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    • 1. 发明申请
    • SYSTEM FOR AUTOMATICALLY MINIMIZING CARDIAC OXYGEN CONSUMPTION AND CARDIAC DISEASE TREATING SYSTEM USING THE SAME
    • 使用相同方法自动最小化心脏氧化消耗和心脏疾病治疗系统
    • US20110098767A1
    • 2011-04-28
    • US12279753
    • 2007-02-16
    • Masaru SugimachiKazunori UemuraAtsunori KamiyaKenji SunagawaMichio Yamaji
    • Masaru SugimachiKazunori UemuraAtsunori KamiyaKenji SunagawaMichio Yamaji
    • A61N1/365
    • A61B5/0215A61B5/029A61B5/4866A61N1/36557
    • [PROBLEMS] A system for automatically minimizing cardiac oxygen consumption that is capable of estimating a patient's amount of cardiac oxygen consumption with high accuracy and moreover capable of minimizing the amount of cardiac oxygen consumption and a cardiac disease treating system are provided.[MEANS FOR SOLVING PROBLEMS] The cardiac disease treating system 10 comprises an input part 12 for inputting a patient's 20 indexes of kinetics of blood circulation including at least heart rate, a cardiac oxygen consumption calculation monitor unit 14 for calculating the estimated value of said patient's 20 amount of cardiac oxygen consumption based on the indexes of kinetics of blood circulation input from the input part 12, and a cardiac oxygen consumption curtailment unit 16 for comparing the heart rate input from the input part 12 and the critical heart rate minimizing the estimated value of amount of cardiac oxygen consumption calculated by the cardiac oxygen consumption monitor unit 14 and controlling the patient's 20 heart rate in conformity with the results of this comparison.
    • [问题]提供一种用于自动最小化心脏氧消耗的系统,其能够以高精度估计患者的心脏耗氧量并且还能够最小化心脏氧消耗量和心脏疾病治疗系统。 解决问题的手段心脏病治疗系统10包括:输入部12,用于输入至少包括心率的患者的血液循环动力学20个指标;心脏耗氧量计算监测单元14,用于计算所述患者的心率的估计值; 基于从输入部分12输入的血液循环动力学指标的20个心脏耗氧量和用于比较从输入部分12输入的心率和将估计值最小化的临界心率的心脏耗氧量削减单元16 由心脏氧消耗监测单元14计算的心脏氧消耗量,并根据该比较的结果控制患者的20个心率。
    • 3. 发明申请
    • BLOOD PRESSURE REGULATING SYSTEM BY SUBSTITUTING NATIVE BIOLOGICAL REGULATORY FUNCTION
    • 血液压力调节系统采用生物生物学调节功能
    • US20110144714A1
    • 2011-06-16
    • US13032923
    • 2011-02-23
    • Kenji SUNAGAWAMasaru SUGIMACHITakayuki SATO
    • Kenji SUNAGAWAMasaru SUGIMACHITakayuki SATO
    • A61N1/36
    • A61N1/36114A61N1/365A61N1/36514
    • A blood pressure regulating system uses a native regulation rule to estimate at least one nerve activity in response to blood pressure changes, comprising at least one blood pressure sensing means which senses blood pressure and outputs a input blood pressure signal, a calculating means which receives the input blood pressure signal, calculates a transfer function by computing a Fourier transform of a normal blood pressure signal and a normal sympathetic nerve activity from normal cardiovascular system, calculates an impulse response by computing an inverse Fourier transform of the transfer function, calculates a sympathetic nerve stimulation signal using a convolution integral between the input blood pressure signal and the impulse response, and outputs the sympathetic nerve stimulation signal, and a stimulating means which receives the sympathetic nerve stimulation signal, and stimulates the sympathetic nerve innervating vascular beds based on the sympathetic nerve stimulation signal such that blood pressure is regulated.
    • 血压调节系统使用天然调节规则来估计响应于血压变化的至少一个神经活动,包括至少一个感测血压并输出输入血压信号的血压感测装置,接收所述血压调节系统的计算装置 输入血压信号,通过计算正常血压信号的傅立叶变换和正常心血管系统的正常交感神经活动计算传递函数,通过计算转移函数的傅里叶逆变换计算脉冲响应,计算交感神经 刺激信号使用输入血压信号和脉冲响应之间的卷积积分,并输出交感神经刺激信号,以及刺激装置,其接收交感神经刺激信号,并且刺激基于交感神经支配血管的交感神经 刺激信号 使血压受到调节。
    • 4. 发明申请
    • CARDIAC PACING SYSTEM BY SUBSTITUTING NATIVE BIOLOGICAL REGULATORY FUNCTION
    • CARDIAC PACING系统通过取代原生态生物监管功能
    • US20110144710A1
    • 2011-06-16
    • US13030200
    • 2011-02-18
    • Kenji SUNAGAWAMasaru SUGIMACHITakayuki SATO
    • Kenji SUNAGAWAMasaru SUGIMACHITakayuki SATO
    • A61N1/365
    • A61N1/36114A61N1/365A61N1/36514
    • The present invention provides a cardiac pacing system based on biological activities, comprising: a) at least one nerve activity sensing means which senses nerve activity of a cardiac sympathetic nerve and/or a vagal nerve, and outputs a plurality of input nerve activity signals; b) a calculating means which receives the input nerve activity signals, calculates a transfer function by computing a Fourier transform of normal nerve activity signals and a normal heart rate signal from normal cardiovascular system, calculates an impulse response by computing an inverse Fourier transform of the transfer function, calculates a plurality of pacing signals for control of a heart rate using a convolution integral between the input nerve activity signals and the impulse response, and outputs the pacing signals; and c) a pacing means which receives the pacing signals, and stimulates the heart based on the pacing signals such that heart rate is regulated.
    • 本发明提供一种基于生物活性的心脏起搏系统,包括:a)至少一个感测心脏交感神经和/或迷走神经神经活动的神经活动感测装置,并输出多个输入神经活动信号; b)接收输入神经活动信号的计算装置,通过计算正常神经活动信号的傅立叶变换和来自正常心血管系统的正常心率信号来计算传递函数,通过计算脉冲响应来计算脉冲响应 传递函数,使用输入的神经活动信号和脉冲响应之间的卷积积分来计算多个起搏信号用于控制心率,并输出起搏信号; 以及c)起搏装置,其接收起搏信号,并且基于起搏信号刺激心脏使心率得到调节。
    • 8. 发明申请
    • Cardiac Disease Treatment System
    • 心脏疾病治疗系统
    • US20090221923A1
    • 2009-09-03
    • US11719400
    • 2004-11-18
    • Kazunori UemuraAtsumori KamiyaMasaru SugimachiKenji Sunagawa
    • Kazunori UemuraAtsumori KamiyaMasaru SugimachiKenji Sunagawa
    • A61B5/029A61B5/0215
    • A61M5/1723A61B5/02028A61B5/02158A61B5/029A61M5/14244A61M2230/30
    • Problems To provide a cardiac disease treatment system for accurately diagnosing the functional cause of an abnormality of a cardiac disease by analyzing the hemodynamic state of a patient, automatically performing medication in accordance with the diagnosis result, and treating the cardiac disease. Means for Solving Problems The cardiac disease treatment system is characterized by comprising input means (2) for inputting the cardiac output value of the patient, the left atrial pressure value and/or the right atrial pressure value, first calculating means (31) for calculating the pumping ability value of the left heart or the right heart from the inputted cardiac output and the left or right atrial pressure value, first comparing means (41) for comparing the pumping ability value of the left heart or the right heart with a target pumping ability value, and first medicating means (51) for medicating the patient in accordance with the result of the comparison by the first comparing means (41).
    • 问题提供一种心脏疾病治疗系统,用于通过分析患者的血液动力学状态,根据诊断结果自动进行药物,以及治疗心脏病,来准确诊断心脏病异常的功能原因。 解决问题的手段心脏疾病治疗系统的特征在于包括输入装置(2),用于输入患者的心输出量值,左心房压力值和/或右心房压力值,第一计算装置(31),用于计算 来自输入的心输出量的左心脏或右心脏的泵送能力值和左心房或右心房压力值,用于将左心脏或右心脏的抽吸能力值与目标泵送的第一比较装置(41) 能力值,以及用于根据第一比较装置(41)的比较结果对患者进行治疗的第一药剂装置(51)。
    • 10. 发明授权
    • Cardiac disease treatment system
    • 心脏病治疗系统
    • US08282563B2
    • 2012-10-09
    • US11719400
    • 2004-11-18
    • Kazunori UemuraAtsunori KamiyaMasaru SugimachiKenji Sunagawa
    • Kazunori UemuraAtsunori KamiyaMasaru SugimachiKenji Sunagawa
    • A61B5/02
    • A61M5/1723A61B5/02028A61B5/02158A61B5/029A61M5/14244A61M2230/30
    • ProblemsTo provide a cardiac disease treatment system for accurately diagnosing the functional cause of an abnormality of a cardiac disease by analyzing the hemodynamic state of a patient, automatically performing medication in accordance with the diagnosis result, and treating the cardiac disease.Means for solving problemsThe cardiac disease treatment system is characterized by comprising input means (2) for inputting the cardiac output value of the patient, the left atrial pressure value and/or the right atrial pressure value, first calculating means (31) for calculating the pumping ability value of the left heart or the right heart from the inputted cardiac output and the left or right atrial pressure value, first comparing means (41) for comparing the pumping ability value of the left heart or the right heart with a target pumping ability value, and first medicating means (51) for medicating the patient in accordance with the result of the comparison by the first comparing means (41).
    • 问题提供一种心脏疾病治疗系统,用于通过分析患者的血液动力学状态,根据诊断结果自动进行药物,以及治疗心脏病,来准确诊断心脏病异常的功能原因。 解决问题的手段心脏疾病治疗系统的特征在于包括用于输入患者的心输出量的输入装置(2),左心房压力值和/或右心房压力值,第一计算装置(31),用于计算 来自输入的心输出量的左心脏或右心脏的泵送能力值和左心房或右心房压力值,用于将左心脏或右心脏的抽吸能力值与目标泵送的第一比较装置(41) 能力值,以及用于根据第一比较装置(41)的比较结果对患者进行治疗的第一药剂装置(51)。