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Characterization of cardiac- and respiratory-driven cerebrospinal fluid motions using correlation mapping with asynchronous 2-dimensional phase contrast technique

机译:基于异步二维相位对比技术的相关映射表征心肌和呼吸驱动的脑脊液运动

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To investigate spatial distribution properties of the cardiac- and respiratory-driven cerebrospinal fluid (CSF) motions in the intracranial space, correlation mapping technique was conducted. Time series of CSF velocity were acquired in 7 healthy subjects of 26±5 years old under by asynchronous 2-dimensional phase contrast (2D-PC) method with 217-msec temporal resolution. The delay time and maximum correlation maps of the cardiac- and respiratory-driven CSF motions demonstrated clear differences in the propagation properties. When the reference region was set at anterior spinal subarachnoid space, the maximum correlation coefficients in the case of 6-sec respiratory period were 0.91±0.05 for cardiac-driven and 0.78±0.08 for respiratory-driven. They were 0.90±0.06 and 0.81±0.06 in the case of 10-sec period. The cardiac- and respiratory CSF motions differently distributed in intracranial space.
机译:为了研究心脏和呼吸驱动的脑脊液(CSF)运动在颅内空间中的空间分布性能,进行相关映射技术。通过具有217-毫秒的时间分辨率的异步二维相位对比度(2D-PC)方法,在7个健康受试者中获得了26±5岁的健康受试者的时间序列。心脏和呼吸驱动的CSF运动的延迟时间和最大相关图显示了传播特性的明显差异。当参考区域设定在脊髓蛛网膜下空间,6秒呼吸期的最大相关系数为3秒呼吸期为0.91±0.05,用于呼吸驱动的0.78±0.08。在10秒内的情况下,它们为0.90±0.06和0.81±0.06。心脏病和呼吸和呼吸的CSF运动在颅内空间分布。

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