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一种作为无框架立体定向术器械固定装置的改良立体定向框架:技术说明。

A modified stereotactic frame as an instrument holder for frameless stereotaxis: Technical note.

作者信息

Patil Arun Angelo

机构信息

Division of Neurosurgery, University of Nebraska Medical Center, 982035 Nebraska Medical Center, Omaha, NE 68198-2035, USA.

出版信息

Surg Neurol Int. 2010 Oct 11;1:62. doi: 10.4103/2152-7806.70957.

Abstract

BACKGROUND

In order to improve the targeting capability and trajectory planning and provide a more secure probe-holding system, a simple method to use a stereotactic frame as an instrument holder for the frameless stereotactic system was devised.

METHODS

A modified stereotactic frame and BrainLab vector vision neuronavigation sys¬tem were used together. The patient was placed in the stereotactic head-holder to which a reference array of the neuronavigation system was attached. The pointer of the frameless system was placed in the probe-holder of the frame. An offset in distances was kept between the radius of the arch of the frame and the tip of the pointer so that the pointer was always outside the head during navigation. The offset correction was made on the BrainLab monitor so that the center of the arc of the frame was at the tip of the probe line on the monitor. Then, using the frame's coordinate adjuster system, the center of the arc was positioned on the target. This method was used to insert depth electrodes (seven procedures) and gain access to the temporal horn (three procedures).

RESULTS

Post-operative scans showed that the accuracy was within 2.5 mm in all three planes for depth electrode placement, and easy access to the temporal horn was obtained in two other patients.

CONCLUSION

This is a simple method to use a stereotactic frame to improve coordinate and trajectory adjustments and provides a better method to stabilize the pointer and the probe-holder during frameless stereotactic procedures.

摘要

背景

为了提高靶向能力和轨迹规划,并提供更安全的探头固定系统,设计了一种将立体定向框架用作无框架立体定向系统仪器固定器的简单方法。

方法

将改良的立体定向框架与BrainLab矢量视觉神经导航系统一起使用。患者置于立体定向头架中,神经导航系统的参考阵列连接到头架上。将无框架系统的指针置于框架的探头固定器中。在框架弓形半径与指针尖端之间保持一定距离偏移,以便在导航过程中指针始终位于头部外侧。在BrainLab监视器上进行偏移校正,使框架弧形中心位于监视器上探头线的尖端处。然后,使用框架的坐标调节系统将弧形中心定位在目标上。该方法用于插入深度电极(7例手术)和进入颞角(3例手术)。

结果

术后扫描显示,深度电极放置在所有三个平面上的准确性均在2.5毫米以内,另外两名患者能够轻松进入颞角。

结论

这是一种使用立体定向框架来改善坐标和轨迹调整的简单方法,并且为在无框架立体定向手术过程中稳定指针和探头固定器提供了更好的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d810/2958333/138d1f37bfc8/SNI-1-62-g001.jpg

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