CN215605757U - Male sex's motion electrocardio record clothing - Google Patents

Male sex's motion electrocardio record clothing Download PDF

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Publication number
CN215605757U
CN215605757U CN202121706718.4U CN202121706718U CN215605757U CN 215605757 U CN215605757 U CN 215605757U CN 202121706718 U CN202121706718 U CN 202121706718U CN 215605757 U CN215605757 U CN 215605757U
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area
chest
buckle
elastic
waist region
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CN202121706718.4U
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Chinese (zh)
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赵晓曦
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Beijing Institute Fashion Technology
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Beijing Institute Fashion Technology
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Abstract

The utility model discloses a male sports electrocardio recording coat which comprises a coat and trousers, wherein the front left chest area of the coat is made of shell fabric without elasticity, the inner wall of the front left chest area is connected with a sensor, a movable electrocardio recorder is positioned on the outer side of the front left chest area and detachably connected with the sensor, the front chest area of the coat is made of elastic shell fabric, the bottom of the front chest area is connected with the top of the front left chest area, the front left chest area is connected with a first elastic woven belt, the front side of the trousers is connected with a first buckle, and the first elastic woven belt is detachably connected with the first buckle.

Description

Male sex's motion electrocardio record clothing
Technical Field
The utility model relates to the technical field of electrocardio monitoring devices, in particular to a male exercise electrocardio recording coat.
Background
The portable electrocardiogram monitoring devices on the market at present are divided into two types. One is a single-conductor patch sensor directly attached to the skin of a human body and matched with a detachable electrocardiogram monitoring recorder. The other is that the conducting wire fiber fabric is used as a sensor to be matched with a detachable electrocardio monitoring recorder. The electrocardio monitoring recorder is internally provided with a chip, and the sensor transmits electrocardiosignals to the electrocardio monitoring recorder through the raised conductive metal connecting piece which is leaked on the clothes. The electrocardiograph recorder is connected with a data line or Bluetooth to lead out the electrocardiograph data after being disassembled.
The first type of use, the single lead patch sensor, which must adhere to the skin, is less comfortable during exercise. The second type is drawn by human behavior, the sensor has serious measurement position deviation, and the electrocardio detection accuracy is poor.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects in the prior art, the utility model provides a male motion electrocardio recording coat, which solves the problems of poor comfort of the traditional portable electrocardio monitoring equipment and sensor position deviation caused by behavior action, and ensures that the electrocardio detection accuracy is higher.
The utility model provides a male sex's motion electrocardio record clothing, includes jacket and trousers, the front left chest area of jacket is no bullet surface fabric, the inner wall in front left chest area is connected with the sensor, remove the electrocardio record appearance and be located the outside in front left chest area, remove the electrocardio record appearance and can dismantle with the sensor and be connected, remove the electrocardio record appearance and pass through the electrically conductive protruding connecting piece of metal with the sensor and be connected, the front chest upper area of jacket is elastic fabric, the bottom in front chest upper area is connected with the top in front left chest area, be connected with first elasticity meshbelt on the front left chest area, the trousers front side is connected with first buckle, first elasticity meshbelt can dismantle with first buckle and be connected.
Preferably, the back, middle and upper back area of the jacket is connected with a second elastic woven belt, the rear side of the trousers is connected with a second buckle, and the second elastic woven belt is detachably connected with the second buckle.
Preferably, a back collar area is arranged between the upper middle back area and the back collar at the back of the jacket, and the back collar area is made of elastic fabric.
Preferably, the back middle-upper back area is made of non-elastic fabric, the width of the back middle-upper back area is consistent with the shoulder width of a human body, chest-sleeve areas are arranged between the chest parts and the sleeves of the jacket, the chest-sleeve areas are made of non-elastic fabric, and the tops of the two chest-sleeve areas are connected with the top of the back middle-upper back area.
Preferably, the front left waist region of the jacket is provided with two through holes which are longitudinally distributed, the first elastic woven belt penetrates through the two through holes to be connected with the first buckle, the through holes limit the left and right movement of the first elastic woven belt, and the first elastic woven belt is vertically arranged; the second elastic woven belt is arranged in the middle of the middle upper back area in the back, and the second elastic woven belt is vertically arranged.
Preferably, the waist of trousers is divided into front waist region, back waist region and two side waist regions, the both ends in side waist region are connected with front waist region and back waist region respectively, the side waist region is elastic fabric, side waist region inlayer is inlayed and is had the elasticity meshbelt that adds elasticity, front waist region and back waist region are no elasticity fabric, first buckle sets up in front waist region, the second buckle sets up in the back waist region.
Preferably, the leg side area and the leg bottom area of the trousers are made of non-elastic fabric, and the upper end and the lower end of the leg side area are respectively connected with the side waist area and the leg bottom area.
Preferably, the sensor is arranged at an inclination of 45 degrees.
The utility model has the beneficial effects that: in the technical scheme, the trousers are connected with the first buckle, and the front left chest area is connected with the first elastic woven belt. The front left chest area is made of non-elastic fabric, and the fixed position of the sensor in the front left chest area is guaranteed to be unchanged. The upper area of the chest adopts elastic fabric, which can solve the problem of instant depth force of the traction fabric in the exercise state. First elasticity meshbelt is connected with first buckle, can pull the dynamics of front left chest region, the front left chest region at help sensor place resets, the front left chest region is exerted ascending power for front left chest region in the front chest, first elasticity meshbelt is exerted decurrent power for front left chest region, guarantee that front left chest region is in invariable position, the problem of sensor position change when can solving the extension state like this, middle and upper back region and chest sleeve district adopt no elasticity surface fabric in the back, pull the horizontal internal contraction power of front chest, the problem of sensor position change when can solving the thorax activity like this.
Drawings
In order to more clearly illustrate the detailed description of the utility model or the technical solutions in the prior art, the drawings that are needed in the detailed description of the utility model or the prior art will be briefly described below. Throughout the drawings, like elements or portions are generally identified by like reference numerals. In the drawings, elements or portions are not necessarily drawn to scale.
FIG. 1 is a front view of the present invention worn on a model;
FIG. 2 is a rear view of the present invention worn on a model;
FIG. 3 is a front view of the present invention;
fig. 4 is a rear view of the present invention.
In the attached drawing, 1-mobile electrocardiograph, 2-sensor, 4-front left chest area, 7-through hole, 10-side waist area, 11-front waist area, 12-back waist area, 13-trouser leg side area, 14-trouser leg area, 31-front chest upper area, 32-back collar area, 51-chest sleeve area, 52-back middle upper back area, 61-first elastic woven belt, 62-second elastic woven belt, 91-first buckle and 92-second buckle.
Detailed Description
Embodiments of the present invention will be described in detail below with reference to the accompanying drawings. The following examples are only for illustrating the technical solutions of the present invention more clearly, and therefore are only examples, and the protection scope of the present invention is not limited thereby.
It is to be noted that, unless otherwise specified, technical or scientific terms used herein shall have the ordinary meaning as understood by those skilled in the art to which the utility model pertains.
Examples
As shown in fig. 1-4, the present embodiment provides a male sports electrocardiograph recording garment, which includes a coat and trousers, wherein a front left chest area 4 of the coat is made of an inelastic fabric, a sensor 2 is connected to an inner wall of the front left chest area 4, a mobile electrocardiograph 1 is located outside the front left chest area 4, the mobile electrocardiograph 1 is detachably connected to the sensor 2, the mobile electrocardiograph 1 is connected to the sensor 2 through a metal conductive protrusion connector, a front chest area 31 of the coat is made of an elastic fabric, a bottom of the front chest area 31 is connected to a top of the front left chest area 4, the front left chest area 4 is connected to a first elastic woven tape 61, a front side of the trousers is connected to a first buckle 91, and the first elastic woven tape 61 is detachably connected to the first buckle 91.
The conventional motion states of the human body include: standing, stretching, stooping, squatting, chest expanding or chest containing.
When the patient stands, the four limbs of the human body are in a natural drooping state, the sensor 2 is in contact with the front left chest of the human body at the moment to perform electrocardio monitoring, and the jacket and the trousers are in a normal state.
When the device is in a stretching state, the two arms of the human body stretch upwards or upwards in a crossed mode, the thoracic cavity of the human body is lifted upwards backwards, the position of the sensor 2 moves upwards along with the posture and the skin of the human body at the moment, and after the posture is recovered, the position point of the sensor 2 is easily lifted under the control of clothing. In this embodiment, a first buckle 91 is connected to the pants and a first stretch webbing 61 is connected to the front left chest region 4. The front left chest area 4 is made of non-elastic fabric, and the fixed position of the sensor 2 in the front left chest area 4 is guaranteed to be unchanged. The upper chest area 31 is made of elastic fabric, so that the problem of instant depth force of the traction fabric in a sport state can be solved. Guarantee first buckle 91 constancy of position, first elasticity meshbelt 61 is connected with first buckle 91, can pull the dynamics of front left chest region 4, and the front left chest region 4 that help sensor 2 place resets, and front left chest region 31 exerts ascending power for front left chest region 4 during the motion, and first elasticity meshbelt 61 exerts decurrent power for front left chest region 4, guarantees that front left chest region 4 is in the constant position, can solve the problem of sensor 2 position change when extending the state like this.
In this embodiment, the second elastic webbing 62 is connected to the middle-upper back area 52, the second buckle 92 is connected to the rear side of the pants, and the second elastic webbing 62 is detachably connected to the second buckle 92.
When the waist is bent, the spine of a human body bends to the front side, the neckline position of the jacket is easy to droop downwards under the gravity, so that the front fabric is not attached, and the skin at the back waist position is deeply stretched under the influence of traction force.
In this embodiment, the second buckle 92 is connected to the trousers, and the second elastic webbing 62 is connected to the second buckle 92 to pull the jacket, so as to apply a force to the jacket toward the rear side, thereby overcoming the sagging effect of the chest gravity of the jacket, so that the chest fabric of the jacket is attached to the human body, and further, the sensor 2 is attached to the chest of the human body all the time, thereby solving the problem that the position of the sensor 2 is changed when the user bends over.
Wherein first elasticity meshbelt 61 can be dismantled with first buckle 91 and be connected, and second elasticity meshbelt 62 can be dismantled with second buckle 92 and be connected, is for the ease of wearing jacket and trousers, and specific first buckle 91 and second buckle 92 all adopt the D type to buckle, all sets up magic subsides group on first elasticity meshbelt 61 and the second elasticity meshbelt 62, and first elasticity meshbelt 61 passes the D type and buckles the back bottom and upwards turns over a book, and magic subsides group pastes the cooperation and fixes, and second elasticity meshbelt 62 is with the same reason.
In this embodiment, a back collar area 32 is formed between the back upper middle back area 52 and the back collar, and the back collar area 32 is made of elastic fabric.
When squatting, the radian is less between human backbone and the crotch bone, and consequently back skin extension tensile degree is higher, sets up back collarband 32 and is the elastic fabric, and when second elasticity meshbelt 62 tensile strength can not satisfy the depth tensile volume, back collarband 32 can assist and improve the tensile volume, assists second elasticity meshbelt 62 to guarantee that the chest surface fabric of jacket is laminated on the human body, and then makes sensor 2 laminate in human chest all the time, solves the problem that sensor 2 position takes place the change when squatting.
In this embodiment, the rear middle upper back area 52 is made of non-elastic fabric, the width of the rear middle upper back area 52 is consistent with the shoulder width of a human body, a chest-sleeve area 51 is arranged between the chest part and the sleeves of the jacket, the chest-sleeve area 51 is made of non-elastic fabric, the tops of the two chest-sleeve areas 51 are both connected with the top of the rear middle upper back area 52, the front left waist area of the jacket is provided with two through holes 7, the two through holes 7 are longitudinally distributed, the first elastic woven tape 61 passes through the two through holes 7 to be connected with the first buckle 91, the through holes 7 limit the left and right movement of the first elastic woven tape 61, and the first elastic woven tape 61 is vertically arranged; the second stretch webbing 62 is disposed in the middle of the rear mid-upper back region 52, with the second stretch webbing 62 being disposed vertically.
When the chest is expanded or in a chest-containing state, the chest of the human body is pulled forwards and backwards, so that the chest and the back are easily pulled by transverse force, and the sensor 2 is displaced left and right. In the embodiment, the chest sleeve area 51 and the back middle and upper back area 52 are made of non-elastic fabrics, the width of the back middle and upper back area 52 is consistent with the shoulder width of a human body, the chest between the arms of the human body is bound, the left and right movement of the jacket is limited, the position of the front left chest area 4 is ensured to be fixed, and the problem that the sensor 2 is displaced when the chest is expanded or in a chest-containing state is solved.
When the thorax rotates clockwise or counterclockwise, the transverse movement of the thorax does not change, but the first elastic woven belt 61 and the second elastic woven belt 62 are easy to displace left and right, thereby causing the left and right displacement of the front left thoracic region 4. Utilize the through-hole 7 to restrict the left and right displacement of first elasticity meshbelt 6 in this embodiment, set up second elasticity meshbelt 62 in the middle part of middle back upper back region 52 simultaneously, the vertical setting of second elasticity meshbelt 62 restricts the position about the jacket, because the vertical setting of second elasticity meshbelt 62 in the middle part of middle back upper back region 52, consequently need not alternate on the jacket, the problem of displacement about taking place of sensor 2 when solving the thorax anticlockwise rotation like this.
The waist of the trousers in this embodiment is divided into a front waist region 11, a rear waist region 12 and two side waist regions 10, two ends of the side waist region 10 are respectively connected with the front waist region 11 and the rear waist region 12, the side waist region 10 is made of elastic fabric, an elastic woven belt which is elastically added is embedded in an inner layer of the side waist region 10, the front waist region 11 and the rear waist region 12 are made of non-elastic fabric, a first buckle 91 is arranged at the front waist region 11, a second buckle 92 is arranged at the rear waist region 12, leg side regions 13 and leg regions 14 of the trousers are made of non-elastic fabric, and the upper end and the lower end of the leg side regions 13 are respectively connected with the side waist region 10 and the leg regions 14.
The side waist regions 10 are made of elastic fabric, and elastic woven belts are embedded in the side waist regions, so that the trousers can be worn conveniently by a user. The front waist region 11 and the back waist region 12 are made of non-elastic fabrics, so that the position of the waistband is not changed. The trouser leg side area 13 and the trouser leg area 14 are made of non-elastic fabrics, the position of the trouser leg area 14 is basically not changed under the control of thigh muscle groups, the waistband and the trouser leg area 14 are pulled by the trouser leg side area 13, the stability of the waistband is further improved, the positions of the first buckle 91 and the second buckle 92 are not changed, the upper and lower displacement, the left and right displacement and the like of the traditional sensor 2 in the conditions of stretching, bending, squatting, chest expanding or chest containing and the like are solved by matching with a jacket structure, the sensor 2 is ensured to be always contacted with the chest of a human body, meanwhile, the sensor 2 is not adhered to the human body, the sensor 2 adopts a silica gel patch type sensor, the accuracy of the silica gel patch type sensor is high, the comfort degree of the adhesive type sensor adhered to the human body is ensured, the problem of discomfort of the adhesive type sensor on the human body is solved, and the problem of the position change of a wearable type sensor is also solved, the SMD sensor of silica gel uses hot pressing to paste and 4 laminatings of preceding left chest district, improves the travelling comfort, and the hot pressing laminating mode is also that it is flat to laminate more between the SMD sensor of silica gel 2 of being convenient for and preceding left chest district 4 simultaneously, improves the fastness.
In this embodiment, the sensor 2 is inclined at 45 degrees to the clavicle of the human body.
The rest parts of the jacket and the trousers which are not introduced in the embodiment are the fabrics of the conventional running sportswear, such as elastic polyurethane fabrics or quick-drying fabrics.
The movable electrocardiograph 1 is connected with the sensor 2 in a snap fastener mode, the snap fastener is a metal conductive convex connecting piece, and charging or data exporting and the like can be taken down.
In the embodiment, the front, the back, the left and the right are based on the clothes worn on the human body.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; while the utility model has been described in detail and with reference to the foregoing embodiments, it will be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention, and they should be construed as being included in the following claims and description.

Claims (8)

1. The utility model provides a male motion electrocardio record clothing, characterized in that, including jacket and trousers, the front left chest area (4) of jacket is no bullet surface fabric, the inner wall of front left chest area (4) is connected with sensor (2), remove electrocardio record appearance (1) and be located the outside of front left chest area (4), remove electrocardio record appearance (1) and can dismantle with sensor (2) and be connected, the front chest upper area (31) of jacket is the elasticity surface fabric, the bottom of front chest upper area (31) is connected with the top of front left chest area (4), be connected with first elasticity meshbelt (61) on front left chest area (4), the trousers front side is connected with first buckle (91), first elasticity meshbelt (61) and first buckle (91) can dismantle and be connected.
2. The male sports electrocardiogram recording garment as claimed in claim 1, wherein the second elastic woven belt (62) is connected to the back, middle and upper back area (52) of the garment, the second buckle (92) is connected to the rear side of the trousers, and the second elastic woven belt (62) is detachably connected to the second buckle (92).
3. The male sports electrocardio recording coat according to claim 2, wherein a back collar area (32) is arranged between the back upper middle back area (52) and the back collar of the coat, and the back collar area (32) is made of elastic fabric.
4. The male sports electrocardio recording coat according to claim 3, wherein the back and middle upper back area (52) is made of non-elastic fabric, the width of the back and middle upper back area (52) is consistent with the shoulder width of a human body, a chest sleeve area (51) is arranged between the chest part and the sleeves of the coat, the chest sleeve area (51) is made of non-elastic fabric, and the tops of the two chest sleeve areas (51) are connected with the top of the back and middle upper back area (52).
5. The male sports electrocardiogram recording coat according to claim 4, wherein the front left waist region of the coat is provided with two through holes (7), the two through holes (7) are longitudinally distributed, the first elastic woven belt (61) passes through the two through holes (7) to be connected with the first buckle (91), the through holes (7) limit the left and right movement of the first elastic woven belt (61), and the first elastic woven belt (61) is vertically arranged; the second elastic woven belt (62) is arranged in the middle of the middle-upper back area (52), and the second elastic woven belt (62) is vertically arranged.
6. The male sports electrocardiogram recording garment as claimed in claim 2, wherein the waist of trousers is divided into a front waist region (11), a rear waist region (12) and two side waist regions (10), the two ends of the side waist regions (10) are respectively connected with the front waist region (11) and the rear waist region (12), the side waist regions (10) are made of elastic fabric, the inner layer of the side waist regions (10) is embedded with an elastic woven tape, the front waist region (11) and the rear waist region (12) are made of non-elastic fabric, the first buckle (91) is arranged at the front waist region (11), and the second buckle (92) is arranged at the rear waist region (12).
7. The male sports electrocardio recording coat as claimed in claim 6, wherein the trouser leg side area (13) and the trouser leg bottom area (14) of the trousers are made of non-elastic fabric, and the upper end and the lower end of the trouser leg side area (13) are respectively connected with the side waist area (10) and the trouser leg bottom area (14).
8. The garment for male electrocardiographic exercise according to claim 1, wherein the sensor (2) is arranged at an inclination of 45 degrees.
CN202121706718.4U 2021-07-26 2021-07-26 Male sex's motion electrocardio record clothing Active CN215605757U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121706718.4U CN215605757U (en) 2021-07-26 2021-07-26 Male sex's motion electrocardio record clothing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121706718.4U CN215605757U (en) 2021-07-26 2021-07-26 Male sex's motion electrocardio record clothing

Publications (1)

Publication Number Publication Date
CN215605757U true CN215605757U (en) 2022-01-25

Family

ID=79892237

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121706718.4U Active CN215605757U (en) 2021-07-26 2021-07-26 Male sex's motion electrocardio record clothing

Country Status (1)

Country Link
CN (1) CN215605757U (en)

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