Showing results (1-10 of 16) with videos related to
Sort By:
Pageof 2
Biomaterials Research|December 29, 2022
Periosteum-inspired in situ CaP generated nanocomposite hydrogels with strong bone adhesion and superior stretchability for accelerated distraction osteogenesisTengfei Lou, Kai Chen, Qiyu Luo, et al.Injury|July 15, 2025
Retrospective study on treatment outcomes of two-stage bone grafting vs. amputation in distal phalangeal osteomyelitisJinlong Yu, Xiao Ma, Yunlong Zhang, et al.Journal of Nanobiotechnology|December 19, 2025
Hierarchical chirality of bone cement drives osteoinduction via integrin dependent signaling to accelerate critical bone defect regenerationJinzhou Du, Liang Yang, Lingchi Kong, et al.The Bone & Joint Journal|November 30, 2025
Shortening and in situ relengthening versus bone transport for the treatment of metaphyseal defect of lower limb long bonesYu Lu, Zun Ren, Weijie Cai, et al.ACS Nano|February 19, 2025
Chirality Regulates Bone Regeneration through Mechanoresponse and ImmunoregulationTengfei Lou, Xu Wang, Juehong Li, et al.Journal of Biomaterials Applications|May 29, 2020
High-purity magnesium pin enhances bone consolidation in distraction osteogenesis model through activation of the VHL/HIF-1α/VEGF signalingMusha Hamushan, Weijie Cai, Yubo Zhang, et al.Neural Plasticity|March 8, 2021
Celecoxib-Loaded Electrospun Fibrous Antiadhesion Membranes Reduce COX-2/PGE2 Induced Inflammation and Epidural Fibrosis in a Rat Failed Back Surgery Syndrome ModelWei Wang, Yunhao Wang, Tengfei Lou, et al.Biomedical Materials (Bristol, England)|December 10, 2016
Reduced antibacterial property of metallic magnesium in vivoPeng Hou, Changli Zhao, Pengfei Cheng, et al.Gels (Basel, Switzerland)|May 26, 2023
Multifunctional Extracellular Matrix Hydrogel with Self-Healing Properties and Promoting Angiogenesis as an Immunoregulation Platform for Diabetic Wound HealingZhenghua Sun, Hao Xiong, Tengfei Lou, et al.Bioactive Materials|March 4, 2025
Polylactic acid electrospun membranes coated with chiral hierarchical-structured hydroxyapatite nanoplates promote tendon healing based on a macrophage-homeostatic modulation strategyGang Luo, Juehong Li, Shuai Chen, et al.Pageof 2