Institute of Robotics and Automatic Information System, Nankai University, Tianjin, People's Republic of China.
Int J Med Robot. 2013 Dec;9(4):433-40. doi: 10.1002/rcs.1477. Epub 2012 Dec 26.
An online non-contact measurement system using a laser displacement sensor was developed for obtaining the vibration amplitude of spinal cord and hard tissue.
The discrete wavelet transform was used to extract the distinctive features of tissue vibration signals. The spinal cord and spinal cancellous bone can be discriminated by the comparison of wavelet energy over a characteristic scale. We also derived the integro-differential equation of motion to describe the spinal cord vibration excited by the motion of bone.
Experimental results show that the method works well in identifying spinal cord and bone. However, available viscoelastic constants cannot describe the high-frequency features of spinal cord.
The examined issue of tissue vibration due to the operation power device is a significant problem. The proposed method can be used by a surgery robot, and then spinal surgery may greatly benefit from the enhanced safety of robotics.
开发了一种使用激光位移传感器的在线非接触测量系统,用于获取脊髓和硬组织的振动幅度。
采用离散小波变换提取组织振动信号的特征。通过比较特征尺度上的小波能量,可以区分脊髓和松质骨。我们还推导出运动的运动方程来描述由骨运动激发的脊髓振动。
实验结果表明,该方法在识别脊髓和骨骼方面效果良好。然而,现有的粘弹性常数无法描述脊髓的高频特性。
由于手术动力装置引起的组织振动问题是一个重要问题。所提出的方法可以由手术机器人使用,然后机器人手术可能会极大地受益于机器人技术的增强安全性。