毕业(设计)论文_单片机多生理参数监护仪的设计(终稿).docVIP

毕业(设计)论文_单片机多生理参数监护仪的设计(终稿).doc

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毕业(设计)论文_单片机多生理参数监护仪的设计(终稿).doc

毕业设计说明书 题目: 学 院: 专 业: 机械设计制造及其自动化 学 号: 姓 名: 指导教师: 完成日期: 中文摘要·····································································································1 ABSTRACT································································································2 第一章 绪论·······························································································1 1.1 各生信号的意义··················································································1 1.1.1 心电图······················································································1 1.1.2 血压·························································································2 1.1.3 脉率·························································································3 1.1.4 脉搏血氧饱和度·········································································4 1.2 生理参数监护技术的发展·····································································5 1.2.1 心电监护仪器的发展···································································5 1.2.2 无创血压测量技术的发展·····························································5 1.2.3 脉搏血氧饱和度测量技术的发展···················································7 1.2.4 多生理信号监护仪的发展·····························································8 1.3 本课题的设计内容及意义······································································9 第二章 生理参数检测电路········································································10 2.1 心电信号检测····················································································10 2.2 血压信号检测····················································································12 2.3 脉搏血氧信号检测··············································································15 2.3.1 脉搏SO2测量的基本原理···························································15 2.3.2 脉搏血氧信号检测电路······························································19 2.4 基于ADμC84×的高分辨率检测电路·······················

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