日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Characterization of Argopecten purpuratus Shells as Marine-Derived Bioceramics: Microstructural and Biological Insights for Tissue Engineering Applications

紫扇贝贝壳作为海洋生物陶瓷的特性研究:微观结构和生物学特性及其在组织工程应用中的意义

Millán, Carola; Benjumeda-Wijnhoven, Isabel; Contreras Raggio, José I; Muñoz, Astrid; Muñoz-Brautigam, Ignacia; Álamos, María F; Lardies, Marco A; Santibañez, Juan F; Lagos, Nelson A; Vivanco, Juan F

Effect of Processing Parameters on the Printability and Mechano-Biological Properties of Polycaprolactone-Bioactive Glass Composites for 3D-Printed Scaffold Fabrication.

加工参数对聚己内酯-生物活性玻璃复合材料的可打印性和力学生物学性能的影响及其在3D打印支架制造中的应用

Contreras Raggio José I, Pardo Miguel, Núñez Pablo, Millán Carola, Siqueira Gilberto, Palza Humberto, Vivanco Juan F, Aiyangar Ameet K

PorMe: A validated open-source image-based pore size and porosity measurement tool for 3D-printed structures

PorMe:一款经过验证的开源图像式3D打印结构孔径和孔隙率测量工具。

Contreras Raggio, José I; Pardo, Miguel; Weisse, Bernhard; Vivanco, Juan F; Aiyangar, Ameet K

Effect of Gelatin Coating and GO Incorporation on the Properties and Degradability of Electrospun PCL Scaffolds for Bone Tissue Regeneration

明胶涂层和氧化石墨烯掺入对电纺聚己内酯支架在骨组织再生中的性能和降解性的影响

Loyo, Carlos; Cordoba, Alexander; Palza, Humberto; Canales, Daniel; Melo, Francisco; Vivanco, Juan F; Baier, Raúl Vallejos; Millán, Carola; Corrales, Teresa; Zapata, Paula A

Plasticity in organic composition maintains biomechanical performance in shells of juvenile scallops exposed to altered temperature and pH conditions

有机成分的可塑性维持了幼年扇贝贝壳在温度和pH值变化条件下的生物力学性能。

Lagos, Nelson A; Benítez, Samanta; Grenier, Cristian; Rodriguez-Navarro, Alejandro B; García-Herrera, Claudio; Abarca-Ortega, Aldo; Vivanco, Juan F; Benjumeda, Isabel; Vargas, Cristian A; Duarte, Cristian; Lardies, Marco A

Microporosity Clustering Assessment in Calcium Phosphate Bioceramic Particles

磷酸钙生物陶瓷颗粒微孔聚集性评估

Vallejos Baier, Raúl; Benjumeda Wijnhoven, Isabel; Irribarra Del Valle, Víctor; Millán Giovanetti, Carola; Vivanco, Juan F

Combined exposure to big endothelin-1 and mechanical loading in bovine sternal cores promotes osteogenesis.

牛胸骨核心同时暴露于大内皮素-1和机械负荷可促进骨生成

Meyer Luisa A, Johnson Michael G, Cullen Diane M, Vivanco Juan F, Blank Robert D, Ploeg Heidi-Lynn, Smith Everett L