AlbertD. J., 1966, “Rotation of the visual field in the rat”, unpublished (cited by Taub, 1968).
2.
ArlinskyM. B., 1967, “On the failure of fowl to adapt to prism induced displacement: Some theoretical analyses”, Psychonomic Science, 7, 237–238.
3.
AustinM.SingerG.WallaceM., 1974, “Three processes which occur during adaptation to transformation of the visual field”, Perception, 3, this issue.
4.
BailyJ. S., 1972a, “Adaptation to prisms: Do proprioceptive changes mediate adapted behavior with ballistic arm movements?”, Quarterly Journal of Experimental Psychology, 24, 8–20.
5.
BailyJ. S., 1972b, “Arm-body adaptation with passive arm movements”, Perception and Psychophysics, 12, 39–44.
6.
BailyJ. S.SingerG., 1967, “Behavioural compensation through information feedback and transformed visual input”, Australian Journal of Psychology, 19, 49–53.
7.
BallardP. B., 1913, “Oblivescence and reminiscence”, British Journal of Psychology Monograph, (2).
8.
BossomJ.HamiltonC. R., 1963, “Interocular transfer of prism-altered coordinations in split-brain monkeys”, Journal of Comparative and Physiological Psychology, 56, 769–774.
9.
BossomJ.OmmayaA. K., 1968, “Visuo-motor adaptation (to prismatic transformation of the retinal image) in monkeys with bilateral dorsal rhizotomy”, Brain, 91, 161–172.
10.
BrownG. G., 1928, “Perception of depth with disoriented vision”, British Journal of Psychology, 19, 117–146.
11.
BurnhamC. A., 1968, “Adaptation to prismatically induced curvature with nonvisible arm movements”, Psychonomic Science, 10, 273–274.
12.
CanonL. K., 1970, “Intermodality inconsistency of input and directed attention as determinants of the nature of adaptation”, Journal of Experimental Psychology, 84, 141–147.
13.
CanonL. K., 1971, “Directed attention and maladaptive ‘adaptation’ to displacement of the visual field”, Journal of Experimental Psychology, 88, 403–408.
14.
ChoeC. S.WelchR. B., 1974, “Variables affecting the intermanual transfer and decay of prism adaptation”, Journal of Experimental Psychology, 102, 1076–1084.
15.
CohenH. B., 1966, “Some critical factors in prism adaptation”, American Journal of Psychology, 79, 285–290.
16.
CohenM. M., 1967, “Continuous versus terminal visual feedback in prism aftereffects”, Perceptual and Motor Skills, 24, 1295–1302.
17.
CohenM. M., 1973, “Visual feedback, distribution of practice, and intermanual transfer of prism aftereffects”, Perceptual and Motor Skills, 37, 599–609.
18.
CohenM. M., 1974, “Changes in auditory localization following prismatic exposure under continuous and terminal visual feedback”, Perceptual and Motor Skills, 38, 1202.
19.
CohenM. M.HeldR., 1960, “Degrading visual—motor coordination by exposure to disordered re-afferent stimulation”, paper presented at the Eastern Psychological Association, New York.
20.
CollinsJ.K.SingerG., 1968, “Interaction between sensory spatial aftereffects and persistence of response following behavioral compensation”, Journal of Experimental Psychology, 77, 301–307.
21.
CorenS., 1966, “Adaptation to prismatic displacement as a function of the amount of available information”, Psychonomic Science, 4, 407–408.
22.
CraskeB., 1966, “Change in transfer function of joint receptor output”, Nature, 210, 764–765.
23.
CraskeB., 1967, “Adaptation to prisms: Change in internally registered eye-position”, British Journal of Psychology, 58, 329–335.
24.
CraskeB.CrawshawM., 1974, “Adaptive changes of opposite sign in the oculomotor systems of the two eyes”, Quarterly Journal of Experimental Psychology, 26, 106–113.
25.
CraskeB.GreggS. J., 1966, “Prism after-effects: Identical results for visual targets and unexposed limb”, Nature, 212, 104–105.
26.
CraskeB.TempletonW. B., 1968, “Prolonged oscillation of the eyes induced by conflicting position input”, Journal of Experimental Psychology, 76, 387–393.
DayR. H.SingerG., 1967, “Sensory adaptation and behavioral compensation with spatially transformed vision and hearing”, Psychological Bulletin, 67, 307–322.
29.
DevaneJ. R., 1968, “Proaction in the recovery from practice under visual displacement”, Perceptual and Motor Skills, 27, 411–416.
30.
DewarR., 1970a, “Adaptation to displaced vision: The influence of distribution of practice on retention”, Perception and Psychophysics, 8, 33–34.
31.
DewarR., 1970b, “Adaptation to displaced vision: Amount of optical displacement and practice”, Perception and Psychophysics, 8, 313–316.
32.
DewarR., 1971, “Adaptation to displaced vision: Variations on the ‘prismatic shaping’ technique”, Perception and Psychophysics, 9, 155–157.
33.
EbenholtzS. M., 1966, “Adaptation to a rotated visual field as a function of degree of optical tilt and exposure time”, Journal of Experimental Psychology, 72, 629–634.
34.
EbenholtzS. M., 1967, “Transfer of adaptation as a function of interpolated optical tilt to the ipsilateral and contralateral eye”, Journal of Experimental Psychology, 73, 263–267.
35.
EbenholtzS. M., 1968a, “Some evidence for a comparator in adaptation to optical tilt”, Journal of Experimental Psychology, 77, 94–100.
36.
EbenholtzS. M., 1968b, “Readaptation and decay after exposure to optical tilt”, Journal of Experimental Psychology, 78, 350–351.
37.
EbenholtzS. M., 1969, “Transfer and decay functions in adaptation to optical tilt”, Journal of Experimental Psychology, 81, 170–173.
38.
EbenholtzS. M., 1970, “On the relation between interocular transfer of adaptation and Hering's law of equal innervation”, Psychological Review, 77, 343–347.
39.
EbenholtzS. M., 1973, “Optimal input rates for tilt adaptation”, American Journal of Psychology, 86, 193–200.
40.
EbenholtzS. M., 1974, “The possible role of eye-muscle potentiation in several forms of prism adaptation”, Perception, 3
41.
EbenholtzS. M.MayerD., 1968, “Rate of adaptation under constant and varied optical tilt”, Perceptual and Motor Skills, 26, 507–509.
42.
EbenholtzS. M.ReddingG. M., 1970, “Temporal characteristics of a comparator in adaptation to optical tilt”, Perception and Psychophysics, 7, 365–366.
43.
EbnerE.BroekemaV.RitzierB., 1971, “Adaptation to altered visual—proprioceptive input in normals and schizophrenics”, Archives of General Psychiatry, 24, 367–371.
44.
EfstathiouE., 1969, “Effects of exposure time and magnitude of prism transform on eye—hand coordination”, Journal of Experimental Psychology, 81, 235–240.
45.
EfstathiouA.BauerJ.GreeneM.HeldR., 1967, “Altered reaching following adaptation to optical displacement of the hand”, Journal of Experimental Psychology, 73, 113–120.
46.
EpsteinW., 1967, Varieties of Perceptual Learning (McGraw-Hill, New York).
47.
EpsteinW., 1968, “Modification of the disparity—depth relationship as a result of exposure to conflicting cues”, American Journal of Psychology, 81, 189–197.
48.
EpsteinW., 1971, “Adaptation to uniocular image magnification after varying preadaptation activities”, American Journal of Psychology, 84, 66–74.
49.
EpsteinW., 1972a, “Retention of adaptation to uniocular image magnification: Effect of interpolated activity”, Journal of Experimental Psychology, 92, 319–324.
50.
EpsteinW., 1972b, “Adaptation to uniocular image magnification: Is the underlying shift proprioceptive?”, Perception and Psychophysics, 11, 89–91.
51.
EpsteinW.DaviessN., 1972, “Modification of depth judgment following exposures to magnification of uniocular image: Are changes in perceived absolute distance and registered direction of gaze involved?”, Perception and Psychophysics, 12, 315–317.
52.
EpsteinW.MorganC. L., 1970, “Adaptation to uniocular image magnification: Modification of the disparity—depth relationship”, American Journal of Psychology, 83, 322–329.
53.
EwertP. H., 1930, “A study of the effect of inverted retinal stimulation upon spatially coordinated behavior”, Genetic Psychology Monographs, 7, 177–363.
54.
FerrisS. H., 1972, “Loss of position constancy underwater”, Psychonomic Science, 27, 337–338.
55.
FestingerL.BurnhamC. A.OnoH.BamberD., 1967, “Efference and the conscious experience of perception”, Journal of Experimental Psychology Monograph, 74 (4), 1–36.
56.
FishkinS. M., 1969, “Passive vs active exposure and other variables related to the occurrence of hand adaptation to lateral displacement”, Perceptual and Motor Skills, 29, 291–297.
57.
FoleyJ. E., 1967, “A further study of alternation of normal and distorted vision”, Psychonomic Science, 9, 483–484.
58.
FoleyJ. E., 1974, “Factors governing interocular transfer of prism adaptation”, Psychological Review, 81, 183–186.
59.
FoleyJ. E.AbelS. M., 1967, “A study of alternation of normal and distorted vision”, Canadian Journal of Psychology, 21, 220–230.
60.
FoleyJ. E.MaynesF. J., 1969, “Comparison of training methods in the production of prism adaptation”, Journal of Experimental Psychology, 81, 151–155.
FreedmanS. J., 1968, “Perceptual compensation and learning”, in The Neuropsychology of Spatially Oriented Behavior, Ed. FreemanS. J. (Dorsey Press, Homewood, Illinois).
64.
GibsonE. J., 1969, Principles of Perceptual Learning and Development (Appleton-Century-Crofts, New York).
65.
GoldbergI. A.GordonM. A.TaubE., 1975, “Adaptation to laterally displaced vision during passive movement as a function of distribution of practice”, Journal of Experimental Psychology, in press.
66.
GoldbergI. A.TaubE.BermanA. J., 1967, “Decay of prism aftereffect and interlimb transfer of adaptation”, paper presented at the Eastern Psychological Association, Boston.
67.
GraybielA. M.HeldR., 1970, “Prismatic adaptation under scotopic and photopic conditions”, Journal of Experimental Psychology, 85, 16–22.
68.
GyrJ. W.WilleyR., 1970, “The effect of efference to the arm on visual adaptation to curvature: A replication”, Psychonomic Science, 21, 89–91.
69.
GyrJ. W.WilleyR.GordonD. G., 1972, “Correlations between motor learning and visual and arm adaptation under conditions of computer-simulated visual distortion”, Perception and Motor Skills, 35, 551–561.
70.
HajosA., 1968, “Sensumotorische Koordinationsprozesse bei Richtungslokalisation”, Zeitschift für Experimentelle und Angewandte Psychologie, 15, 435–461.
71.
HajosA.RitterM., 1965, “Experiments to the problem of interocular transfer”, Acta Psychologica, 24, 81–90.
72.
HamiltonC. R., 1964, “Intermanual transfer of adaptation to prisms”, American Journal of Psychology, 77, 457–462.
73.
HamiltonC. R., 1967, “Effects of brain bisection on eye—hand coordination in monkeys wearing prisms”, Journal of Comparative and Physiological Psychology, 64, 434–443.
74.
HamiltonC. R.BossomJ., 1964, “Decay of prism aftereffects”, Journal of Experimental Psychology, 67, 148–150.
75.
HamiltonC. R.SullivanM. V.HillyardS. A., 1971, “Effects of adaptation to displaced vision on reaching to remembered positions”, unpublished [Stanford University, Stanford/University of California, San Diego?].
76.
HardtM. E.HeldR.SteinbachM. J., 1971, “Adaptation to displaced vision: A change in the central control of sensorimotor coordination”, Journal of Experimental Psychology, 89, 229–239.
77.
HarrisC. S., 1963, “Adaptation to displaced vision: Visual, motor, or proprioceptive change?”, Science, 140, 812–813.
78.
HarrisC. S., 1965, “Perceptual adaptation to inverted, reversed and displaced vision”, Psychological Review, 72, 419–444.
79.
HarrisC. S., 1974, “Beware of the straight-ahead shift, a nonperceptual change in experiments on adaptation to displaced vision”, Perception, 3
80.
HayJ. C., 1968, “Visual adaptation to an altered correlation between eye movements and head movement”, Science, 160, 429–430.
81.
HayJ. C., 1971, “Does head-movement feedback calibrate the perceived direction of optical motions?”, Perception and Psychophysics, 10, 286–288.
HayJ. C.GoldsmithW. M., 1973, “Space—time adaptation of visual position constancy”, Journal of Experimental Psychology, 99, 1–9.
84.
HayJ. C.LangdonB.PickH. L.Jr., 1971, “Spatial parameters of eye-hand adaptation to optical distortion”, Journal of Experimental Psychology, 91, 11–17.
85.
HayJ. C.PickH. L.Jr., 1966a, “Visual and proprioceptive adaptation to optical displacement of the visual stimulus”, Journal of Experimental Psychology, 71, 150–158.
86.
HayJ. C.PickH. L.Jr., 1966b, “Gaze-contingent prism adaptation: Optical and motor factors”, Journal of Experimental Psychology, 72, 640–648.
87.
HayJ. C.PickH. L.Jr.IkedaK., 1965, “Visual capture produced by prism spectacles”, Psychonomic Science, 2, 215–216.
88.
HeinA.DiamondR. M., 1971, “Independence of the cat's scotopic and photopic systems in acquiring control of visually guided behavior”, Journal of Comparative and Physiological Psychology, 76, 31–38.
89.
HeinA.GowerE. C.DiamondR. M., 1970, “Exposure requirements for developing the triggered component of the visual-placing response”, Journal of Comparative and Physiological Psychology, 73, 188–192.
90.
HeinA.HeldR., 1967, “Dissociation of the visual placing response into elicited and guided components”, Science, 158, 390–392.
91.
HeinA.HeldR.GowerE. C., 1970, “Development and segmentation of visually controlled movement by selective exposure during rearing”, Journal of Comparative and Physiological Psychology, 73, 181–187.
92.
HeldR., 1955, “Shifts in binaural localization after prolonged exposure to atypical combinations of stimuli”, American Journal of Psychology, 68, 526–548.
93.
HeldR., 1961, “Exposure-history as a factor in maintaining stability of perception and co-ordination”, Journal of Nervous and Mental Disease, 132, 26–32.
94.
HeldR., 1968a, “Dissociation of visual functions by deprivation and rearrangement”, Psychologische Forschung, 31, 338–348.
95.
HeldR., 1968b, “Action contingent development of vision in neonatal animals”, in Experience and Capacity, Ed. KimbleD. P. (New York Academy of Sciences, New York).
96.
HeldR.BauerJ. A.Jr., 1967, “Visually guided reaching in infant monkeys after restricted rearing”, Science, 155, 718–720.
97.
HeldR.BossomJ., 1961, “Neonatal deprivation and adult rearrangement: Complementary techniques for analyzing plastic sensory—motor coordinations”, Journal of Comparative and Physiological Psychology, 54, 33–37.
98.
HeldR.EfstathiouA.GreeneM., 1966, “Adaptation to displaced and delayed visual feedback from the hand”, Journal of Experimental Psychology, 72, 887–891.
99.
HeldR.FreedmanS. J., 1963, “Plasticity in human sensorimotor control”, Science, 142, 455–462.
100.
HeldR.GottliebN., 1958, “Technique for studying adaptation to disarranged hand-eye coordination”, Perceptual and Motor Skills, 8, 83–86.
101.
HeldR.HeinA., 1963, “Movement-produced stimulation in the development of visually guided behavior”, Journal of Comparative and Physiological Psychology, 56, 872–876.
102.
von HelmholtzH., 1866, Treatise on Physiological Optics, translated and edited by SouthallJ. P. C., 1962, volume 3 (Dover, New York).
103.
HershbergerW. A.CarpenterD. L., 1972, “Adaptation to inverted retinal polarity: What's up, Bishop Berkeley?”, Journal of Experimental Psychology, 94, 261–268.
104.
HessE. H., 1956, “Space perception in the chick”, Scientific American, 195 (1), 71–80.
105.
HillyardS. A.HamiltonC. R., 1971, “Mislocalization of the arm following adaptation to displaced vision”, unpublished [University of California, San Diego/Stanford University, Stanford?].
106.
HochbergJ., 1971, “Space and movement”, in Woodworth and Schlosberg's Experimental Psychology, Eds KlingJ. W.RiggsL. A., third edition (Holt, Rinehart and Winston, New York), chapter 13.
107.
von HoistE.MittelstädtH., 1950, “Das Reafferenzprinzip”, Naturwissenschaften, 37, 464–476.
108.
HowardI. P., 1967, “Response shaping to visual-motor discordance”, paper presented to the Psychonomic Society, Chicago.
109.
HowardI. P., 1970, “The adaptability of the visua-motor system”, in Mechanisms of Motor Skill Development, Ed. ConnollyK. J. (Academic Press, London).
110.
HowardI. P., 1971, “Perceptual learning and adaptation”, British Medical Bulletin, 27, 248–252.
111.
HowardI. P.AnstisT.LuciaH. C., 1974, “The relative lability of mobile and stationary components in a visual-motor adaptation task”, Quarterly Journal of Experimental Psychology, 26, 293–300.
112.
HowardI. P.CraskeB.TempletonW. B., 1965, “Visuomotor adaptation to discordant exafferent stimulation”, Journal of Experimental Psychology, 70, 189–191.
113.
HowardI. P.TempletonW. B., 1966, Human Spatial Orientation (John Wiley, New York).
114.
JacksonC. V., 1953, “Visual factors in auditory localization”, Quarterly Journal of Experimental Psychology, 5, 52–65.
115.
KahaneJ.AuerbachC., 1973, “Effect of prior body experience on adaptation to visual displacement”, Perception and Psychophysics, 13, 461–466.
116.
KalilR. E.FreedmanS. J., 1966a, “Intermanual transfer of compensation for displaced vision”, Perceptual and Motor Skills, 22, 123–126.
117.
KalilR. E.FreedmanS. J., 1966b, “Persistence of ocular rotation following compensation for displaced vision”, Perceptual and Motor Skills, 22, 135–139.
118.
KennedyJ. M., 1969, “Prismatic displacement and the remembered location of targets”, Perception and Psychophysics, 5, 218–220.
119.
KinneyJ. A. S.LuriaS. M., 1970, “Conflicting visual and tactual—kinesthetic stimulation”, Perception and Psychophysics, 8, 189–192.
120.
KinneyJ. A. S.LuriaS. M.WeitzmanD. O.MarkowitzH., 1970, “Effects of diving experience on visual perception under water”, NSMRL Report 612, Naval Submarine Medical Research Laboratory, Groton, Connecticut, USA.
121.
KinneyJ. A. S.McKayC. L.LuriaS. M.GrattoC. L., 1970, “The improvement of divers' compensation for underwater distortions”, NSMRL Report 633, Naval Submarine Medical Research Laboratory, Groton, Connecticut, USA.
122.
KlappS. T.NordellS. A.HoekengaK. C.PattonC. B., 1974, “Long-lasting aftereffect of brief prism exposure”, Perception and Psychophysics, 15, 399–400.
123.
KohlerI., 1964, “The formation and transformation of the perceptual world”, Psychological Issues, 3 (4), translated by FissH., 1–173.
124.
KravitzJ. H., 1972, “Conditioned adaptation to prismatic displacement”, Perception and Psychophysics, 11, 38–42.
125.
KravitzJ. H.WallachH., 1966, “Adaptation to displaced vision contingent upon vibrating stimulation”, Psychonomic Science, 6, 465–466.
126.
KravitzJ. H.YaffeF., 1972, “Conditioned adaptation to prismatic displacement with a tone as the conditional stimulus”, Perception and Psychophysics, 12, 305–308.
127.
LacknerJ. R., 1974, “Adaptation to displaced vision: Role of proprioception”, Perceptual and Motor Skills, 38, 1251–1256.
128.
LazarG.Van LaerJ., 1968, “Adaptation to displaced vision after experience with lesser displacements”, Perceptual and Motor Skills, 26, 579–582.
129.
LesterG., 1968, “The case for efferent change during prism adaptation”, Journal of Psychology, 68, 9–13.
130.
LuriaS. M.KinneyJ. A. S., 1970, “Underwater vision”, Science, 167, 1454–1461.
131.
LuriaS. M.McKayC. L.FerrisS. H., 1973, “Handedness and adaptation to visual distortions of size and distance”, Journal of Experimental Psychology, 100, 263–269.
132.
MackA., 1967, “The role of movement in perceptual adaptation to a tilted retinal image”, Perception and Psychophysics, 2, 65–68.
133.
MackA.ChitayatD., 1970, “Eye-dependent and disparity adaptation to opposite visual-field rotations”, American Journal of Psychology, 83, 352–371.
134.
MackA.RockI., 1968, “A re-examination of the Stratton effect: Egocentric adaptation to a rotated visual image”, Perception and Psychophysics, 4, 57–62.
135.
McDonnellP. M.DuffettJ., 1972, “Vision and touch: A reconsideration of conflict between the two senses”, Canadian Journal of Psychology, 26, 171–180.
136.
McGhieA.ChapmanJ.LawsonJ. S., 1965, “The effect of distraction upon schizophrenic performance: I. Perception and immediate memory”, British Journal of Psychiatry, 3, 383–390.
137.
McKayC. L.KinneyJ. A. S.LuriaS. M., 1971, “Further tests of training techniques to improve visual—motor coordination of Navy divers under water”, NSMRL Report 684, Naval Submarine Medical Research Laboratory, Groton, Connecticut, USA.
138.
McLaughlinS. C.BowerJ. L., 1965, “Selective intermanual transfer of adaptive effects during adaptation to prism”, Psychonomic Science, 3, 69–70.
139.
McLaughlinS. C.RifkinK. I.WebsterR. G., 1966, “Oculomotor adaptation to wedge prisms with no part of the body seen”, Perception and Psychophysics, 1, 452–458.
140.
McLaughlinS. C.WebsterR.G., 1967, “Changes in straight-ahead eye position during adaptation to wedge prisms”, Perception and Psychophysics, 2, 37–44.
141.
MeierM. J., 1970, “Effects of focal cerebral lesions on contralateral visuomotor adaptation to reversal and inversion of visual feedback”, Neuropsychologia, 8, 269–279.
142.
MeierM. J.FrenchL. A., 1966, “Readaptation to prismatic rotations of visual space as a function of lesion laterality and extratemporal EEG spike activity after temporal lobectomy”, Neuropsychologia, 4, 151–157.
143.
MelamedL. E.HalayM.GildowJ. W., 1973, “Effect of external target presence on visual adaptation with active and passive movement”, Journal of Experimental Psychology, 98, 125–130.
144.
MelamedL. E.WallaceB., 1971, “An analysis of the role of the correction effect in visual adaptation”, paper presented at the Eastern Psychological Association, New York.
145.
MelamedL. E.WallaceB.CohenR. R.OakesS., 1972, “Correction effect in visual adaptation as measure of field independence—dependence”, Perceptual and Motor Skills, 34, 554.
146.
MikaelianH. H., 1963, “Failure of bilateral transfer in modified eye-hand coordination”, paper presented at the Eastern Psychological Association, New York.
147.
MikaelianH. H., 1966, “Adaptation to rearranged eye—foot coordination”, paper presented at the Eastern Psychological Association, New York.
148.
MikaelianH. H., 1967, “Relation between adaptation to rearrangement and the source of motor—sensory feedback”, Psychonomic Science, 9, 485–486.
149.
MikaelianH. H., 1970, “Adaptation to rearranged eye-foot coordination”, Perception and Psychophysics, 8, 222–224.
MikaelianH. H., 1974b, “Restricted adaptation to prism rearrangement”, Perception and Psychophysics, 16, 547–550.
152.
MillerE. A., 1972, “Interaction of vision and touch in conflict and nonconflict form perception tasks”, Journal of Experimental Psychology, 96, 114–123.
153.
MouldenB., 1971, “Adaptation to displaced vision: Reafference is a special case of the cue-discrepancy hypothesis”, Quarterly Journal of Experimental Psychology, 23, 113–117.
154.
OnoH.O'ReillyJ. P., 1971, “Adaptation to underwater distance distortion as a function of different sensory-motor tasks”, Human Factors, 13, 133–140.
155.
OverR., 1966, “An experimentally induced conflict between vision and proprioception”, British Journal of Psychology, 57, 335–341.
156.
PetersonJ.PetersonJ. K., 1938, “Does practice with inverting lenses make vision normal?”, Psychological Monograph, 50 (5), 12–37.
157.
PickH. L.Jr.HayJ. C., 1965, “A passive test of the Held reafference hypothesis”, Perceptual and Motor Skills, 20, 1070–1072.
158.
PickH. L.Jr.HayJ. C., 1966, “Gaze-contingent adaptation to prismatic spectacles”, American Journal of Psychology, 79, 443–450.
159.
PickH. L.Jr.HayJ. C.MartinR., 1969, “Adaptation to split-field wedge prism spectacles”, Journal of Experimental Psychology, 80, 125–132.
160.
PickH. L.Jr.HayJ. C.WilloughbyR. H., 1966, “Interocular transfer of adaptation to prismatic distortion”, Perceptual and Motor Skills, 23, 131–135.
161.
PickH. L.Jr.WarrenD. H.HayJ. C., 1969, “Sensory conflict in judgments of spatial direction”, Perception and Psychophysics, 6, 203–205.
162.
PickH. L.Jr.WarrenD. H.McIntyreC.AppelL., 1972, “Transfer and the organization of perceptual—motor space”, Psychologische Forschung, 35, 163–177.
163.
PuttermanA. H.RobertA. L.BregmanA. S., 1969, “Adaptation of the wrist to displacing prisms”, Psychonomic Science, 16, 79–80.
164.
QuinlanD., 1970, “Effects of sight of the body and active locomotion in perceptual adaptation”, Journal of Experimental Psychology, 86, 91–96.
165.
RadeauM.BertelsonP., 1973, “The after-effects of ventriloquism”, Quarterly Journal of Experimental Psychology, 25, 63–71.
166.
ReddingG. M., 1973a, “Simultaneous visual adaptation to tilt and displacement: A test of independent processes”, Bulletin of Psychonomic Society, 2, 41–42.
167.
ReddingG. M., 1973b, “Visual adaptation to tilt and displacement: Same or different processes?”, Perception and Psychophysics, 14, 193–200.
168.
ReddingG. M., 1975a, “Simultaneous visuo-motor adaptation to optical tilt and displacement”, Perception and Psychophysics, 17, 97–100.
169.
ReddingG. M., 1975b, “Decay of visual adaptation to tilt and displacement”, Perception and Psychophysics, 17, 203–208.
170.
RekoshJ. H.FreedmanS. J., 1967, “Errors in auditory direction-finding after compensation for visual rearrangement”, Perception and Psychophysics, 2, 466–468.
171.
RierdanJ. E.WapnerS., 1966, “Experimental study of adaptation to visual rearrangement deriving from an organismic—developmental approach to cognition”, Perceptual and Motor Skills, 23, 903–916.
172.
RierdanJ. E.WapnerS., 1967, “Adaptive changes in the relationship between visual and tactual-kinesthetic perception”, Psychonomic Science, 7, 61–62.
173.
RockI., 1966, The Nature of Perceptual Adaptation (Basic Books, New York).
174.
RockI.GoldbergJ.MackA., 1966, “Immediate correction and adaptation based on viewing a prismatically displaced scene”, Perception and Psychophysics, 1, 351–354.
RossH. E., 1970, “Adaptation of divers to curvature distortion under water”, Ergonomics, 13, 489–499.
177.
RossH. E.FranklinS. S.WeltmanG.LennieP., 1970, “Adaptation of divers to size distortion under water”, British Journal of Psychology, 61, 365–373.
178.
RossH. E.LennieP., 1972, “Adaptation and counteradaptation to complex optical distortion”, Perception and Psychophysics, 12, 273–277.
179.
RossH. E.RejmanM. H., 1972, “Adaptation to speed distortions under water”, British Journal of Psychology, 63, 257–264.
180.
RossiP. J., 1967, “Prism adaptation in the chick”, Ph.D. dissertation (unpublished), University of California, Riverside.
181.
RossiP. J., 1968, “Adaptation and negative aftereffect to lateral optical displacement in newly hatched chicks”, Science, 160, 430–432.
182.
RossiP. J., 1969, “Primacy of the negative aftereffect over positive adaptation in prism adaptation with newly hatched chicks”, Developmental Psychobiology, 2, 43–53.
183.
RotterJ. B., 1966, “Generalized expectancies for internal versus external control of reinforcement”, Psychological Monographs, 80 (1), 1–28.
184.
SekulerR. W.BauerJ. A.Jr., 1966, “Adaptation to prismatic displacements: Hand position and target location”, Journal of Experimental Psychology, 72, 207–212.
185.
ShafferO.WallachH., 1966, “Adaptation to displaced vision measured with three tests”, Psychonomic Science, 6, 143–144.
186.
SingerG.DayR. H., 1966a, “Spatial adaptation and aftereffect with optically transformed vision: Effects of active and passive responding and the relationship between test and exposure responses”, Journal of Experimental Psychology, 71, 725–731.
187.
SingerG.DayR. H., 1966b, “The effects of spatial judgments on the perceptual aftereffect resulting from prismatically transformed vision”, Australian Journal of Psychology, 18, 63–70.
188.
SingerG.DayR. H., 1969, “Visual capture of haptically judged depth”, Perception and Psychophysics, 5, 315–316.
189.
SlotnickR. S., 1969, “Adaptation to curvature distortion”, Journal of Experimental Psychology, 81, 441–448.
SmithK. U.SmithW. K., 1962, Perception and Motion (Saunders, Philadelphia).
192.
SmothergillD. W.MartinR.PickH. L.Jr., 1971, “Perceptual—motor performance under rotation of the central field”, Journal of Experimental Psychology, 87, 64–70.
193.
SnyderF. W.PronkoN. H., 1952, Vision with Spatial Inversion (University of Wichita Press, Wichita).
194.
StrattonG. M., 1896, “Some preliminary experiments on vision without inversion of the retinal image”, Psychological Review, 3, 611–617.
195.
StrattonG. M., 1897a, “Upright vision and the retinal image”, Psychological Review, 4, 182–187.
196.
StrattonG. M., 1897b, “Vision without inversion of the retinal image”, Psychological Review, 4, 341–360, 463–481.
TaubE., 1968, “Prism compensation as a learning phenomenon: A phylogenetic perspective”, in The Neuropsychology of Spatially Oriented Behavior, Ed. FreedmanS. J. (The Dorsey Press, Homewood, Illinois).
199.
TaubE.GoldbergI. A., 1973, “Prism adaptation: Control of intermanual transfer by distribution of practice”, Science, 180, 755–757.
200.
TaubE.GoldbergI. A., 1974, “Use of sensory recombination and somatosensory deafferentation techniques in the investigation of sensory—motor integration”, Perception, 3
201.
TaubE.GoldbergI. A.BossomJ.BermanA. J., 1966, “Deafferentation in monkeys: Adaptation to prismatic displacement of vision”, paper presented at the Eastern Psychological Association, New York.
202.
TaylorJ. G., 1962, The Behavioral Basis of Perception (Yale University Press, New Haven).
203.
TempletonW. B.HowardI. P.LowmanA. E., 1966, “Passively generated adaptation to prismatic distortion”, Perceptual and Motor Skills, 22, 140–142.
204.
TempletonW. B.HowardI. P.WilkinsonD. A., 1974, “Additivity of components of prismatic adaptation”, Perception and Psychophysics, 15, 249–257.
205.
UhlarikJ. J., 1973, “Role of cognitive factors on adaptation to prismatic displacement”, Journal of Experimental Psychology, 98, 223–232.
206.
UhlarikJ. J., 1974, “Some effects of exposure to optical disarrangement on adaptation to optical rearrangement”, Perception, 3
207.
UhlarikJ. J.CanonL. K., 1970, “Effects of situational cues on prism-induced aftereffects”, Perception and Psychophysics, 7, 348–350.
208.
UhlarikJ. J.CanonL. K., 1971, “Influence of concurrent and terminal exposure conditions on the nature of perceptual adaptation”, Journal of Experimental Psychology, 91, 233–239.
209.
Van LaerE., 1968, “Transfer effects in adaptation to prismatic displacement”, Psychonomic Science, 13, 85–86.
210.
VictorJ., 1968, “The role of movement in perceptual adaptation to curvature”, Dissertation Abstracts, 29, 2227.
211.
WalkR. D.BondE. K., 1971, “The development of visually guided reaching in monkeys reared without sight of the hands”, Psychonomic Science, 23, 115–116.
212.
WalkerJ. T., 1971, “Visual capture in visual illusions”, Perception and Psychophysics, 10, 71–74.
213.
WalkerJ. T., 1972, “Natural visual capture in bilateral length comparisons”, Perception and Psychophysics, 11, 247–251.
214.
WallaceB., 1974a, “Preexposure pointing frequency effects on adaptation to prismatic viewing”, Perception and Psychophysics, 15, 26–30.
215.
WallaceB., 1974b, “Target and arm observation effects on adaptation to prism displacement”, Perception and Psychophysics, 15, 145–148.
216.
WallaceB.GarrettJ. B., 1973, “Reduced felt arm sensation effects on visual adaptation”, Perception and Psychophysics, 14, 597–600.
217.
WallaceB.MelamedL. E.CohenR. R., 1973, “An analysis of aftereffects in the measurement of the correction effect”, Perception and Psychophysics, 14, 21–23.
218.
WallaceB.MelamedL. E.KaplanC., 1973, “Movement and illumination factors in adaptation to prismatic viewing”, Perception and Psychophysics, 13, 164–168.
219.
WallachH., 1968, “Informational discrepancy as a basis of perceptual adaptation”, in The Neuropsychology of Spatially Oriented Behavior, Ed. FreedmanS. J. (Dorsey Press, Homewood, Illinois).
220.
WallachH.FloorL., 1970, “On the relation of adaptation to field displacement during head movements to the constancy of visual direction”, Perception and Psychophysics, 8, 95–98.
221.
WallachH.FreyK. J., 1969, “Adaptation in the constancy of visual direction measured by a one-trial method”, Perception and Psychophysics, 5, 249–252.
222.
WallachH.FreyK. J., 1972a, “Differences in the dissipation of the effect of adaptation to two kinds of field displacement during head movements”, Perception and Psychophysics, 11, 31–34.
223.
WallachH.FreyK. J., 1972b, “Adaptation in distance perception based on oculomotor cues”, Perception and Psychophysics, 11, 77–83.
224.
WallachH.FreyK. J., 1972c, “On counteradaptation”, Perception and Psychophysics, 11, 161–165.
225.
WallachH.FreyK. J.BodeK. A., 1972, “The nature of adaptation in distance perception based on oculomotor cues”, Perception and Psychophysics, 11, 110–116.
226.
WallachH.FreyK. J.RomneyG., 1969, “Adaptation to field displacement during head movement unrelated to the constancy of visual direction”, Perception and Psychophysics, 5, 253–256.
227.
WallachH.HuntingtonD., 1973, “Counteradaptation after exposure to displaced visual direction”, Perception and Psychophysics, 13, 519–524.
228.
WallachH.KravitzJ. H., 1965a, “The measurement of the constancy of visual direction and of its adaptation”, Psychonomic Science, 2, 217–218.
229.
WallachH.KravitzJ. H., 1965b, “Rapid adaptation in the constancy of visual direction with active and passive rotation”, Psychonomic Science, 3, 165–166.
230.
WallachH.KravitzJ. H., 1968, “Adaptation in the constancy of visual direction tested by measuring the constancy of auditory direction”, Perception and Psychophysics, 4, 299–303.
231.
WallachH.KravitzJ. H., 1969, “Adaptation to vertical displacement of the visual direction”, Perception and Psychophysics, 6, 111–112.
232.
WallachH.MooreM. E.DavidsonL., 1963, “Modification of stereoscopic depth perception”, American Journal of Psychology, 76, 191–204.
233.
WallachH.SmithA., 1972, “Visual and proprioceptive adaptation to altered oculomotor adjustments”, Perception and Psychophysics, 11, 413–416.
234.
WallachH.YablickG. S.SmithA., 1972, “Target distance and adaptation in distance perception in the constancy of visual direction”, Perception and Psychophysics, 12, 139–145.
235.
WalshT. M.FreedmanS. J., 1966, “Ipsilateral hand—eye rearrangement and contralateral transfer compared under differential adaptation criteria”, paper presented at the Eastern Psychological Association, New York.
236.
WalshT. M.FreedmanS. J., 1967, “Intermanual transfer of compensation for prism displacement in the absence of error-corrective feedback”, paper presented at the Eastern Psychological Association, Boston.
237.
WarrenD. H.CleavesW. T., 1971, “Visual—proprioceptive interaction under large amounts of conflict”, Journal of Experimental Psychology, 90, 206–214.
238.
WarrenD. H.PickH. L.Jr., 1970, “Intermodality relations in localization in blind and sighted people”, Perception and Psychophysics, 8, 430–432.
239.
WarrenD. H.PlattB. B., 1974, “The subject: A neglected factor in recombination research”, Perception, 3
240.
WarrenD. H.PlattB. B., 1975, “Understanding prism adaptation: An individual differences approach”, Perception and Psychophysics, in press.
241.
WebsterR. G., 1969, “The relationship between cognitive, motor—kinesthetic, and oculomotor adaptation”, Perception and Psychophysics, 6, 33–38.
242.
WeertsT. C.ThurlowW. R., 1971, “The effects of eye position and expectation on sound localization”, Perception and Psychophysics, 9, 35–39.
243.
WelchR. B., 1969, “Adaptation to prism-displaced vision: The importance of target pointing”, Perception and Psychophysics, 5, 305–309.
244.
WelchR. B., 1971a, “Prism adaptation: The “target-pointing effect” as a function of exposure trials”, Perception and Psychophysics, 9, 102–104.
245.
WelchR. B., 1971b, “Discriminative conditioning of prism adaptation”, Perception and Psychophysics, 10, 90–92.
246.
WelchR. B., 1972, “The effect of experienced limb identity upon adaptation to simulated displacement of the visual field”, Perception and Psychophysics, 12, 453–456.
247.
WelchR. B., 1974, “Speculations on a model of prism adaptation”, Perception, 3
248.
WelchR. B.AbelM. R., 1970, “The generality of the “target-pointing effect” in prism adaptation”, Psychonomic Science, 20, 226–227.
249.
WelchR. B.ChoeC. S.HeinrichD. R., 1974, “Evidence for a three-component model of prism adaptation”, Journal of Experimental Psychology, 103, 700–705.
WelchR. B.RhoadesR. W., 1969, “The manipulation of informational feedback and its effects upon prism adaptation”, Canadian Journal of Psychology, 23, 415–428.
252.
WhiteB. L.HeldR., 1966, “Plasticity of sensorimotor development”, in The Causes of Behavior: Readings in Child Development and Educational Psychology, Eds RosenblithJ. F.AllinsmithW. (Allyn and Bacon, Boston).
253.
WilkinsonD. A., 1971, “Visual—motor control loop: A linear system?”, Journal of Experimental Psychology, 89, 250–257.