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首页> 外文期刊>Journal of medical engineering & technology >Biomechanics in augmentation rhinoplasty.
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Biomechanics in augmentation rhinoplasty.

机译:隆鼻整形的生物力学。

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摘要

During the past 6 years, we have treated 406 patients with classical silicone augmentation rhinoplasty. The types and incidence of complications after subcutaneous or subfascial implantation were examined. We have proposed that most complications are related to the depth of the implant and the character of the tissues. In order to improve our operation and prove our hypothesis, we performed subperiosteal augmentation rhinoplasty in 22 cases with satisfactory results. In order to determine scientifically which layer the silicone implant should be inserted into, we investigated the biomechanics of human nasal periosteum and fascia, including tensile strength, stress-strain relationship and stress relaxation characters under uniaxial tension. Although having less failure strain, the periosteum has more tensile strength than the fascia. So, in the view of biomechanics, the periosteum is thicker, tougher and stiffer than the fascia, thus is more suitable for covering silicone implants.
机译:在过去的6年中,我们已经对406例经典的硅胶隆鼻手术进行了治疗。检查皮下或筋膜下植入术后并发症的类型和发生率。我们已经提出,大多数并发症与植入物的深度和组织的特征有关。为了改善我们的操作并证明我们的假设,我们对22例患者进行了骨膜下隆鼻成形术,结果令人满意。为了科学地确定应该将有机硅植入物插入哪一层,我们研究了人鼻骨膜和筋膜的生物力学,包括单轴拉伸下的拉伸强度,应力-应变关系和应力松弛特性。尽管骨膜的破坏应变较小,但骨膜的拉伸强度却比筋膜高。因此,从生物力学的角度来看,骨膜比筋膜更厚,更坚硬,更硬,因此更适合覆盖硅树脂植入物。

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