Engineering, The University of Georgia, Athens, GA, USA.
Radiology and Imaging Sciences, Emory University, Atlanta, GA, USA.
Ann Biomed Eng. 2018 Mar;46(3):475-487. doi: 10.1007/s10439-017-1960-z. Epub 2017 Nov 17.
The neurodegenerative disease amyotrophic lateral sclerosis (ALS) results in the death of motor neurons in voluntary muscles. There are no cures for ALS and few available treatments. In studies with small animal models, injection of cellular therapeutics into the anterior horn of the spinal cord has been shown to inhibit the progression of ALS. It was hypothesized that spinal injection could be made faster and less invasive with the aid of a robot. The robotic system presented-SpinoBot-uses MRI guidance to position a needle for percutaneous injection into the spinal cord. With four degrees of freedom (DOF) provided by two translation stages and two rotational axes, SpinoBot proved capable of advanced targeting with a mean error of 1.12 mm and standard deviation of 0.97 mm in bench tests, and a mean error of 2.2 mm and standard deviation of 0.85 mm in swine cadaver tests. SpinoBot has shown less than 3% signal-to-noise ratio reduction in 3T MR imaging quality, demonstrating its compliance to the MRI environment. With the aid of SpinoBot, the length of the percutaneous injection procedure is reduced to less than 60 min with 10 min for each additional insertion. Although SpinoBot is designed for ALS treatment, it could potentially be used for other procedures that require precise access to the spine.
神经退行性疾病肌萎缩侧索硬化症(ALS)会导致随意肌中的运动神经元死亡。目前尚无治愈 ALS 的方法,可用的治疗方法也很少。在小动物模型研究中,将细胞疗法注射到脊髓前角已被证明可以抑制 ALS 的进展。有人假设,在机器人的帮助下,脊髓注射可以更快、侵入性更小。该机器人系统-SpinoBot-使用 MRI 引导定位用于经皮脊髓内注射的针。SpinoBot 通过两个平移台和两个旋转轴提供的四个自由度(DOF),在台架测试中证明了其具有先进的靶向能力,平均误差为 1.12 毫米,标准偏差为 0.97 毫米,在猪尸体测试中平均误差为 2.2 毫米,标准偏差为 0.85 毫米。SpinoBot 在 3T MRI 成像质量方面的信噪比降低小于 3%,证明其符合 MRI 环境的要求。借助 SpinoBot,经皮注射程序的长度缩短至不到 60 分钟,每次额外插入需要 10 分钟。尽管 SpinoBot 是为 ALS 治疗而设计的,但它也可能用于需要精确进入脊柱的其他手术。