Kang Kwan-Su, Park Kwang-Min, Ahn Jin-Woo, Jo Min-Young, Oh Yu-Rim, Youn Jin-Ho, Lee Jeong-Woo, Je Dong-Young, Jung Tae-Gon
Medical Device Development Center, Osong Medical Innovation Foundation, Cheongju-si 28160, Republic of Korea.
Department of Biomedical Engineering, School of Medicine, Chungbuk National University, Cheongju-si 28644, Republic of Korea.
Bioengineering (Basel). 2023 Nov 27;10(12):1365. doi: 10.3390/bioengineering10121365.
Computer modeling and simulation (CM&S) technology is widely used in the medical device industry due to its advantages such as reducing testing time and costs. However, the developer's parameter settings during the modeling and simulation process can have a significant impact on the results. This study developed a test model for the rotational shear strength of dental implants and the constraint force of total knee replacements based on CM&S technology and proposes ideal parameters to ensure reliability. For dental implants, the load area and sliding contact conditions were considered, and for total knee replacements, the friction coefficient, medial-lateral displacement, valgus-varus rotation, and elastic modulus were considered. By comparing the simulation results and mechanical tests, boundary conditions with an error rate of less than 1.5% were selected. When a jig (gripper and collector) was applied with the same boundary conditions, an error rate of 4822% occurred; otherwise, it was confirmed that the error rate was within 100.2%. The FE model was verified with an error of 2.49 to 3% compared to the mechanical test. The friction coefficient variable had the greatest influence on the results, accounting for 10 to 13%, and it was confirmed that valgus-varus rotation had a greater influence on the results than medial-lateral displacement. Relatively, the elastic modulus of the insert had the least effect on the results. These research results are expected to make CM&S techniques useful as a medical device digital development tool (M3DT) in the development of total knee replacements and dental implants.
计算机建模与仿真(CM&S)技术因其具有减少测试时间和成本等优势而在医疗器械行业中得到广泛应用。然而,开发者在建模与仿真过程中的参数设置会对结果产生重大影响。本研究基于CM&S技术开发了用于牙种植体旋转剪切强度和全膝关节置换约束力的测试模型,并提出了理想参数以确保可靠性。对于牙种植体,考虑了加载面积和滑动接触条件;对于全膝关节置换,考虑了摩擦系数、内外侧位移、内外翻旋转和弹性模量。通过比较仿真结果和力学测试,选择了误差率小于1.5%的边界条件。当在相同边界条件下应用夹具(夹持器和收集器)时,误差率为48%至22%;否则,确认误差率在10%至0.2%以内。有限元模型与力学测试相比,验证误差为2.49%至3%。摩擦系数变量对结果的影响最大,占10%至13%,并且确认内外翻旋转对结果的影响大于内外侧位移。相对而言,植入物的弹性模量对结果的影响最小。这些研究结果有望使CM&S技术在全膝关节置换和牙种植体的开发中作为医疗器械数字开发工具(M3DT)发挥作用。