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An alternative light based signal apparatus for generating biological patterns: Oximetry

机译:一种用于产生生物学模式的基于光的信号装置:血氧饱和度测定法

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In spite of the lack of low cost biosignal specific purpose generators, there have been processing strategies to simulate control signals and dynamic states of different pathological diseases. Commercial simulators are not able to reproduce all signal behavior; thereby, we developed a light based emulator able to provide different signal patterns using colorimetry and spectrophotometry. Several parameters are configurable according to customer requirements. Amplitude and frequency are controlled by the usage of a DC motor, a coloured band, a mechanical structure, and, particularly, an oximetry probe. The prototype emulator provides basic signals such as sine, square, triangle, or complex physiological signals, as photoplethysmograms (PPG) and Electrocardiograms (ECG). Other complex patterns include sources of error and chaotic characteristics such as noise or motion artifact, can be simulated. The device may be used to analyze, determine and verify data acquisition platforms, medical instrumentation, training tool interfaces, among others. Preliminary results have contributed to the construction and validation of complex patterns; corroborating practicality, operability and reliability of the proposed product and reducing developing time on representations.
机译:尽管缺乏低成本的生物信号专用发生器,但是已经存在处理策略来模拟不同病理疾病的控制信号和动态状态。商业仿真器无法重现所有信号行为。因此,我们开发了一种基于光的仿真器,该仿真器能够使用比色法和分光光度法提供不同的信号模式。可以根据客户要求配置多个参数。振幅和频率通过使用直流电动机,有色带,机械结构,尤其是血氧饱和度探头来控制。原型仿真器提供基本信号,例如正弦波,正方形,三角形或复杂的生理信号,如光电容积描记图(PPG)和心电图(ECG)。其他复杂模式包括错误源和可以模拟的混沌特性,例如噪声或运动伪像。该设备可用于分析,确定和验证数据采集平台,医疗仪器,培训工具界面等。初步结果有助于复杂模式的构建和验证;证实了所提议产品的实用性,可操作性和可靠性,并减少了产品开发的时间。

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