Prado Manuel, Roa Laura, Reina-Tosina Javier, Palma Alfonso, Milán José Antonio
Grupo de Ingeniería Biomédica, Universidad de Sevilla, 41092 Sevilla, Spain.
IEEE Trans Biomed Eng. 2002 Dec;49(12):1420-30. doi: 10.1109/TBME.2002.805454.
The patient physiological image (PPI) is a novel concept which manages the knowledge of the virtual center for renal support (VCRS), currently being developed by the Biomedical Engineering Group of the University of Seville. PPI is a virtual "replica" of the patient, built by means of a mathematical model, which represents several physiological subsystems of a renal patient. From a technical point of view, PPI is a component-oriented software module based on cutting-edge modeling and simulation technology. This paper provides a methodological and technological approach to the PPI. Computational architecture of PPI-based VCRS is also described. This is a multi-tier and multi-protocol system. Data are managed by several ORDBMS instances. Communications design is based on the virtual private network (VPN) concept. Renal patients have a minimum reliable access to the VCRS through a public switch telephone network--X.25 gateway. Design complies with the universal access requirement, allowing an efficient and inexpensive connection even in rural environments and reducing computational requirements in the patient's remote access unit. VCRS provides support for renal patients' healthcare, increasing the quality and quantity of monitored biomedical signals, predicting events as hypotension or low dialysis dose, assisting further to avoid them by an online therapy modification and easing diagnostic tasks. An online therapy adjustment experiment simulation is presented. Finally, the presented system serves as a computational aid for research in renal physiology. This is achieved by an open and reusable modeling and simulation architecture which allows the interaction among models and data from different scales and computer platforms, and a faster transference of investigation models toward clinical applications.
患者生理图像(PPI)是一个新颖的概念,它整合了目前由塞维利亚大学的生物医学工程团队正在开发的肾脏支持虚拟中心(VCRS)的知识。PPI是患者的虚拟“复制品”,通过数学模型构建而成,它代表了肾脏患者的几个生理子系统。从技术角度来看,PPI是一个基于前沿建模和仿真技术的面向组件的软件模块。本文提供了一种针对PPI的方法和技术途径。还描述了基于PPI的VCRS的计算架构。这是一个多层多协议系统。数据由多个对象关系数据库管理系统(ORDBMS)实例进行管理。通信设计基于虚拟专用网络(VPN)概念。肾脏患者通过公共交换电话网络——X.25网关,能够以最低限度的可靠方式访问VCRS。该设计符合普遍访问要求,即使在农村环境中也能实现高效且低成本的连接,并降低患者远程访问单元中的计算需求。VCRS为肾脏患者的医疗保健提供支持,增加被监测生物医学信号的质量和数量,预测诸如低血压或低透析剂量等事件,进一步通过在线治疗调整协助避免这些事件,并简化诊断任务。展示了一个在线治疗调整实验模拟。最后,所展示的系统作为肾脏生理学研究的计算辅助工具。这是通过一个开放且可重用的建模和仿真架构实现的,该架构允许不同规模和计算机平台的模型与数据之间进行交互,并加快研究模型向临床应用的转化。