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A new approach to physiologic triggering in medical imaging using multiple heart sounds alone.

机译:仅使用多个心音的医学成像中生理触发的新方法。

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摘要

A new method for physiological synchronization of medical image acquisition using both the first and second heart sound has been developed. Heart sounds gating (HSG) circuitry has been developed which identifies, individually, both the first (S1) and second (S2) heart sounds from their timing relationship alone, and provides two synchronization points during the cardiac cycle. Identification of first and second heart sounds from their timing relationship alone and application to medical imaging has, heretofore, not been performed in radiology or nuclear medicine. The heart sounds are obtained as conditioned analog signals from a piezoelectric transducer microphone placed on the patient's chest. The timing relationships between the S1 to S2 pulses and the S2 to S1 pulses are determined using a logic scheme capable of distinguishing the S1 and S2 pulses from the heart sounds themselves, using their timing relationships, and the assumption that initially the S1-S2 interval will be shorter than the S2-S1 interval. Digital logic circuitry is utilized to continually track the timing intervals and extend the S1/S2 identification to heart rates up to 200 beats per minute (where the S1-S2 interval is not shorter than the S2-S1 interval). Clinically, first heart sound gating may be performed to assess the systolic ejection portion of the cardiac cycle, with S2 gating utilized for reproduction of the diastolic filling portion of the cycle. One application of HSG used for physiologic synchronization is in multigated blood pool (MGBP) imaging in nuclear medicine. Heart sounds gating has been applied to twenty patients who underwent analysis of ventricular function in Nuclear Medicine, and compared to conventional ECG gated MGBP. Left ventricular ejection fractions calculated from MGBP studies using a S1 and a S2 heart sound trigger correlated well with conventional ECG gated acquisitions in patients adequately gated by HSG and ECG. Heart sounds gating provided superior definition of the diastolic filling phase of the cardiac cycle by qualitative assessment of the left ventricular volume time-activity curves. Heart sounds physiological synchronization has potential to be used in other imaging modalities, such as magnetic resonance imaging, where the ECG is distorted due to the electromagnetic environment within the imager.
机译:已经开发了一种使用第一和第二心音来实现医学图像采集的生理同步的新方法。已经开发了心音门控(HSG)电路,该电路可单独从它们的定时关系分别识别第一(S1)和第二(S2)心音,并在心动周期中提供两个同步点。迄今为止,仅在放射线学或核医学中尚未从其定时关系识别第一和第二心音并将其应用于医学成像。心音是从放置在患者胸部的压电换能器传声器作为条件模拟信号获得的。 S1到S2脉冲与S2到S1脉冲之间的时序关系是使用逻辑方案确定的,该逻辑方案能够使用它们的时序关系从心音本身中区分出S1脉冲和S2脉冲,并假设初始为S1-S2间隔将比S2-S1间隔短。利用数字逻辑电路连续跟踪计时间隔,并将S1 / S2识别范围扩展到心率,每分钟高达200次(S1-S2间隔不短于S2-S1间隔)。临床上,可以执行第一心音门控以评估心动周期的收缩期喷射部分,而S2门控则用于循环的舒张期充盈部分的再生。用于生理同步的HSG的一种应用是核医学中的多级血池(MGBP)成像。心音门控已应用于20名接受核医学心室功能分析的患者,并与常规ECG门控MGBP进行了比较。使用S1和S2心音触发器通过MGBP研究计算出的左心室射血分数与通过HSG和ECG足够门控的患者的常规ECG门控采集有很好的相关性。通过定性评估左心室时间活动曲线,心音门控可以更好地定义心动周期的舒张期充盈期。心音生理同步有潜力用于其他成像方式,例如磁共振成像,由于成像器内的电磁环境,ECG会失真。

著录项

  • 作者

    Groch, Mark Walter.;

  • 作者单位

    Rush University, College of Nursing.;

  • 授予单位 Rush University, College of Nursing.;
  • 学科 Physics Nuclear.;Physics General.;Biophysics Medical.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 139 p.
  • 总页数 139
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 I712;
  • 关键词

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