supported by the National Natural Science Foundation of China(grant Nos.82272504 and 82072456);the National Key R&D Program of China(No.2018YFB1105100);the Department of Science and Technology of Jilin Province,P.R.C(grant Nos.20200404202YY,20200403086SF,20210101321JC,20210204104YY,20200201453JC,20220204119YY,202201ZYTS131,202201ZYTS129,20220401084YY,202201ZYTS505,and YDZJ202301ZYTS076);the Department of finance in Jilin province(grant No.2020SCZT037);the Jilin Province Development and Reform Commission,P.R.C(grant Nos.2018C010 and 2022C043–5);the Interdisciplinary Integration and Cultivation Project of Jilin University(grant No.JLUXKJC2020307).
The Voronoi-tessellation method is a promising technique for porous implant design as it mimics the irregular structure of bone trabeculae very well.However,the optimal pore size distribution of Voronoibased trabecula...