开发用于双半球深部脑刺激的3D打印、患者专用立体定向系统。

IF 3.2 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING 3D printing in medicine Pub Date : 2023-10-13 DOI:10.1186/s41205-023-00193-9
Patrick Knorr, Dirk Winkler, Fabian Kropla, Robert Möbius, Marcel Müller, Sebastian Scholz, Ronny Grunert
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引用次数: 0

摘要

该项目的目的是开发一种针对患者的立体定向系统,该系统可以同时治疗两个大脑半球,从而节省时间,并且包含所有空间轴,可以用作一次性产品。此外,与传统系统相比,目标是减少立体定向系统的尺寸和重量,以将手术期间清醒的患者的压力降至最低。此外,应避免目前强制性的计算机断层扫描,以免患者暴露在有害的X射线辐射下,并消除CT和MRI数据融合中的错误。3D打印最符合尺寸和重量方面的要求:一方面,塑料的使用具有相当大的减肥潜力。另一方面,单独部件的自由选择提供了优化立体定向系统的尺寸和形状的可能性,并使其适应单独的情况,同时保持相同的精度。一体化立体定向系统是通过多射流融合工艺生产的。因此,这些部件高度精确,使用稳定,重量轻,可消毒。在相互作用中成为潜在误差源的单个组件和接口的数量显著减少。此外,现场制造可加快系统的可用性。在该项目中,开发、打印和组装了一个针对患者的立体定向系统,该系统仅通过位于头骨上的三个骨锚即可执行脑深部刺激。预先开发的MRI标记可以通过套管直接拧到骨锚上,完全不需要CT扫描。不再需要对数据进行融合,这表明目标精度有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Development of a 3D-printed, patient-specific stereotactic system for bihemispheric deep brain stimulation.

The aim of the project was to develop a patient-specific stereotactic system that allows simultaneous and thus time-saving treatment of both cerebral hemispheres and that contains all spatial axes and can be used as a disposable product. Furthermore, the goal was to reduce the size and weight of the stereotactic system compared to conventional systems to keep the strain on the patient, who is awake during the operation, to a minimum. In addition, the currently mandatory computed tomography should be avoided in order not to expose the patient to harmful X-ray radiation as well as to eliminate errors in the fusion of CT and MRI data.3D printing best meets the requirements in terms of size and weight: on the one hand, the use of plastic has considerable potential for weight reduction. On the other hand, the free choice of the individual components offers the possibility to optimize the size and shape of the stereotactic system and to adapt it to the individual circumstances while maintaining the same precision. The all-in-one stereotactic system was produced by means of the Multi Jet Fusion process. As a result, the components are highly precise, stable in use, lightweight and sterilizable. The number of individual components and interfaces, which in their interaction are potential sources of error, was significantly reduced. In addition, on-site manufacturing leads to faster availability of the system.Within the project, a patient-specific stereotaxy system was developed, printed, and assembled, which enables the execution of deep brain stimulation via only three bone anchors located on the skull. Pre-developed MRI markers, which can be screwed directly onto the bone anchors via the sleeves, eliminate the need for a CT scan completely. The fusion of the data, which is no longer required, suggests an improvement in target accuracy.

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