医学电子学学习.pptx
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1、Frequency Ranges of Various Biopotential Signals第1页/共33页Common biopotential signalsAs shown in Table 2.1,common biopotential signals span the range dc to 10 kHz.Under ideal conditions,a biopotential amplifier with wideband response would serve most applications.However,the presence of common-mode po
2、tentials,electrode polarization,and other interfering signals often obscure the biopotential signal under investigation.As such,the frequency response of a biopotential amplifier should be tuned to the specific spectral content expected from the application at hand.第2页/共33页Frequency Ranges of Variou
3、s Biopotential Signals第3页/共33页Frequency Ranges of Various Biopotential Signals第4页/共33页WIDEBAND BIOPOTENTIAL AMPLIFIERThe biopotential amplifier circuit described by the schematic diagrams of Figures 2.2 and 2.3 covers the complete frequency range of commonly recorded biopotentials with high CMR.第5页/
4、共33页-3dB bandpassSpectral analysis is the most common way of determining the bandwidth required to process physiological signals.For a first estimate,however,the rigors of spectral analysis can be avoided simply by evaluating the durations of high-and low-frequency components of the signal.Koide 199
5、6 proposed a method for estimating the-3dB bandpass based on acceptable distortion.第6页/共33页A stereotypical intracellular signalThe duration of the highest-frequency component,tHF,is estimated from a stereotypical signal to be the minimum rise or fall time of a signal variation.The duration of the lo
6、west frequency component,tLF,on the other hand,is measured from the tilt of the baseline or of the lowest-frequency component of interest.Koide illustrated this with an example.Figure 2.1 shows a stereotypical intracellular potential measured from the pacemaker cells in a mammalian heart SA node.In
7、this example,tHF=75 ms and tLF=610 ms.Using the formulas of Table 2.2,the amplification system must have a 3-dB bandpass of 0.0026 to 41.3 Hz to reproduce the signal with negligible distortion(1%).Acceptable distortion,usually considered to be 5%or less for physiological signals,would require a narr
8、ower-3dB bandpass,of 0.013 to 18.7 Hz.第7页/共33页Figure 2.1 A stereotypical intracellular potential measured from the pacemaker cells in a mammalian heart SA node has a minimum rise time of tHF=75 ms and a tilt of tLF=610 ms.The-3dB bandpass needed to reproduce this signal with 1%distortion is of 0.002
9、6 to 41.3 Hz.第8页/共33页Approximate-3dB Frequencies Required第9页/共33页Wideband dc-coupled biopotential amplifier Figure 2.2第10页/共33页Figure 2.2This wideband dc-coupled biopotential amplifier front end covers the complete frequency range of commonly recorded biopotentials.A Burr-Brown INA110AG ICIA is dc-c
10、oupled to the electrodes via current-limiting resistors R22 and R23 and IS-1-3.3DP faultcurrent limiters.Capacitors and diodes are used to protect the amplifier from high-frequency currents,such as those used in electrosurgery and ablation procedures as well as from high-voltage transients such as t
11、hose that may be expected from defibrillation and electrostatic discharge.第11页/共33页第12页/共33页Figure 2.3The output of the ISO107 isolation amplifier is fed to IC2B,which has its gain selectable through switch SW3.The circuit built around IC2A nulls dc offsets automatically when SW1 is closed.The featu
12、res of this biopotential amplifier make it an ideal choice for recording cardiac monophasic action potentials(MAPs)using electrodes in direct contact with the heart.第13页/共33页AC-COUPLED INSTRUMENTATION BIOPOTENTIALAMPLIFIER FRONT ENDThe circuit of Figure 2.5 embodies the classic implementation of a m
13、edium-impedance(10-M)instrumentation biopotential amplifier based on the popular AD521 ICIA by Analog Devices.The gain of this circuit is adjustable between 10 and 1000 and maintains a CMR of at least 110 dB.第14页/共33页第15页/共33页Figure 2.4Dc and very low frequency potentials are prevented from propagat
14、ing beyond the front-end amplifier through a technique commonly referred to as dc rejection.Here,IC4C,together with R11 and C17,are used to offset IC1s reference to suppress a baseline composed of components in the range dc to 0.48 Hz.第16页/共33页AC-COUPLED INSTRUMENTATION BIOPOTENTIALAMPLIFIER FRONT E
15、NDThe heart of the circuit is IC1,the monolithic IC instrumentation amplifier.Biopotentials are ac-coupled to the amplifiers inputs through C1 and C2.Although instrumentation amplifiers have differential inputs,bias currents would charge stray capacitances at the amplifiers input.As such,resistors R
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