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Non Volatile and Battery-Less Analog Recording of Physiological Signals Using a Low-Cost Device for Voice Signal Storage: A Feasibility Test

机译:使用低成本的语音信号存储设备对生理信号进行非易失性和电池电量少的模拟记录:一项可行性测试

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The ChipCorder® technology employs a non volatile analog recording technique based on EEPROM technology (i.e. although the signal is time-sampled, its analog voltage is stored in memory cells based on capacitors). This technology provides low-cost voice signal storage devices, which use a sampling frequency (f s) of ≈6.4 kHz to achieve a storage time (t s) of several seconds. Theoretically, reducing f s should allow a proportional increase in t s, which could be used to record physiological signals, which have a lower frequency range. However, the manufacturer points out that at certain low sampling frequencies, the analog voltage stored in the capacitors could drop to an unacceptable level. For this reason, we designed a feasibility test in order to assess the potential of the ChipCorder® technology for processing and storing physiological signals. An electrocardiogram signal (ECG) (0.7–100 Hz bandwidth) was recorded and played back using the ISD1210P (Information Storage Devices, CA, USA), reducing f s from 6.4 kHz to 25 Hz and hence augmenting t s from 10 to 2526 s. The results showed that the ECG signal was considerably distorted when f s was lower than 200 Hz (t s higher than 320 s). This distortion was due to the aliasing effect, and not to an unacceptable drop in the analog voltage stored in the capacitors. These results suggest that the ChipCorder® technology could be used to design non volatile recording systems for physiological signals of up to several minutes duration, reducing the complexity and cost as compared with systems based on digital techniques.
机译:ChipCorder ®技术采用了基于EEPROM技术的非易失性模拟记录技术(即,尽管信号是经过时间采样的,但其模拟电压仍存储在基于电容器的存储单元中)。该技术提供了低成本的语音信号存储设备,该设备使用约6.4 kHz的采样频率(f s )达到几秒钟的存储时间(t s ) 。从理论上讲,减小f s 应该允许t s 成比例地增加,这可以用来记录具有较低频率范围的生理信号。但是,制造商指出,在某些较低的采样频率下,存储在电容器中的模拟电压可能会下降到不可接受的水平。因此,我们设计了一项可行性测试,以评估ChipCorder ®技术在处理和存储生理信号方面的潜力。使用ISD1210P(信息存储设备,CA,美国)记录并播放心电图信号(ECG)(0.7–100 Hz带宽),将f s 从6.4 kHz降低到25 Hz,从而增大t s 从10到2526 s。结果表明,当f s 低于200 Hz(t s 高于320 s)时,ECG信号会明显失真。这种失真是由于混叠效应引起的,而不是由于存储在电容器中的模拟电压下降到不可接受的程度。这些结果表明,ChipCorder ®技术可用于设计长达几分钟的生理信号的非易失性记录系统,与基于数字技术的系统相比,可降低复杂性和成本。

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