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Comparison of Titanium and Bioresorbable Plates in A Shape Plate Properties—Finite Element Analysis

机译:钛板和生物吸收板的 A形板性能比较-有限元分析

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摘要

(1) Background: The main disadvantage of rigid fracture fixation is remain material after healing period. Implementation of resorbable plates prevents issues resulting from left plates. The aim of this study is to compare the usage of bioresorbable and titanium “A” shape condyle plate in condylar fractures. (2) Methods: Thickness of 1.0 mm, height of 31 mm, and width of 19 mm polylactic acid (PLLA) and titanium “A” shape plate with 2.0 mm-wide connecting bar and 9 holes were tested with finite element analysis in high right condylar neck fracture. (3) Results: On bone surface the highest stress is on the anterior bridge around first hole (approx. 100 MPa). The highest stress on screws is located in the first screw around plate in the anterior bridge and is greater in titanium (150 MPa) than PLLA (114 MPa). (4) Conclusion: Pressure on bone in PLLA osteosynthesis is two times higher than in titanium fixation. On small areas where pressure on bone is too high it causes local bone degradation around the fracture and may delay the healing process or make it impossible. Fixation by PLLA is such flexible that bone edges slide and twist what may lead to degradation of callus.
机译:(1)背景:刚性骨折固定的主要缺点是愈合期过后仍会残留材料。可吸收板的实施可防止残留板引起的问题。这项研究的目的是比较bio突骨折中生物可吸收性和钛“ A”形con片的使用。 (2)方法:使用1.0毫米厚的聚乳酸(PLLA)和厚度为19毫米的聚乳酸(PLLA)和宽度为2.0毫米的连接杆和9个孔的钛“ A”型板进行了有限元分析,右con突颈骨折。 (3)结果:在骨表面上,最大应力在第一个孔周围的前桥上(约100 MPa)。螺钉上的最高应力位于前桥周围板的第一个螺钉中,钛(150 MPa)大于PLLA(114 MPa)。 (4)结论:PLLA骨合成中对骨骼的压力是钛固定的两倍。在骨头上压力过高的小区域,它会导致骨折周围的局部骨头退化,并可能延迟愈合过程或使其无法进行。 PLLA的固定非常灵活,骨头边缘会滑动并扭曲,这可能导致愈伤组织退化。

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