Department of Radiology, Medical University Innsbruck, Anichstraße 35, 6020, Innsbruck, Austria.
Department of Neurosurgery, Medical University Innsbruck, Anichstraße 35, 6020, Innsbruck, Austria.
Neurosurg Rev. 2023 Aug 1;46(1):190. doi: 10.1007/s10143-023-02090-5.
Occlusion of a ventriculoperitoneal shunt system is a potentially life-threatening complication in patients suffering from hydrocephalus. However, there is no imaging established as standard approach in this acute setting. In the present study, we evaluate the use of superb microvascular imaging for investigation of the patency of ventriculoperitoneal shunt systems. Simulation of low flow rates of cerebrospinal fluid through a small diameter CSF shunt system was performed in a dedicated phantom in order to proof the principle of superb microvascular imaging (SMI) being feasible for the measurement of slow CSF flow through the dedicated CSF shunt system. SMI is able to detect low flow rates in CSF shunt systems effectively and fast. Visualization of a Duplex ultrasound flow and Doppler wave pattern in the VP shunt system after the reservoir has been pressed confirms patency. SMI is an effective method for evaluating CSF shunt patency and diagnosing shunt obstruction. This bears the potential to facilitate evaluation of clinically symptomatic VP shunt patients in an acute setting. Further evaluation of ultrasound flow patterns is granted.
脑室-腹腔分流系统阻塞是脑积水患者潜在的危及生命的并发症。然而,在这种急性情况下,没有成像方法被确立为标准方法。在本研究中,我们评估了超微血流成像在脑室-腹腔分流系统通畅性检查中的应用。在专门的体模中模拟了通过小直径脑脊液分流系统的低流量脑脊液,以证明超微血流成像(SMI)测量专用脑脊液分流系统中缓慢脑脊液流动的原理是可行的。SMI 能够有效地快速检测脑脊液分流系统中的低流量。按压储液器后,VP 分流系统中可以观察到双功能超声血流和多普勒波模式,这证实了其通畅性。SMI 是评估脑脊液分流通畅性和诊断分流阻塞的有效方法。这有可能促进在急性情况下对有临床症状的 VP 分流患者进行评估。进一步对超声血流模式进行评估。