A Phenomenological Mathematical Modelling Framework for the Degradation of Bioresorbable Composites
暫譯: 生物可吸收複合材料劣化的現象學數學建模框架

Moreno-Gomez, Ismael

  • 出版商: Springer
  • 出版日期: 2019-04-16
  • 售價: $6,780
  • 貴賓價: 9.5$6,441
  • 語言: 英文
  • 頁數: 325
  • 裝訂: Hardcover - also called cloth, retail trade, or trade
  • ISBN: 3030049892
  • ISBN-13: 9783030049898
  • 海外代購書籍(需單獨結帳)

商品描述

This book presents a generalised computational model for the degradation of resorbable composites, using analytic expressions to represent the interwoven phenomena present during degradation. It then combines this modelling framework with a comprehensive database of quantitative degradation data mined from existing literature and from novel experiments, to provide new insights into the interrelated factors controlling degradation.

Resorbable composites made of biodegradable polyesters and calcium-based ceramics have significant therapeutic potential as tissue engineering scaffolds, as temporary implants and as drug-loaded matrices for controlled release. However, their degradation is complex and the rate of resorption depends on multiple connected factors such as the shape and size of the device, polymer chemistry and molecular weight, particle phase, size, volume fraction, distribution and pH-dependent dissolution properties. Understanding and ultimately predicting the degradation of resorbable composites is of central importance if we are to fully unlock the promise of these materials.

商品描述(中文翻譯)

本書提出了一個通用的計算模型,用於可再吸收複合材料的降解,利用解析表達式來表示降解過程中交織的現象。接著,將這一建模框架與從現有文獻和新實驗中挖掘出的定量降解數據的綜合數據庫相結合,以提供對控制降解的相互關聯因素的新見解。

由可生物降解聚酯和鈣基陶瓷製成的可再吸收複合材料在組織工程支架、臨時植入物以及作為控制釋放的藥物載體方面具有重要的治療潛力。然而,它們的降解過程非常複雜,吸收速率取決於多個相互連結的因素,例如裝置的形狀和大小、聚合物的化學性質和分子量、顆粒相、大小、體積分數、分佈以及pH依賴的溶解特性。如果我們要充分發揮這些材料的潛力,理解並最終預測可再吸收複合材料的降解至關重要。