首页> 外文期刊>Journal of neurosurgery. >Tissue resonance analysis; a novel method for noninvasive monitoring of intracranial pressure. Technical note.
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Tissue resonance analysis; a novel method for noninvasive monitoring of intracranial pressure. Technical note.

机译:组织共振分析;一种无创监测颅内压的新方法。技术说明。

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摘要

A number of noninvasive methods used to measure intracranial pressure (ICP) have been proposed in the literature. For a variety of reasons, however, none of these have displayed significant practical applicability. The authors describe their development of a new, computerized, portable device based on tissue resonance analysis (TRA) technology for the noninvasive monitoring and measurement of ICP. In response to the heart beat, the soft tissue and fluid compartments of the brain each exhibit characteristic vibration and mechanical resonant responses that radiate through the organs and tissues of the body. Patterns of vibration and mechanical resonance of various body organs and tissues are different and provide the possibility of extracting new and specific inforrmation in a noninvasive fashion. According to the TRA approach, ICP is dependent on the value of the dominant secondary (mechanical) resonance level of brain tissue. By digitally processing a reflected ultrasound signal (by using a concave ultrasonography probe with a carrier frequency of 1 MHz) from the third ventricle, the authors obtained a digital high-resolution echopulsogram, which visually is equivalent to ICP waves that are obtained invasively. The fast Fourier relationship of electrocardiogram and echopulsogram waves allowed the derivation of the secondary mechanical resonance levels. The authors developed a formula for a quantitative, noninvasive measurement of ICP, which uses information regarding multiple components of the intracranial space-both mechanical (secondary resonance) and physiological (time required for transfer of arterial blood to venous blood through brain tissue)-and the relationship between these components. A comparison of invasive and noninvasive ICP measurements was made during blinded trials in 40 patients with various diseases of the central nervous system, and ranges of ICP were measured from I to 66 mm Hg. The ICP values obtained using the two methods were highly correlated (r = 0.99), without a statistically significant difference between simultaneously obtained readings (p = 1). By using an integrative approach that reflects all components of the intracranial compartment, TRA allows for accurate noninvasive recordings of ICP. This method has significant advantages over other noninvasive technologies reported to date.
机译:文献中已经提出了许多用于测量颅内压(ICP)的非侵入性方法。然而,由于各种原因,这些都没有显示出明显的实际适用性。作者介绍了他们基于组织共振分析(TRA)技术的新型计算机化便携式设备的开发,该设备可用于ICP的无创监测和测量。响应心脏跳动,大脑的软组织和体液隔室均表现出特征性的振动和机械共振响应,这些响应通过身体的器官和组织辐射。各种人体器官和组织的振动和机械共振模式是不同的,并提供了以非侵入性方式提取新的特定信息的可能性。根据TRA方法,ICP取决于大脑组织的主要次级(机械)共振水平的值。通过对来自第三脑室的反射超声信号进行数字处理(使用具有1 MHz载波频率的凹型超声探头),作者获得了数字高分辨率回波图,其在视觉上等效于以侵入方式获得的ICP波。心电图和超声心动图波的快速傅里叶关系允许推导次级机械共振能级。作者开发了一种用于ICP的定量,非侵入性测量的公式,该公式使用了与颅内空间的多个组成部分有关的信息,包括机械性(二次共振)和生理性(通过脑组织将动脉血转移到静脉血所需的时间)和这些组件之间的关系。在40名患有各种中枢神经系统疾病的患者进行的盲法试验中,比较了有创和无创ICP测量值,测量的ICP范围为1至66 mm Hg。使用这两种方法获得的ICP值高度相关(r = 0.99),同时获得的读数之间无统计学显着差异(p = 1)。通过使用反映颅内隔室所有成分的综合方法,TRA可以准确记录ICP的无创性。与迄今报道的其他非侵入性技术相比,该方法具有明显的优势。

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