Literature DB >> 28295123

New Proximal Femoral Compaction Blade Provides Strong Antirotation Stability of the Femoral Head.

Shinya Hayashi, Yukiaki Hirata, Daiki Okamoto, Satoshi Kakunai, Shingo Hashimoto, Koji Takayama, Tomoyuki Matsumoto, Takahiro Niikura, Takaaki Fujishiro, Takafumi Hiranaka, Kotaro Nishida, Ryosuke Kuroda.   

Abstract

This study investigated the mechanical properties of a new rectangular compaction blade and compared this blade with other types of nail. Three types of nail were tested: the Magnum lag screw (Robert Reid Inc, Tokyo, Japan), proximal femoral nail, and Magnum Fid blade (Robert Reid Inc). The nails were inserted into solid rigid polyurethane foam, and the torsional moments were loaded with an Instron testing machine (Instron, Kanagawa, Japan). The force curve was recorded, and the average maximum torque was calculated from this curve. A simulation study was performed with finite element models to determine the mechanism underlying differences in rotational stability. Mechanical testing showed that the new compaction blade had stronger resistance against rotational force than the helical blade and lag screw implants. Finite element analysis also showed that the new compaction blade had stronger resistance to migration of the polyurethane foam cylinder than the other implant types. In addition, the new compaction blade had strong rotational stability. This implant should be useful for the treatment of unstable trochanteric fracture in patients with osteoporosis. [Orthopedics. 2017; 40(3):e491-e494.]. Copyright 2017, SLACK Incorporated.

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Year:  2017        PMID: 28295123     DOI: 10.3928/01477447-20170308-05

Source DB:  PubMed          Journal:  Orthopedics        ISSN: 0147-7447            Impact factor:   1.390


  2 in total

1.  Biomechanical comparison of lag screw and non-spiral blade fixation of a novel femoral trochanteric nail in an osteoporotic bone model.

Authors:  Yoshifumi Fuse; Yukichi Zenke; Nobukazu Okimoto; Toru Yoshioka; Yoshiaki Yamanaka; Makoto Kawasaki; Hiroshi Terayama; Akinori Sakai
Journal:  Sci Rep       Date:  2022-01-17       Impact factor: 4.379

2.  Mechanical testing of cephalomedullary nail lag screws after the addition of hydroxyapatite substitutes.

Authors:  Takayuki Nakajima; Yasuchika Aoki; Atsuya Watanabe; Masahiro Inoue; Satoshi Yamaguchi; Junichi Nakamura; Yusuke Matsuura; Shigeo Hagiwara; Daisuke Himeno; Seiji Ohtori
Journal:  OTA Int       Date:  2021-12-03
  2 in total

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