a stable connection relationship, thereby ensuring the continuity of the monitoring process, and enabling a user to obtain a continuous monitoring result.
In one embodiment, probe 2 is used to monitor human blood oxygen saturation, and to monitor one or more of pulse rate, perfusion index and body movement.
The main machine 1 and the probe 2 are connected through a connecting wire 3. The connecting wires 3 are disposed on the second strap 42, and the description of the strap structure 4 in the above embodiment can be specifically referred to, and will not be repeated here.
The host 1 is used for receiving signals of the probe 2 through the connecting lead 3 and converting the signals into corresponding monitoring results for reference of a user. Specifically, the main body 1 may be provided with a display screen (not shown) for displaying a pulse intensity histogram, a blood oxygen volume waveform, a pulse rate value, a body motion value, and the like in real time.
In an alternative embodiment, the host 1 may also be communicatively connected, preferably wirelessly, to the server. In this way, the user can directly obtain the monitoring result from the server to the local client (such as a mobile phone and a flat lamp) without looking at the host 1. This further improves the ease of use of the oximeter 100.
The above description is only exemplary of the present application and should not be taken as limiting the present application, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims (10)

1. The binding belt structure is characterized by comprising a first binding belt, a second binding belt and a third binding belt which are sequentially connected, wherein the first binding belt and the third binding belt are respectively suitable for being bound to a part to be bound in a surrounding mode, the first binding belt is used for being connected with a main machine of a detector, and the third binding belt is used for being connected with a probe of the detector.
2. The strap construction of claim 1 wherein said second strap is formed with a receiving pocket, said receiving pocket being open to both a side of said first strap and a side of said second strap, said receiving pocket being adapted to pass at least a portion of a connecting wire between said probe and said host computer.
3. The strap construction of claim 2 wherein said second strap comprises a first panel connected to said first strap and a second panel connected to said third strap, said first and second panels being connected to one another in a stacked relationship, said receiving pocket being formed between said first and second panels.
4. The strap structure of claim 3 wherein said first body is integrally formed with said first strap, said second body and said third strap are integrally formed, and wherein said first body and said second body are attached on opposite sides of said first body and said second body, respectively.
5. The strap structure according to any one of claims 1 to 4, wherein a width of any one of said first strap, said second strap and said third strap is 5mm to 20 mm.
6. The strap structure of any one of claims 1 to 4 further comprising a connector;
the connecting piece comprises a first connecting part and a second connecting part which can be connected with each other, the first connecting part is arranged at one end of the first bandage and/or the third bandage, and the second connecting part is arranged at the other end of the first bandage and the third bandage; or the connecting piece is arranged at one end of the first binding band and/or the third binding band and is correspondingly connected with the other end of the first binding band and/or the third binding band.
7. The strap construction of claim 6 wherein said attachment means comprises one or more of a Velcro, snap, hook and loop fastener, and pin fastener.
8. The strap construction of any one of claims 1 to 4 wherein any one of said first strap, said second strap and said third strap includes a skin layer, a support layer and a decorative layer in a stacked arrangement in that order.
9. An oximeter comprising a strap structure according to any one of claims 1 to 8, a main unit connected to the first strap, and a probe connected to the third strap; the probe is used for monitoring the blood oxygen saturation of the human body.
10. The oximeter of claim 9, wherein said probe is further adapted to monitor one or more of pulse rate, perfusion index and body movement.
CN202122074232.XU 2021-08-30 2021-08-30 Bandage structure and oximeter with same Active CN215874656U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122074232.XU CN215874656U (en) 2021-08-30 2021-08-30 Bandage structure and oximeter with same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122074232.XU CN215874656U (en) 2021-08-30 2021-08-30 Bandage structure and oximeter with same

Publications (1)

Publication Number Publication Date
CN215874656U true CN215874656U (en) 2022-02-22

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122074232.XU Active CN215874656U (en) 2021-08-30 2021-08-30 Bandage structure and oximeter with same

Country Status (1)

Country Link
CN (1) CN215874656U (en)

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