CINVESTAV del IPN, Departamento de Ingenieria Electrica, Seccion de Bioelectronica, Mexico.
Int J Med Robot. 2011 Mar;7(1):22-6. doi: 10.1002/rcs.363. Epub 2010 Nov 18.
Holding a dental tool for many hours of work is reflected in fatigue and manual tremor, which causes bad handling of rotatory instruments and consequently injuries within the buccal cavity. At present there exists no system to help the medical dentist in the support and handling of the dental drill. We propose the use of a mechatronic system to help the odontologist in handling the dental drill.
The mechatronic system consists of an articulated arm with force sensors and actuators that are activated electronically. The mechanism was developed so that the handpiece is held simultaneously by the mechatronic arm and the hand of the dentist. Expert dentists and odontology students were asked to execute tasks to assess positioning accuracy and system resolution. Students performed positioning tasks to evaluate adaptation to the system. The subjects drew the contour of a circle with and without the mechatronic assistant to assess positioning accuracy. Similarly, they made cavities on acrylic typodonts to evaluate resolution and accuracy. Adaptation to the system was evaluated by inserting the drill burr into cavities previously made.
The mechatronic system provides support and stability while handling the dental drill. The threshold of force required to move the mechanism prevents involuntary movements affecting the quality of work made on cavities. Positioning accuracy was improved by 53% (p < 0.017) using the system. Similarly, resolution of drilling was improved by 76% (p < 0.001).
We have developed the first mechatronic system to assist dentists in handling the dental drill. The arm allows the dentist to manipulate the tool with smooth and precise movements during the preparation of dental cavities with the application of force. The mechatronic system minimizes manual tremor due to fatigue and reduces the risk of iatrogenic dental injuries.
长时间握持牙科工具会导致疲劳和手动震颤,从而导致旋转器械操作不当,并因此在口腔内造成损伤。目前,没有系统可以帮助牙医在支持和处理牙钻时提供帮助。我们提出使用机电一体化系统来帮助牙医处理牙钻。
机电一体化系统由带有力传感器和电子激活执行器的铰接臂组成。该机制的开发目的是使手机同时由机电臂和牙医的手握住。我们请专家牙医和牙科学学生执行任务,以评估定位精度和系统分辨率。学生执行定位任务以评估对系统的适应能力。受试者在有和没有机电辅助的情况下绘制圆形轮廓,以评估定位精度。同样,他们在丙烯酸模型上制作牙洞,以评估分辨率和准确性。通过将钻头插入先前制作的牙洞中,评估对系统的适应能力。
机电一体化系统在处理牙钻时提供支撑和稳定性。移动机制所需的力阈值可防止不受控制的运动影响牙洞制作的质量。使用系统后,定位精度提高了 53%(p < 0.017)。同样,钻孔分辨率提高了 76%(p < 0.001)。
我们已经开发出第一个机电一体化系统来协助牙医处理牙钻。该臂允许牙医在准备牙洞时使用力进行平滑而精确的操作。机电一体化系统最大限度地减少了由于疲劳引起的手动震颤,并降低了医源性牙科损伤的风险。