1)Machado CJ, Nelson EE. Eye-tracking with nonhuman primates is now more accessible than ever before. Am J Primatol. 2011; 73: 562-9
|
|
|
2)Prehn K, Heekeren HR, van der Meer E. Influence of affective significance on different levels of processing using pupil dilation in an analogical reasoning task. Int J Psychophysiol. 2011; 79: 236-43
|
|
|
3)Nassar MR, Rumsey KM, Wilson RC, et al. Rational regulation of learning dynamics by pupil-linked arousal systems. Nat Neurosci. 2012; 15: 1040-6
|
|
|
4)Fotiou DF, Stergiou V, Tsiptsios D, et al. Choli-nergic deficiency in Alzheimers and Parkinsons disease: evaluation with pupillometry. Int J Psychophysiol. 2009; 73: 143-9
|
|
|
5)Siegle GJ, Steinhauer SR, Friedman ES, et al. Remission prognosis for cognitive therapy for recurrent depression using the pupil: utility and neural correlates. Biol Psychiat. 2011; 69: 726-33
|
|
|
6)Bär K-J, Boettger MK, Schulz S, et al. The interaction between pupil function and cardio-vascular regulation in patients with acute schizo-phrenia. Clin Neurophysiol. 2008; 119: 2209-13
|
|
|
7)Dietz J, Bradley MM, Okun MS, et al. Emotion and ocular responses in Parkinsons disease. Neuropsychologia. 2011; 49: 3247-53
|
|
|
8)Steinhauer SR, Siegle GJ, Condray R, et al. Sympathetic and parasympathetic innervation of pupillary dilation during sustained processing. Int J Psychophysiol. 2004; 52: 77-86
|
|
|
9)Kaltsatou A, Kouidi E, Fotiou D, et al. The use of pupillometry in the assessment of cardiac autonomic function in elite different type trained athletes. Eur J Appl Physiol. 2011; 111: 2079-87
|
|
|
10)Slamovits TL, Glaser JS. The pupils and accommodation. In: Tasman W, Jaeger EA, editors. Duanes Ophthalmology. vol 2. chapter 15. Philadelphia, New York: Lippincott-Raven; 1995
|
|
|
11)Peters A, Palay SL. The morphology of synapses. J Neurocytol. 1996; 25: 687-700
|
|
|
12)Sillito AM, Zbro1yna AW. The localization of pupilloconstrictor function within the midbrain of the cat. J Physiol. 1970; 211: 461-77
|
|
|
13)Klooster J, Vrensen GF. New indirect pathways subserving the pupillary light reflex: projections of the accessory oculomotor nuclei and the periaqueductal gray to the Edinger-Westphal nucleus and the thoracic spinal cord in rats. Anat Embryol. 1998; 198: 123-32
|
|
|
14)Mantyh PW. Forebrain projections to the peri-aqueductal gray in the monkey, with observations in the cat and rat. J Comp Neurol. 1982; 206: 146-58
|
|
|
15)Mantyh PW. Connections of midbrain periaque-ductal gray in the monkey. I. Ascending efferent projections. J Neurophysiol. 1983; 49: 567-81
|
|
|
16)Linnman C, Moulton EA, Barmettler G, et al. Neuroimaging of the periaqueductal gray: state of the field. Neuroimage. 2012; 60: 505-22
|
|
|
17)Sara SJ. The locus coeruleus and noradrenergic modulation of cognition. Nat Rev Neurosci 2009; 10: 211-23
|
|
|
18)Berridge CW, Schmeichel BE, Espana RA. Noradrenergic modulation of wakefulness/arousal. Sleep Med Rev. 2012; 16: 187-97
|
|
|
19)Rajkowski J, Kubiak P, Aston-Jones G. Correla-tions between locus coeruleus (LC) neural activity, pupil diameter and behavior in monkey support a role of LC in attention. SFN Abstracts. 1993; 19: 974
|
|
|
20)Hou RH, Freeman C, Langley R, et al. Does modafinil activate the locus coeruleus in man? Comparison of modafinil and clonidine on arousal and autonomic functions in human volunteers. Psychopharmacology. 2005; 181: 537-49
|
|
|
21)Gilzenrat MS, Nieuwenhuis S, Jepma M, et al. Pupil diameter tracks changes in control state predicted by the adaptive gain theory of locus coeruleus function. Cogn Affect Behav Neurosci. 2010; 10: 252-69
|
|
|
22)Sterpenich V, DArgembeau A, Desseilles M, et al. The locus ceruleus is involved in the success-ful retrieval of emotional memories in humans. J Neurosci. 2006; 26: 7416-23
|
|
|
23)Itoi K, Sugimoto N. The brainstem noradrenergic systems in stress, anxiety and depression. J Neuroendocrinol. 2010; 22: 355-61
|
|
|
24)西条寿夫.大脳辺縁系と情動のメカニズム.神経研究の進歩.1997; 41: 511-31
|
|
|
25)西条寿夫,田積 徹,堀 悦郎,他.情動発現と社会的認知機能の神経機構. 神経研究の進歩.2006; 50: 38-52
|
|
|
26)Bradley MM, Miccoli L, Escring MA, et al. The pupil as a measure of emotional arousal and autonomic activation. Psychophysiology. 2008; 45: 602-7
|
|
|
27)Cannon WB. The James-Lange theory of emotion: A critical examination and an alterna-tive theory. Am J Psychol. 1927; 39: 106-24
|
|
|
28)Bard P. A diencephalic mechanism for the expression of rage with special reference to the sympathetic nervous system. Am J Physiol - Legacy Content. 1928; 84: 490-515
|
|
|
29)James W. What is emotion? Mind. 1884; 9: 188-205
|
|
|
30)Lange CG. Uber Gemuthsbewegungen. Liepzig: T Thomas; 1887
|
|
|
31)Siegle GJ, Granholm E, Ingram RE, et al. Pupil-lary and reaction time measures of sustained processing of negative information in depression. Biol Psychiat. 2001; 49: 624-36
|
|
|
32)Siegle GJ, Steinhauer SR, Thase ME. Pupillary assessment and computational modeling of the Stroop task in depression. Int J Psychophysiol. 2004; 52: 63-76
|
|
|
33)Franzen PL, Buysse DJ, Dahl RE, et al. Sleep deprivation alters pupillary reactivity to emotional stimuli in healthy young adults. Biol Psychol. 2009; 80: 300-5
|
|
|
34)Silk JS, Dahl RE, Ryan ND, et al. Pupillary reactivity to emotional information in child and adolescent depression: links to clinical and ecological measures. Am J Psychiat. 2007; 164: 1873-80
|
|
|
35)Andreassi JL. Pupillary response and behavior. In: Andreassi JL, editor. Psychophysiology: Human behavior and physiological response. Mahwah: Lawrence Erlbaum Associates; 2000. p.218-33
|
|
|
36)Stern RM, Ray WJ, Quigley KS. Eyes: Pupillo-graphy and electrooculography. In: Stern RM, Ray WJ, Quigley KS, editors. Psychophysiological Recording. New York: Oxford University Press; 2001. p.125-41
|
|
|