CN202191603U - Implanted double-mode stimulation chip and double-mode nerve stimulation system - Google Patents

Implanted double-mode stimulation chip and double-mode nerve stimulation system Download PDF

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CN202191603U
CN202191603U CN2011200107142U CN201120010714U CN202191603U CN 202191603 U CN202191603 U CN 202191603U CN 2011200107142 U CN2011200107142 U CN 2011200107142U CN 201120010714 U CN201120010714 U CN 201120010714U CN 202191603 U CN202191603 U CN 202191603U
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constant
stimulation
implanted
voltage
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吴有林
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Suzhou Jingyu Medical Equipment Co Ltd
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DINGWAN MEDICAL TECHNOLOGY (SUZHOU) Co Ltd
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Abstract

The utility model discloses an implanted double-mode stimulation chip and a double-mode nerve stimulation system. The implanted double-mode stimulation chip comprises a digital control module, an analog impulse generation module, an output control module and a stimulation output measurement module, and has a constant-voltage stimulation mode and a constant-current simulation mode. Compared with the prior art, the implanted double-mode stimulation chip, which is capable of generating constant-voltage simulation pulses or constant-current stimulation pulses, has both advantages of the constant-voltage stimulation mode and the constant-current stimulation mode, is not easy to be affected by impedance variation but is low in energy consumption and longer in service life, has simple structure of circuits, and enables doctors or patients to select one of the two stimulation modes according to needs by the aid of an external control device. Moreover, the double-mode stimulation chip has better compatibility when used for replacing an implanted product, can substitute for an original voltage stimulation mode product and can also substitute for an original current simulation mode product, and accordingly brings convenience to patients.

Description

The implanted bimodulus stimulates chip and bimodulus neural stimulation system
Technical field
This utility model relates to the implantable nerve electric stimulation, and the bimodulus that especially has voltage stimulation and two kinds of stimulus modelities of galvanism stimulates chip and bimodulus neural stimulation system.
Background technology
The implantable nerve electricity irritation has important effect in maladjusted nervous system treatment and nerve injury rehabilitation.The implantable nerve electric stimulation through in human body such as nervus motorius, sensorineural specific neuronal target place implant electrode, discharge high-frequency electrical stimulation, so that specific nerve is stimulated, thereby make function of human body return to the state of normal operation.
At present; The implantable nerve electric stimulation mainly comprises and is used to treat the implanted brain deep electricity irritation (DBS with typical motion obstruction type diseases such as parkinson disease; Be commonly called as brain pacemaker), implanted cortex electricity irritation (CNS), implanted spinal cord stimulation trial system (SCS); Implanted sacral nerves electric stimulation (SNS), implanted vagus nerve electric stimulation (VNS) or the like.
Known implantable nerve electric stimulation mainly comprises pulse generator, electrode, extension wire and external control device usually.Wherein, pulse generator is connected with extension wire, extension wire and then be connected to electrode again, thereby with burst transmissions that pulse generator produced to electrode, so that neuronal target is carried out electricity irritation.
The output boost pulse of pulse generator of the prior art only has a kind of in constant voltage stimulus modelity or the constant current stimulus modelity.It is the simple less energy intensive of circuit structure that constant voltage stimulates the advantage of output, can save electric energy increases the service life; Shortcoming is the influence that is subject to impedance variation, and constant current to stimulate the advantage of output be influence but the energy consumption macrostructure relative complex relatively that stimulus intensity does not receive the tissue impedance variation.Therefore needing a kind of bimodulus that can integrate the advantage of two kinds of stimulus modelities badly stimulates chip and implantable nerve electric stimulation, makes doctor or patient can use external control device to select constant voltage stimulus modelity or constant current stimulus modelity as required.
The utility model content
To the deficiency that exists in the prior art; It is simple and can support constant voltage stimulates stimulates two kinds of mode of operations with constant current bimodulus stimulation chip and implantable nerve electric stimulation that the technical problem that this utility model will solve provides a kind of circuit structure, makes doctor or patient can use external control device to select constant voltage stimulus modelity or constant current stimulus modelity as required.
According to the technical scheme that this utility model provided, a kind of implanted bimodulus stimulates chip, comprising:
Digital control module, said digital control module are used to export the output of digital controlled signal control boost pulse;
The analog pulse generating module, said analog pulse generating module is connected with said digital control module, and said analog pulse generating module comprises that constant voltage stimulates generation circuit and constant current to stimulate circuit takes place, and is used to produce constant voltage boost pulse or constant current boost pulse;
Output control module, said output control module all is connected with said digital control module, analog pulse generating module, is used for constant voltage boost pulse or constant current boost pulse external through electrode output;
Stimulate the output measurement module; Said stimulation output measurement module all is connected with said digital control module, output control module; Said stimulation output measurement module is controlled by digital control module, is used to measure the stimulation voltage or the stimulating current of said output control module output and feed back to said digital control module;
Said implanted bimodulus stimulates chip to have constant voltage stimulus modelity and two kinds of stimulus modelities of constant current stimulus modelity, and when being in the constant voltage stimulus modelity, the constant voltage of said analog pulse generating module stimulates the generation circuit to produce the output of constant voltage boost pulse; When being in the constant current stimulus modelity, the constant current of said analog pulse generating module stimulates the generation circuit to produce the output of constant current boost pulse.
Preferably, said constant voltage stimulates and circuit takes place comprises the reference current generating module, stimulates computing to amplify output module to said reference current generating module is carried out reference voltage generating module that computing obtains, the output voltage that is used for said reference voltage generating module feeds back amplification voltage feedback amplification module, constant voltage.
Preferably, said constant current stimulation generation circuit comprises that the output current that said reference current generating module reaches said reference current generating module feeds back amplified current feedback amplification module.
Preferably, said reference current generating module comprises programmable current D/A converting circuit Current DAC, is used to produce reference current Idac;
Said reference voltage generating module comprises the first resistance R dac, and the input of the said first resistance R dac is connected with the outfan of said programmable current D/A converting circuit Current DAC, and its two ends are used to produce reference voltage V dac;
Said voltage feedback amplification module comprises and is connected in series in boost pulse outfan and the feedback divider resistance Rfb of first between the outfan and the second feedback divider resistance Rfn irritatingly that the feedback voltage V s_fb that the said second feedback divider resistance Rfb two ends produce is used to regulate the stimulation voltage pulse and is output as setting value;
Said constant voltage stimulates computing amplification output module to comprise operational amplifier A 1; The in-phase input end of said operational amplifier A 1 is connected with the input of the said first resistance R dac and is used for the input operational amplifier with reference voltage V dac; Link between the inverting input of said operational amplifier and the said first feedback divider resistance Rfb and the second feedback divider resistance Rfn is connected and is used for the input operational amplifier with feedback voltage V s_fb, and said operational amplifier A 1 is used for that said reference voltage V dac is amplified computing and produces the output of constant voltage stimulation voltage.
Preferably, said constant voltage stimulates the generation circuit also to comprise:
The first constant voltage switch VS1, the said first constant voltage switch VS1 is serially connected between the programmable current D/A converting circuit Current DAC and the first resistance R dac;
The second constant voltage switch VS2, the input of the said second constant voltage switch VS2 is connected with the outfan of said operational amplifier;
The 4th field effect transistor M d, the grid of said the 4th field effect transistor M d is connected with the outfan of the said second constant voltage switch VS2, and the drain electrode of said the 4th field effect transistor M d is used to produce the output of constant stimulation voltage;
The said first constant voltage switch VS1 and the second constant voltage switch VS2 open and close simultaneously and are used to launch or forbid the constant voltage stimulus modelity.
Preferably, said constant current stimulates the generation circuit to comprise:
Said reference current generating module comprises programmable current D/A converting circuit Current DAC, is used to produce reference current Idac;
Said current feedback amplification module is the image current amplifying circuit that comprises the first field effect transistor M a, the second field effect transistor M b and the 3rd field effect transistor M cd.
Preferably, said constant current stimulates the generation circuit also to comprise:
The first constant current switch CS1, the said first constant current switch CS1 is serially connected between program current D/A converting circuit Current DAC and the image current amplifying circuit;
The second constant current switch CS2, the input of the said second constant current switch CS2 is connected with the outfan of said image current amplifying circuit;
The 4th field effect transistor M d, the grid of said the 4th field effect transistor M d is connected with the outfan of the said second constant current switch CS2, and the drain electrode of said the 4th field effect transistor M d is used to produce the output of constant stimulation electric current;
The said first constant current switch CS1 and the second constant current switch CS2 open and close simultaneously and are used to launch or forbid the constant current stimulus modelity.
A kind of implanted bimodulus neural stimulation system comprises the intravital pulse generator of implant patient, the electrode that is connected with said pulse generator, vitro program controlled device, and said pulse generator comprises that the implanted bimodulus described in claim 1 to 7 stimulates chip.
Preferably, this implanted bimodulus neural stimulation system is a kind of in implanted brain deep electric stimulation, implanted cortex electric stimulation, implanted spinal cord stimulation trial system, implanted sacral nerves electric stimulation or the implanted vagus nerve electric stimulation.
Preferably; Said vitro program controlled utensil is useful on the microprocessor system module that control implanted bimodulus stimulates the chip operation pattern; Said implanted bimodulus stimulates chip also to comprise the impedance measurement module that is used to measure the tissue impedance; When the measurement variation of said impedance measurement module during less than setting threshold, said microprocessor system module is selected the constant voltage stimulus modelity; When the measurement variation of said impedance measurement module during greater than setting threshold, said microprocessor system module is selected the constant current stimulus modelity.
Compared with prior art the utility model has the advantages that: owing to stimulate the analog pulse generating module of chip to comprise that constant voltage stimulates generation circuit and constant current to stimulate circuit takes place at the implanted bimodulus; Can produce constant voltage boost pulse or constant current boost pulse; Therefore the advantage that has possessed constant voltage stimulus modelity and constant current stimulus modelity simultaneously; The influence and the energy consumption that neither are subject to the output impedance variation are longer low service life; And circuit structure is simple, makes doctor or patient can use external control device in two kinds of stimulus modelities, to select as required.
Stimulate chip to be chosen in the work constant voltage stimulus modelity under such as common bimodulus, guaranteeing under the constant situation of stimulus intensity, during greater than setting threshold, then change the constant current stimulus modelity like the variation of judgement tissue impedance over to, stimulus modelity as required can automatically switch.And it is compatible preferably that the implanted bimodulus of this utility model stimulates chip when the implanted product is replaced, to have, and both can replace original voltage stimulus modelity product and also can replace original galvanism pattern product, makes things convenient for patient.
Description of drawings
Accompanying drawing 1 is that the bimodulus of this utility model stimulates the module principle figure of chip;
Accompanying drawing 2 is the electrical block diagram of the analog pulse generating module of this utility model;
Accompanying drawing 3 is the electrical block diagram of the stimulation output measurement module of this utility model;
Accompanying drawing 4 is the pattern converse routine flow chart that the bimodulus of this utility model stimulates chip;
Wherein:
10, digital control module; 20, analog pulse generating module; 201, constant voltage stimulates the generation circuit; 2011, reference current generating module; 2012, reference voltage generating module; 2013, voltage feedback amplification module; 2014, constant voltage stimulates computing to amplify output module; 202, constant current stimulates the generation circuit; 30, output control module; 40, stimulate the output measurement module.
The specific embodiment
Below in conjunction with accompanying drawing this utility model is done further detailed explanation:
With reference to Fig. 1, a kind of implanted bimodulus stimulates chip, comprising: digital control module 10, said digital control module 10 are used to export the output of digital controlled signal control boost pulse;
Analog pulse generating module 20; Said analog pulse generating module 20 is connected with said digital control module 10; Said analog pulse generating module 20 comprises that constant voltage stimulates generation circuit 201 to stimulate with constant current circuit 202 takes place, and is used to produce constant voltage boost pulse or constant current boost pulse;
Output control module 30, said output control module 30 all is connected with said digital control module 10, analog pulse generating module 20, is used for constant voltage boost pulse or constant current boost pulse external through electrode output;
Stimulate output measurement module 40; Said stimulation output measurement module 40 all is connected with said digital control module 10, output control module 30; Said stimulation output measurement module 40 is used to measure the stimulation voltage or the stimulating current of said output control module 30 outputs and feed back to said digital control module 10 by digital control module 10 controls.
Said implanted bimodulus stimulates chip to have constant voltage stimulus modelity and two kinds of stimulus modelities of constant current stimulus modelity, and when being in the constant voltage stimulus modelity, the constant voltage of said analog pulse generating module 20 stimulates generation circuit 201 to produce the output of constant voltage boost pulses; When being in the constant current stimulus modelity, the constant current of said analog pulse generating module 20 stimulates generation circuit 202 to produce the output of constant current boost pulses.
With reference to Fig. 2, said constant voltage stimulates and circuit 201 takes place comprises reference current generating module 2011, stimulates computing to amplify output module 2014 to said reference current generating module 2011 is carried out reference voltage generating module 2012 that computing obtains, the output voltage that is used for said reference voltage generating module 2011 feeds back amplification voltage feedback amplification module 2013, constant voltage.
The output current that said constant current stimulates generation circuit 202 to comprise that said reference current generating module 2011 reaches said reference current generating module 2011 feeds back amplified current feedback amplification module 2022.
Said reference current generating module 2011 comprises programmable current D/A converting circuit Current DAC, is used to produce reference current Idac;
Said reference voltage generating module 2012 comprises the first resistance R dac, and the input of the said first resistance R dac is connected with the outfan of said programmable current D/A converting circuit Current DAC, and its two ends are used to produce reference voltage V dac;
Said voltage feedback amplification module 2013 comprises and is connected in series in boost pulse outfan and the feedback divider resistance Rfb of first between the outfan and the second feedback divider resistance Rfn irritatingly that the feedback voltage V s_fb that the said second feedback divider resistance Rfn two ends produce is used to regulate the stimulation voltage pulse and is output as setting value;
Said constant voltage stimulates computing amplification output module 2014 to comprise operational amplifier A 1; The in-phase input end of said operational amplifier A 1 is connected with the input of the said first resistance R dac and is used for reference voltage V dac input operational amplifier A1; Link between the inverting input of said operational amplifier A 1 and the said first feedback divider resistance Rfb and the second feedback divider resistance Rfn is connected and is used for feedback voltage V s_fb input operational amplifier A1, and said operational amplifier A 1 is used for that said reference voltage V dac is amplified computing and produces the output of constant voltage stimulation voltage.
Said constant voltage stimulates generation circuit 201 also to comprise: the first constant voltage switch VS1, and the said first constant voltage switch VS1 is serially connected between the programmable current D/A converting circuit Current DAC and the first resistance R dac;
The second constant voltage switch VS2, the input of the said second constant voltage switch VS2 is connected with the outfan of said operational amplifier;
The 4th field effect transistor M d, the grid of said the 4th field effect transistor M d is connected with the outfan of the said second constant voltage switch VS2, and the drain electrode of said the 4th field effect transistor M d is used to produce the output of constant stimulation voltage;
The said first constant voltage switch VS1 and the second constant voltage switch VS2 open and close simultaneously and are used to launch or forbid the constant voltage stimulus modelity.
Said constant current stimulates generation circuit 202 to comprise: said reference current generating module 2011 comprises programmable current D/A converting circuit Current DAC, is used to produce reference current Idac;
Said current feedback amplification module 2022 is the image current amplifying circuit that comprises the first field effect transistor M a, the second field effect transistor M b and the 3rd field effect transistor M cd.
Said constant current stimulates generation circuit 202 also to comprise: the first constant current switch CS1, and the said first constant current switch CS1 is serially connected between program current D/A converting circuit Current DAC and the image current amplifying circuit;
The second constant current switch CS2, the input of the said second constant current switch CS2 is connected with the outfan of said image current amplifying circuit;
The 4th field effect transistor M d, the grid of said the 4th field effect transistor M d is connected with the outfan of the said second constant current switch CS2, and the drain electrode of said the 4th field effect transistor M d is used to produce the output of constant stimulation electric current;
The said first constant current switch CS1 and the second constant current switch CS2 open and close simultaneously and are used to launch or forbid the constant current stimulus modelity.
Doctor or patient use external control device can select constant voltage stimulus modelity or constant current stimulus modelity as required; Promptly working as the first constant current switch CS1 and the second constant current switch CS2 opens simultaneously; When the first constant voltage switch VS1 and the second constant voltage switch VS2 closed simultaneously, Implantable Pulse Generator produces constant current to stimulate; When the first constant current switch CS1 and the second constant current switch CS2 close simultaneously, when the first constant voltage switch VS1 and the second constant voltage switch VS2 opened simultaneously, Implantable Pulse Generator produces constant voltage to stimulate.
With reference to Fig. 3; Said output control module 30 comprises: the 6th field-effect transistor Sgnd; The end of said the 6th field-effect transistor Sgnd with irritatingly the end be connected; The other end of said the 6th field-effect transistor Sgnd is connected with arbitrary stimulating electrode contact; When said implanted bimodulus stimulated chip to be in the constant voltage stimulus modelity, said the 6th field-effect transistor Sgnd was used for switching and specifies electrode contacts as outfan or boost pulse outfan irritatingly, and promptly each electrode contacts not only can be used as irritatingly outfan but also can be used as the boost pulse outfan.
The 5th field effect transistor M c, when said implanted bimodulus stimulated chip to be in the constant voltage stimulus modelity, said the 5th field effect transistor M c was used between galvanism pattern and voltage stimulus modelity, switching as switch;
The second resistance R ei; The end of the said second resistance R ei is connected with the source class of said the 5th field effect transistor M c, and being connected after the end that the other end of the said second resistance R ei and first feeds back divider resistance Rfb is connected and with electrode contacts is used to measure stimulating current output.
The end of the first feedback divider resistance Rfb is connected with the inverting input that the first switch On1 is connected to operational amplifier A 1, and the other end of the first feedback divider resistance Rfb is connected with second switch On2 and is connected to stimulation output measurement module 40.When the first switch On1 and second switch On2 closed simultaneously, this electrode contacts that is connected with the first feedback divider resistance Rfb was as the boost pulse outfan.
This utility model also provides a kind of implanted bimodulus neural stimulation system; Comprise the intravital pulse generator of implant patient, the electrode that is connected with said pulse generator, be used to read and the vitro program controlled device of clamp-pulse generator output parameter that said pulse generator comprises that implanted bimodulus as described above stimulates chip.
This implanted bimodulus neural stimulation system is a kind of in implanted brain deep electric stimulation, implanted cortex electric stimulation, implanted spinal cord stimulation trial system, implanted sacral nerves electric stimulation or the implanted vagus nerve electric stimulation.
Said vitro program controlled utensil is useful on the microprocessor system module that control implanted bimodulus stimulates the chip operation pattern; Said implanted bimodulus stimulates chip also to comprise the impedance measurement module that is used to measure the tissue impedance; When the measurement variation of said impedance measurement module during less than setting threshold, said microprocessor system module is selected the constant voltage stimulus modelity; When the measurement variation of said impedance measurement module during greater than setting threshold; Said microprocessor system module is selected the constant current stimulus modelity, thereby realizes that bimodulus stimulates chip between constant voltage stimulus modelity and constant current stimulus modelity, to change automatically according to patient's demand.
Compared with prior art; Owing to stimulate the analog pulse generating module 20 of chip to comprise that constant voltage stimulates generation circuit 201 and constant current to stimulate circuit 202 takes place at bimodulus; Can produce constant voltage boost pulse or constant current boost pulse; Therefore the advantage that has possessed constant voltage stimulus modelity and constant current stimulus modelity simultaneously; The influence and the energy consumption that neither are subject to the output impedance variation are longer low service life, and circuit structure is simple, makes doctor or patient can use external control device in two kinds of stimulus modelities, to select as required.
Usually bimodulus stimulates chip to be chosen in work under the constant voltage stimulus modelity, is guaranteeing when surpassing setting threshold like the variation of judging the tissue impedance, then to change the constant current stimulus modelity under the constant situation of stimulus intensity, and stimulus modelity as required can automatically switch.And it is compatible preferably that the bimodulus of this utility model stimulates chip when the implanted product is replaced, to have, and both can replace original voltage stimulus modelity product and also can replace original galvanism pattern product, makes things convenient for patient.
With reference to Fig. 4, stimulate chip to stimulate the flow chart of output less than safety margins value and stimulus modelity conversion method for guaranteeing this utility model implanted bimodulus.At first; The doctor uses vitro program controlled device that the highest stimulation voltage and the highest stimulating current of pulse generator are set; The initial impulse pattern that the stimulation chip of pulse generator is set then is constant voltage stimulus modelity or constant current stimulus modelity, and the voltage stimulus parameter is being set under the constant voltage stimulus modelity or the galvanism parameter is set under the constant current stimulus modelity.
Be set to the constant voltage stimulus modelity like initial stimulus modelity; Voltage stimulus parameter and the highest stimulation voltage will be set to be compared to use among both and stimulates than small parameter; The stimulation output current of the stimulation chip that will measure again compares with the highest stimulating current; If measure stimulating current less than the highest stimulating current, then keep original stimulus parameter; Otherwise, then convert the constant current stimulus modelity into and use the highest stimulating current to stimulate and send warning signal;
Be set to the constant current stimulus modelity like initial stimulus modelity; Galvanism parameter and the highest stimulating current will be set relatively to be used among both and stimulates than small parameter; The stimulation output voltage of the stimulation chip that will measure again compares with the highest stimulation voltage; If measure stimulation voltage less than the highest stimulation voltage, then keep original stimulus parameter; Otherwise, then convert the constant voltage stimulus modelity into and use the highest stimulation voltage to stimulate and send warning signal.So just guaranteed that output that bimodulus stimulates chip all the time in the scope of safety, avoids excessive stimulation output that patient is caused Health cost.
This utility model also can have other various embodiments; Under the situation that does not deviate from this utility model spirit and essence; Those skilled in the art can make various corresponding changes and distortion according to this utility model, but these corresponding scopes that change and be out of shape the claim protection that all should belong to this utility model.

Claims (10)

1. an implanted bimodulus stimulates chip, it is characterized in that: comprising:
Digital control module, said digital control module are used to export the output of digital controlled signal control boost pulse;
The analog pulse generating module, said analog pulse generating module is connected with said digital control module, and said analog pulse generating module comprises that constant voltage stimulates generation circuit and constant current to stimulate circuit takes place, and is used to produce constant voltage boost pulse or constant current boost pulse;
Output control module, said output control module all is connected with said digital control module, analog pulse generating module, is used for constant voltage boost pulse or constant current boost pulse external through electrode output;
Stimulate the output measurement module; Said stimulation output measurement module all is connected with said digital control module, output control module; Said stimulation output measurement module is controlled by digital control module, is used to measure the stimulation voltage or the stimulating current of said output control module output and feed back to said digital control module;
Said implanted bimodulus stimulates chip to have constant voltage stimulus modelity and two kinds of stimulus modelities of constant current stimulus modelity, and when being in the constant voltage stimulus modelity, the constant voltage of said analog pulse generating module stimulates the generation circuit to produce the output of constant voltage boost pulse; When being in the constant current stimulus modelity, the constant current of said analog pulse generating module stimulates the generation circuit to produce the output of constant current boost pulse.
2. implanted bimodulus according to claim 1 stimulates chip, it is characterized in that: said constant voltage stimulates and circuit takes place comprises the reference current generating module, stimulates computing to amplify output module to said reference current generating module is carried out reference voltage generating module that computing obtains, the output voltage that is used for said reference voltage generating module feeds back amplification voltage feedback amplification module, constant voltage.
3. implanted bimodulus according to claim 2 stimulates chip, it is characterized in that: the output current that said constant current stimulates the generation circuit to comprise that said reference current generating module reaches said reference current generating module feeds back amplified current feedback amplification module.
4. implanted bimodulus according to claim 2 stimulates chip, and it is characterized in that: said reference current generating module comprises programmable current D/A converting circuit Current DAC, is used to produce reference current Idac;
Said reference voltage generating module comprises the first resistance R dac, and the input of the said first resistance R dac is connected with the outfan of said programmable current D/A converting circuit Current DAC, and its two ends are used to produce reference voltage V dac;
Said voltage feedback amplification module comprises and is connected in series in boost pulse outfan and the feedback divider resistance Rfb of first between the outfan and the second feedback divider resistance Rfn irritatingly that the feedback voltage V s_fb that the said second feedback divider resistance Rfn two ends produce is used to regulate the stimulation voltage pulse and is output as setting value;
Said constant voltage stimulates computing amplification output module to comprise operational amplifier A 1; The in-phase input end of said operational amplifier A 1 is connected with the input of the said first resistance R dac and is used for the input operational amplifier with reference voltage V dac; Link between the inverting input of said operational amplifier and the said first feedback divider resistance Rfb and the second feedback divider resistance Rfn is connected and is used for feedback voltage V s_fb input operational amplifier A1, and said operational amplifier A 1 is used for that said reference voltage V dac is amplified computing and produces the output of constant voltage stimulation voltage.
5. implanted bimodulus according to claim 4 stimulates chip, it is characterized in that: said constant voltage stimulates the generation circuit also to comprise:
The first constant voltage switch VS1, the said first constant voltage switch VS1 is serially connected between the programmable current D/A converting circuit Current DAC and the first resistance R dac;
The second constant voltage switch VS2, the input of the said second constant voltage switch VS2 is connected with the outfan of said operational amplifier A 1;
The 4th field effect transistor M d, the grid of said the 4th field effect transistor M d is connected with the outfan of the said second constant voltage switch VS2, and the drain electrode of said the 4th field effect transistor M d is used to produce the output of constant stimulation voltage;
The said first constant voltage switch VS1 and the second constant voltage switch VS2 open and close simultaneously and are used to launch or forbid the constant voltage stimulus modelity.
6. implanted bimodulus according to claim 3 stimulates chip, it is characterized in that: said constant current stimulates the generation circuit to comprise:
Said reference current generating module comprises programmable current D/A converting circuit Current DAC, is used to produce reference current Idac;
Said current feedback amplification module is the image current amplifying circuit that comprises the first field effect transistor M a, the second field effect transistor M b and the 3rd field effect transistor M cd.
7. implanted bimodulus according to claim 6 stimulates chip, it is characterized in that: said constant current stimulates the generation circuit also to comprise:
The first constant current switch CS1, the said first constant current switch CS1 is serially connected between program current D/A converting circuit Current DAC and the image current amplifying circuit;
The second constant current switch CS2, the input of the said second constant current switch CS2 is connected with the outfan of said image current amplifying circuit;
The 4th field effect transistor M d, the grid of said the 4th field effect transistor M d is connected with the outfan of the said second constant current switch CS2, and the drain electrode of said the 4th field effect transistor M d is used to produce the output of constant stimulation electric current;
The said first constant current switch CS1 and the second constant current switch CS2 open and close simultaneously and are used to launch or forbid the constant current stimulus modelity.
8. implanted bimodulus neural stimulation system; Comprise the intravital pulse generator of implant patient, the electrode that is connected with said pulse generator, vitro program controlled device, it is characterized in that: said pulse generator comprises that the implanted bimodulus described in claim 1 to 7 stimulates chip.
9. implanted bimodulus neural stimulation system according to claim 8 is characterized in that: this implanted bimodulus neural stimulation system is a kind of in implanted brain deep electric stimulation, implanted cortex electric stimulation, implanted spinal cord stimulation trial system, implanted sacral nerves electric stimulation or the implanted vagus nerve electric stimulation.
10. implanted bimodulus neural stimulation system according to claim 9; It is characterized in that: said vitro program controlled utensil is useful on the microprocessor system module that control implanted bimodulus stimulates the chip operation pattern; Said implanted bimodulus stimulates chip also to comprise the impedance measurement module that is used to measure the tissue impedance; When the measurement variation of said impedance measurement module during less than setting threshold, said microprocessor system module is selected the constant voltage stimulus modelity; When the measurement variation of said impedance measurement module during greater than setting threshold, said microprocessor system module is selected the constant current stimulus modelity.
CN2011200107142U 2011-01-14 2011-01-14 Implanted double-mode stimulation chip and double-mode nerve stimulation system Expired - Lifetime CN202191603U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102580243A (en) * 2011-01-14 2012-07-18 苏州景昱医疗器械有限公司 Implanted dual-mode stimulating chip, system and mode converting method
CN109954206A (en) * 2017-12-22 2019-07-02 苏州景昱医疗器械有限公司 Voltage adaptive controlling module and implantable nerve stimulating system with it
CN114326901A (en) * 2021-12-31 2022-04-12 浙江浙大西投脑机智能科技有限公司 Accurate parameter adjustable current stimulation system for nerve regulation

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102580243A (en) * 2011-01-14 2012-07-18 苏州景昱医疗器械有限公司 Implanted dual-mode stimulating chip, system and mode converting method
CN102580243B (en) * 2011-01-14 2015-01-21 苏州景昱医疗器械有限公司 Implanted dual-mode stimulating chip, system and mode converting method
CN109954206A (en) * 2017-12-22 2019-07-02 苏州景昱医疗器械有限公司 Voltage adaptive controlling module and implantable nerve stimulating system with it
CN114326901A (en) * 2021-12-31 2022-04-12 浙江浙大西投脑机智能科技有限公司 Accurate parameter adjustable current stimulation system for nerve regulation
CN114326901B (en) * 2021-12-31 2023-04-07 浙江浙大西投脑机智能科技有限公司 Accurate parameter adjustable current stimulation system for nerve regulation

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