Aretxabaleta Maite, Roehler Ariadne, Poets Christian F, Xepapadeas Alexander B, Koos Bernd, Weise Christina
Department of Orthodontics in the University Centre of Dentistry, Oral Medicine and Maxillofacial Surgery, University Hospital Tübingen, Osianderstr. 2-8, 72076 Tübingen, Germany.
Medical Materials Science and Technology, University Hospital Tübingen, Osianderstr. 2-8, 72076 Tübingen, Germany.
Bioengineering (Basel). 2022 Dec 6;9(12):773. doi: 10.3390/bioengineering9120773.
Measuring the dimensions of personalized devices can provide relevant information for the production of future such devices used in various medical specialties. Difficulties with standardizing such measurement and obtaining high accuracy, alongside cost-intensive measuring methodologies, has dampened interest in this practice. This study presents a methodology for automatized measurements of personalized medical appliances of variable shape, in this case an orthodontic appliance known as Tübingen Palatal Plate (TPP). Parameters such as length, width and angle could help to standardize and improve its future use. A semi-automatic and custom-made program, based on Rhinoceros 7 and Grasshopper, was developed to measure the device (via an extraoral scanner digital file). The program has a user interface that allows the import of the desired part, where the user is able to select the necessary landmarks. From there, the program is able to process the digital file, calculate the necessary dimensions automatically and directly export all measurements into a document for further processing. In this way, a solution for reducing the time for measuring multiple dimensions and parts while reducing human error can be achieved.
测量个性化设备的尺寸可为未来生产用于各种医学专业的此类设备提供相关信息。标准化此类测量并获得高精度存在困难,再加上测量方法成本高昂,削弱了人们对这种做法的兴趣。本研究提出了一种用于自动测量形状可变的个性化医疗器具的方法,在此案例中是一种名为图宾根腭板(TPP)的正畸器具。长度、宽度和角度等参数有助于规范并改进其未来的使用。基于犀牛7(Rhinoceros 7)和蚱蜢(Grasshopper)开发了一个半自动定制程序,用于测量该设备(通过口外扫描仪数字文件)。该程序有一个用户界面,允许导入所需部件,用户能够选择必要的地标点。从那里开始,程序能够处理数字文件,自动计算必要的尺寸,并直接将所有测量结果导出到一个文档中以便进一步处理。通过这种方式,可以实现减少测量多个尺寸和部件所需时间并减少人为误差的解决方案。