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John Kenny Victor
Porous biomaterials can be additively manufactured with micro-architecture tailor-made to fulfill the stringent mechanic-biological necessities imposed via bone substitute implants. In a preceding investigation, we brought structurally porous biomaterials, proposing energy 5 instances more desirable than commercially accessible porous materials, and verified their bone ingrowth functionality in an in vivo dogs model. While encouraging, the manufactured biomaterials confirmed geometric mismatches between their inside porous structure and that of its as-designed counterpart, as nicely as discrepancies between estimated and examined mechanical properties, troubles now not entirely elucidated. In this work, we advise a systematic strategy integrating computed tomography, mechanical testing, and statistical evaluation of geometric imperfections to generate statistical primarily based numerical fashions of high-strength additively manufactured porous biomaterials.