Larnard D J, Koivo A J
Ann Biomed Eng. 1985;13(3-4):227-35. doi: 10.1007/BF02584241.
A discrete-time model describing intracranial pressure (ICP) dynamics is extended to account for changes in blood osmolarity due to an i.v. injection of mannitol. It includes the effect of a blood osmolarity change on cerebrospinal fluid (CSF) formation and absorption. In order to maintain the ICP at a desired lowered level, a control algorithm is constructed. The controller is designed by minimizing a performance criterion, which consists of the mean squared error between the measured ICP and desired ICP, and the squared input. Minimizing the performance criterion specifies the controller. For on-line implementation, an approximately optimal controller is suggested. Simulation results show the feasibility of using this controller to regulate ICP.
一个描述颅内压(ICP)动态变化的离散时间模型得到扩展,以考虑静脉注射甘露醇导致的血液渗透压变化。该模型包括血液渗透压变化对脑脊液(CSF)生成和吸收的影响。为了将颅内压维持在期望的降低水平,构建了一种控制算法。通过最小化一个性能指标来设计控制器,该性能指标由测量的颅内压与期望颅内压之间的均方误差以及输入的平方组成。最小化该性能指标确定了控制器。对于在线实现,提出了一种近似最优控制器。仿真结果表明使用该控制器调节颅内压的可行性。