CN202553905U - Measuring system - Google Patents

Measuring system Download PDF

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Publication number
CN202553905U
CN202553905U CN2012201091343U CN201220109134U CN202553905U CN 202553905 U CN202553905 U CN 202553905U CN 2012201091343 U CN2012201091343 U CN 2012201091343U CN 201220109134 U CN201220109134 U CN 201220109134U CN 202553905 U CN202553905 U CN 202553905U
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CN
China
Prior art keywords
signal processing
processing module
measuring system
physiological parameter
measurement device
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Withdrawn - After Issue
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CN2012201091343U
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Chinese (zh)
Inventor
刘树海
张燕清
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Beijing Ultra-thinking Electronic Technology Co., Ltd.
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BEIJING CHAOSI ELECTRONIC TECHNOLOGY Co Ltd
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Abstract

The utility model discloses a measuring system which comprises a measuring device and a terminal device. A first signal processing module, and a first data communication interface and a physiological parameter signal acquisition module connected with the first signal processing module are provided inside the measuring device. A second signal processing module, and a second data communication interface and a display module connected with the second signal processing module are provided in the terminal device. The measuring device and the terminal device are connected through the first data communication interface and the second data communication interface. The physiological parameter signal acquisition module is used to measure physiological parameter signals, and outputs the physiological parameter signals to the first signal processing module. The first signal processing module is used for process the physiological parameter signals, generates physiological parameter data, and outputs the physiological parameter data through the first data communication interface and the second data communication interface to the second signal processing module. The display module is instructed by the second signal processing module to display the physiological parameter data. The measuring system provided by the utility model has the characteristics of low cost, and is convenient to carry.

Description

A kind of measuring system
Technical field
This utility model relates to medical detection technology, particularly a kind of physiological measuring system.
Background technology
In the modern society, threaten the various diseases of human health and life security more and more.At present, the treatment for numerous diseases mainly is with prevention and is viewed as the master.Usually the medical worker measures each item physiological parameter of patient through various measurement devices, thereby obtains patient's various related data information.Measurement device can be cardiographic detector, blood oxygen measuring device or temperature survey meter etc.With the heart disease is example, and the medical worker can measure patient's electrocardiogram through cardiographic detector, and knows the relevant information of patient's heart fast through observing Electrocardiographic form.
The patient detects and record condition at any time for ease, and those skilled in the relevant art have researched and developed the multiple hand-held measurement device of measuring each item physiological parameter that is specifically designed to.Though the hand-held measurement device of specialty can satisfy the measurement demand of patient to self each item physiological parameter, still has following problems in actual use: one of which, professional hand-held measurement device price general charged is higher, thereby has increased user's financial burden; Its two, if the user thinks to carry out at any time physiological parameter measurement, then need carry corresponding hand-held measurement device, this can cause some inconvenience to the user.
The utility model content
This utility model provides a kind of measuring system, and its cost is lower and be easy to carry.
For realizing above-mentioned purpose; This utility model provides a kind of measuring system; It comprises: measurement device and terminal unit, first data communication interface and the physiological parameter signals acquisition module that first signal processing module are arranged, be connected with said first signal processing module in said measurement device set inside; Second data communication interface and display module are set in said terminal unit; Said measurement device is connected with second data communication interface through said first data communication interface with terminal unit; Wherein said physiological parameter signals acquisition module is used to measure physiological parameter signals, and said physiological parameter signals is exported to said first signal processing module; Said first signal processing module; Be used for said physiological parameter signals is handled; Generate physiological parameter data; And said physiological parameter data exported to said terminal unit through said first data communication interface and second data communication interface, for the display module of said terminal unit said physiological parameter data is shown.
Further, said terminal unit also comprises secondary signal processing module and the reminding module that is connected with said secondary signal processing module, and said measuring system also comprises the motor message acquisition module; It is inner that said motor message acquisition module is arranged at said measurement device, is used to measure motor message, and said motor message is exported to said first signal processing module; The size of more said motor message of said first signal processing module and setting threshold, and indicate said reminding module to carry out corresponding prompting with the prompting mode of setting according to comparative result; It is inner that perhaps said motor message acquisition module is arranged at said terminal unit, is used to measure motor message, and said motor message is exported to said secondary signal processing module; The size of more said motor message of said secondary signal processing module and setting threshold, and indicate said reminding module to carry out corresponding prompting with the prompting mode of setting according to comparative result.
Further, said secondary signal processing module indicates said reminding module to send the prompting of " the measurement state is undesirable " when judging that said motor message surpasses setting threshold; Said secondary signal processing module indicates said reminding module to send the prompting of " the measurement state meets the requirements " when judging said motor message less than setting threshold.
Further, said secondary signal processing module is indicated said terminal unit to store said physiological parameter data, and is indicated said measurement device to close when judging said motor message less than setting threshold.
Further, said secondary signal processing module also indicates said reminding module to send the prompting of " measuring next physiological parameter data " when judging said motor message less than setting threshold.
Further, said reminding module comprise in display screen, speaker, vibrator and the flash lamp any one or multiple.
Further, the prompting mode of said setting comprise in literal, image, sound, vibration and the flash of light any one or multiple.
Further, said terminal unit is set to the form of smart mobile phone, MP3, PDA, panel computer.
Further, said measurement device comprises base plate and the side that is arranged at the edge of said base plate.
Further, said side is looped around the edge of said base plate, and forms cavity with said base plate, and said measurement device is sleeved on the outside of said terminal unit through said cavity.
Further, said measurement device also comprises the annular first lid shape parts, and the said first lid shape parts button is located on the said side.
Further, two opposed edges are provided with chute on the said base plate, and the side that is positioned on the said base plate on two opposed edges is provided with the flange that is complementary with said chute, and said side slides along said chute through said flange.
Further, a side on the said base plate offers opening.
Further, said measurement device also comprises the second lid shape parts, and the said second lid shape parts button is located on the said opening.
Further, the part edge of an edge and the adjacent side that is connected with this edge is provided with said side on the said base plate.
Further, the two opposite edges edge is provided with said side on the said base plate.
The utlity model has following beneficial effect:
The form that the measuring system that this utility model provides adopts measurement device and terminal unit to combine; Because the existing smart mobile phone of terminal unit user capable of using, PDA, MP3 etc. have the intelligent terminal of display screen; Thereby measurement device only need realize that corresponding measurement function gets final product, and then can realize through terminal unit such as functions such as demonstrations, therefore; Because existing intelligent terminal capable of using; Thereby reduced cost and user's financial burden relatively, and because measurement device need not be provided with display unit, thereby the less relatively user of being convenient to of volume carries.
In a kind of preferred implementation of this utility model, said measurement device adopts and can be set in the outside housing of said terminal unit, for example can be set in the outside of user's smart mobile phone, thereby constitute above-mentioned measuring system, and not only cost is lower for it, and is easy to carry.
In a kind of preferred implementation of this utility model; In the measuring system that this utility model provides; Also be provided with the motor message acquisition module that to measure motor message; Through the motor message of relatively being gathered and the size of setting threshold, the corresponding prompting that walks abreast but whether the measurement state of judges meets the requirements.If user's measurement state is undesirable, it is undesirable then to measure state through reminding module prompting user, and measured data possibly exist than mistake, need remeasure; If user's measurement state meets the requirements, then can point out user's measurement state to meet the requirements through reminding module, measured data are more accurate, can store and perhaps can continue to measure next or following a kind of physiological parameter data.Therefore, the measuring system that this utility model provides can effectively help the measurement state of user's error recovery, thereby obtains the higher measurement result of accuracy.
Description of drawings
The structural representation of the measuring system that Fig. 1 provides for this utility model embodiment one;
Fig. 2 is the Facad structure sketch map of the measurement device in the measuring system shown in Figure 1;
Fig. 3 is the structure sketch map of the measurement device in the measuring system shown in Figure 1;
Fig. 4 is the measuring principle figure of measuring system shown in Figure 1;
The structural representation of the measuring system that Fig. 5 provides for this utility model embodiment two;
Fig. 6 is the Facad structure sketch map of the measurement device in the measuring system shown in Figure 5;
Fig. 7 is the structure sketch map of the measurement device in the measuring system shown in Figure 5;
The structural representation of the measuring system that Fig. 8 provides for this utility model embodiment three;
Fig. 9 is the Facad structure sketch map of the measurement device in the measuring system shown in Figure 8;
Figure 10 is the structure sketch map of the measurement device in the measuring system shown in Figure 8;
The structural representation of the measuring system that Figure 11 provides for this utility model embodiment four;
Figure 12 is the Facad structure sketch map of the measurement device in the measuring system shown in Figure 11;
Figure 13 is the structure sketch map of the measurement device in the measuring system shown in Figure 11;
The structural representation of the measuring system that Figure 14 provides for this utility model embodiment five;
Figure 15 is the Facad structure sketch map of the measurement device in the measuring system shown in Figure 14;
Figure 16 is the structure sketch map of the measurement device in the measuring system shown in Figure 14;
The structural representation of the measuring system that Figure 17 provides for this utility model embodiment six;
Figure 18 is the Facad structure sketch map of the measurement device in the measuring system shown in Figure 17;
Figure 19 is the structure sketch map of the measurement device in the measuring system shown in Figure 17;
The structural representation of the measuring system that Figure 20 provides for this utility model embodiment seven;
Figure 21 is the structural representation of the measurement device in the measuring system shown in Figure 20.
The specific embodiment
For making those skilled in the art understand the technical scheme of this utility model better, the measuring system that this utility model provides is described in detail below in conjunction with accompanying drawing.
The measuring system that this utility model provides can be designed to measure a kind of or physiological parameter data; For example; Can measure electrocardiogram (ECG) data, oximetry data, temperature etc. any one or multiple, be structure and the principle that example is explained the measuring system that this utility model provides to measure electrocardiogram (ECG) data below.
Please consult Fig. 1 to Fig. 4 in the lump; The measuring system that this utility model embodiment one provides comprises measurement device 6 and terminal unit 7, first data communication interface 12 and the physiological parameter signals acquisition module that first signal processing module 11 are arranged, be connected with first signal processing module 11 in measurement device 6 set inside; In terminal unit 7, be provided with second data communication interface 13 and the display module; Measurement device 6 is connected with second data communication interface 13 through first data communication interface 12 with terminal unit 7.
In the measuring system that present embodiment provides, the physiological parameter signals acquisition module is used to measure physiological parameter signals, and measured physiological parameter signals is exported to first signal processing module 11; First signal processing module 11 is used for measured physiological parameter signals is handled; Generate physiological parameter data; And this physiological parameter data exported to terminal unit 7 through first data communication interface 12 and second data communication interface 13, with the display module of terminal unit 7 altogether to this physiological parameter data is shown.
In practical application, terminal unit 7 can adopt the intelligent terminal that is easy to carry and has Presentation Function, and this intelligent terminal possesses the function of load software.For example: this terminal unit 7 can be smart mobile phone, panel computer, MP4, MP3 or PDA.Be that example is described the technical scheme of this utility model with the smart mobile phone in the present embodiment.Particularly; Load the software that can show physiological parameter data on the terminal unit 7; When terminal unit 7 receives physiological parameter data, can the form of physiological parameter data with chart be shown on display screen, make the user just can get access to physiological parameter data through terminal unit 7 by this software.
The form that the measuring system that present embodiment provides adopts measurement device and terminal unit to combine; Because the existing smart mobile phone of terminal unit user capable of using, PDA, MP3 etc. have the intelligent terminal of display screen, thereby measurement device only need realize that corresponding measurement function gets final product, then can realize through terminal unit such as functions such as demonstrations; Therefore; Because existing intelligent terminal capable of using, thus cost and user's financial burden reduced relatively, and because measurement device need not be provided with display unit; Thereby its volume is less relatively, is convenient to the user and carries.
Further; In practical application, because a lot of physiological parameter data need measure under immobilized relatively state, and the user does not understand these requirements because of self medical knowledge scarcity; Thereby, self measures relevant physiological parameter data when being kept in motion; And then cause measurement result inaccurate, and obtaining the higher measurement result of accuracy in order to help the user, the measuring system that present embodiment provides also can comprise the motor message acquisition module; It is arranged in the terminal unit 7, and correspondingly terminal unit 7 also comprises secondary signal processing module and the reminding module that is connected with the secondary signal processing module.
As shown in Figure 4, the motor message acquisition module is used to measure motor message, and measured motor message is exported to No. second processing module of letter; The secondary signal processing module is the size of this motor message and setting threshold relatively, and carries out corresponding prompting according to comparative result indication reminding module with the prompting mode of setting.Particularly; When the secondary signal processing module judges that motor message surpasses setting threshold, the prompting of then indicating reminding module to send " the measurement state is undesirable ", it is undesirable to measure state with the prompting user; Measured physiological parameter data possible error is bigger; Need the user to adjust the measurement state,, and remeasure like stability etc.; When the secondary signal processing module is judged motor message less than setting threshold, then indicate reminding module to send the prompting of " the measurement state meets the requirements ", meet the requirements with prompting user measurement state, measured physiological parameter data is more accurate.Further, when the secondary signal processing module is judged motor message less than setting threshold, but said physiological parameter data is stored/shown to indicating terminal equipment 7, and indication measurement equipment 6 is closed; Perhaps when the secondary signal processing module was judged motor message less than setting threshold, said physiological parameter data is stored/shown to indicating terminal equipment 7, and indicate said reminding module to send the prompting of " measuring next physiological parameter data ".
Need to prove, in practical application, the pick off that the motor message acquisition module can adopt direct terminal 7 self to dispose, for example the acceleration of gravity pick off detects motor message.Certainly.In practical application; Moving signal acquisition module also can be arranged in the measurement device; At this moment; The motor message acquisition module outputs to first signal processing module with the motor message of being gathered, and first signal processing module is the size of this motor message and setting threshold relatively, and sends corresponding indication according to comparative result; This indication is transferred to the secondary signal processing module through first data communication interface and second data communication interface, and the secondary signal processing module indicates reminding module to send corresponding prompt according to this indication.
In addition; In practical application; Reminding module can adopt in display screen, speaker, vibrator and the flash lamp any one or multiple; Correspondingly prompting mode can adopt in literal, image, sound, vibration and the flash of light any one or multiple, and concrete prompting mode can carry out relative set as required; For example, when the secondary signal processing module judged that motor message surpasses setting threshold, reminding module can send the text prompt or the auditory tone cues of " mistake "; When the secondary signal processing module was judged motor message less than setting threshold, reminding module can send the text prompt or the auditory tone cues of " correctly ".And in practical application, the above-mentioned functions of reminding module and secondary signal processing module can realize through loading corresponding software.
In the measuring system that present embodiment provides; Owing to be provided with the motor message acquisition module that to measure motor message; Through the motor message relatively gathered and the size of setting threshold, but the measurement state of judges whether meet the requirements, and carry out corresponding prompting.For example, when carrying out the electrocardiogram (ECG) data measurement, require the user to be in immobilized relatively state; The motor message through gathering the user and the size of this motor message and setting threshold relatively; Whether the measurement state that gets final product judges meets the requirements, if do not meet, it is undesirable then to measure state through reminding module prompting user; Measured data possibly exist than mistake, need remeasure; If meet the requirements, then can point out user's measurement state to meet the requirements through reminding module, measured data are more accurate, can store and perhaps can continue to measure next or following a kind of physiological parameter data.Therefore, whether the measuring system that present embodiment provides meets the requirements through the measurement state of judges, comes effectively to help the measurement state of user's error recovery, thereby obtains the higher measurement result of accuracy.
In the present embodiment, first data communication interface 12 of measurement device 6 is the interface that is complementary with second data communication interface 13 of terminal unit 7.For ease of being connected with second data communication interface 13, first data communication interface, 12 parts are positioned at the outside of measurement device 6.This first data communication interface 12 can be the interface of standard, for example: USB interface; Perhaps this first data communication interface 12 can be the special purpose interface of certain terminal unit.
Please consult Fig. 1 to Fig. 3 once more, in the present embodiment, measurement device 6 comprises base plate 14 and the side 15 that is arranged at the edge of base plate 14.The shape of base plate 14 and side 15 can design according to the shape of terminal unit 7.And preferably, base plate 14 is the plane.In the present embodiment, base plate 14 be shaped as the rectangle that has chamfering structure.Preferably, side 15 is the inner hollow structure, and then first signal processing module 11 can be arranged at side 15 inside.Side 15 forms cavity with base plate 14, and this cavity can hold terminal unit 7.Side 14 is looped around the edge of base plate 15.In the present embodiment, side 14 is the structure of continued circling at base plate 15 edges.In actual use, terminal unit 7 is placed into makes measurement device 6 be sleeved on the outside of terminal unit 7 in the cavity of measurement device 6, and second communication interface 13 is connected with first communication interface 12.For example: can directly be plugged on first communication interface 12 by second communication interface 13, and the display screen of terminal unit 7 is base plate 14 dorsad.
Need to prove that in practical application, first signal processing module 11 can also be arranged at other position of measurement device 6 inside.For example: base plate 14 also can be the inner hollow structure, and then signal processing module 11 can be arranged at base plate 14 inside; Perhaps, first signal processing module 11 can be positioned at the side 15 on other edge of the base plate 14 shown in the figure; Perhaps, can be in the arranged outside lobe of base plate 14, first signal processing module 11 is positioned at this lobe.The height of lobe is as the criterion not influence to measure.
In the present embodiment; First signal processing module 11 can directly be supplied power by the terminal unit that is connected with measurement device 7; Particularly; When first data communication interface 12 with after second data communication interface 13 is connected, terminal unit 7 can be supplied power to first signal processing module 11 through second data communication interface 13 and first data communication interface 12.Perhaps measurement device 6 also comprises inside that is arranged at measurement device and the power module that is connected with first signal processing module 11; This power module is used for to 11 power supplies of first signal processing module; For example: power module can be arranged at the next door of first signal processing module 11 in side 15 inside and be electrically connected through lead with first signal processing module 11, and power module is not shown in the drawings particularly.Preferably, power module can be button cell.
Further, the physiological parameter signals acquisition module can comprise few two contact electrodes, and these two contact electrodes can be arranged at the outside of base plate 14 and/or the outside of side 14.The inboard all is meant the side towards cavity in this article, and correspondingly, the outside all is meant a side of cavity dorsad.In the present embodiment; The arranged outside of base plate 14 has three contact electrodes; Be respectively contact electrode 16, contact electrode 17 and contact electrode 18, contact electrode 16, contact electrode 17 and contact electrode 18 are isosceles triangle and distribute, and are connected with first signal processing module 11 through lead.And; Wiring for ease; Base plate 14 can be designed as the inner hollow structure; And the inner hollow structure of base plate 14 and the inner hollow structure of side 15 are connected, and the lead that is used to connect the contact electrode and first signal processing module 11 is positioned at base plate 14 and side 15, and lead is not shown in the drawings particularly.And preferably, the lead in the present embodiment all has insulation sheath.Further, also can be provided with contact electrode in the outside of side 15, the arranged outside of side 15 has four contact electrodes in the present embodiment, is respectively contact electrode 19, contact electrode 20, contact electrode 21 and contact electrode 22; Wherein, the contact electrode that is arranged at side 15 can be connected through lead with first signal processing module 11, and lead is positioned at side 15, and lead is not shown in the drawings particularly.In practical application, the contact electrode that is arranged at side 15 outsides is not limited on the side shown in the figure, can also be positioned at side 15 outsides on other edge of base plate 14, in this explanation for example that differs.Wherein, mutually insulated between the contact electrode.
Need to prove; In practical application; The measuring system that present embodiment provides can be designed to measure one or more physiological parameter data, for example not only can measure electrocardiogram (ECG) data and can also measure oximetry data; At this moment, corresponding electrocardio processing sub and the blood oxygen processing sub of comprising of first signal processing module.In addition; In practical application; Not only can the physiological parameter signals acquisition module be set directly on the measurement device 6, also can adopt external detecting devices, perhaps adopt this dual mode that the physiological parameter signals acquisition module is set simultaneously as the physiological parameter signals acquisition module.And; When the physiological parameter signals acquisition module can comprise external detecting devices; Measurement device 6 comprises that also the 3rd data communication interface 23, the three data communication interfaces 23 that are arranged on the measurement device 6 and are connected with first signal processing module 11 are used to connect outside detecting devices.External detecting devices specifically is used to measure physiological parameter signals, and physiological parameter signals is exported to first signal processing module 11 through the 3rd data communication interface 23.Wherein, can external detecting devices directly be plugged into the 3rd data communication interface 23, this moment, the communication interface of external detecting devices need be mated with the 3rd data communication interface 23, and external detecting devices is not shown in the drawings.Wherein, the 3rd data communication interface 23 can be the interface of standard, for example: USB interface; Perhaps this second data communication interface 23 can be the special purpose interface of certain external detecting devices.Alternatively; External detecting devices can for the Oximetry module (for example: blood oxygen probe), the fetal rhythm measurement module (for example; The fetal rhythm doppler transducer), temperature-measuring module (for example, infrared non-contact type temperature measurement device or be the temperature measurement device of metal heat-conducting formula) or induction electrode, this induction electrode comprises the line that leads; One section of this line that leads is provided with electrode slice, and the other end of this line that leads is used for being connected with second data communication interface 23.
The measuring system that present embodiment provides can be carried out the electrocardio measurement of multiple mode, and for example: hand is measured or hand and ankle measurement etc.And the measuring system that adopts this utility model to provide can also be carried out the chest measurement, is specially, and the contact electrode on the measurement device 16, contact electrode 17 and contact electrode 18 are placed on the skin surface of human chest near cardiac position.Above-mentioned three contact electrodes are arranged in around the heart; Preferably; Can three contact electrodes that be the isosceles triangle distribution on the measurement device be placed on the position of the heart left and right sides and heart below respectively; Concrete, the line of contact electrode 17 and contact electrode 18 that can make two bottom that are positioned at isosceles triangle is across the position at heart place, and make another contact electrode 16 be positioned at heart under.
Please consult 5 in the lump to Fig. 7; This utility model embodiment two is with the difference of the foregoing description one: measurement device 6 can also comprise the annular first lid shape parts 24 in the present embodiment; The first lid shape parts, 24 buttons are located on the side 15, thereby make in the more firm cavity that is sleeved on measurement device 6 of terminal unit 7.All the other descriptions can be repeated no more referring to embodiment one here.Wherein, second data communication interface 13 is not shown in the drawings, can be referring to the description among Fig. 1.
In actual use, terminal unit 7 is placed into makes measurement device cover 6 be contained in the outside of terminal unit 7 in the cavity of measurement device 6, and second communication interface 13 is connected with first communication interface 12.For example: can second communication interface 13 directly be plugged on first communication interface 12.And the first lid shape parts, 24 buttons are located on the side 15.Then the user can measure electrocardio through measurement device.
Please consult Fig. 8 to Figure 10 in the lump; This utility model embodiment three is with the difference of the foregoing description one: in the present embodiment on the base plate 14 two opposed edges be provided with chute 25; The side 15 that is positioned on the base plate 14 on two opposed edges is provided with the flange 26 that is complementary with chute 25; Side 14 slides along chute 25 through flange 26, part side 15 is pulled outwardly so that side 15 is opened, and can this part side 15 be inwardly pushed away so that side 15 closures.Thereby be convenient to terminal unit 7 is placed in the cavity of measurement device 6.All the other descriptions can be repeated no more referring to embodiment one here.
In actual use; Part side 15 is pulled outwardly side 15 is opened; Terminal unit 7 is placed into makes measurement device cover 6 be contained in the outside of terminal unit 7 in the cavity of measurement device 6; Second data communication interface 13 is connected with first communication interface 12, for example: can second data communication interface 13 directly be plugged on first communication interface 12.And part side 15 inwardly pushed away so that side 15 closures.Then the user can measure electrocardio through measurement device.
Please consult Figure 11 to Figure 13 in the lump, this utility model embodiment three is with the difference of the foregoing description one: the part edge of an edge and the adjacent side that is connected with this edge is provided with side 15 on the base plate 14; The contact electrode that is arranged at the outside of side 15 is two, is respectively contact electrode 21 and contact electrode 22.All the other descriptions can be repeated no more referring to embodiment one here.Wherein, second data communication interface 13 is not shown in the drawings, can be referring to the description among Fig. 1.
In actual use, terminal unit 7 is placed into makes measurement device cover 6 be contained in the outside of terminal unit 7 in the cavity of measurement device 6, and second data communication interface 13 is connected with first communication interface 12.For example: can second data communication interface 13 directly be plugged on first communication interface 12.Then the user can measure electrocardio through measurement device.
Please consult Figure 14 to Figure 16 in the lump, this utility model embodiment four is with the difference of the foregoing description one: the two opposite edges edge is provided with side 15 on the base plate 14.Side 15 is and is bent upwards structure.All the other descriptions can be repeated no more referring to embodiment one here.Wherein, second data communication interface 13 is not shown in the drawings, can be referring to the description among Fig. 1.
In actual use, terminal unit 7 is placed into makes measurement device 6 be sleeved on the outside of terminal unit 7 in the cavity of measurement device 6, and second data communication interface 13 is connected with first communication interface 12.For example: can second data communication interface 13 directly be plugged on first communication interface 12.Then the user can measure electrocardio through measurement device.
Please consult Figure 17 to Figure 19 in the lump, this utility model embodiment five is with the difference of the foregoing description one: in the present embodiment, a side on the base plate 14 offers opening 27; Measurement device 6 comprises that also the second lid shape parts 28, the second cover shape parts 28 buttons and are located on the opening 27; The second lid shape parts 28 are provided with contact electrode; The edge that contacts with opening 27 on the second lid shape parts 28 is provided with first conductive component 29; Opening 27 is provided with second conductive component 30; Second conductive component 30 is connected with signal processing module 11 through lead, and first conductive component 29 and second conductive component 30 contact to realize that the contact electrode on the second lid shape parts 28 is electrically connected with signal processing module 11.Preferably, the material of first conductive component 29 and second conductive component 30 can be metal.Wherein, lead is not shown in the drawings.Contact electrode on the second lid shape parts 28 comprises contact electrode 21 and contact electrode 22.Second data letter interface 13 is not shown in the drawings, can be referring to the description among Fig. 1.And the 3rd data communication interface 23 is not shown in the drawings, can be referring to the description among the embodiment one.
In actual use, terminal unit 7 is placed into from opening 27 makes measurement device 6 be sleeved on the outside of terminal unit 7 in the cavity of measurement device, and second data communication interface 13 is connected with first communication interface 12.For example: can terminal communication interface 13 directly be plugged on first communication interface 12.And the second lid shape parts, 28 buttons are located on the opening 27, first conductive component 29 and second conductive component 30 of opening 27 on the second lid shape parts 28 are contacted.Then the user can measure electrocardio through measurement device.
Please consult Figure 20 and 21 in the lump, this utility model embodiment seven is with the difference of the foregoing description one: in the present embodiment, measurement device 6 is a shell structure, and first signal processing module 11 (figure does not show) is positioned at housing 31.Housing 31 can be the inner hollow structure.Preferably, housing 31 is shaped as cuboid.Further, housing 31 can also adopt other shape, differs one here for example.The physiological parameter signals acquisition module can comprise external detecting devices 32, and housing 31 is provided with the 3rd data communication interface 23, the three data communication interfaces 23 that are connected with first signal processing module and is used to connect outside detecting devices 32.External detecting devices 32 specifically is used to measure physiological parameter signals, and physiological parameter signals is exported to first signal processing module through the 3rd data communication interface 23.Wherein, can external detecting devices 32 directly be plugged into the 3rd data communication interface 23, this moment, the communication interface of external detecting devices 32 need be mated with the 3rd data communication interface 23.Wherein, external detecting devices 32 can be placed respectively with housing 31, more external detecting devices 32 is plugged on second data communication interface 23 of housing 31 during use, and is shown in figure 21.
Alternatively; External detecting devices 32 can be Oximetry module, fetal rhythm measurement module, temperature-measuring module or induction electrode, and first signal processing module comprises and blood oxygen detecting module, fetal rhythm measurement module, temperature-measuring module, induction electrode corresponding signal process submodule.
Among above-mentioned each embodiment of this utility model, preferably, be arranged between end face and the base plate 14 of the contact electrode on the base plate 14 and possess certain distance, that is to say that contact electrode exceeds base plate 14 certain height.Because base plate 14 is the plane, and the human body appearance is irregular curved surface, makes contact electrode exceed base plate 14 planes, can guarantee that each contact electrode all can contact with human body is stable.Particularly, the outer side plane of base plate 14 is provided with three electrode installation portions that are used to install contact electrode, and these three electrode installation portions are isosceles triangle and distribute, and exceeds outer side plane one segment distance of base plate 14; Be specially, two electrode installation portions (being used to install the installation portion of contact electrode 17 and contact electrode 18) are positioned at the end positions place near a limit of base plate 14; Another electrode installation portion (being used to install the installation portion of contact electrode 16) then is positioned at the midway on base plate 1 another limit; Why the electrode installation portion exceed base plate 14 planes some; Be because base plate 14 is the plane; And the human body appearance is irregular curved surface, makes contact electrode exceed base plate 14 planes, can guarantee that contact electrode all can contact with human body is stable.Concrete connected mode between contact electrode 16, contact electrode 17, contact electrode 18 and the electrode installation portion separately; For example can adopt be spirally connected, riveted joint, clamping or the like; The mode that is spirally connected with employing in the present embodiment is an example, that is, and and in an end machining screw of contact electrode; The end of thread is penetrated by base plate 14 outsides, the lead of correspondence and contact electrode are connected the back fix with suitable nut.Like this, can make the adjustable height of each contact electrode through the degree of depth of screwing of adjusting nut, to adapt to different users's physical trait.In this enforcement; Preferably; The contacted end face of each contact electrode and human body is circular flat, but it is not limited thereto, and all can as long as can be suitable for gathering at skin surface the shape of physiological parameter signals; For example be arranged to the end face of contact electrode square or other polygon, central area that perhaps can also its end face is set to the shape outwards protruding or cave inward.
Among above-mentioned each embodiment of this utility model,, can adopt the scheme among above-mentioned each embodiment that terminal unit is placed in the cavity of measurement device if when terminal unit is mobile phone, MP4 or MP3 equal-volume small device.When if terminal unit is the bigger equipment of computer equal-volume, then can second communication interface 13 be connected through data wire with first communication interface 12, and need not terminal unit is put into the cavity of measurement device.Therefore; In this utility model; The volume of measurement device can design according to portable standard; When the volume of terminal unit can't be put into the cavity of measurement device greatly, can terminal unit be connected with measurement device through data wire, can accomplish cardiac electrical measurement thereby make the user pass through measurement device.
Further, in this utility model, first data communication interface 12 can be wave point, and this first data communication interface 12 can be arranged at the inside of measurement device.Then this first data communication interface 12 can be communicated by letter with the wave point of setting in the terminal unit 7 and is connected.For example, wave point in first data communication interface 12 and the wave point in the terminal unit 7 all can be blue tooth interface or infrared interface.In such cases, can terminal unit 7 not put into measurement device.
Further, in this utility model, the 3rd data communication interface 23 can be wave point, and this second data communication interface 23 can be arranged at the inside of measurement device.Then this second data communication interface 23 can be communicated by letter with the wave point that is provided with in the external detecting devices and is connected.For example, wave point in second data communication interface 23 and the wave point in the external detecting devices all can be blue tooth interface or infrared interface.In such cases, need not external detecting devices is plugged on second data communication interface 23.
In this utility model, above-mentioned base plate 14 and side 15 all can adopt the flexible glue material of silica gel for example etc. to process, and this flexible glue material should have insulating characteristic simultaneously, to guarantee mutually insulated between each contact electrode.Perhaps the material of base plate 14 and side 15 can also be duroplasts or yarn fabric etc.And the base plate 14 and the side 15 of measurement device can be one-body molded, also can process separately structures such as base plate 14 and sides 15 respectively, each several part are stitched together afterwards again.
The kind that it is pointed out that external detecting devices is not limited to several kinds described in above-mentioned each embodiment, in practical application, can increase as required.
The quantity that it is pointed out that contact electrode is not limited to the quantity described in above-mentioned each embodiment, in practical application, can change as required.
It is understandable that above embodiment only is the illustrative embodiments that adopts for the principle that this utility model is described, yet this utility model is not limited thereto.For the one of ordinary skilled in the art, under the situation of spirit that does not break away from this utility model and essence, can make various modification and improvement, these modification and improvement also are regarded as the protection domain of this utility model.

Claims (16)

1. measuring system; It is characterized in that; Comprise: measurement device and terminal unit, first data communication interface and the physiological parameter signals acquisition module that first signal processing module are arranged, be connected in said measurement device set inside with said first signal processing module; In said terminal unit, be provided with second data communication interface and display module; Said measurement device is connected with second data communication interface through said first data communication interface with terminal unit; Wherein
Said physiological parameter signals acquisition module is used to measure physiological parameter signals, and said physiological parameter signals is exported to said first signal processing module;
Said first signal processing module; Be used for said physiological parameter signals is handled; Generate physiological parameter data; And said physiological parameter data exported to said terminal unit through said first data communication interface and second data communication interface, for the display module of said terminal unit said physiological parameter data is shown.
2. measuring system as claimed in claim 1 is characterized in that, said terminal unit also comprises secondary signal processing module and the reminding module that is connected with said secondary signal processing module, and said measuring system also comprises the motor message acquisition module;
It is inner that said motor message acquisition module is arranged at said measurement device, is used to measure motor message, and said motor message is exported to said first signal processing module; The size of more said motor message of said first signal processing module and setting threshold, and indicate said reminding module to carry out corresponding prompting with the prompting mode of setting according to comparative result; Perhaps
It is inner that said motor message acquisition module is arranged at said terminal unit, is used to measure motor message, and said motor message is exported to said secondary signal processing module; The size of more said motor message of said secondary signal processing module and setting threshold, and indicate said reminding module to carry out corresponding prompting with the prompting mode of setting according to comparative result.
3. measuring system as claimed in claim 2 is characterized in that, said secondary signal processing module indicates said reminding module to send the prompting of " the measurement state is undesirable " when judging that said motor message surpasses setting threshold;
Said secondary signal processing module indicates said reminding module to send the prompting of " the measurement state meets the requirements " when judging said motor message less than setting threshold.
4. measuring system as claimed in claim 3 is characterized in that, said secondary signal processing module is indicated said terminal unit to store said physiological parameter data, and indicated said measurement device to close when judging said motor message less than setting threshold.
5. measuring system as claimed in claim 3 is characterized in that, said secondary signal processing module also indicates said reminding module to send the prompting of " measuring next physiological parameter data " when judging said motor message less than setting threshold.
6. measuring system as claimed in claim 2 is characterized in that, said reminding module comprise in display screen, speaker, vibrator and the flash lamp any one or multiple.
7. measuring system as claimed in claim 2 is characterized in that, the prompting mode of said setting comprise in literal, image, sound, vibration and the flash of light any one or multiple.
8. according to any described measuring system of claim 1-7, it is characterized in that said terminal unit is set to the form of smart mobile phone, MP3, PDA, panel computer.
9. measuring system according to claim 8 is characterized in that, said measurement device comprises base plate and the side that is arranged at the edge of said base plate.
10. measuring system according to claim 9 is characterized in that said side is looped around the edge of said base plate, and forms cavity with said base plate, and said measurement device is sleeved on the outside of said terminal unit through said cavity.
11. measuring system according to claim 10 is characterized in that, said measurement device also comprises the annular first lid shape parts, and the said first lid shape parts button is located on the said side.
12. measuring system according to claim 10; It is characterized in that; Two opposed edges are provided with chute on the said base plate; The side that is positioned on the said base plate on two opposed edges is provided with the flange that is complementary with said chute, and said side slides along said chute through said flange.
13. measuring system according to claim 10 is characterized in that, a side on the said base plate offers opening.
14. measuring system according to claim 13 is characterized in that, said measurement device also comprises the second lid shape parts, and the said second lid shape parts button is located on the said opening.
15. measuring system according to claim 9 is characterized in that, the part edge of an edge and the adjacent side that is connected with this edge is provided with said side on the said base plate.
16. measuring system according to claim 7 is characterized in that, the two opposite edges edge is provided with said side on the said base plate.
CN2012201091343U 2012-03-21 2012-03-21 Measuring system Withdrawn - After Issue CN202553905U (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103315747A (en) * 2012-03-21 2013-09-25 北京超思电子技术股份有限公司 Measurement system
CN103892799A (en) * 2012-12-24 2014-07-02 财团法人工业技术研究院 Aorta blood vessel measuring probe, device and aorta caliber measuring method
CN105228548A (en) * 2013-03-13 2016-01-06 蓝带技术公司 For design system and the method for the operative correction of abnormal bone
CN105310685A (en) * 2015-04-24 2016-02-10 于洋 Electrocardiogram collection device with patient measuring state alarming function
CN107928629A (en) * 2013-06-03 2018-04-20 飞比特公司 Portable monitoring device and its operating method
CN114145727A (en) * 2021-11-18 2022-03-08 广东高驰运动科技有限公司 Physiological signal measuring method, system, wearable device and medium

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103315747A (en) * 2012-03-21 2013-09-25 北京超思电子技术股份有限公司 Measurement system
CN103315747B (en) * 2012-03-21 2015-10-21 北京超思电子技术股份有限公司 A kind of measuring system
CN103892799A (en) * 2012-12-24 2014-07-02 财团法人工业技术研究院 Aorta blood vessel measuring probe, device and aorta caliber measuring method
CN103892799B (en) * 2012-12-24 2016-09-14 财团法人工业技术研究院 Aorta blood vessel measuring probe, device and aorta caliber measuring method
CN105228548A (en) * 2013-03-13 2016-01-06 蓝带技术公司 For design system and the method for the operative correction of abnormal bone
CN105228548B (en) * 2013-03-13 2019-04-19 蔚蓝纽带科技公司 The designing system and method for operative correction for abnormal bone
CN107928629A (en) * 2013-06-03 2018-04-20 飞比特公司 Portable monitoring device and its operating method
CN107928629B (en) * 2013-06-03 2021-06-11 飞比特公司 Portable monitoring device and method of operating the same
CN105310685A (en) * 2015-04-24 2016-02-10 于洋 Electrocardiogram collection device with patient measuring state alarming function
CN114145727A (en) * 2021-11-18 2022-03-08 广东高驰运动科技有限公司 Physiological signal measuring method, system, wearable device and medium

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Address after: 100039 Beijing City, Haidian District Fuxing Road, No. 83 West floor three room 320

Patentee after: Beijing Ultra-thinking Electronic Technology Co., Ltd.

Address before: 100039, Fuxing Road, Beijing, Haidian District, No. 36, B, 1127-1128

Patentee before: Beijing Chaosi Electronic Technology Co., Ltd.

AV01 Patent right actively abandoned

Granted publication date: 20121128

Effective date of abandoning: 20151021

C25 Abandonment of patent right or utility model to avoid double patenting