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Specializations for chromatic and temporal signals in human visual cortex.

Neurological case studies and qualitative measurements suggest that regions within human extrastriate cortex are specialized for different perceptual functions, including color. However, there are few quantitative measurements of human extrastriate color specializations. We studied the chromatic and temporal responses in several different clusters of human visual field maps using functional magnetic resonance imaging. Contrast response functions were measured for luminance [(L + M)-cone], red-green [(L - M)-cone] and blue-yellow (S-cone) modulations at various temporal frequencies. In primary visual cortex (V1), temporal responsivities to luminance and red-green modulations are approximately constant up to 10 Hz, but responsivities to blue-yellow modulations decrease significantly. In ventral occipital cortex (VO), all colors elicit strong responses, and, for each color, low temporal frequency modulations are more effective than high temporal frequency modulations. Hence, VO represents the full range of color information but does not respond well to rapid modulations. Conversely, in human motion-selective cortex (MT+) and V3A, blue-yellow modulations elicit very weak responses, whereas luminance and red-green high temporal frequency modulations are equally or more effective than low temporal frequency modulations. Hence, these dorsal occipital regions respond well to rapid modulations, but not all color information is represented. Similar to human motion perception, MT+ and V3A respond powerfully to all temporal frequencies but only to some colors. Similar to human color perception, VO responds powerfully to all colors but only to relatively low temporal frequencies.

Brain Mapping↗

Stimulus control of the pigeon's ability to peck a moving target.

Two pigeons were trained to peck whichever of eight keys displayed a white field (SD). The other seven keys displayed a white "X" on a black background (S delta). Each peck to SD produced three-second access to grain, a three-second intertrial interval (ITI), and the next trial. Pecks to S delta produced a three-second timeout (TO) and the same trial. During later sessions the key displaying SD changed every t seconds (t = 3, 2, 1, .5, and .25 sec), requiring the birds to track the position of the SD. Pecks on a ninth key increased t. Several sessions employed novel stimuli to ascertain the controlling stimulus dimensions. Both birds made few errors acquiring the original discrimination. During the tracking sessions, both birds made few errors when t = .5 sec. Only one reliably lengthened t. Data from sessions with novel stimuli indicate that color and form were important aspects of SD and S delta respectively; movement contributed to the final performance.

Animals↗

[Reproduction study of Guanabenz, a new antihypertensive agent (3) - perinatal and postnatal test in rats].

Guanabenz (WY-8678) was given to rats to examine its effects on dams and offspring in terms of influence on postnatal development emotion, learning and reproductive ability. The drug was administered orally to rats at 15, 8, 5, 2 and 1 mg/kg/day from the 17th day of gestation to the 21st post-partum day. The vehicle used was 5%-Arabic Gum at dose level of 5 ml/kg and a control experiment where only vehicle was administered was also conducted. The results obtained were as follows. 1. In observation of the dams, increase in body weight tended to be repressed after administration in the 8 mg/kg group, and in the 15 mg/kg group body weight decreased. Food consumption and water intake tended to be suppressed in the 15 mg/kg group. During nursing, changes of body weight, food consumption and water intake were not influenced by Guanabenz in each group. 2. The drug produced sedation, abnormal walking, decrease in a reflex test and lacrimation of red exudate in dams. 3. In the 15 mg/kg group, the length of gestation was prolonged. Furthermore, abnormal delivery and nursing were observed, and in one-third of dams in the 8 mg/kg group and in all dams of 15 mg/kg group, the still-birth of all offspring was observed. No difference was observed among groups as to the organ weights at weaning. 4. In observation of the offspring, differences were observed in the viability rate and the weaning rate. No difference was observed among groups as to the viability rate, changes of body weight, postnatal development, and behavioral development on the 7th day. No differences were observed in each group regarding emotion, motion, perception and learning. 5. No difference was observed among groups in the reproduction test. As to symptoms seen in gestation, the dams and fetuses were not influenced by dosage of Guanabenz. From these results, the safe dose level seems to be below 5 mg/kg/day.

Animals↗

Mechanics of Coriolis stimulus and inducing factors of motion sickness.

To specify inducing factors of motion sickness comprised in Coriolis stimulus, or cross-coupled rotation, the sensation of rotation derived from the semicircular canal system during and after Coriolis stimulus under a variety of stimulus conditions, was estimated by an approach from mechanics with giving minimal hypotheses and simplifications on the semicircular canal system and the sensory nervous system. By solving an equation of motion of the endolymph during Coriolis stimulus, rotating angle of the endolymph was obtained, and the sensation of rotation derived from each semicircular canal was estimated. Then the sensation derived from the whole semicircular canal system was particularly considered in two cases of a single Coriolis stimulus and cyclic Coriolis stimuli. The magnitude and the direction of sensation of rotation were shown to depend on an angular velocity of body rotation and a rotating angle of head movement (amplitude of head oscillation when cyclic Coriolis stimuli) irrespective of initial angle (center angle) of the head relative to the vertical axis. The present mechanical analysis of Coriolis stimulus led a suggestion that the severity of nausea evoked by Coriolis stimulus is proportional to the effective value of the sensation of rotation caused by the Coriolis stimulus.

Acceleration↗

Accuracy of boundary detection by observers of filmed movement.

The influence of filming speed and body-part velocity on observers' accuracy during the microanalysis of filmed movement was investigated. Four experienced observers analyzed a stimulus film containing initiation and termination boundaries in the movement of a rod oscillating at rates derived from a range of filming speed and body-part velocity combinations. Results indicated that greatest errors in boundary-frame detection occurred at the fastest filming speed and slowest body-part velocity. Furthermore, a boundary-type effect was significant, with initiations being harder to detect accurately than terminations. Attention was drawn to the complexity of microanalysis, and it was suggested that expectations of unconditional absolute accuracy on this task are unrealistic.

Discrimination, Psychological↗

Adaptation to optokinetic rotation-induced motion sickness without experiencing nausea.

17 subjects highly susceptible to motion sickness were divided into Nausea and No-nausea groups depending upon whether the subjects experienced nausea during adaptation to nauseagenic rotation. Eight subjects in the Nausea group viewed an optokinetic rotation drum for repeated sessions of 16 min., with an interval of two days between every two sessions. During each session the subjects continuously viewed the rotating drum 16 min. even if they experienced nausea. nine subjects in the No-nausea group likewise viewed an optokinetic rotation drum for at most 16 min. but immediately stopped viewing the rotating drum whenever they experienced nausea during the session. The criteria for full adaptation were that the subject reported no feelings of stomach discomfort and nausea during a 16-min session. The mean number of sessions to reach full adaptation was 3.9 (SD = 0.6) with a range 3 to 5 sessions for the subjects in the Nausea group and 3.2 (SD = 0.8) with a range 2 to 4 for the subjects in the No-nausea group. It was concluded that subjects can adapt to a nauseagenic optokinetic rotation by repeated exposure without experiencing nausea and vomiting during adaptation.

Adaptation, Physiological↗

Absence of habituation to repeated exposures to a rotating optokinetic drum with brief intersession intervals.

The purpose of this study was to investigate whether participants would habituate to repeated exposures to a rotating drum with brief intersession intervals. Participants were 41 college students, divided into a High Susceptibility group and a Low Susceptibility group based on their subjective symptoms of motion sickness during the first exposure to the rotating drum. The study consisted of three 16-min. exposures to a rotating drum with intersession intervals of 30 min. Contrary to expectation, for the High Susceptibility group, the symptom score mean of the first session was significantly less than that of the second and third sessions; and the drum viewing time of the first session was longer than that of the second and third sessions. In the Low Susceptibility group, the symptom score and drum viewing time were not significantly different among the three sessions. In conclusion, participants did not habituate to three repeated exposures to a rotating drum with intersession intervals of 30 min. Instead, a sensitization response occurred for the participants high in susceptibility.

Adult↗

Imagix: multimedia software for evaluating the vividness of movement-imagery.

This article presents a new software, Imagix, designed for the evaluation of the vividness of movement-imagery. This multimedia test is comprised of 18 movements in six different psychomotor categories whose vividness of imagery is to be appraised. Imagix has the advantage of offering an evaluation of the vividness of imagery in a normative way. The participant chooses among four films displaying a vividness gradient, which includes contrast and luminosity. The participant is first asked to visualize a movement verbally suggested. The participant is then asked to evaluate the vividness of this mental image by choosing on a computer screen the movie that best corresponds to the vividness of the movement-imagery. The first versions of this freeware (in English and French) are currently being validated.

Contrast Sensitivity↗

Susceptibility to motion sickness induced by optokinetic rotation and self-rotation by walking around a vertical pole.

31 subjects viewed an optokinetic rotating drum for 12 min. in one session and self-rotated by walking quickly around a vertical pole with eyes closed while alternately flexing and extending the neck in another session. The self-rotation session contained 6 trials (3 clockwise and 3 counterclockwise rotations). Each trial contained 20 cycles of self-rotations. Self-reported ratings of nausea and symptoms of motion sickness were obtained for each session. The subjects developed symptoms of nausea, sweating, dizziness, headache, drowsiness, and changes in salivation in both drum rotation and self-rotation sessions. However, the subjects reported higher ratings of nausea in the session of optokinetic rotation than in the session of self-rotation around a vertical pole. These results indicated that both optokinetic rotation and self-rotation with eyes closed while alternately flexing and extending the neck are effective means of inducing nausea and motion sickness.

Adolescent↗

Successful transfer of adaptation acquired in a slow rotation room to motion environments in Navy flight training.

Two flight students, grounded for the reason they were highly susceptible to motion sickness, completed their training after gradually adapting to 10 rpm, achieved by executing head movements during small stepwise increases in angular velocity. Subject 1 executed a total of about 77 000 head movements with a period of 5 months and Subject 2 executed about 108 000 head movements within a period of 42 days. The transfer of adaptation acquired in the laboratory to most motion environments aloft was good; the notable exception involved weightless maneuvers in the case of Subject 1. Both were on flight status when contacted recently. The opportunity was taken to assess the current motion sickness susceptibility in Subject 1 in the fall of 1975. He reached our (mild) motion sickness endpoint, in the rotating room, at 17 rpm: the average endpoint is 7--8 rpm. Some practical and theoretical implications are discussed.

Adult↗

Visual destabilisation of posture in normal subjects.

A new and simple method of assessing reliance on vision for postural control was evaluated in 41 normal subjects. Left-right reversal of peripheral vision induced by a head-mounted mirror device caused an initial dramatic instability in approximately half the subjects, when standing on foam to reduce the value of proprioception. Lateral reversal of central vision by means of a prism device evoked similar responses. Sensitivity to vision reversal was significantly correlated with motion sickness susceptibility. Despite some rapid habituation (partially retained over several weeks) sway remained as great as with eye closure in the anterior-posterior as well as lateral direction, indicating complete suppression of the visual input. Balancing with vision reversal caused a selective decrement in performance of a visuo-spatial memory task, suggesting that coping with misleading visual input may place continuous demands on cortical spatial processing.

Adult↗

Perceptual studies in patients with vestibular neurectomy.

Twelve patients undergoing unilateral vestibular neurectomy for the treatment of refractory vertigo were investigated. Vestibular motion perception was assessed using a self-rotational task and "vestibular remembered saccades". Cervical perception was also measured with remembered saccades. The tests were performed pre- and post-operatively to examine changes in vestibular and cervical perception following an acute vestibular lesion, and to monitor the progress of vestibular compensation. These perception tests were carried out in conjunction with a conventional evaluation of the vestibular ocular reflex (VOR), using electro-oculography. The patients' subjective symptoms at each stage of testing were also quantified with questionnaires. Generally, in the vestibular tests, for stimulation to the operated side, responses became strongly hypometric directly after the neurectomy, with a partial recovery during convalescence. In the cervical test, responses were bilaterally reduced immediately after operation. Results from both of the vestibular perception tests were significantly correlated with the VOR assessment of vestibular function. Scores for the patients' subjective symptoms of "vertigo" were only significantly correlated with the vestibular perception tests, and not with the conventional measures of vestibular function. Perceptual measurements afford useful complementary information in the assessment of vestibular patients.

Adult↗

The response of SI directionally selective neurons to stimulus motion occurring at two sites within the receptive field.

Data from two classes of primary somatosensory (SI) neurons (termed "direction-invariant" and "direction-variant") were analyzed to evaluate their capacity to process the directional information provided by two moving (i.e., brushing) stimuli delivered to nonoverlapping skin sites within the receptive field (RF). The stimulus sites were arranged either end to end or side by side on the skin. The two stimuli were delivered at the same time (i.e., simultaneously) or asynchronously in precisely defined orders. For both classes of neurons, and with both the end-to-end and side-by-side dual-stimulus arrangements, the response elicited by dual-site stimulation was usually much less than a linear summation of the responses elicited by independent stimulation of each site. For the direction-invariant neurons, when the two sites were arranged end to end and direction of motion at both sites was the same, directional sensitivity with dual-site stimulation most often matched or exceeded a vectorial sum of the sensitivities observed at each site when stimulated alone. In contrast, with the side-by-side arrangement, the level of directional sensitivity achieved with dual-site stimulation often failed to attain that predicted by vectorial summation of the sensitivities observed at each site. Instead, directional sensitivity under this dual-stimulus condition only approximated that attained with single-site stimulation at the more sensitive site. When noncorresponding directions of motion were presented at two sites within the RF (using either the end-to-end or side-by-side arrangement), direction-invariant neurons failed to respond differentially to opposing patterns of dual-site stimulation. For the direction-variant SI neurons, a particular end-to-end arrangement of the two sites within the RF was studied: Sites were identified on opposite sides of the within-RF boundary that in these neurons separates regions with opposite directional preferences. With this arrangement, the differential response was greater when opposite directions of motion were applied to the two sites than it was when the same direction of motion was delivered at both sites. The observations suggest that for both groups of SI neurons, the magnitude of directional sensitivity is dependent on the same attributes of dual-site stimulation that influence cutaneous directional sensitivity--that is, on the spatial arrangement of and temporal delay between the two stimuli, and on the correspondence of their directions. The effects of dual-site stimulation on the behavior of these two neuron populations appear to be in good agreement with the hypothesis that they subserve a function in tactile motion perception.

Afferent Pathways↗

[Preretinopathic changes in the oscillatory potential in diabetic retina: interpretation and significance].

1) The earliest electroretinographic manifestation of diabetic retina is a selective change in the oscillatory potential (OP), which originates in postsynaptic retinal neuronal circuits. "Diabetic intraretinal neuropathy" precedes angiopathic retinopathy. 2) The peak latency and the amplitude of the OP are significantly correlated with the psychophysical contrast threshold for motion perception (CTMP) measured with our original device. 3) The CTMP is not correlated with the conventional static contrast threshold measured with a commercially available chart (VCTS-6000). 4) The CTMP is beyond the upper limit in nondiabetic control eyes in 135 out of 162 diabetic eyes at stage 0 (no ophthalmoscopic diabetic retinopathy) and all retinopathic eyes at stages AI (11 eyes) and AII (21 eyes). The CTMP test, which is completely non-invasive and easy to perform, could be useful for mass-screening of early diabetic retinal dysfuction. 5) The amplitude of the OP is enhanced by dopamine and nomifensine (a potent dopamine-uptake blocker), and diminished by haloperidol (a potent antagonist to dopamine D1-D2 receptors). Intrinsic dopamine release in the retina would regulate the amplitude of the OP. 6) The intraretinal content of dopamine decreases in streptozotocin (STZ)-induced diabetic rats where the OP amplitude is diminished, and increases in eyes where the OP amplitude is enhanced at the early stage in spontaneously diabetic (OLETF) rats. The changes in the OP amplitude in STZ-induced and OLETF diabetic rats can not be accounted for by the intraretinal content of gamma-aminobutyric acid (GABA), glycine, glutamate, aspartate or taurine. The changes in the OP amplitude in the diabetic retina are at least partly due to dysfunction of dopaminergic retinal neurons. 7) The peak latency prolongation and the amplitude diminution of the OP in STZ-induced diabetic rats are normalized after insulin treatment, while vitreous fluorescein concentration by vitreous fluorophotometry is not restored by insulin. Thus, the OP changes in STZ-induced diabetic rats are not due to STZ toxicity but to diabetes per se, and are not attributable to blood-ocular barrier disruption as revealed by vitreous fluorophotometry. Retinal neuronal dysfunction revealed by the OP changes at the early preretinopathic stage in STZ-induced diabetic rats is reversible after insulin treatment. 8) The OP changes in OLETF rats are prevented by decreasing food intake by 30% to maintain their blood glucose level and body weight normal. Even in highly genetically diabetic animals, diet therapy starting at an early stage of life inhibits the diabetic OP changes. 9) The amplitude of the bicarbonate response from the retinal pigment epithelium diminishes even at the preretinopathic stage, and is significanly correlated with the peak latency and the amplitude of the OP. Diabetic retinal pigment epitheliopathy as well as retinal neuropathy takes place prior to angiopathic retinopathy in the diabetic retina.

Animals↗

Effects of binocular deprivation of pattern vision on single unit responses in the cat superior colliculus.

Single unit responses in the superior colliculus of cats deprived of pattern vision from birth and of normally reared cats were studied in unanesthetized pretrigeminal preparations. Collicular units of deprived cats showed a diminished direction-selectivity but a somewhat better speed-selectivity compared to normals; they also preferred lowspeed stimuli, and reacted less frequently to diffuse flash. The impairment of direction-selectivity of collicular neurons may be partly responsible for the impairment of the pursuit eye movements in visually deprived cats.

Animals↗