首页> 外文会议>Conference on Coherence Domain Optical Methods and Optical Coherence Tomography in Biomedicine VIII; 20040126-20040128; San Jose,CA; US >Functional optical coherence tomography of stimulated and spontaneous scattering changes in neural tissue
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Functional optical coherence tomography of stimulated and spontaneous scattering changes in neural tissue

机译:神经组织中受激和自发散射变化的功能光学相干断层扫描

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摘要

We demonstrate the use of functional optical coherence tomography (fOCT) for observing action potential propagation by detecting scattering changes in neural tissue. FOCT images of nerve fibers from the abdominal ganglion of the sea slug Aplysia californica were obtained before, during, and after electrical stimulation with monophasic as well as biphasic voltage pulses. A reversible localized increase in optical scattering was noted in the images obtained during stimulation compared to the images obtained before stimulation. In addition, M (motion) - mode images showed transient optical changes due to spontaneous electrical activity. To exclude local laser-induced temperature changes as a source for stimulation, we monitored the temperature effects of prolonged laser exposure with a thermistor and found that there was no substantial temperature increase. We conclude that OCT is sensitive to the optical changes induced in electrically stimulated nerve fibers, and that there is minimal tissue heating and no detectable damage caused by exposure to the laser.
机译:我们演示了通过检测神经组织中的散射变化,使用功能性光学相干断层扫描(fOCT)来观察动作电位的传播。在单相和双相电压脉冲电刺激之前,期间和之后,从海参Aplysia californica的腹神经节获得了神经纤维的FOCT图像。与刺激之前获得的图像相比,在刺激期间获得的图像中注意到了光学散射的可逆局部增加。另外,由于自发的电活动,M(运动)模式图像显示出短暂的光学变化。为了排除激光引起的局部温度变化作为刺激源,我们用热敏电阻监测了长时间激光暴露的温度影响,发现温度没有明显增加。我们得出的结论是,OCT对电刺激的神经纤维中诱发的光学变化敏感,并且组织发热极小,并且没有因暴露于激光而引起的可检测到的损伤。

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