CN2542204Y - Vector electrocardiograph - Google Patents
Vector electrocardiograph Download PDFInfo
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- CN2542204Y CN2542204Y CN 02220580 CN02220580U CN2542204Y CN 2542204 Y CN2542204 Y CN 2542204Y CN 02220580 CN02220580 CN 02220580 CN 02220580 U CN02220580 U CN 02220580U CN 2542204 Y CN2542204 Y CN 2542204Y
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Abstract
A vector electrocardiograph is an apparatus for medical treatment checking and analyzing, the electrocardiograph comprises a human body lead electrode, an F r a n k correcting circuit, a three-axis preamplifier, a three-axis storage circuit, a promoting amplifier, a Y-axis outgoing circuit, an X-axis outgoing circuit, a recorder, a function transformation circuit, a state indicating circuit, a cardioelectric disturbance indicating circuit, and a V signal producing circuit, wherein the human body lead electrode, the F r a n k correcting circuit, the three-axis preamplifier, the three-axis storage circuit, and the promoting amplifier are connected in series in turn, the output end of the promoting amplifier is respectively connected with the Y-axis outgoing circuit and the input end of the X-axis outgoing circuit, the output end of the V signal producing circuit is directly connected with the input end of the X-axis outgoing circuit, the output ends of the Y-axis outgoing circuit and the X-axis outgoing circuit are respectively connected with the recorder, the output end of the three-axis preamplifier is connected with the cardioelectric disturbance indicating circuit, the output end of the function transformation circuit is connected with the state indicating circuit, three-axis storage circuit, and the output end of the promoting amplifier.
Description
One, technical field
This utility model is the instrument that a kind of medical check and analysis are used, and belongs to the technical field that Medical Instruments is made.
Two, background technology
The electrocardiogram technology as the most frequently used electrocardiographic examination technology continued to use a lot of year, by Y-axis (projection of dynamic three-dimensional vectorcardiographic loop is the projection variable again), with X-axis (by the velocity axis of machine-generated constant) and constituting.Obviously, the single shaft variable system of unidimensional reprojection will be lost a lot of ecg informations.Add the aliasing after the reprojection and the too low major defects such as (only about 50Hz) of response frequency of mechanical pin, its development prospect is limited." the electrocardial vector diagram technology " that result from the fifties is three dimensional graphics, its quantity of information is much larger than electrocardiogram, but because of not reflecting its time limit on the inherent figure of its isoelectric level time period, so lack the time limit information between the P.QBS.T ripple, do not reflect yet and respectively involve N the time relationship between the cardiac cycle, powerless to the arrhythmia diagnosis, this defective has seriously influenced its application in clinical.High frequency ECG is the one dimension graph technology still then, is that broadening detects frequency on Electrocardiographic basis, widens the QBS wave group, and it only is a technique complementary to ordinary electrocardiogram.
Three, summary of the invention
1, goal of the invention
The purpose of this utility model provides a kind of contained information with " electrocardiogram " " vectorcardiogram " " high frequency ECG " and all forgives in " vectorcardiogram " inspection technology, simultaneously can be convenient or simpler as the Electrocardioscopy operational analysis, and the vectorial cardiograph that can publish picture in real time.
2, technical scheme
" vectorial cardiograph " of the present utility model disturbs indication treatment circuit, " V " signal generating circuit to be formed by human body crosslinking electrode, Frank correcting circuit, three preamplifiers, three storage circuits, driving amplifier, Y-axis output circuit, X-axis output circuit, monitor, function conversion circuit, condition indication circuit electrocardios.Wherein human body crosslinking electrode, Frank correcting circuit, three preamplifiers, three storage circuits, driving amplifiers are connected in series in proper order, the outfan of driving amplifier connects the input of Y-axis output circuit and X-axis output circuit respectively, the outfan of " V " signal generating circuit input direct and the X-axis output circuit joins, and the outfan of Y-axis output circuit and X-axis output circuit joins with monitor respectively; The outfan of three preamplifiers and electrocardio disturb indicating circuit to join, and the outfan of the outfan of function conversion circuit and condition indication circuit, three storage circuits and driving amplifier joins.Human body leads and has 7 electrodes, promptly " I, E, C, A, M, F, N " respectively by a resistance directly and follower IC1-IC7 join.Between each two inputs of three preamplifiers, be connected to an analog switch " IC29, IC30, IC31 " respectively, the outfan of three preamplifiers respectively with three storage circuits in " AIN " end of IC35, IC36, IC37 join.The X-axis outfan in the driving amplifier and the outfan of Z axle are IC18, the outfan of IC24 joins by the inverting input of analog switch " IC38; IC40 " with X uranium output circuit IC19 respectively, Y-axis outfan and Z axle outfan are IC21, the outfan of IC24 is respectively by analog switch IC41, the inverting input of IC43 and Y-axis output circuit IC22 joins, the inverting input of " V " signal generating circuit IC25 joins with analog switch IC44 by a resistance R 97, and the outfan that V signal produces IC circuit 25 joins by the in-phase input end of resistance R 62 with X-axis output circuit IC19.
Method is to obtain the electrocardial vector that cardiac electrical activity produces by body surface contact electrode (7), and at the plane of structure (H face) of spatial spatial heart vector loop; " V " axis signal that adds synchronously the 50-200mm/ second that moves to right on the projection view information of face amount (F face) and sagittal plane (S face).By the correction of electronic technology, amplify, frequency conversion writes, read wait processing after, be plotted in through the twin shaft drawing pencil and form final graphics on the ordinary electrocardiogram, graphic feature is the open polycyclic structure of simple curve.
3, technique effect
Advantage of the present utility model is:
The three elements that " vectorcardiogram " can reflect and quantitatively write down electrocardio-activity reliably are promptly: locus, amplitude of the vector, relative time; And can N cardiac cycle ecg information of continuous record.Formed " X; Y; Z; V after superposition " time shifting " (V axle) information " the more former any a kind of electrocardiographic recording equipment of the quantity of information of three axial vector figure that four-axis system constituted has improved widely, has forgiven all ecg informations in " electrocardiogram " " vectorcardiogram " " high frequency ECG " in its figure.Graphic feature is the open polycyclic structure of simple curve.
" vectorcardiogram " is that the time shaft of vectorcardiogram is to displaypattern, still mainly by " three of P.QRS.T ring constitutes figure cycles; but three rings are inc " open ring "; become the information that can trace N cardiac cycle continuously by the information of only tracing a cardiac cycle simultaneously; but vectorcardiogram has only three recording geometries that lead; this is more more convenient than Electrocardioscopy, and figure is more succinct.The record of N cardiac cycle can obtain the relation information of N cardiac cycle, conventional vectorcardiogram the atrioventricular conduction time that can not reflect, the Q-T time limit; In the S-T time limit, T-P time limit and arrhythmia etc. are covered all at one glance.Because its figure is a projecting figure of vectorcardiographic loop, similar to the vectorcardiogram figure again again, its P.QRS.T ring launches, and the space vector track is clear, and direction vector is clear and definite, and the time vector location is accurate, so these advantages of vectorcardiogram also keep nothing left.Adopt number to handle the technology of reading that writes, can easily the record frequency response of having only 50Hz of pen plotter be brought up to more than the 1000Hz, the misregistration of indoor conductive track will improve widely, reflect trulyr, and realize publishing picture in real time of pen type drawing high frequency recording.
Four, description of drawings
Fig. 1 is a circuit structure block diagram of the present invention.Human body crosslinking electrode 1, Frank correcting circuit 2 are wherein arranged; Three preamplifier 3, three storage circuits 4, driving amplifier 5, Y-axis output circuit 6, X-axis output circuit 7, monitor 8, function conversion circuit 9, condition indication circuit 10, electrocardios and interference indicating circuit 11, V signals produce circuit 12.
Fig. 2 is an electrical schematic diagram of the present invention.Fig. 3 is the left-half of Fig. 2, and Fig. 4 is the right half part of Fig. 2.
Five, the specific embodiment
Embodiment of the present invention are as follows:
Operational amplifier IC1-IC28 all adopt model be " LF353 ' operational amplifier; the model that memory IC35-IC37 adopts be " ISD14DC "; it is the analog switch of CD4066 that IC29-IC34, IC48, IC49, IC41, IC43, IC44 adopt model; be connected to an analog switch " IC29, IC30, IC31 " respectively between each two inputs of three preamplifiers, the outfan of three preamplifiers respectively with three storage circuits in " AIN " of IC35, IC36, IC37 hold and join.The X-axis outfan in the driving amplifier and the outfan of Z axle are that the outfan of IC18, IC24 joins by the inverting input of analog switch " IC38, IC40 " with X-axis output circuit IC19 respectively, and Y-axis outfan and Z axle outfan are that the outfan of IC21, IC24 joins by the inverting input of analog switch IC40, IC43 and Y-axis output circuit IC22 respectively.The inverting input of " V " signal generating circuit IC25 joins with analog switch IC44 by a resistance R 97, and the outfan that V signal produces IC circuit 25 joins by resistance R 62 and X-axis output circuit 1C19 in-phase input end.
7 input electrode: I of human body, E, C, A, M, F, N according to the lead regulation of system of Fraik, is connected to seven positions of human body.The human ecg signal of introducing, through the follower that IC1-IC7 constitutes, finish the input impedance conversion after, deliver to the Frank that constitutes by the R8-R18 correction system of leading, about proofreading and correct; About; " Wilson " central station is promptly set up in the skew of the joint of three the axial electrocardio gesture in front and back.The distance of proofreading and correct the different in size of three crossing cardiac electric axis and external electrode set-point and human heart electricity center does not simultaneously wait.Form simultaneously three mutually vertical, and intersect at the heart geometric center, up and down; About; Three the axial electrocardiosignaies in front and back.By IC8-IC10; IC11-IC13; Three difference amplifiers that IC14-IC16 constituted, respectively to about; About; Three the axial electrocardiosignaies in front and back are amplified W1; W2; W3 is the amplification adjustment, W7; W8; W9 is the common mode rejection ratio adjustment, to guarantee the maximum inhibition to the human body common mode interference signal of input.IC29-IC31; IC31-IC34 is an analog switch, is subjected to be controlled by the sequential logic that IC54 constitutes, and when the former is closed, power shaft to the electrocardiosignal short circuit, when the latter is closed, is delivered to three axial ecg signal amplifiers with the voltage of fixing of 1MV.Adjust W10; W11; W12 is in order to calibrate final " vectorcardiogram " amplitude.Three axial electrocardiosignaies after amplifying are delivered to the analog input end AIN of digital memory, and IC15-IC17 is three single-chip digital storages, reading unit integrated circuit ISD1400, built-in AD; DA; RAM; CPU etc., XCLK end can be provided with read or write speed, and the double frequency clock oscillator that is subjected to be made of IC57-IC63 is controlled, and writing its clock frequency of man-hour is 10MHz, and its clock frequency is 0.5MHz when reading., can record truly originally up to the frequency response more than the 1000Hz to guarantee mechanical type twin shaft shape that drawing pencil is drawn.RECLED termination one light emitting diode is the record indication.Be subjected to the time sequential routine logic control, reading and writing control end REC; Carry out the operation IC17-IC18 that reads or writes when reaching PLAYL for low level; IC19;-IC20; IC21-IC22 is three axle driving amplifiers, and three axial electrocardiosignaies that acceptance storage, reading unit " are put " are slowly delivered to output circuit after amplifying.W4; W5; About W6 is respectively; About; Three the axial electrocardiosignal zero adjustment in front and back serve as zero to guarantee " Wilson " central station electromotive force.The output of XY graphic indicator also is zero.W10; W11; W12 is an axle gain adjustment, with guarantee input 1MV fix voltage the time, the XY graphic indicator produces the record amplitude of 10mm.The ramp voltage that the slope voltage generating circuit that is made of IC25 produces is delivered to by IC19, and with X axis signal superposition, make added on the electrocardiosignal of X-axis one with proportional example of time variable voltage signal relation, fixed slope, and be synchronized with three vector cardiac electrical cycle, by by IC38; IC40; The axle combined changeover switch circuit that IC43 forms, in plane of structure vectorcardiogram and left and right sides cardiac electric axis to the signal superposition, the face amount vectorcardiogram also with left and right sides cardiac electric axis to the signal superposition, in sagittal plane vectorcardiogram and front and back cardiac electric axis to the signal superposition, three in " cross shaft surface " " the frontal axis face " " sagittal axial plane " that forms vectorcardiogram respectively is orthogonal, and include " vectorcardiogram " information of four four-dimension of " time shifting " information, trace continuously through the XY monitor again, and form the vectorcardiogram figure.IC68 constitutes the switch of tracing of pen plotter, the dual control of interference detecting signal that it is traced instruction and is made up of IC26-IC28.IC26-IC29 constitutes electrocardiosignal indication and interfering signal detecting circuit, its input forms to exchange with three preamplifier outfans and is connected, " R " ripple to cardiac cycle detects, through amplifying, promote the DG9 lumination of light emitting diode, indicate as heart rate, and interfering signal is sent IC28 integration comparator after amplifying, R120, form the relatively family of power and influence after the R122 dividing potential drop, when interfering signal reaches the amplitude of setting, DG10 is luminous as indication for comparator output " 1 " driven for emitting lights diode, send IC68 to stop to trace simultaneously, IC54, the CD4017 decade computer constitutes function conversion and work schedule instruction forming circuit, AN is an action button, during again by one time, be transformed into next operating conditions from the work at present attitude, its outfan Q0-Q7 carries out respectively: stop-observe-fix-depositing people-trace vectorcardiogram-trace cross shaft surface vectorcardiogram-trace frontal axis face vectorcardiogram-trace sagittal axial plane vectorcardiogram, eight work orders, the Q8 end is reset terminal, program is carried out finished the back to initially stopping attitude.
DG1-DG8 is current execution content indication, and JLY is that the pen type of any model is directly retouched type XY monitor.
Claims (5)
1. vectorial cardiograph, by the signals collecting part, signal processing and segment signal output are formed, it is characterized in that this electrocardiograph is by human body crosslinking electrode (1), Frank correcting circuit (2), three preamplifiers (3), three storage circuits (4), driving amplifier (5), Y-axis output circuit (6), X-axis output circuit (7), monitor (8), function conversion circuit (9), condition indication circuit (10), electrocardio disturbs indicating circuit (11), V signal produces circuit (12) and forms, human body crosslinking electrode (1) wherein, Frank correcting circuit (2), three preamplifiers (3), three storage circuits (4), driving amplifier (5) order is connected in series, the outfan of driving amplifier (5) connects the input of Y-axis output circuit (6) and X-axis output circuit (7) respectively, the outfan input direct and X-axis output circuit (7) that V signal produces circuit (12) joins, and the outfan of Y-axis output circuit (6) and X-axis output circuit (7) joins with monitor (8) respectively; The outfan of three preamplifiers (3) and electrocardio disturb indicating circuit (11) to join, and the outfan of the outfan of function conversion circuit (9) and condition indication circuit (10), three storage circuits (4) and driving amplifier (5) joins.
2. vectorial cardiograph according to claim 1 is characterized in that human body crosslinking electrode (1) has 7 electrodes, i.e. " I, E, C, A, M, F, N ", respectively by a resistance directly and amplifier IC1~IC7 join.
3. vectorial cardiograph according to claim 1 and 2, it is characterized in that between each two inputs of three preamplifiers (3), being connected to an analog switch " IC29, IC30, IC31 " respectively, the outfan of three preamplifiers (3) respectively with three storage circuits (4) in " A IN " end of IC35, IC36, IC37 join.
4. vectorial cardiograph according to claim 1 and 2, the outfan that it is characterized in that X-axis outfan in the driving amplifier (5) and Z axle is that the outfan of IC18, IC24 joins by the inverting input of analog switch " IC38, IC40 " with X-axis output circuit (7) IC19 respectively, and Y-axis outfan and Z axle outfan are that the outfan of IC21, IC24 joins by the inverting input of analog switch IC41, IC43 and Y. axle output circuit (7) IC22 respectively.
5. vectorial cardiograph according to claim 1 and 2, the inverting input that it is characterized in that V signal generation circuit (12) IC25 joins with analog switch IC44 by a resistance R 97, and the outfan that V signal produces circuit (12) IC25 joins by the in-phase input end of resistance R 62 with X-axis output circuit (7) IC19.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN 02220580 CN2542204Y (en) | 2002-05-16 | 2002-05-16 | Vector electrocardiograph |
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CN 02220580 CN2542204Y (en) | 2002-05-16 | 2002-05-16 | Vector electrocardiograph |
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CN2542204Y true CN2542204Y (en) | 2003-04-02 |
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CN 02220580 Expired - Fee Related CN2542204Y (en) | 2002-05-16 | 2002-05-16 | Vector electrocardiograph |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109480827A (en) * | 2018-12-18 | 2019-03-19 | 武汉中旗生物医疗电子有限公司 | Vectorcardigram classification method and device |
CN111543979A (en) * | 2020-05-13 | 2020-08-18 | 许祥林 | Method for outputting vector cardiogram through conventional leads |
-
2002
- 2002-05-16 CN CN 02220580 patent/CN2542204Y/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109480827A (en) * | 2018-12-18 | 2019-03-19 | 武汉中旗生物医疗电子有限公司 | Vectorcardigram classification method and device |
CN109480827B (en) * | 2018-12-18 | 2021-04-16 | 武汉中旗生物医疗电子有限公司 | Vector electrocardiogram classification method and device |
CN111543979A (en) * | 2020-05-13 | 2020-08-18 | 许祥林 | Method for outputting vector cardiogram through conventional leads |
CN111543979B (en) * | 2020-05-13 | 2024-02-06 | 许祥林 | Method for outputting electrocardiographic vector diagram by conventional leads |
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