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Use of the Minimally Invasive Reduction Instrumentation System for Facilitating Alignment and Reduction When Performing Minimally Invasive Plate Osteosynthesis in Three Dogs

机译:在三只狗进行微创钢板固定的过程中,微创复位仪器系统的使用可促进对准和复位

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The Minimally Invasive Reduction Instrumentation System (MIRIS) was utilized to facilitate minimally invasive plate osteosynthesis (MIPO) of distal limb diaphyseal comminuted fractures (2 crural, 1 antebrachial) in three dogs. The MIRIS facilitated efficient MIPO in all three fractures. Radial and tibial lengths were restored within 2% of the length of the intact bone and postoperative frontal and sagittal plane angulation were within 3° of the normal contralateral limb for each of the fractures. Fixation failed in one of the tibial fractures when the plates bent a week following surgery. The implants were removed and the fracture was restabilized via MIPO facilitated by the MIRIS. Inappropriate implant selection was considered the primary reason for implant failure. All three fractures achieved union by 10 weeks following surgery. The dog that underwent revision surgery developed a surgical site infection 5 months following revision surgery, which necessitated implant removal. All three dogs had excellent limb function at the time of the final evaluation. This system resulted in reductions that were near anatomic, with acceptable restoration of length and alignment and excellent limb function.
机译:使用微创复位器械系统(MIRIS)促进三只狗的远端肢体干phy端粉碎性骨折(2例,1例前臂)的微创钢板骨合成(MIPO)。 MIRIS促进了所有三个骨折的有效MIPO。 each骨和胫骨的长度在完整骨长度的2%之内恢复,并且每个骨折的术后额叶和矢状位角均在正常对侧肢体的3°以内。手术一周后,当钢板弯曲时,其中一个胫骨骨折的固定失败。移除植入物,并通过MIRIS的MIPO修复骨折。植入物选择不当被认为是植入物失败的主要原因。手术后10周所有三个骨折均愈合。接受翻修手术的狗在翻修手术后5个月出现了手术部位感染,这需要将其植入。在最终评估时,所有三只狗的肢体功能都非常好。该系统可实现接近解剖学的复位,并具有可接受的长度和对齐恢复以及出色的肢体功能。

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