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Spectral characteristics of B-waves and other low-frequency activity.

机译:B波的频谱特征和其他低频活动。

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摘要

Low frequency oscillations of intracranial pressure (ICP) between 0.5 to 2.0 cycles/min have been termed B-waves. While such low frequency activity may be generated by cerebral vasomotor activity, activity in the B-wave band may also be related to other causes. The objective of this study is to: 1) describe the low frequency characteristics of ICP and arterial blood pressure (ABP) recordings with a mathematical model based on ventilator-induced intrathoracic pressure (ITP) modulation of arterial blood pressure; and 2) use the model to eliminate low frequency activity within the B-wave range unrelated to vasomotor activity. The model describes the frequency locations of spectra associated with ventilation about both the principal and first harmonic cardiac frequency to within 1% error. Spectra within the B-wave range harmonically related to the ventilator frequency were classified as caused by patient-ventilator interaction. Of 11 patients with severe head-injury, 64% (7/11) demonstrated B-wave activity, and 4 patients demonstrated the activity solely in the ICP recording. Variation of heart rate did not correspond to the occurrence of B-waves. The proposed model describes the low frequency spectra found within ABP and ICP recordings and can be used to eliminate spectra with the B-wave range related to ventilation.
机译:颅内压(ICP)在0.5至2.0个周期/分钟之间的低频振荡被称为B波。虽然这种低频活动可能是由脑血管舒缩活动产生的,但B波段的活动也可能与其他原因有关。这项研究的目的是:1)利用基于呼吸机对动脉血压的胸腔内压力(ITP)调制的数学模型描述ICP和动脉血压(ABP)记录的低频特性; 2)使用该模型消除与血管舒缩活动无关的B波范围内的低频活动。该模型将与通气相关的频谱的频率位置描述在主谐波和一次谐波心脏频率附近,误差在1%以内。与呼吸机频率谐波相关的B波范围内的频谱被归类为患者与呼吸机之间的相互作用所引起的。在11名严重颅脑损伤患者中,有64%(7/11)表现出B波活动,而4例仅在ICP记录中表现出该活动。心率的变化不对应于B波的发生。提出的模型描述了在ABP和ICP记录中发现的低频频谱,可用于消除与通风有关的B波范围内的频谱。

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