A computer model of intracranial dynamics integrated to a full-scale patient simulator

被引:13
|
作者
Thoman, WJ
Lampotang, S
Gravenstein, D
van der Aa, J
机构
[1] Univ Florida, Coll Med, Inst Brain, Dept Anesthesiol, Gainesville, FL 32608 USA
[2] Univ Florida, Coll Engn, Dept Engn Sci, Gainesville, FL 32608 USA
来源
COMPUTERS AND BIOMEDICAL RESEARCH | 1998年 / 31卷 / 01期
关键词
D O I
10.1006/cbmr.1997.1463
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The ability to visualize intracranial dynamics during simulated clinical scenarios is a valuable tool for teaching brain physiology and the consequences of different medical interventions on the brain. Studies have isolated physiologic variables and shown their effects on brain dynamics. However, no studies have shown the combined effects of these variables on intracranial dynamics. This brain model offers one approach that brings all these relationships together and shows how they affect the dynamics of the brain. The brain model obtains its physiologic inputs from a full-scale patient simulator which responds to clinical interventions. This integration allows individuals working on the patient simulator to see the effects of their actions on brain dynamics. The brain model gives a real-time display of intracranial events (cerebral metabolic rate, cerebral blood flow, cerebral blood volume, cerebral perfusion pressure, and intracranial pressure) and responds to changes in the pulmonary and cardiovascular condition of the patient simulator. (C) 1998 Academic Press.
引用
收藏
页码:32 / 46
页数:15
相关论文
共 50 条
  • [41] How do anaesthesiologists treat malignant hyperthermia in a full-scale anaesthesia simulator?
    Gardi, T
    Christensen, UC
    Jacobsen, J
    Jensen, PF
    Ording, H
    ACTA ANAESTHESIOLOGICA SCANDINAVICA, 2001, 45 (08) : 1032 - 1035
  • [42] Simulation and Study of Modes for Full-scale Mode Simulator for Ukrainian Energy Systems
    Gurieiev, Viktor
    Sanginova, Olga
    2016 2ND INTERNATIONAL CONFERENCE ON INTELLIGENT ENERGY AND POWER SYSTEMS (IEPS), 2016,
  • [43] A Cerebral Autoregulation Simulator based on the Model of Intracranial Dynamics
    Lin, Shyan-Lung
    Lin, Hua-Wei
    Chang, Hsing-Cheng
    JOURNAL OF PURE AND APPLIED MICROBIOLOGY, 2013, 7 : 269 - 276
  • [44] Analysis and simulation of the sludge profile dynamics in a full-scale clarifier
    De Clercq, J
    Devisscher, M
    Boonen, I
    Defrancq, J
    Vanrolleghem, PA
    JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2005, 80 (05) : 523 - 530
  • [45] Microbubble Swarms in a Full-Scale Water Model Tundish
    Sheng Chang
    Xiangkun Cao
    Zongshu Zou
    Mihaiela Isac
    Roderick I. L. Guthrie
    Metallurgical and Materials Transactions B, 2016, 47 : 2732 - 2743
  • [46] Full-scale model tests of a steel catenary riser
    Bridge, C
    Howells, H
    Toy, N
    Parke, GAR
    Woods, R
    FLUID STRUCTURE INTERACTION II, 2003, 36 : 107 - 116
  • [47] Model Wind Turbines Tested at Full-Scale Similarity
    Miller, M. A.
    Kiefer, J.
    Westergaard, C.
    Hultmark, M.
    SCIENCE OF MAKING TORQUE FROM WIND (TORQUE 2016), 2016, 753
  • [48] Full-scale model tests of a steel catenary riser
    Bridge, C.
    Howells, H.
    Toy, N.
    Parke, G.A.R.
    Woods, R.
    WIT Transactions on the Built Environment, 2003, 71 : 107 - 116
  • [49] Whole model empirical validation on a full-scale building
    Strachan, Paul
    Svehla, Katalin
    Heusler, Ingo
    Kersken, Matthias
    JOURNAL OF BUILDING PERFORMANCE SIMULATION, 2016, 9 (04) : 331 - 350
  • [50] Simulation of Full-Scale Rockfall Tests with a Fragmentation Model
    Matas, Gerard
    Lantada, Nieves
    Corominas, Jordi
    Gili, Josep
    Ruiz-Carulla, Roger
    Prades, Albert
    GEOSCIENCES, 2020, 10 (05)