Siying Chen
As seen in:
Nature,
Wiley Online Library,
BMJ Global Health,
Frontiers,
MDPI,
Taylor & Francis Online,
Royal Society of Chemistry,
BioRxiv,
Cell Press,
Optica
and
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Tissue engineering scaffolds for the spinal cord: recent advances and future prospects
Abstract Spinal cord tissue engineering scaffolds represent a highly promising option for the treatment and repair of spinal cord injury (SCI). They have a wide range of potential applications and, as essential biomaterial carriers, can restore the multifunctional microenvironment. Since spinal cord tissue engineering scaffolds have developed rapidly in recent years, a comprehensive and up-to-date review outlining future research directions and summarizing current findings is urgently needed.
Experimental Study Of Mechanical Performance Of Fused Filament Fabricated Thin Walls Via Stress-Oriented Toolpath Planning Under Concentrated Compressive Load
Home > CSD > Libraries > LIBRARIESPUBLISHING > Library Publishing Division Conferences and Proceedings > MMRL-XMO Industrial Seminar > MMRL-XMO Industrial Seminar 2026 > 15 Proceedings of the XMO Industrial Seminar 2026: Excellence in Manufacturing and Operations Fused Filament Fabrication; Toolpath Optimization; Additive Manufactruing; Mechanical Characterization 10.5703/1288284318677 DOWNLOADS COinS Experimental Study Of Mechanical Performance Of Fused Filament Fabricated Thin Walls Via...
Effect of Quenching Temperature on the Microstructure and Mechanical Properties of 37CrMnMo Steel
Conflicts of Interest The authors declare no conflicts of interest. Data Availability Statement The data that support the findings of this study are available from the corresponding author upon reasonable request. Supporting Information Filename Description srin70634-sup-0001-SuppData-S1.pdf714.2 KB Supplementary Material References 1, , , , and , “Quasi-Static and Dynamic Responses of Advanced High Strength Steels: Experiments and Modeling,” International Journal of Plasticity 30-31 (2012): 1–17.
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