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    • 2. 发明申请
    • NIBP TARGET INFLATION PRESSURE AUTOMATION USING DERIVED SPO2 SIGNALS
    • NIBP目标充气压力自动化使用衍生的SPO2信号
    • US20100249616A1
    • 2010-09-30
    • US12412057
    • 2009-03-26
    • Robert F. DonehooLawrence T. HershSai Kolluri
    • Robert F. DonehooLawrence T. HershSai Kolluri
    • A61B5/02
    • A61B5/022A61B5/02225A61B5/7239
    • A method and system for operating a non-invasive blood pressure monitor that utilizes an SpO2 plethysmograph waveform to determine the initial inflation pressure for the NIBP monitor. A pulse sensor is placed on the patient's limb distal to the blood pressure cuff and provides a pulse waveform to the NIBP monitor. The NIBP monitor calculates a second derivative of the pulse waveform, which includes a series of acceleration peaks corresponding to pulse signals within the pulse waveform. When the blood pressure cuff reaches systolic pressure, the acceleration peaks contained within the acceleration waveform are eliminated, thus providing an indication that the cuff pressure has reached systolic pressure for the patient. Use of the SPO2 plethysmograph signal to determine the initial inflation pressure reduces both the over-inflation of the blood pressure cuff and the under-inflation of the blood pressure cuff, which increases the rate at which the blood pressure measurement can be made while increasing patient comfort.
    • 一种用于操作非侵入性血压监测器的方法和系统,其利用SpO2体积描记器波形来确定NIBP监测器的初始充气压力。 将脉搏传感器放置在远离血压袖带的患者肢体上,并向NIBP监护仪提供脉搏波形。 NIBP监视器计算脉搏波形的二阶导数,其包括与脉冲波形内的脉冲信号相对应的一系列加速度峰值。 当血压袖带达到收缩压时,加速波形中包含的加速度峰值被消除,从而提供袖带压力已达到患者收缩压的指示。 使用SPO2体积描记器信号来确定初始充气压力会降低血压袖带的过度充气和血压袖带的欠充气,从而增加患者血压测量的速度,同时增加患者 安慰。
    • 3. 发明授权
    • Adaptive frequency domain filtering for improved non-invasive blood pressure estimation
    • 自适应频域滤波改善非侵入性血压估计
    • US08556821B2
    • 2013-10-15
    • US12034143
    • 2008-02-20
    • Lawrence T. HershSai KolluriRobert F. Donehoo
    • Lawrence T. HershSai KolluriRobert F. Donehoo
    • A61B5/22
    • A61B5/0225A61B5/02225A61B5/024A61B5/7257
    • A system for processing oscillometric data from a plurality of pressure steps to determine the blood pressure of a patient as disclosed herein. A heart rate monitor connected to the patient acquires the patient's heart rate. A time to frequency domain converter receives oscillometric data and converts the oscillometric data into the frequency domain. A harmonic frequency calculator is connected to the heart rate monitor and derives at least the heart rate fundamental frequency. A filter connected to the time to frequency domain converter and the harmonic frequency calculator that produces a filter frequency domain oscillometric signal. A reconstruction calculator receives the filtered frequency domain oscillometric signal and reconstructs a time domain oscillometric signal. A method of computing an oscillometric envelope for use in determining the blood pressure of a patient is also disclosed herein.
    • 一种用于从多个压力步骤处理示波数据以确定如本文所公开的患者的血压的系统。 连接到患者的心率监测器获取患者的心率。 一段时间到频域转换器接收示波数据并将示波数据转换成频域。 谐波频率计算器连接到心率监测器,并至少得出心率基频。 连接到时域转换器的滤波器和产生滤波器频域示波信号的谐波频率计算器。 重建计算器接收滤波后的频域示波信号并重构时域示波信号。 本文还公开了计算用于确定患者的血压的示波包络的方法。
    • 4. 发明授权
    • NIBP target inflation pressure automation using derived SPO2 signals
    • NIBP目标通气压力自动化使用衍生的SPO2信号
    • US08211030B2
    • 2012-07-03
    • US12412057
    • 2009-03-26
    • Robert F. DonehooLawrence T. HershSai Kolluri
    • Robert F. DonehooLawrence T. HershSai Kolluri
    • A61B5/02
    • A61B5/022A61B5/02225A61B5/7239
    • A method and system for operating a non-invasive blood pressure monitor that utilizes an SpO2 plethysmograph waveform to determine the initial inflation pressure for the NIBP monitor. A pulse sensor is placed on the patient's limb distal to the blood pressure cuff and provides a pulse waveform to the NIBP monitor. The NIBP monitor calculates a second derivative of the pulse waveform, which includes a series of acceleration peaks corresponding to pulse signals within the pulse waveform. When the blood pressure cuff reaches systolic pressure, the acceleration peaks contained within the acceleration waveform are eliminated, thus providing an indication that the cuff pressure has reached systolic pressure for the patient. Use of the SPO2 plethysmograph signal to determine the initial inflation pressure reduces both the over-inflation of the blood pressure cuff and the under-inflation of the blood pressure cuff, which increases the rate at which the blood pressure measurement can be made while increasing patient comfort.
    • 一种用于操作非侵入性血压监测器的方法和系统,其利用SpO2体积描记器波形来确定NIBP监测器的初始充气压力。 将脉搏传感器放置在远离血压袖带的患者肢体上,并向NIBP监护仪提供脉搏波形。 NIBP监视器计算脉搏波形的二阶导数,其包括与脉冲波形内的脉冲信号相对应的一系列加速度峰值。 当血压袖带达到收缩压时,加速波形中包含的加速度峰值被消除,从而提供袖带压力已达到患者收缩压的指示。 使用SPO2体积描记器信号来确定初始充气压力会降低血压袖带的过度充气和血压袖带的欠充气,从而增加患者血压测量的速度,同时增加患者 安慰。
    • 5. 发明申请
    • Adaptive Frequency Domain Filtering for Improved Non-Invasive Blood Pressure Estimation
    • 用于改善非侵入性血压估计的自适应频域滤波
    • US20090209868A1
    • 2009-08-20
    • US12034143
    • 2008-02-20
    • Lawrence T. HershSai KolluriRobert F. Donehoo
    • Lawrence T. HershSai KolluriRobert F. Donehoo
    • A61B5/02
    • A61B5/0225A61B5/02225A61B5/024A61B5/7257
    • A system for processing oscillometric data from a plurality of pressure steps to determine the blood pressure of a patient as disclosed herein. A heart rate monitor connected to the patient acquires the patient's heart rate. A time to frequency domain converter receives oscillometric data and converts the oscillometric data into the frequency domain. A harmonic frequency calculator is connected to the heart rate monitor and derives at least the heart rate fundamental frequency. A filter connected to the time to frequency domain converter and the harmonic frequency calculator that produces a filter frequency domain oscillometric signal. A reconstruction calculator receives the filtered frequency domain oscillometric signal and reconstructs a time domain oscillometric signal. A method of computing an oscillometric envelope for use in determining the blood pressure of a patient is also disclosed herein.
    • 一种用于从多个压力步骤处理示波数据以确定如本文所公开的患者的血压的系统。 连接到患者的心率监测器获取患者的心率。 一段时间到频域转换器接收示波数据并将示波数据转换成频域。 谐波频率计算器连接到心率监测器,并至少得出心率基频。 连接到时域到频域转换器的滤波器和产生滤波器频域示波信号的谐波频率计算器。 重建计算器接收滤波后的频域示波信号并重构时域示波信号。 本文还公开了计算用于确定患者的血压的示波包络的方法。
    • 7. 发明授权
    • Continuous, non-invasive technique for measuring blood pressure using impedance plethysmography
    • 使用阻抗体积描记法测量血压的连续,非侵入性技术
    • US06648828B2
    • 2003-11-18
    • US09683916
    • 2002-03-01
    • Bruce A. FriedmanRichard MederoLawrence T. HershSai Kolluri
    • Bruce A. FriedmanRichard MederoLawrence T. HershSai Kolluri
    • A61B502
    • A61B5/0285A61B5/021A61B5/02125A61B5/0295
    • Blood pressure is measured using the pulse transit time required for the blood volume pulse to propagate between two locations in an animal. Impedance plethysmography is employed to detect when the blood volume pulse occurs at one location. The plethysmograph may detect thoracic impedance to determine when the aortic heart valve opens or it may detect impedance at one location on a limb of the animal. Occurrence of the blood volume pulse at another location can be determined by impedance plethysmography or another technique, such as pulse oximetry. The calculation of cardiac stroke volume can be employed to compensate the derivation of the blood pressure for effects due to blood vessel compliance. A nonblood pressure monitor may periodically provide a reference blood pressure measurement that is used calibrate derivation of the blood pressure based on the pulse transit time.
    • 使用血液体积脉冲在动物的两个位置之间传播所需的脉搏传播时间来测量血压。 采用阻抗体积描记法检测血液体积脉搏何时出现在一个位置。 体积描记器可以检测胸部阻抗以确定主动脉瓣心脏瓣膜何时打开,或者可以在动物肢体的一个位置处检测阻抗。 可以通过阻抗体积描记法或其他技术(例如脉搏血氧测定法)来确定另一位置处的血容量脉冲的发生。 心脏搏动量的计算可用于补偿由于血管依从性引起的血压的推导。 非血压监视器可以周期性地提供参考血压测量,其用于基于脉冲传播时间来校准血压的推导。
    • 10. 发明申请
    • EXTRAPOLATING ICA KNOWLEDGE FROM ONE EPOCH TO ANOTHER FOR IMPROVED FETAL ECG SEPARATION
    • 将一个EPOCH的ICA知识扩展到另一个改进的FET心电图分离
    • US20090209874A1
    • 2009-08-20
    • US12034129
    • 2008-02-20
    • Sai KolluriBruce A. FriedmanLawrence T. HershRush Winslow Hood, JR.
    • Sai KolluriBruce A. FriedmanLawrence T. HershRush Winslow Hood, JR.
    • A61B5/0448
    • A61B5/0444A61B5/4362
    • A method of utilizing a maternal-fetal monitoring system to monitor the physiological properties of both a maternal patient and a fetus. A series of ECG electrodes are placed across the maternal patient's abdomen and receives ECG input waveforms across sixteen separate channels. The sixteen channels of information are processed using an ICA algorithm to generate a series of ICA output waveforms and a transfer matrix. Following the current epoch, the transfer matrix is applied to the input waveforms on a continuous basis. The conditioned input waveforms are displayed immediately following the first epoch and prior to the expiration of a subsequent epoch. The transfer matrix for the second epoch is combined with the transfer matrix for the first epoch to generate an updated transfer matrix. Various filtering operations on the transfer matrix coefficients may be used to find the updated transfer matrix before the end of the current epoch.
    • 一种利用母胎监测系统来监测母亲患者和胎儿的生理特性的方法。 一系列ECG电极放置在母亲患者的腹部,并接收跨16个独立通道的ECG输入波形。 使用ICA算法处理16个信道的信道,以生成一系列ICA输出波形和传送矩阵。 在当前时代之后,传输矩阵连续地应用于输入波形。 条件输入波形显示在第一纪元之后,并在随后的时期到期之前。 将第二纪元的传递矩阵与第一纪元的传输矩阵组合以生成更新的传送矩阵。 可以使用传递矩阵系数上的各种滤波操作来在当前时期结束之前找到更新的传输矩阵。