Kronauer Richard E, Gunzelmann Glenn, Van Dongen Hans P A, Doyle Francis J, Klerman Elizabeth B
Division of Sleep Medicine, Brigham and Women's Hospital and Harvard Medical School, Boston, MA, Division of Applied Sciences, Harvard University, Cambridge, MA 02115, USA.
J Biol Rhythms. 2007 Jun;22(3):233-45. doi: 10.1177/0748730407301237.
Mathematical models of neurobehavioral function are useful both for understanding the underlying physiology and for predicting the effects of rest-activity-work schedules and interventions on neurobehavioral function. In a symposium titled "Modeling Human Neurobehavioral Performance I: Uncovering Physiologic Mechanisms" at the 2006 Society for Industrial and Applied Mathematics/Society for Mathematical Biology (SIAM/SMB) Conference on the Life Sciences, different approaches to modeling the physiology of human circadian rhythms, sleep, and neurobehavioral performance and their usefulness in understanding the underlying physiology were examined. The topics included key elements of the physiology that should be included in mathematical models, a computational model developed within a cognitive architecture that has begun to include the effects of extended wake on information-processing mechanisms that influence neurobehavioral function, how to deal with interindividual differences in the prediction of neurobehavioral function, the applications of systems biology and control theory to the study of circadian rhythms, and comparisons of these methods in approaching the overarching questions of the underlying physiology and mathematical models of circadian rhythms and neurobehavioral function. A unifying theme was that it is important to have strong collaborative ties between experimental investigators and mathematical modelers, both for the design and conduct of experiments and for continued development of the models.
神经行为功能的数学模型对于理解潜在生理学以及预测休息 - 活动 - 工作时间表和干预措施对神经行为功能的影响都很有用。在2006年工业与应用数学学会/数学生物学学会(SIAM/SMB)生命科学会议上,有一个名为“人类神经行为表现建模I:揭示生理机制”的研讨会,会上探讨了模拟人类昼夜节律、睡眠和神经行为表现生理学的不同方法及其在理解潜在生理学方面的有用性。主题包括数学模型应纳入的生理学关键要素、在认知架构内开发的一个计算模型,该模型已开始纳入长时间清醒对影响神经行为功能的信息处理机制的影响、在预测神经行为功能时如何处理个体差异、系统生物学和控制理论在昼夜节律研究中的应用,以及这些方法在解决昼夜节律和神经行为功能潜在生理学及数学模型的总体问题方面的比较。一个统一的主题是,实验研究人员和数学建模人员之间建立强有力的合作关系很重要,这对于实验的设计和实施以及模型的持续开发都至关重要。