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A spatiotemporal dipole simulation of biomagnetic fields from gastric electrical activity

机译:胃电活动对生物磁场的时空偶极模拟

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We simulated the magnetic fields from electrical activity of gastric smooth muscle using current dipoles with fixed location and time-varying moments. Dipoles were assigned frequencies, phases, and magnitudes characteristic of the known spatial properties of cellular oscillators in gastric smooth muscle. Additionally, we simulated cellular uncoupling by introducing random phase differences. We calculated extracorporeal magnetic fields from these source configurations for a multichannel SQUID magnetometer. Autoregressive spectral analysis was applied to determine frequency characteristics of both normal and uncoupled gastric magnetic fields. For normal muscle, propagation of gastric electrical activity was evident in time-sequenced isocontour plots of magnetic field strength, which were used to determine propagation velocity and direction. Uncoupled smooth muscle was less coordinated and absence of propagation or retrograde propagation was indicated in time-sequenced isocontour plots. The noninvasive measurement of gastric magnetic fields allows quantitative determination of the state of health of gastric smooth muscle.
机译:我们使用固定位置和时变矩的电流偶极子模拟了胃平滑肌电活动产生的磁场。为偶极子分配了胃平滑肌细胞振荡器已知空间特性的频率,相位和大小特征。此外,我们通过引入随机相位差来模拟细胞解耦。我们从这些源配置中为多通道SQUID磁力计计算了体外磁场。应用自回归频谱分析来确定正常和未耦合胃磁场的频率特性。对于正常的肌肉,胃电活动的传播在磁场强度按时间顺序排列的等高线图中很明显,这些图用来确定传播速度和方向。未耦合的平滑肌协调性较差,并且在按时间顺序排列的等高线图中表示没有传播或逆行传播。胃磁场的无创测量可以定量确定胃平滑肌的健康状态。

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