首页> 外文会议>ASME international mechanical engineering congress and exposition >EFFECT OF OSCILLATION SPEED AND THRUST FORCE ON CORTICAL BONE TEMPERATURE DURING SAGITTAL SAWING
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EFFECT OF OSCILLATION SPEED AND THRUST FORCE ON CORTICAL BONE TEMPERATURE DURING SAGITTAL SAWING

机译:矢状锯切过程中振荡速度和推力对骨皮质温度的影响

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Thermal necrosis of bone occurs at sustained temperatures above approximately 47°C. During joint replacement surgery, resection of bone by sawing can heat the bone above this necrotic threshold, thereby inducing cellular damage and negatively affecting surgical outcomes. The aim of this research was to investigate the effect of saw blade speed and applied thrust force on the heating of bone. A sagittal sawing fixture was used to make cuts in cortical bovine bone, while thermocouples were used to characterize the temperature profile from the cut surface. A full factorial Design of Experiments was performed to determine the relative effects of blade speed and applied thrust force on temperature. When comparing the effect of speed to force in the regression analysis, the effect of force on temperature (p < 0.001) was 2.5 times more significant than speed (p = 0.005). The interaction of speed and force was not statistically significant (p > 0.05). The results of this research can be used in the development of training simulators, where virtual surgeries with haptic feedback can be accompanied by the related temperatures in proximity to the cut. From a clinical perspective, the results indicate that aggressive cutting at higher blade speed and greater thrust force results in lower temperatures in the surrounding bone.
机译:骨骼的热坏死在高于约47°C的持续温度下发生。在关节置换手术中,通过锯切术切除骨可将骨加热到此坏死阈值以上,从而引起细胞损伤并对手术结果产生负面影响。这项研究的目的是研究锯片速度和施加的推力对骨骼加热的影响。矢状锯切夹具用于在皮质牛骨上切割,而热电偶用于表征切割表面的温度曲线。进行了全因子实验设计,以确定叶片速度和施加的推力对温度的相对影响。在回归分析中比较速度对力的影响时,力对温度的影响(p <0.001)是速度(p = 0.005)的2.5倍。速度和力的相互作用没有统计学意义(p> 0.05)。这项研究的结果可用于训练模拟器的开发中,其中具有触觉反馈的虚拟手术可伴随切口附近的相关温度进行。从临床角度来看,结果表明以较高的刀片速度和较大的推力进行主动切割会导致周围骨骼的温度降低。

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