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Frequency-Based Analysis of the Relationship between Cutting Force and CT Number for an Implant-Surgery-Teaching Robot

机译:基于频率的植入式手术教学机器人切削力与CT数关系的分析

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An individual's feeling of bone quality during a drilling procedure is important for predicting the prognosis of a dental implant. At present, the estimation of an individual's feeling is subjective, and a new, definitive, data-based classification scheme is needed to identify bone quality objectively. A tele-robotic drilling system was developed to solve this problem. This paper presents a model for predicting vibration during bone drilling. The forces from the drill are modeled by considering the indentation process that occurs under different form computed tomography (CT) numbers. This method can be applied to a cutting-force presentation method using a haptic drilling system. An experiment was conducted to confirm the validity of the proposed method. The result shows that the experimental simulation achieved the same force response as the real cutting. The mean of the error between the real cutting force and the predicted cutting force was 3.5%. The system allows dental students to learn and practice procedures such as cutting the jaw bone. The advantages of this system are that it has a high force-output quality and a fine position-sensing ability. Therefore, dental students can simulate a realistic force response from the bone if the CT number has been acquired. This system can also be used for real implantation surgery because it allows doctors to experience the force response before operating.
机译:个人在钻孔过程中的骨质感觉对于预测牙科植入物的预后很重要。目前,对个人感觉的估计是主观的,因此需要一种新的,基于数据的确定性分类方案来客观地识别骨骼质量。开发了遥控机器人钻孔系统以解决该问题。本文提出了一种用于预测骨骼钻孔过程中振动的模型。通过考虑在不同形式的计算机断层扫描(CT)编号下发生的压痕过程对钻头的力进行建模。该方法可以应用于使用触觉钻孔系统的切削力呈现方法。进行了实验,以验证该方法的有效性。结果表明,实验模拟获得了与真实切削相同的力响应。实际切削力与预测切削力之间的误差平均值为3.5%。该系统允许牙科学生学习和练习程序,例如切割颌骨。该系统的优点是它具有较高的力输出质量和良好的位置感应能力。因此,如果已经获取了CT编号,那么牙科学生可以从骨骼模拟逼真的力响应。该系统还可以用于真正的植入手术,因为它允许医生在手术前体验力的响应。

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