Comparative experimental study of biomechanical features of suture materials in tendon repair

Q3 Medicine Genij Ortopedii Pub Date : 2024-02-21 DOI:10.18019/1028-4427-2024-30-1-99-106
V. M. Malishevsky, R. V. Paskov, K. S. Sergeev
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Abstract

Introduction Many different suture configurations and pathomorphology of tendon repair have been described for tendon repair over the past 20 years. However, the biomechanical properties of suture material at primary flexor tendon repair have not been sufficiently explored. A cyclic loading test is performed to evaluate the performance of the different sutures under repeated loading conditions simulating dynamic conditions in postoperative rehabilitation procedures.The objective was to compare the strength of suture materials under cyclic loading on a biological model of a tendon.Material and methods Eighty porcine digital flexor tendons were examined in a pilot study. The sutured tendons were tested with a universal testing machine. Tendon repair was produced using polypropylene in group I, braided polyamide suture in group II, complex polytetrafluoroethylene thread in group III and a thread of superelastic titanium nickelide in group IV. The standard Chang protocol was used for cyclic loading.Results The percentage of intact sutures was 25 % in group I and in group II, 80 % in group III and 85 % in group IV after completing the entire load cycle. A pairwise comparison showed suture disruption being more common for group I and group II as compared to group III and group IV. Irreversible gap was more common for group 1 as compared to group IV. Neither knot ruptures nor tissue cutting were seen in the groups.Discussion The topic of biomechanical properties of suture material remains poorly understood. Although static load testing is commonly used in current experimental studies and cyclic testing is suitable for simulating postoperative conditions. The search continues for the “ideal” suture material for flexor tendon repair to prevent tears and retain tensile properties until the repair reaches strength.Conclusion The threads of polytetrafluoroethylene and nickelide-titanium showed the best biomechanical properties for tendon repair in the form of linear strength, good elasticity and low plasticity of the suture material. There were no significant differences between polypropylene and braided polyamide threads.
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肌腱修复中缝合材料生物力学特征的对比实验研究
引言 在过去的 20 年中,针对肌腱修复有许多不同的缝合配置和病理形态学描述。然而,对于屈肌腱原发性修复时缝合材料的生物力学特性还没有进行充分的探讨。为了评估不同缝合线在模拟术后康复过程中动态条件的重复加载条件下的性能,我们进行了循环加载试验,目的是比较缝合材料在肌腱生物模型上循环加载条件下的强度。使用万能试验机对缝合肌腱进行了测试。第一组使用聚丙烯进行肌腱修复,第二组使用聚酰胺编织缝线,第三组使用复合聚四氟乙烯线,第四组使用超弹性镍化钛线。结果 在完成整个加载周期后,I 组和 II 组缝合线完好率为 25%,III 组为 80%,IV 组为 85%。成对比较显示,与第三组和第四组相比,第一组和第二组更常见缝合线断裂。与第四组相比,第一组出现不可逆转缝隙的情况更常见。各组均未出现线结断裂或组织切割。尽管目前的实验研究通常采用静态载荷测试,循环测试也适用于模拟术后情况。结论 聚四氟乙烯线和镍化钛线在肌腱修复中表现出最佳的生物力学特性,即线性强度高、弹性好、可塑性低。聚丙烯和聚酰胺编织线之间没有明显差异。
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来源期刊
Genij Ortopedii
Genij Ortopedii Medicine-Surgery
CiteScore
0.70
自引率
0.00%
发文量
104
审稿时长
12 weeks
期刊介绍: Journal’s main goal is to contribute to the development of the contemporary medical science via presentation of fundamental and applied original scientific studies to the scientific and practical medical community that would widen and deepen the understanding of the most important problems in the field of traumatology, orthopaedics, and related specialties. Our journal provides a direct open access to its content which is based on the principle that the open access option promotes global exchange of knowledge and experience. Journal’s strategy: -Development of the journal as a scientific platform for researchers, doctors, post-graduates and residents -Attraction of highly-cited authors to publish their studies -Selection of manuscripts of scientific interest for readers that will impact on journal citation index in RINC -Increase in the portion of publications submitted by foreign authors and studies conducted in association with foreign scientists; growth of citations in the journals that are included into global systems of indexing and reputable databases -Improvement of the Journal’s web site in two languages for a greater accessibility by authors and readers -Introduction of the Journal into global indexing systems
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