CN102370478A - Electrocardio-electrode placement positioning device - Google Patents

Electrocardio-electrode placement positioning device Download PDF

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Publication number
CN102370478A
CN102370478A CN201110313470XA CN201110313470A CN102370478A CN 102370478 A CN102370478 A CN 102370478A CN 201110313470X A CN201110313470X A CN 201110313470XA CN 201110313470 A CN201110313470 A CN 201110313470A CN 102370478 A CN102370478 A CN 102370478A
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marker
electrode
breastbone
lower edge
light source
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CN102370478B (en
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陈耀
刘稳国
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WUXI YOUTEKE TECHNOLOGY Co Ltd
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WUXI YOUTEKE TECHNOLOGY Co Ltd
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Abstract

The invention discloses a positioning device for electrocardio-electrode placement positioning. The positioning device comprises a body applied in a spot projection method, a transverse zooming lens, a longitudinal zooming lens and a regulation device, wherein the body comprises a spot projection device which comprises a light source power supply and a light source panel; a plurality of laser diodes are arranged on the light source panel; and relative positions among the laser diodes are in accordance with reference positions of a breastbone superior margin marker, a breastbone inferior margin marker, a left midaxilla marker and a colpus measurement electrode.

Description

A kind of electrocardioelectrode is laid positioner
Technical field
The invention belongs to the public health field, relate to a kind of ECG electrode setting method and realize the positioner of this method.
Background technology
Electrocardiogram is gone through the clinical practice in century more than one, is still the most basic, the most important diagnostic tool of heart disease so far.12 classical lead electrocardiogram are through the electrical activity of 9 position Detection electrodes records of body surface heart, and electrocardiograph record and these cardiac electrical activity signals of trace are clinically according to the Electrocardioscopy and the diagnosis of cardiovascular diseases of institute's trace.Because easy and simple to handle, moderate, electrocardiograph has become one of medical electronic apparatus the most universal in the medical and health services at different levels mechanism, and Along with people's is for the concern day by day of cardiovascular health, and the electrocardiograph domesticization have been development trend from now on.
Yet the accuracy of electrocardiographic diagnosis; Separate reader's level and experience except depending on electrocardiogram; Also depend on the quality of electrocardiosignal to a great extent, generally speaking, the quality of electrocardiosignal comprises the implication of two aspects; The one, the signal to noise ratio of signal, the application of large scale integrated circuit and digital processing unit can address this problem well; Another is about the accuracy of electrocardioelectrode position and concordance, and Electrocardiographic deciphering is to have confirmed and immobilized to be prerequisite with respect to the position of heart with electrocardioelectrode.Clinically, the operator of electrocardiograph confirms the riding position of electrode through the rib interval that touches the patient, and owing to the factor of patient's sex, body size and fat or thin degree, rib interval always is not easy to touch and distinguish; Add the empirical difference of electrocardiograph operator, the method for this definite electrode position can not guarantee the accuracy and the concordance of electrode riding position.
An experiment statistics result who is done on one's body 77 patients shows, even clinical experts, " tram " that they assert also exists than big-difference each other: precordial leads along track bias scope is 0-105mm, and average is 13.5mm; The lateral deviation scope is 0-120mm, and average is 16.5mm; Particularly the electrode position deviation of side potential electrode V6 and females can be bigger.This experiment shows: when comparing the electrocardiogram of gathering by different physicians, and must be very careful.
Yet comparing with historical electrocardiogram is to obtain the main method that heart develops information; Because it is how we influence electrocardiographic wave for the precordial electrode position deviation and it be unclear that, also on the knees of the gods based on historical electrocardiogram electrocardiographic diagnosis result's relatively reliability.
Utilizing Gentian Violet liquid medicine labelling electrocardioelectrode position is the conventional means of dynamic ecg recordings examination; Because the patient must oneself lay electrode where necessary; But this method is also inapplicable for the big Electrocardioscopy of cycle span; Have some inventions to adopt to be installed in the electrode that applies on band or the vest and detect electrocardiogram, adapt to the different physique of patient, but that these methods all are proved to be is unpractical through the scalability that applies band or vest.
Summary of the invention
The purpose of this invention is to provide a kind of accurate positioning, detect little electrocardioelectrode localization method of error and the positioner of realizing this method.
Electrocardioelectrode localization method proposed by the invention is:
The first step is confirmed breastbone upper limb and breastbone lower edge position on the human chest surface, on these two positions, places respectively, glues card or labelling marker, is called breastbone upper limb marker and breastbone lower edge marker, as first and second reference points;
Second step is at human chest surface the definite the 3rd or more reference points;
The 3rd step, according to first, second with the 3rd or more reference point confirm the riding position of front measurement electrode.
Described breastbone upper limb marker is to be placed on the body surface in order to the centre position of the junction of labelling presternum and left and right sides clavicle and the mark or the adhesive matter of jugular notch; Described breastbone lower edge marker is mark or the adhesive matter that is placed on the body surface in order to the junction of labelling sternal body lower edge and xiphoid-process.
The 3rd reference point is arranged on the intermediate line of oxter, patient body left side the location point that is in same transverse horizontal line with breastbone lower edge marker, at this some placement, stickup or the 3rd marker of labelling; Be called left side midaxilla mark.
On first and second reference points, line is set, is referred to as vertical line, wire length is L; On second reference point and the 3rd reference point, line is set, is referred to as horizontal line, wire length is W, the position of V2 electrode on left breast surface with the horizontal distance of line be L/4, with the vertical distance of line be the place of W/7; The V1 electrode be in right breast surface, with the V2 electrode about the symmetrical position of vertical line, promptly be positioned at right breast surface, with the vertical distance of line be W/7, with horizontal line be the place of L/4 in the distance of the extended line of right breast; The V4 electrode on horizontal line, with the distance of breastbone lower edge marker be the position of 3W/7; The V5 electrode on horizontal line, with the distance of breastbone lower edge marker be the position of 5W/7; The V3 electrode is in the centre position of V2 electrode and V4 electrode, promptly on left breast surface, with the horizontal distance of line be L/8, with the vertical distance of line be the position of 2W/7; The V6 electrode is positioned at the high position slightly of left side midaxilla marker, with the distance of horizontal line be L/8.
A kind of electrocardioelectrode that is used for is laid positioning means for positioning, comprises the localized body of applications distances measuring method, body be one by vertically applying band and the deposited band that laterally applies the font of falling T that band links together; The said band that vertically applies has a locating hole that is used to lay breastbone lower edge marker with the horizontal band junction of applying; A guide groove that is used for confirming and laying breastbone upper limb marker is arranged at the top of vertically applying band; Close on the deposited of guide groove with going up with the location colour band that is used to locate breastbone upper limb marker lengthwise position; Vertically apply with the place of going up a location colour band that is used to locate V1 electrode and V2 electrode is arranged near laterally applying band; Laterally apply with going up with the location colour band that is used for location left side midaxilla marker and front measurement electrode V1-V6 lateral attitude; The two ends of laterally applying band have can interconnective band, and being fixed with on the band can interconnective hinge thing or snap fastener, be respectively with in the middle part of vertically applying the band back side and bottom one can with skin surface mutually adhesion be coated with blob of viscose.
A kind of electrocardioelectrode that is used for is laid positioning means for positioning; Comprise the localized body of application reference position projecting method; Body comprises suspension beam structure; Fixed projector on the suspension beam structure, microprocessor system, the microprocessor system reference picture of front measurement electrode V1-V6, breastbone upper limb marker, breastbone lower edge marker and left side midaxilla marker that stored labelling has been arranged in the projector; Projector projects to patient's chest with this picture, forms projected area, and projector can be respectively carries out independent regulation along both direction in length and breadth to the position and the scaling of projected area.
A kind of electrocardioelectrode that is used for is laid positioning means for positioning; Comprise the body of using the hot spot projective techniques; Body comprises the hot spot grenade instrumentation, and the hot spot grenade instrumentation comprises light source power, light source panel, laterally zoom lens, vertical zoom lens and adjusting device; A plurality of laser diodes are installed on the light source panel, and the relative position between the laser diode is consistent with the reference position of breastbone upper limb marker, breastbone lower edge marker, left side midaxilla marker and front measurement electrode.
A kind of electrocardioelectrode that is used for is laid positioning means for positioning, comprises the body based on the video image matching process, and body comprises camera head and the computer system that is attached thereto; Computer system can be an electrocardiograph; Also can be customized embedded system or common computer; Moving a video image analysis programme in the computer system, the reference picture file of front measurement electrode V1-V6, breastbone upper limb marker, breastbone lower edge marker and left side midaxilla marker that stored labelling in the computer system.
Usefulness of the present invention is:
Based on the breastbone upper limb, i.e. the central jugular notch place and the breastbone lower edge of presternum and clavicle junction, the left and right sides, i.e. the electrocardioelectrode localization method of the junction of sternal body lower edge and xiphoid-process, with respect to rib interval, it is many that the last lower edge of breastbone will touch easily; Even if obesity and female patient also can easily touch mostly.With the lateral margin of these two positions and health datum mark as a reference.
Similar with traditional electrocardioelectrode localization method; The present invention supposes that heart is consistent and is constant with the breastbone that surrounds heart and the relative position of first to the 6th rib; In case confirm the lateral margin of breastbone upper limb, breastbone lower edge and health, the position of first to the 6th rib is also corresponding to be confirmed.
(1) breastbone upper limb and breastbone lower edge are distinguished out through touch more easily, particularly to the fat and female patient of physique;
(2) for the patient of different body sizes, distance measurement method guarantees that precordial electrode is consistent with the relative bearing of heart;
(3) based on the electrocardioelectrode positioner of breastbone upper limb, breastbone lower edge and left side midaxilla marker, can help the doctor to lay electrocardioelectrode faster and more accurately; Help not having the domestic consumer of medical knowledge to use electrocardiograph.
Description of drawings
Figure 1A is the relative position sketch map of electrocardiogram front measurement electrode and Skeleton System;
Figure 1B is based on the front measurement electrode localization method sketch map of distance measurement method;
Fig. 1 C is human body horizontal section and front measurement electrode position view;
Fig. 1 D is human body side direction section and front measurement electrode position view;
Fig. 2 is a kind of electrocardioelectrode positioner sketch map of applications distances measuring method;
Fig. 3 is a kind of electrocardioelectrode positioner sketch map of application reference picture projecting method;
Fig. 4 is a kind of electrocardioelectrode positioner sketch map of using the hot spot projective techniques;
Fig. 5 is a kind of hot spot grenade instrumentation internal structure sketch map;
Fig. 6 is a kind of electrocardioelectrode positioner of using the video image matching process.
The specific embodiment
Below in conjunction with accompanying drawing and a plurality of embodiment the present invention is specified.
Referring to Figure 1A.The breastbone of human body is made up of presternum 1, sternal body 2 and 3 three bones of xiphoid-process, presternum 1 with about two clavicles 4 join, the incisura of presternal upper edge is called jugular notch 5.
First rib, 6 to the 7th ribs 7 of human body link to each other with breastbone, and the 8th rib to the ten ribs 8 down interconnect, and join with the 7th rib 7.
The electrode setting method of traditional twelve-lead electrocardiogram is: V1 electrode 9 is positioned at breastbone right side, the 4th intercostal space; V2 electrode 10 is positioned at breastbone left side, the 4th intercostal space; V4 electrode 12 is positioned at midclavicular line position, the 5th intercostal space; V3 electrode 11 is positioned at the intermediate point of V2 electrode 10 and V4 electrode 12; V6 electrode 14 is positioned on the 5th intercostal space and the left side midaxillary line; V5 electrode 13 axil line and be on the same horizontal line before the left side in V4 electrode 12.
Referring to Figure 1B and contrast Figure 1A.The present invention is a reference point with the upper edge jugular notch of presternum 15 and the lower edge of sternal body 2 and the junction of xiphoid-process 3, lays the precordial electrode V1-V6 of twelve-lead electrocardiogram.At first on body surface, be positioned at the position of sound production breastbone upper limb marker 15 of jugular notch 5 and presternum 1 upper edge central authorities; Lay breastbone lower edge marker 16 in the sternal body 2 and the lower edge of the junction of xiphoid-process 3; On the intermediate line of oxter, left side, be in the position of sound production left side midaxilla marker 17 of same level then with breastbone lower edge marker 16, vertically line 18 connects breastbone upper limb marker 15 and breastbone lower edge marker 16 along body surface; Laterally line 19 connects breastbone lower edge marker 16 and left side midaxilla marker 19 along body surface, and vertically the length of line 18 is L; Laterally the length of line 19 is W.
The localization method of precordial electrode V1-V6 is:
The position of V2 electrode on left breast surface with the horizontal distance of line 19 be L/4, with the vertical distance of line 18 are places of W/7;
The V1 electrode be in right breast surface, with the V2 electrode about the symmetrical position of vertical line 18, promptly be positioned at right breast surface, with the vertical distance of line 18 be W/7, with horizontal line 19 be the place of L/4 in the distance of the extended line of right breast;
The V4 electrode on horizontal line 19, with the distance of breastbone lower edge marker 16 be the position of 3W/7;
The V5 electrode on horizontal line 19, with the distance of breastbone lower edge marker 16 are positions of 5W/7;
The V3 electrode is in the centre position of V2 electrode and V4 electrode, promptly on left breast surface, with the horizontal distance of line 19 be L/8, with the vertical distance of line 18 are positions of 2W/7;
The V6 electrode be positioned at left side midaxilla marker 17 high position slightly, with the horizontal distance of line 19 are L/8.
Human body horizontal section sketch map referring to Fig. 1 C.What form the human body surface profile is surface 20, shirtfront and back surfaces 21.The lateral separation that is placed between each electrode on shirtfront surface 20 is: the lateral separation between V1 electrode 9 and the V2 electrode 10 is 2W/7; Lateral separation between V2 electrode 10 and the V3 electrode 11 is W/7; Lateral separation between V3 electrode 11 and the V4 electrode 12 is W/7; Lateral separation between V4 electrode 12 and the V5 electrode 13 is 2W/7; Lateral separation between V5 electrode 13 and the V6 electrode 14 is 2W/7;
Human body side direction generalized section referring to Fig. 1 D.What form the human body surface profile is surface 20, shirtfront and back surfaces 21.Breastbone is made up of presternum 1, sternal body 2 and xiphoid-process 3.The shirtfront surface mount of being close to breastbone has breastbone upper limb marker 15 and breastbone lower edge marker 16.The position and the jugular notch 5 of breastbone upper limb marker 15 are corresponding; The position of breastbone lower edge marker 16 is corresponding with the joint of sternal body 2 xiphoid-process 3; What connect breastbone upper limb marker 15 and breastbone lower edge marker 16 is vertical line 18, and the interelectrode fore-and-aft distance that is placed in surface, shirtfront 20 is: V1 and V2 electrode and V4 and the interelectrode fore-and-aft distance of V5 are L/4; V3 and V6 electrode and V4 and the interelectrode fore-and-aft distance of V5 are L/8.
Be based on four embodiment of the electrocardioelectrode positioner of breastbone upper limb marker 15, breastbone lower edge marker 16 and left side midaxilla marker 17 below.
Embodiment 1:
Referring to Fig. 2.A kind of electrocardioelectrode positioner of applications distances measuring method, it is characterized in that one by vertically apply with 22 with the deposited band that laterally applies with 23 fonts of falling T that link together.Vertically apply with 22 and with 23 junctions a locating hole 24 that is used to lay breastbone lower edge marker 16 is arranged with laterally deposited; A guide groove 25 that is used for confirming and laying breastbone upper limb marker 15 is arranged at the top of vertically applying with 22; Close on the deposited of guide groove 25 and have the location colour band 27 that is used to locate breastbone upper limb marker 15 with going up, there is a location colour band 28 that is used to locate V1 electrode 9 and V2 electrode 10 top of locating hole 24, and laterally applying has the type of the carving breach 26 of being convenient to lay midaxilla marker 17 with 23 two ends; Laterally apply on 23 and have the location colour band 29 that is used to locate midaxilla marker 17 and front measurement electrode V1-V6 lateral attitude; 30,31,32 and 33.Laterally apply with 23 right positioner colour band and left positioner colour band and be with 22 axial symmetries about vertically applying; The right positioner colour band can be used for locating the right breast increase of electrocardiogram and leads, like V3R, V4R and V5R.Laterally deposited two ends with 23 have can interconnective band 34.Being fixed with on the band 34 can interconnective hinge thing or snap fastener 35 and 36.In addition, for easy to operate, vertically apply with the middle part at 22 back sides and bottom be respectively with one can with skin surface mutually adhesion be coated with blob of viscose 37 and 38.
Electrocardioelectrode positioning step based on embodiment 1 is:
The first step; The doctor confirms breastbone lower edge position through finger touch; The locating hole 24 that the font of falling T among Fig. 2 is applied band is mapped with breastbone lower edge position, lays or pastes breastbone lower edge marker 16 through locating hole 24, and the doctor can utilize and be coated with blob of viscose 37 and 38 and will apply to be with and stick on the skin surface;
Second step around to the patient back, linked to each other through hinge thing 35 band 34 with 36, whole deposited band is fixed in body surface;
In the 3rd step, the doctor confirms the color lump in the location colour band 29 that oxter, patient left side intermediate line passed, and the color lump that oxter, left side intermediate line passes among Fig. 2 is a piece.The doctor lays or sticks on patient body surface against the upper edge of laterally applying with 23 with the some piece color lump in the colour band 29 of location with left side midaxilla marker 17, and the vertical center line of the some piece color lump in the colour band 29 of location overlaps with the center of left side midaxilla marker 17;
The 4th step; The doctor utilizes finger to confirm breastbone upper limb position through guide groove 25; And pass guide groove 25 patient's body surface is laid or sticked on to breastbone upper limb marker 15; Through estimating the color of the color lump of confirming in the colour band 27 of location that the center with breastbone upper limb marker 15 parallels, corresponding color lump shown in Figure 2 is a piece;
In the 5th step, utilize vertically to apply and locate and lay the front measurement electrode: laterally applying with the position of sound production of the some piece color lump in 23 upper edges, the location colour band 30 or pasting V5 electrode 13 with each location colour band that laterally applies with on 23 with 22; At the position of sound production or the stickup V4 electrode 12 that laterally apply with the some piece color lump in 23 upper edges, the location colour band 31; Some piece color lump in the colour band 32 of location and the pairing position of sound production of some piece color lump or the stickup V2 electrode 10 of locating in the colour band 28; With V2 electrode 10 about vertically applying with 22 symmetrical position of sound production or pasting V1 electrode 9; Lay in the centre position of V2 electrode 10 and V4 electrode 12 or paste V3 electrode 11; Above left side midaxilla marker 17, with V3 electrode 11 about laterally applying with 23 parallel position of sound production or pasting V6 electrode 14.
Embodiment 2:
Referring to Fig. 3.A kind of electrocardioelectrode positioner of application reference picture projecting method; Comprise a suspension beam structure 41, fixed a projector 42 on the suspension beam structure 41, patient 40 lies on the platform 39; Suspension beam structure 41 is fixed on the platform 39; Projector 42 is positioned at the place of the top 30mm-100mm of patient's 40 chests, and projector 42 can be general palm projector, also can be the instrumentation through customization.
Microprocessor system in the projector 42; Can the picture that prestore be projected to patient 40 chest; Form projected area 43, the reference picture of front measurement electrode V1-V6, breastbone upper limb, breastbone lower edge and left side midaxilla marker that stored a labelling in the projector 42.
Projector 42 has height, projected area displacement and flexible regulatory function; Can be respectively the position and the scaling of projected area be carried out independent regulation along both direction in length and breadth.
Electrocardioelectrode positioning step based on embodiment 2 is:
The first step, patient 40 lies on the back on platform 39, and the doctor picks out the position of breastbone upper limb, breastbone lower edge and oxter, left side intermediate line through finger touch and range estimation, and on these positions, lays respectively or paste marker;
Second step; The doctor opens projector; To the height of projector, projected area in length and breadth the position and the scaling of both direction regulate, make that breastbone upper limb, breastbone lower edge and the left side midaxilla marker in the reference picture image overlaps with true identity thing on being placed in patient's 40 body surfaces;
In the 3rd step, the doctor lays front measurement electrode V1-V6 or paste on the position of respective electrode in the reference picture projection image.
Embodiment 3:
Referring to Fig. 4.Similar with the reference picture positioner of embodiment 2, use the electrocardioelectrode positioner of hot spot projective techniques and form by suspension beam structure 41 and the hot spot grenade instrumentation 44 that is mounted thereon.Suspension beam structure can move up and down and carry out altitude mixture control, and hot spot grenade instrumentation 44 can carry out horizontal and vertical moving along suspension beam structure 41.Hot spot grenade instrumentation 44 directly is incident upon the formed hot spot of patient's 40 chest surface with the reference position of breastbone upper limb, breastbone lower edge, left side midaxilla marker and front measurement electrode V1-V6 through light and gives labelling.
Referring to Fig. 5.Hot spot grenade instrumentation 44 mainly comprises light source power 45, light source panel 46; Horizontal zoom lens 47; Vertical zoom lens 48 and adjusting device 49,50; Nine laser diodes 51 are installed on the light source panel 46, and the relative position between these nine laser diodes 51 is consistent with the reference position of marker and electrode.Light source power 45 provides power supply for laser diode 51 through cable 52; The light 53 that laser diode 51 is launched shines patient 40 body surface through horizontal lens 47 and vertical lens 48; Formation and location marker and the corresponding hot spot of front measurement electrode, adjusting device 49 and 50 makes the irradiation hot spot to move along horizontal and vertical through adjustment lens 47 and 48.
Electrocardioelectrode positioning step based on embodiment 3 is:
The first step, patient 40 lies on the back on platform 39, and the doctor picks out the position of breastbone upper limb, breastbone lower edge and oxter, left side intermediate line through finger touch and range estimation, and on these positions, lays respectively or paste marker;
Second step; The doctor opens hot spot grenade instrumentation 44; Through regulating height, the position in length and breadth of hot spot grenade instrumentation 44 and the lens combination on the hot spot grenade instrumentation 44 of suspension beam structure 41, make to overlap with true identity thing on being placed in patient's 40 body surfaces corresponding to the hot spot of breastbone upper limb, breastbone lower edge and left side midaxilla marker;
In the 3rd step, the doctor lays front measurement electrode V1-V6 or paste on the position with the corresponding hot spot of front measurement electrode.
Embodiment 4:
Referring to Fig. 6.Electrocardioelectrode positioner based on the video image matching process comprises a camera head 54; Camera head is fixed on the suspension beam structure 41; Camera head 54 is connected to a computer system 55 through cable 56; Computer system 55 can be an electrocardiograph, also can be a customized embedded system or common computer.Camera head 54 is sent to the real-time video image in the computer system 55 and shows; Moving a video image analysis programme in the computer system 55; It can discern or under operator's help, identify the human body surface marker in the video image automatically; And calculate the coordinate of marker; Stored a reference picture file that is marked with front measurement electrode V1-V6, breastbone upper limb, breastbone lower edge and left side midaxilla marker in the computer system 55; Computer system 55 calculates the reference picture file is overlapped required displacement and the zooming parameter that picture is carried out on the video image according to the coordinate of the human body surface marker in the video image and the marker coordinate in the reference picture, and computer system 55 is utilized displacement and the zooming parameter that calculates; Reference picture is shifted and the convergent-divergent deformation process, and the picture after will handling is added in the video image.The doctor is superimposed with the video image of front measurement electrode reference position mark through observation, and electrode V1-V6 is laid or paste human body surface.

Claims (1)

1. one kind is used for electrocardioelectrode and lays positioning means for positioning; Comprise the body of using the hot spot projective techniques; It is characterized in that: body comprises hot spot grenade instrumentation (44); Hot spot grenade instrumentation (44) comprises light source power (45), light source panel (46); Horizontal zoom lens (47), vertical zoom lens (48) and adjusting device (49,50); A plurality of laser diodes (51) are installed on the light source panel (45), and the relative position between the laser diode (51) is consistent with the reference position of breastbone upper limb marker (15), breastbone lower edge marker (16), left side midaxilla marker (17) and front measurement electrode (9,10,11,12,13,14).
CN 201110313470 2010-04-22 2010-04-22 Electrocardio-electrode placement positioning device Expired - Fee Related CN102370478B (en)

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Cited By (5)

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Publication number Priority date Publication date Assignee Title
CN106943139A (en) * 2017-04-21 2017-07-14 王守东 The passage electrocardiograph of integral type six
JP2018519899A (en) * 2015-06-22 2018-07-26 ディ ハート ソチエタ レスポンサビリタ リミタータD−Heart S.R.L. Electronic system for controlling the acquisition of an electrocardiogram
CN108618776A (en) * 2017-03-22 2018-10-09 美商宇心生医股份有限公司 The method that ECG electrode positions accessory and positions electrocardiogram patch location by accessory
CN112914583A (en) * 2021-02-25 2021-06-08 中国人民解放军陆军特色医学中心 Method for determining arrangement position of electrocardiogram acquisition electrodes in non-contact manner
CN115647614A (en) * 2022-12-28 2023-01-31 歌尔股份有限公司 Optical path adjusting method, device, equipment and storage medium

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WO2005089642A1 (en) * 2004-03-24 2005-09-29 Dainippon Sumitomo Pharma Co., Ltd. Garment for bioinformation measurement having electrode, bioinformation measurement system and bioinformation measurement device, and device control method
CN1798522A (en) * 2003-07-31 2006-07-05 德尔玛雷诺德医药有限公司 Reduced electrode electrocardiography system

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CN1080161A (en) * 1992-05-22 1994-01-05 朱塞比·罗特勒 Electrocardiography electrode positioning device
CN1798522A (en) * 2003-07-31 2006-07-05 德尔玛雷诺德医药有限公司 Reduced electrode electrocardiography system
WO2005089642A1 (en) * 2004-03-24 2005-09-29 Dainippon Sumitomo Pharma Co., Ltd. Garment for bioinformation measurement having electrode, bioinformation measurement system and bioinformation measurement device, and device control method

Cited By (6)

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Publication number Priority date Publication date Assignee Title
JP2018519899A (en) * 2015-06-22 2018-07-26 ディ ハート ソチエタ レスポンサビリタ リミタータD−Heart S.R.L. Electronic system for controlling the acquisition of an electrocardiogram
CN108618776A (en) * 2017-03-22 2018-10-09 美商宇心生医股份有限公司 The method that ECG electrode positions accessory and positions electrocardiogram patch location by accessory
CN106943139A (en) * 2017-04-21 2017-07-14 王守东 The passage electrocardiograph of integral type six
CN112914583A (en) * 2021-02-25 2021-06-08 中国人民解放军陆军特色医学中心 Method for determining arrangement position of electrocardiogram acquisition electrodes in non-contact manner
CN112914583B (en) * 2021-02-25 2022-10-21 中国人民解放军陆军特色医学中心 Method for determining arrangement position of electrocardiogram acquisition electrodes in non-contact manner
CN115647614A (en) * 2022-12-28 2023-01-31 歌尔股份有限公司 Optical path adjusting method, device, equipment and storage medium

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