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[基于计算机断层扫描数据的Vibrant Bonebridge viewer的开发]

[Development of a computed tomography data-based Vibrant Bonebridge viewer].

作者信息

Todt I, Lamecker H, Ramm H, Frenzel H, Wollenberg B, Beleites T, Zahnert T, Thomas J P, Dazert S, Ernst A

机构信息

HNO-Klinik, Unfallkrankenhaus Berlin, Warenerstr. 7, 12683, Berlin, Deutschland,

出版信息

HNO. 2014 Jun;62(6):439-42. doi: 10.1007/s00106-014-2851-3.

Abstract

BACKGROUND

Because of the anatomy of the mastoid and the size of the actuator, positioning of the Vibrant Bonebridge B-FMT can be difficult without prior evaluation of the individual computed tomography (CT) scan of the temporal bone. Development of a user-friendly CT data viewer to enable positioning of the B-FMT in the temporal bone model, whilst identifying individual, potential anatomic conflicts and offering possible solutions could provide a useful tool for preoperative positioning.

OBJECTIVES

Aim of the study was to define the requirements of a Vibrant Bonebridge viewer and construct a prototype.

MATERIALS AND METHODS

Based on a ZIBAmira software version and inclusion of a B-FMT model upon creation of a model of the temporal bone-which allows the intuitive estimation of individual, anatomic conflicts-a Vibrant Bonebridge viewer was constructed.

RESULTS

The segmentation time of the individual digital imaging and communications in medicine (DICOM) data set is about 5 min. Positioning within the individual three-dimensional temporal bone model allows quantitative and qualitative estimation of conflicts (sigmoid sinus, middle cranial fossa) and determination of a preferred position for the B-FMT. Lifting of the B-FMT can be simulated with the help of a virtual washer.

CONCLUSION

The Vibrant Bonebridge viewer reliably allows simulation of B-FMT positioning. The clinical value of the viewer still has to be evaluated.

摘要

背景

由于乳突的解剖结构以及植入体的大小,在未事先评估颞骨的个体计算机断层扫描(CT)的情况下,很难对Vibrant Bonebridge骨桥听觉植入系统(B-FMT)进行定位。开发一种用户友好的CT数据查看器,以便在颞骨模型中对B-FMT进行定位,同时识别个体潜在的解剖结构冲突并提供可能的解决方案,可为术前定位提供有用的工具。

目的

本研究的目的是确定Vibrant Bonebridge骨桥听觉植入系统查看器的要求并构建一个原型。

材料与方法

基于ZIBAmira软件版本,并在创建颞骨模型时纳入B-FMT模型,这使得能够直观地估计个体解剖结构冲突,在此基础上构建了Vibrant Bonebridge骨桥听觉植入系统查看器。

结果

单个医学数字成像和通信(DICOM)数据集的分割时间约为5分钟。在个体三维颞骨模型中进行定位,可以对冲突(乙状窦、中颅窝)进行定量和定性评估,并确定B-FMT的首选位置。可以借助虚拟垫圈模拟B-FMT的提升。

结论

Vibrant Bonebridge骨桥听觉植入系统查看器能够可靠地模拟B-FMT的定位。该查看器的临床价值仍有待评估。

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