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期刊名:International journal of bioprinting

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ISSN:2424-7723

e-ISSN:2424-8002

IF/分区:6.0/Q1

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共收录本刊相关文章索引373
Clinical Trial Case Reports Meta-Analysis RCT Review Systematic Review
Classical Article Case Reports Clinical Study Clinical Trial Clinical Trial Protocol Comment Comparative Study Editorial Guideline Letter Meta-Analysis Multicenter Study Observational Study Randomized Controlled Trial Review Systematic Review
Lingling Fang,Yu Liu,Junfeng Qiu et al. Lingling Fang et al.
The rising global incidence of cancer and high attrition rates of anticancer drugs make it imperative to design novel screening platforms to increase the success rate of chemotherapeutic agents. Advances in cell culture models from two-dime...
Marius Köpf,Ramin Nasehi,Franziska Kreimendahl et al. Marius Köpf et al.
Bioprinting-associated shear stress and hydrostatic pressure can negatively affect the functionality of dispensed cells. We hypothesized that these mechanical stimuli can potentially affect the angiogenic potential of human umbilical vein e...
Soja Saghar Soman,Mano Govindraj,Noura Al Hashimi et al. Soja Saghar Soman et al.
Bioprinting of nervous tissue is a major challenge in the bioprinting field due to its soft consistency and complex architecture. The first step in efficient neural bioprinting is the design and optimization of printable bioinks which favor...
Daofeng Wang,Lin Han,Gaoxiang Xu et al. Daofeng Wang et al.
Precise and shape-matching osteotomy models are determinants of the experimental homogeneity in the assessment of orthopedic biomechanical properties. At present, however, publications on detailed description of osteotomy in bone biomechani...
Yuanyuan Xu,Chengjin Wang,Yang Yang et al. Yuanyuan Xu et al.
Three-dimensional (3D) bioprinting offers a potentially powerful new approach to reverse engineering human pathophysiology to address the problem of developing more biomimetic experimental systems. Human tissues and organs are multiscale an...
Mingjun Xie,Yuan Sun,Ji Wang et al. Mingjun Xie et al.
Centimeter-scale tissue with angiogenesis has become more and more significant in organ regeneration and drug screening. However, traditional bioink has obvious limitations such as balance of nutrient supporting, printability, and vasculari...
Xie Neng,Shi Guohong,Shen Yuling et al. Xie Neng et al.
Three-dimensional (3D) bioprinting is an emerging research direction in bio-manufacturing, a landmark in the shift from traditional manufacturing to high-end manufacturing. It integrates manufacturing science, biomedicine, information techn...
Jessica Mancilla-De-la-Cruz,Marisela Rodriguez-Salvador,Jia An et al. Jessica Mancilla-De-la-Cruz et al.
Since the 1930s, new methods of drug delivery, such as implantable devices with drug release control, have been developed. However, manufacturing techniques require bulk due to high initial production costs. Three-dimensional (3D) printing,...
Zhihong Dong,Jiabao Gong,Haowei Zhang et al. Zhihong Dong et al.
Three-dimensional (3D) printing technology provides advanced technical support for designing personalized bone tissue engineering scaffold. In this study, two porous diffusing models, namely, average and layered perforated cylindrical scaff...
Zeming Gu,Mingjun Xie,Shang Lv et al. Zeming Gu et al.
Vessel-on-a-chips, which can be used to study microscale fluid dynamics, tissue-level biological molecules delivery and intercellular communication under favorable three-dimensional (3D) extracellular matrix microenvironment, are increasing...