Gong Cihun-Siyong Alex, Ting Chien-Kun
Department of Electrical Engineering, School of Electrical and Computer Engineering, College of Engineering and Portable Energy System Group of Green Technology Research Center, Chang Gung University, Taoyuan 333, Taiwan.
Department of Anesthesiology, Taipei Veterans General Hospital and National Yang-Ming University, Taipei 112, Taiwan.
Biomed Res Int. 2014;2014:437679. doi: 10.1155/2014/437679. Epub 2014 Mar 20.
Even though there have been many approaches to assist the anesthesiologists in performing regional anesthesia, none of the prior arts may be said as an unrestricted technique. The lack of a design that is with sufficient sensitivity to the targets of interest and automatic indication of needle placement makes it difficult to all-round implementation of field usage of objectiveness. In addition, light-weight easy-to-use realization is the key point of portability. This paper reports on an intelligent system of epidural space identification using optical technique, with particular emphasis on efficiency-enhanced aspects. Statistical algorithms, implemented in a dedicated field-programmable hardware platform along with an on-platform application-specific integrated chip, used to advance real-time self decision making in needle advancement are discussed together with the feedback results. Clinicians' viewpoint of improving the correct rate of our technique is explained in detail. Our study demonstrates not only that the improved system is able to behave as if it is a skillful anesthesiologist but also it has potential to bring promising assist into clinical use under varied conditions and small amount of sample, provided that several concerns are addressed.
尽管已经有许多方法来协助麻醉医生进行区域麻醉,但现有技术中没有一种可以说是无限制的技术。缺乏对感兴趣目标具有足够灵敏度且能自动指示针头位置的设计,使得难以全面实现客观的现场使用。此外,轻量化且易于使用的实现是便携性的关键。本文报道了一种使用光学技术的硬膜外腔识别智能系统,特别强调了效率提升方面。讨论了在专用现场可编程硬件平台以及平台上的专用集成电路中实现的统计算法,这些算法用于推进针头推进过程中的实时自我决策以及反馈结果。详细解释了临床医生对提高我们技术正确率的观点。我们的研究表明,改进后的系统不仅能够表现得像一位熟练的麻醉医生,而且只要解决几个问题,它就有潜力在各种条件下和少量样本的情况下为临床使用带来有前景的帮助。