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经颅多普勒监测颅内动力学——一种新的多普勒指数:收缩期跨时程

Monitoring intracranial dynamics by transcranial Doppler--a new Doppler index: trans systolic time.

作者信息

Hanlo P W, Peters R J, Gooskens R H, Heethaar R M, Keunen R W, van Huffelen A C, Tulleken C A, Willemse J

机构信息

Department of Neurosurgery, University Hospital, Utrecht, The Netherlands.

出版信息

Ultrasound Med Biol. 1995;21(5):613-21. doi: 10.1016/0301-5629(94)00147-6.

Abstract

Since the introduction of transcranial Doppler sonography (TCD) several investigators have described the relationship between raised intracranial pressure (ICP) and Doppler waveform. This waveform has been expressed by several indices, such as the pulsatility index (PI) and the resistance index (RI). These indices are used to demonstrate the presence of raised ICP. In childhood hydrocephalus this information can be used to indicate the need for shunt implantation. However, PI and RI do prove to have certain disadvantages as both are strongly influenced by the heart rate. Moreover, both indices have a broad range of reference values, especially in children. Therefore, they are not very reliable for detecting insidious changes in the ICP. These drawbacks are due to the fact that these indices are composed of blood flow velocity measurements and do not embody the slope of the TCD waveform itself. An ideal TCD waveform analysis should be performed concerning the time-related changes of the velocities. We present a hydrodynamic model, with its electrical analogue, which shows the effects of raised ICP on the intracranial hemodynamic system. Based on these physical findings we define a new Doppler index, the Trans Systolic Time, reflecting specific changes in the TCD waveform induced by changes in the mean ICP. The applicability of this index, compared with PI and RI, is illustrated by consecutive simultaneous TCD and AFP measurements in three children with hydrocephalus.

摘要

自从经颅多普勒超声检查(TCD)问世以来,已有多位研究人员描述了颅内压(ICP)升高与多普勒波形之间的关系。这种波形已通过多个指标来表示,如搏动指数(PI)和阻力指数(RI)。这些指标用于证明ICP升高的存在。在儿童脑积水的情况下,这些信息可用于表明是否需要植入分流器。然而,PI和RI确实存在一定的缺点,因为两者都受到心率的强烈影响。此外,这两个指标都有广泛的参考值范围,尤其是在儿童中。因此,它们在检测ICP的隐匿性变化方面不是非常可靠。这些缺点是由于这些指标是由血流速度测量组成的,并没有体现TCD波形本身的斜率。理想的TCD波形分析应该考虑速度随时间的变化。我们提出了一个流体动力学模型及其电模拟模型,该模型展示了ICP升高对颅内血流动力学系统的影响。基于这些物理发现,我们定义了一个新的多普勒指标——收缩期跨时,它反映了平均ICP变化引起的TCD波形的特定变化。通过对三名脑积水患儿进行连续同步的TCD和AFP测量,说明了该指标与PI和RI相比的适用性。

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