Kiesel Matthias, Beyers Inga, Kalisz Adam, Joukhadar Ralf, Wöckel Achim, Herbert Saskia-Laureen, Curtaz Carolin, Wulff Christine
Department of Gynecology, University Hospital Würzburg, Josef-Schneider-Str. 4, 97080, Würzburg, Germany.
Institute of Electric Power Systems (IfES), Leibniz Universität, Hannover, Appelstraße 9A, 30167, Hannover, Germany.
3D Print Med. 2022 May 5;8(1):13. doi: 10.1186/s41205-022-00139-7.
Pelvic palpation is a core component of every Gynecologic examination. It requires vigorous training, which is difficult due to its intimate nature, leading to a need of simulation. Up until now, there are mainly models available for mere palpation which do not offer adequate visualization of the concerning anatomical structures. In this study we present a 3D printed model of the female pelvis. It can improve both the practical teaching of gynecological pelvic examination for health care professionals and the spatial understanding of the relevant anatomy.
We developed a virtual, simplified model showing selected parts of the female pelvis. 3D printing was used to create a physical model.
The life-size 3D printed model has the ability of being physically assembled step by step by its users. Consequently, it improves teaching especially when combining it with commercial phantoms, which are built solely for palpation training. This is achieved by correlating haptic and visual sensations with the resulting feedback received.
The presented 3D printed model of the female pelvis can be of aid for visualizing and teaching pelvic anatomy and examination to medical staff. 3D printing provides the possibility of creating, multiplying, adapting and sharing such data worldwide with little investment of resources. Thus, an important contribution to the international medical community can be made for training this challenging examination.
盆腔触诊是每次妇科检查的核心组成部分。它需要严格的训练,由于其私密性质,训练难度较大,因此需要模拟。到目前为止,主要有仅用于触诊的模型,这些模型无法充分展示相关解剖结构。在本研究中,我们展示了一种女性骨盆的3D打印模型。它可以改善医护人员妇科盆腔检查的实践教学以及对相关解剖结构的空间理解。
我们开发了一个虚拟的、简化的模型,展示女性骨盆的选定部分。使用3D打印创建一个实体模型。
真人大小的3D打印模型能够由使用者逐步进行物理组装。因此,它尤其在与仅用于触诊训练的商业模型相结合时能改善教学效果。这是通过将触觉和视觉感受与所得到的反馈相关联来实现的。
所展示的女性骨盆3D打印模型有助于向医护人员可视化和教授盆腔解剖及检查。3D打印提供了以很少的资源投入在全球创建、复制、修改和共享此类数据的可能性。因此,对于培训这项具有挑战性的检查,可为国际医学界做出重要贡献。