Department of Veterinary Clinical Sciences (Lescun, Adams, Breur), College of Veterinary Medicine; and the Schools of Mechanical and Biomedical Engineering (Nauman), College of Engineering, Purdue University, West Lafayette, Indiana, United States.
Vet Comp Orthop Traumatol. 2020 Sep;33(5):348-355. doi: 10.1055/s-0040-1714353. Epub 2020 Aug 14.
The aim of this study was to determine how increasing stiffness of fracture site tissues distal to the pins in an equine distal limb transfixation cast influences stress at the bone-pin interface, within the bones distal to the transcortical pins, and contact pressure between the foot and the cast.
A transfixation cast finite element model was used to compare the bone-pin interface stress, pin stress, bone stress distal to the pins and contact pressure between the foot and the cast, using six stiffness values for a composite tissue block representing progressive stages of fracture healing.
Increasing stiffness of the composite tissue block resulted in a decrease in the maximum stresses at the bone-pin interface, an increase in stresses distal to the transcortical pins and a decrease in the maximum pin stresses. As the composite tissue block stiffness was increased, contact pressure between the bottom of the composite tissue block and the cast increased and the stress patterns surrounding the pin holes became less focal.
The findings of this study illustrate that with good foot to cast contact within a transfixation cast, increases in tissue stiffness due to progressive fracture healing are expected to reduce bone-pin interface stresses, and increase fracture site loading and stress. Increasing the contact pressure between the foot and the cast could reduce transfixation casting complications such as pin loosening, pin hole fracture and poor fracture healing, if these results transfer to and settings.
本研究旨在确定马四肢经皮穿针固定外固定架中针道远侧骨折部位组织刚度增加如何影响骨-针界面、皮质骨下穿过针的骨内的应力和足与外固定架之间的接触压力。
使用经皮穿针固定外固定架有限元模型,用代表骨折愈合不同阶段的复合材料组织块的六个刚度值,比较骨-针界面的应力、针的应力、针远侧骨内的应力和足与外固定架之间的接触压力。
复合材料组织块刚度增加,导致骨-针界面的最大应力降低,皮质骨下穿过针的骨内的应力增加,针的最大应力降低。随着复合材料组织块刚度增加,复合材料组织块底部与外固定架之间的接触压力增加,针孔周围的应力分布变得不那么集中。
本研究结果表明,在外固定架中,良好的足与外固定架接触情况下,由于骨折愈合的进展导致组织刚度增加,预计会降低骨-针界面的应力,增加骨折部位的负荷和应力。如果这些结果适用于临床和临床前环境,增加足与外固定架之间的接触压力可能会减少经皮穿针固定外固定架并发症,如针松动、针孔骨折和骨折愈合不良。