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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >The influence of micropore size on the mechanical properties of bulk hydroxyapatite and hydroxyapatite scaffolds.
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The influence of micropore size on the mechanical properties of bulk hydroxyapatite and hydroxyapatite scaffolds.

机译:微孔尺寸对块状羟基磷灰石和羟基磷灰石支架的力学性能的影响。

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While recognized as a promising bone substitute material, hydroxyapatite (HA) has had limited use in clinical settings because of its inherent brittle behavior. It is well established that macropores ( approximately 100 microm) in a HA implant, or scaffold, are required for bone ingrowth, but recent research has shown that ingrowth is enhanced when scaffolds also contain microporosity. HA is sensitive to synthesis and processing parameters and therefore characterization for specific applications is necessary for transition to the clinic. To that end, the mechanical behavior of bulk microporous HA and HA scaffolds with multi-scale porosity (macropores between rods in the range of 250-350 microm and micropores within the rods with average size of either 5.96 microm or 16.2 microm) was investigated in order to determine how strength and reliability were affected by micropore size (5.96 microm versus 16.2 microm). For the bulk microporous HA, strength increased with decreasing micropore size in both bending (19 MPa to 22 MPa) and compression (71 MPa to 110 MPa). To determine strength reliability, the Weibull moduli for the bulk microporous HA were determined. The Weibull moduli for bending increased (became more reliable) with decreasing pore size (7 to 10) while the Weibull moduli for compression decreased (became less reliable) with decreasing pore size (9 to 6). Furthermore, the elastic properties of the bulk microporous HA (elastic modulus of 30 GPa) and the compressive strengths of the HA scaffolds with multi-scale porosity (8 MPa) did not vary with pore size. The mechanisms responsible for the trends observed were discussed.
机译:羟基磷灰石(HA)虽然被公认为是一种有前途的骨替代材料,但由于其固有的脆性,因此在临床环境中的使用受到限制。众所周知,HA植入物或支架中的大孔(约100微米)是骨骼向内生长所必需的,但是最近的研究表明,当支架也包含微孔性时,向内生长会增强。 HA对合成和加工参数敏感,因此对于特定用途的表征对于过渡到临床是必需的。为此,研究了具有多尺度孔隙率的多孔微孔HA和HA支架的力学行为(棒之间的大孔在250-350微米范围内,棒内的微孔平均尺寸为5.96微米或16.2微米)。为了确定强度和可靠性如何受到微孔尺寸(5.96微米对16.2微米)的影响。对于块状微孔HA,在弯曲(19 MPa至22 MPa)和压缩(71 MPa至110 MPa)中,强度都随着微孔尺寸的减小而增加。为了确定强度可靠性,确定了整体微孔HA的Weibull模量。弯曲的威布尔模量随着孔径的减小(7到10)而增加(变得更可靠),而压缩的威布尔模量随着孔径的减小(9到6)而减小(变得更不可靠)。此外,块状微孔HA的弹性特性(弹性模量为30 GPa)和具有多尺度孔隙度(8 MPa)的HA支架的抗压强度不会随孔径的变化而变化。讨论了导致观察到的趋势的机制。

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