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首页> 外文期刊>Arthroscopy: the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association >Biomechanical testing of suture-based meniscal repair devices containing ultrahigh-molecular-weight polyethylene suture: Update 2011
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Biomechanical testing of suture-based meniscal repair devices containing ultrahigh-molecular-weight polyethylene suture: Update 2011

机译:生物力学测试suture-based半月板修复设备包含ultrahigh-molecular-weight聚乙烯缝线:更新2011

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Purpose: To evaluate the biomechanical characteristics of recently introduced ultrahigh-molecular-weight polyethylene suture-based, self-adjusting meniscal repair devices. Methods: Updating a prior study published in 2009, we made vertical longitudinal cuts 3 mm from the periphery in fresh-frozen adult human menisci to simulate a bucket-handle meniscus tear. Each tear was then repaired by a single repair technique in 10 meniscus specimens. Group 1 menisci were repaired with a vertical mattress suture of No. 2-0 Ethibond (Ethicon, Somerville, NJ). Group 2 menisci were repaired with a vertical mattress suture of No. 2-0 OrthoCord (DePuy Mitek, Raynham, MA). Group 3 menisci were repaired with a single OmniSpan device with No. 2-0 OrthoCord suture (DePuy Mitek). Group 4 menisci were repaired with a single Meniscal Cinch device with No. 2-0 FiberWire suture (Arthrex, Naples, FL). Group 5 menisci were repaired with a single MaxFire device inserted with the MarXmen gun (Biomet Sports Medicine, Warsaw, IN). Group 6 menisci were repaired with a Sequent device with No. 0 Hi-Fi suture (ConMed Linvatec, Largo, FL) in a "V" suture configuration. Group 7 menisci were repaired with a single FasT-Fix 360 device (Smith & Nephew Endoscopy, Andover, MA). By use of a mechanical testing machine, all samples were preloaded at 5 N and cycled 200 times between 5 and 50 N. Those specimens that survived were destructively tested at 5 mm/min. Endpoints included maximum load, displacement, stiffness, and failure mode. Results: Mean failure loads were as follows: Ethibond suture, 73 N; OrthoCord suture, 88 N; OmniSpan, 88 N; Cinch, 71 N; MarXmen/MaxFire, 54 N; Sequent, 66 N; and FasT-Fix 360, 60 N. Ethibond was stronger than MarXmen/MaxFire. The mean displacement after 100 cycles was as follows: Ethibond, 2.58 mm; OrthoCord, 2.75 mm; OmniSpan, 2.51 mm; Cinch, 2.65 mm; MarXmen/MaxFire, 3.67 mm; Sequent, 3.35 mm; and FasT-Fix 360, 1.13 mm. The MarXmen/MaxFire showed greater 100-cycle displacement than Ethibond and FasT-Fix 360. No difference in stiffness existed for these devices, and failure mode varied without specific trends. Conclusions: The biomechanical properties of meniscal repairs using the OmniSpan, Cinch, Sequent, and FasT-Fix 360 devices are equivalent to suture repair techniques. However, the MarXmen/MaxFire meniscal repair device showed significantly lower failure loads and survived less cyclic loading in the human cadaveric meniscus than other tested repairs. Clinical Relevance: Most commercially available devices for all-inside meniscal repair using ultrahigh-molecular-weight polyethylene suture provide fixation comparable to the classic vertical mattress suture repair technique in human cadaveric meniscus.
机译:目的:评估生物力学最近推出了的特点ultrahigh-molecular-weight聚乙烯suture-based,自动调节的半月板修复设备。出版于2009年,我们做了垂直的纵向用来进行外围的削减3毫米成年人半月板模拟桶柄半月板撕裂。单一的修复技术在10半月板标本。组1半月板修复了一个垂直的床垫的缝合2 - 0号Ethibond (Ethicon萨默维尔市,NJ)。的垂直床垫缝合2 - 0单个OmniSpan半月板修复了设备没有。2 - 0 OrthoCord缝合(DePuyMitek)。单一半月板有把握的设备没有,2 - 0FiberWire缝合(Arthrex、那不勒斯、FL)。单个MaxFire半月板修复了设备插入MarXmen枪(Biomet运动医学,华沙)。与后继设备没有修好。0高保真缝合(ConMed Linvatec,缓慢地,FL)“V”缝合配置。修复一个权宜之计360设备(史密斯&侄子内镜,安多弗,MA)。力学试验机,所有样本预加载5 N和5之间的循环200次和50 n .那些幸存下来的标本狼狈地测试在5毫米/分钟。包括最大载荷、位移、刚度、和失效模式。如下:Ethibond缝合,73 N;缝合,88 N;MarXmen / MaxFire 54 N;权宜之计,360年60 n Ethibond比MarXmen / MaxFire。周期是如下:Ethibond, 2.58毫米;OrthoCord, 2.75毫米;2.65毫米;mm;MarXmen / MaxFire显示更大的100年周期360年位移比Ethibond和权宜之计。刚度的差异存在设备,没有特定失效模式不同的趋势。使用OmniSpan半月板修复的,有把握的事情,后继,权宜之计360设备是等价的缝合修复技术。MarXmen / MaxFire半月板修复设备显示显著降低失败加载和幸存下来减少循环荷载在人类尸体半月板比其他测试维修。相关性:大多数商用设备为所有内部半月板修复使用ultrahigh-molecular-weight聚乙烯缝合提供固定比较经典垂直床垫缝合修复技术人类尸体的半月板。

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