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首页> 外文期刊>Technology and health care: official journal of the European Society for Engineering and Medicine >Effect of drilling direction and depth on thermal necrosis during tibia drilling: An in vitro study
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Effect of drilling direction and depth on thermal necrosis during tibia drilling: An in vitro study

机译:钻井方向与深度对胫骨钻井热坏死的影响:体外研究

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Thermal necrosis is one of the main concerns in bone drillings. This study has been designed with the aim of improving the surgeons' knowledge on how to reduce thermal necrosis in tibia drilling with various depths and directions. A drilling machine was developed, which made the direct transfer of gas coolants into the drilling site during drilling possible. Results indicated that 2000 r/min is the most proper rotational speed for minimizing thermal necrosis. Changing the drilling direction from radial to longitudinal raised the temperature at drilling site. Increasing the drilling depth from 8 to 50 mm raised the temperature by at least 22.5%. Increasing the drilling depth up to 50 mm raised the drilling site temperature above the threshold temperature of tibia thermal necrosis as well as the temperature durability at the drilling site. However, in contrast to conventional cooling modes, using gas coolants, especially CO2, brought the temperature to a level less than the threshold temperature of tibia thermal necrosis and reduced the durability of temperature at the drilling site by at least 1 minute. Using the drilling machine developed in this study and CO2 coolant, orthopedic surgeons can perform tibia drilling in various directions up to the depth of 50 mm without the risk of thermal necrosis since the internal gas coolants, due to their direct contact with the drilling site and the rapid discharge of the chips, reduce the temperature increase in tibia caused by changing the drilling depth and the drilling direction from radial to longitudinal, greatly.
机译:热坏死是骨钻中的主要问题之一。本研究旨在提高外科医生关于如何降低胫骨热坏死的知识,各种深度和方向。开发了一台钻孔机,在钻孔期间使气体冷却剂直接转移到钻孔部位。结果表明,2000 r / min是最大限度地减少热坏死的最适当的转速。将钻孔方向从径向转换为纵向升高钻孔部位的温度。将钻孔深度从8到50 mm增加,将温度升高至少22.5%。将钻孔深度增加到50毫米的钻孔系统高于胫骨热坏死的阈值温度,以及钻井部位的温度耐久性。然而,与常规冷却模式相比,使用气体冷却剂,尤其是CO 2,将温度降至小于胫骨热坏死的阈值温度,并将钻井部位的温度耐久性降低至少1分钟。使用本研究中开发的钻孔机和二氧化碳冷却剂,矫形外科医生可以在各种方向上进行胫骨钻孔,从内部气体冷却剂直接接触到钻孔部位而没有热坏死的风险,因此可以在各种方向上进行胫骨。芯片的快速放电,通过从径向到纵向改变钻孔深度和钻孔方向,降低胫骨的温度增加。

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