BekeyG.A. (1962). The human operator as a sampled-data system. IEEE Trans. Human Factors in Electronics, HFE3, 43–51.
2.
EdwardsW. (1962). Dynamic information theory and probabilistic information processingHuman Factors, 4, 59–73.
3.
ElkindJ.I. (1956). Characteristics of simple manual control systems. Cambridge, MA: MIT Lincoln Laboratory Tech. Rep. 111.
4.
EndsleyM.R. (1995). Measurement of situation awareness in dynamic systemsHuman Factors37 (1), pp 65–84.
5.
FittsP.M. (1954). The information capacity of the human motor system in controlling the amplitude of movementJ. Exper. Psychol.47, 381–391.
6.
GreenD.M.SwetsJ.A. (1966). Signal Detection Theory and Psychophysics.NY: Wiley.
7.
HartS. G.SheridanT. B.1984. Pilot workload, performance and aircraft control automation. In Proceedings of NATO/AGARD Conference 371, Human Factors Considerations in High Performance Aircraft, Nuilly sur Seine, France.
8.
HickW.E. (1952). On the rate of gain of information. Quart. J. Experimental Psychology4: 11–26.
9.
HowardR.A. (1966). Information value theory. IEEE Trans. on Systems Science and Cybernetics, SSC-2, 22–26.
10.
JamesH.M.NicholsN.B.PhilipsR.S. (1947), Theory of Servomechanisms.NY: McGraw Hill. (See chapter on manual tracking).
11.
KahnemanD.TverskyA. (1982). The psychology of preferencesScientific American, 246 (1), 160–173.
12.
KirlikA., Ed. (2005). Adaptive Perspectives on Human-Technology Interaction.NY: Oxford.
13.
LairdJ.NewellA.RosenbloomP. (1987). SOAR: An Architecture for General Intelligence. Artificial Intelligence, 33.
McGillW. (1954). Multi-variate information transmissionPsychometrika19, 97–116.
16.
McRuerD.T.KrendelE.S. (1957). Dynamic response of human operators. WADC-TR 56-524, US Air Force.
17.
McRuerD. T.JexH. R. (1967). A review of quasi—linear pilot models. IEEE Trans. Human Factors in ElectronicsHFE-4, no. 3: 231–249.
18.
MillerG.A. (1956). The magical number 7, plus or minus 2: Some limits on our capacity for processing informationPsych. Review63, pp 81–97.
19.
NewellA. (1990). Unified Theories of Cognition.Cambridge: Harvard University Press.
20.
PewR.W. (1966). A model of human operators in a 3-state with velocity augmented displays. IEEE Trans. Human Factors in Electronics, HFE-7, 2, 77–83.
21.
SendersJ. W.ElkindJ. IGrignettiM. C.SmallwoodR. P.1964. An investigation of the visual sampling behavior of human observers. NASA—CR—434. Cambridge, MA: Bolt, Beranek and Newman, Inc.
22.
ShannonC.E. (1949). Communication in the presence of noise. Proceedings of the IRE37: 10–22.
23.
SheridanT.B. (1960). Experimental analysis of time variation of the the human operator's transfer function. Proc. 1st Intl. Federation of Automatic Control, Moscow. London: Butterworths, 1681–1686.
24.
SheridanT. B. (1966). Three models of preview control. IEEE Trans. Human Factors in Electronics HFE—6, June.
25.
SheridanT.B. (1992). Telerobotics, Automation and Human Supervisory Control.Cambridge: MIT Press.
26.
SheridanT.B. (2005). Attention and its allocation. In Proc. Applied Attention: from Theory to Practice. (festschrift for C. Wickens) Champaign-Urbana, IL: University of Illinois, June.
27.
Von NeumannJ.MorgansternO. (1944). Theory of Games and Economic Behavior.Princeton, NJ: Princeton Univ. Press.
28.
WickensC.D. (1980). The structure of attentional resources. In NickersonR. (Ed.), Attention and PerformanceVIII, pp. 239–257. Hillsdale, NJ: Erlbaum.
29.
WienerN. (1964). God and Golem, Incorporated.Cambridge, MA: MIT Press.
30.
YoungL.R.StarkL. (1963). Variable feedback experiments testing a sampled data model for eye tracking movements. IEEE Trans. Human Factors in Electronics, HFE-4, 1, 38–51.
31.
ZadehL.A. (1965). Fuzzy setsInformation and control, 8, 338–353.