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首页> 外文期刊>American Journal of Physiology >Origin and propagation of human gastric slow-wave activity defined by high-resolution mapping
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Origin and propagation of human gastric slow-wave activity defined by high-resolution mapping

机译:高分辨率映射定义的人胃慢波活动的起源和传播

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摘要

Slow waves coordinate gastric motility, and abnormal slow-wave activity is thought to contribute to motility disorders. The current understanding of normal human gastric slow-wave activity is based on extrapolation from data derived from sparse electrode recordings and is therefore potentially incomplete. This study employed high-resolution (HR) mapping to reevaluate human gastric slow-wave activity. HR mapping was performed in 12 patients with normal stomachs undergoing upper abdominal surgery, using flexible printed circuit board (PCB) arrays (interelectrode distance 7.6 mm). Up to six PCBs (192 electrodes; 93 cm 2) were used simultaneously. Slow-wave activity was characterized by spatiotemporal mapping, and regional frequencies, amplitudes, and velocities were defined and compared. Slow-wave activity in the pacemaker region (mid to upper corpus, greater curvature) was of greater amplitude (mean 0.57 mV) and higher velocity (8.0 mm/s) than the corpus (0.25 mV, 3.0 mm/s) (P 0.001) and displayed isotropic propagation. A marked transition to higher amplitude and velocity activity occurred in the antrum (0.52 mV, 5.9 mm/s) (P 0.001). Multiple (3- 4) wavefronts were found to propagate simultaneously in the organoaxial direction. Frequencies were consistent between regions (2.83 ± 0.35 cycles per min). HR mapping has provided a more complete understanding of normal human gastric slow-wave activity. The pacemaker region is associated with highamplitude, high-velocity activity, and multiple wavefronts propagate simultaneously. These data provide a baseline for future HR mapping studies in disease states and will inform noninvasive diagnostic strategies.
机译:慢波坐标胃动力,并且被认为有助于运动障碍的异常慢波活动。目前对正常人胃慢波活动的理解基于来自稀疏电极记录的数据的外推,因此可能不完整。本研究采用了高分辨率(HR)测绘来重新评估人胃慢波活动。使用柔性印刷电路板(PCB)阵列(PCB)阵列(互通电极距离7.6mm),在12名胃部胃部进行胃部进行正常胃部进行HR映射。同时使用多达六种PCB(192个电极; 93cm 2)。慢波活性的特征在于时尚映射,并定义了区域频率,幅度和速度。起搏器区域(中部到上部导管,更大的曲率)的慢波活性具有更大的振幅(平均0.57mV)和比胶质胶质(0.25mV,3.0mm / s)更高的速度(8.0mm / s)(P&lt ; 0.001)并显示出各向同性繁殖。在胃窦(0.52mV,5.9mm / s)中发生标记为较高振幅和速度活性的过渡(P <0.001)。发现多个(3-4)波前在有机方向上同时传播。频率在地区之间一致(每分钟2.83±0.35周期)。人力资源映射提供了对正常人类胃慢波活动的更完整的理解。起搏器区域与高度敏感,高速度活动相关联,并且多个波线同时传播。这些数据为疾病状态的未来人力资源映射研究提供了基准,并将告知非侵入性诊断策略。

著录项

  • 来源
    《American Journal of Physiology》 |2010年第1期|共8页
  • 作者单位

    Dept. of Surgery Univ. of Auckland Private Bag 92019 Auckland 1142 New Zealand Auckland;

    Auckland Bioengineering Institute University of Auckland Auckland New Zealand;

    Auckland Bioengineering Institute University of Auckland Auckland New Zealand;

    Dept. of Surgery Univ. of Auckland Private Bag 92019 Auckland 1142 New Zealand Auckland;

    Auckland Bioengineering Institute University of Auckland Auckland New Zealand Department of;

    Dept. of Surgery Univ. of Auckland Private Bag 92019 Auckland 1142 New Zealand;

    Auckland Bioengineering Institute University of Auckland Auckland New Zealand Department of;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    Activation mapping; Electrogastrography; Gastric electrical activity; Pacemaker;

    机译:激活映射;电谱图;胃电活动;起搏器;

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