Department of Electrical Engineering, California State University, Fullerton, USA.
Comput Methods Programs Biomed. 2013 Jun;110(3):511-8. doi: 10.1016/j.cmpb.2013.01.013. Epub 2013 Feb 17.
Synchronization of spontaneous breathing with breaths supplied by the ventilator is essential for providing optimal ventilation to patients on mechanical ventilation. Some ventilation techniques such as Adaptive Support Ventilation (ASV), Proportional Assist Ventilation (PAV), and Neurally Adjusted Ventilatory Assist (NAVA) are designed to address this problem. In PAV, the pressure support is proportional to the patient's ongoing effort during inspiration. However, there is no guarantee that the patient receives adequate ventilation. The system described in this article is designed to automatically control the support level in PAV to guarantee delivery of patient's required ventilation. This system can also be used to control the PAV support level based on the patient's work of breathing. This technique further incorporates some of the features of ASV to deliver mandatory breaths for passive subjects. The system has been tested by using computer simulations and the controller has been implemented by using a prototype.
自主呼吸与呼吸机提供的呼吸同步对于接受机械通气的患者提供最佳通气至关重要。一些通气技术,如适应性支持通气(ASV)、比例辅助通气(PAV)和神经调节通气辅助(NAVA),旨在解决这个问题。在 PAV 中,压力支持与患者吸气过程中的持续努力成正比。然而,不能保证患者接受足够的通气。本文中描述的系统旨在自动控制 PAV 中的支持水平,以保证输送患者所需的通气。该系统还可以根据患者的呼吸功来控制 PAV 的支持水平。该技术进一步结合了 ASV 的一些功能,为被动患者提供强制呼吸。该系统已通过计算机模拟进行了测试,并使用原型实现了控制器。