Enhancement of fracture healing by electrical stimulation in the comminuted intraarticular fracture of distal radius

Effectiveness of an alternating electric current (AC) stimulation in prevention of bone deformity for comminuted intraarticular fracture of distal radius were verified by comparing postoperative results treated with a wrist-bridging external fixator combined with or without an AC stimulator (EF and...

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Published inBio-medical materials and engineering Vol. 23; no. 6; pp. 485 - 493
Main Authors Kohata, Kazuhiro, Itoh, Soichiro, Takeda, Shu, Kanai, Misa, Yoshioka, Taro, Suzuki, Hiroyuki, Yamashita, Kimihiro
Format Journal Article
LanguageEnglish
Published Netherlands 2013
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Summary:Effectiveness of an alternating electric current (AC) stimulation in prevention of bone deformity for comminuted intraarticular fracture of distal radius were verified by comparing postoperative results treated with a wrist-bridging external fixator combined with or without an AC stimulator (EF and NEF, respectively), and a palmar locking plate (LP). This study evaluated 92 cases (mean age 67.9 ± 11.4 years) of type C2 and 60 cases (mean age 69.7 ± 9.5 years) of type C3 distal radius fractures, as classified by the Association for Osteosynthesis. In total, 55 and 24 cases were treated with EF and NEF, respectively; and 73 cases were treated with LP. Callus appeared 27.5 ± 4.6 days postoperatively and the external skeletal fixation period was significantly shorter in the EF group than in the NEF group. The decrease in radial length was significantly lower in the EF group when compared to the LP group. There were no significant differences among the groups for the other radiographic and functional parameters. AC stimulation combined to the external fixation may be a promising method to prevent postoperative deformity in the severely comminuted intraarticular fractures by accelerating callus maturation and facilitating new bone bridging across the gap of fracture site.
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content type line 23
ISSN:0959-2989
1878-3619
DOI:10.3233/BME-130774