Limjeerajarus Nuttapol, Fakkao Mahunnop, Lampang Sorapon Na, Osathanon Thanaphum, Pavasant Prasit, Limjeerajarus Chalida Nakalekha
Research Center for Advanced Energy Technology, Faculty of Engineering, Thai-Nichi Institute of Technology, Bangkok 10250, Thailand.
Department of Anatomy, Faculty of Dentistry, Chulalongkorn University, Bangkok 10330, Thailand.
Data Brief. 2020 Apr 7;30:105476. doi: 10.1016/j.dib.2020.105476. eCollection 2020 Jun.
The data contained within this article relate to experimental data on mechanical behavior of an in-house cast hyperelastic Polydimethysiloxane (PDMS) based membrane (Silastic T-4, Dow Corning) for cell culture, which was used as a tool for applying tensile stress on cells and tissues. With the experimentally obtained material constants, tensile stress distribution over the membrane surface was numerically assessed using a finite element analysis (FEA). The membrane area having a uniform tensile stress distribution under different strain loading conditions of 1-20% was suggested for cell culture.
本文所包含的数据涉及一种内部铸造的基于超弹性聚二甲基硅氧烷(PDMS)的膜(道康宁公司的Silastic T-4)用于细胞培养的力学行为实验数据,该膜被用作向细胞和组织施加拉伸应力的工具。利用实验获得的材料常数,通过有限元分析(FEA)对膜表面的拉伸应力分布进行了数值评估。建议将在1-20%不同应变加载条件下具有均匀拉伸应力分布的膜区域用于细胞培养。