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1.
Proc Natl Acad Sci U S A ; 121(36): e2405138121, 2024 Sep 03.
Artículo en Inglés | MEDLINE | ID: mdl-39190352

RESUMEN

The neural pathways that start human color vision begin in the complex synaptic network of the foveal retina where signals originating in long (L), middle (M), and short (S) wavelength-sensitive cone photoreceptor types are compared through antagonistic interactions, referred to as opponency. In nonhuman primates, two cone opponent pathways are well established: an L vs. M cone circuit linked to the midget ganglion cell type, often called the red-green pathway, and an S vs. L + M cone circuit linked to the small bistratified ganglion cell type, often called the blue-yellow pathway. These pathways have been taken to correspond in human vision to cardinal directions in a trichromatic color space, providing the parallel inputs to higher-level color processing. Yet linking cone opponency in the nonhuman primate retina to color mechanisms in human vision has proven particularly difficult. Here, we apply connectomic reconstruction to the human foveal retina to trace parallel excitatory synaptic outputs from the S-ON (or "blue-cone") bipolar cell to the small bistratified cell and two additional ganglion cell types: a large bistratified ganglion cell and a subpopulation of ON-midget ganglion cells, whose synaptic connections suggest a significant and unique role in color vision. These two ganglion cell types are postsynaptic to both S-ON and L vs. M opponent midget bipolar cells and thus define excitatory pathways in the foveal retina that merge the cardinal red-green and blue-yellow circuits, with the potential for trichromatic cone opponency at the first stage of human vision.


Asunto(s)
Percepción de Color , Visión de Colores , Fóvea Central , Células Fotorreceptoras Retinianas Conos , Células Ganglionares de la Retina , Humanos , Fóvea Central/fisiología , Células Fotorreceptoras Retinianas Conos/fisiología , Células Fotorreceptoras Retinianas Conos/metabolismo , Visión de Colores/fisiología , Células Ganglionares de la Retina/fisiología , Percepción de Color/fisiología , Células Bipolares de la Retina/fisiología , Células Bipolares de la Retina/metabolismo , Retina/fisiología , Masculino , Femenino , Adulto , Conectoma , Vías Visuales/fisiología
2.
Vision Res ; 222: 108453, 2024 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-38991467

RESUMEN

Visual processing differs between the foveal and peripheral visual field. These differences can lead to different appearances of objects in the periphery and the fovea, posing a challenge to perception across saccades. Differences in the appearance of visual features between the peripheral and foveal visual field may bias change discrimination across saccades. Previously it has been reported that spatial frequency (SF) appears higher in the periphery compared to the fovea (Davis et al., 1987). In this study, we investigated the visual appearance of SF before and after a saccade and the discrimination of SF changes during saccades. In addition, we tested the contributions of pre- and postsaccadic information to change discrimination performance. In the first experiment, we found no differences in the appearance of SF before and after a saccade. However, participants showed a clear bias to report SF increases. Interestingly, a 200-ms postsaccadic blank improved the precision of the responses but did not affect the bias. In the second experiment, participants showed lower thresholds for SF increases than for decreases, suggesting that the bias in the first experiment was not just a response bias. Finally, we asked participants to discriminate the SF of stimuli presented before a saccade. Thresholds in the presaccadic discrimination task were lower than in the change discrimination task, suggesting that transsaccadic change discrimination is not merely limited by presaccadic discrimination in the periphery. The change direction bias might stem from more effective masking or overwriting of the presaccadic stimulus by the postsaccadic low SF stimulus.


Asunto(s)
Estimulación Luminosa , Movimientos Sacádicos , Humanos , Movimientos Sacádicos/fisiología , Masculino , Femenino , Adulto , Adulto Joven , Estimulación Luminosa/métodos , Discriminación en Psicología/fisiología , Campos Visuales/fisiología , Percepción Espacial/fisiología , Umbral Sensorial/fisiología , Percepción Visual/fisiología , Análisis de Varianza , Fóvea Central/fisiología
3.
Elife ; 122024 Jul 05.
Artículo en Inglés | MEDLINE | ID: mdl-38968325

RESUMEN

Humans can read and comprehend text rapidly, implying that readers might process multiple words per fixation. However, the extent to which parafoveal words are previewed and integrated into the evolving sentence context remains disputed. We investigated parafoveal processing during natural reading by recording brain activity and eye movements using MEG and an eye tracker while participants silently read one-line sentences. The sentences contained an unpredictable target word that was either congruent or incongruent with the sentence context. To measure parafoveal processing, we flickered the target words at 60 Hz and measured the resulting brain responses (i.e. Rapid Invisible Frequency Tagging, RIFT) during fixations on the pre-target words. Our results revealed a significantly weaker tagging response for target words that were incongruent with the previous context compared to congruent ones, even within 100ms of fixating the word immediately preceding the target. This reduction in the RIFT response was also found to be predictive of individual reading speed. We conclude that semantic information is not only extracted from the parafovea but can also be integrated with the previous context before the word is fixated. This early and extensive parafoveal processing supports the rapid word processing required for natural reading. Our study suggests that theoretical frameworks of natural reading should incorporate the concept of deep parafoveal processing.


Asunto(s)
Movimientos Oculares , Lectura , Semántica , Humanos , Femenino , Masculino , Adulto , Adulto Joven , Movimientos Oculares/fisiología , Fóvea Central/fisiología , Fijación Ocular/fisiología , Magnetoencefalografía , Encéfalo/fisiología , Comprensión/fisiología
4.
J Vis ; 24(6): 11, 2024 Jun 03.
Artículo en Inglés | MEDLINE | ID: mdl-38869372

RESUMEN

Microsaccades-tiny fixational eye movements-improve discriminability in high-acuity tasks in the foveola. To investigate whether they help compensate for low discriminability at the perifovea, we examined microsaccade characteristics relative to the adult visual performance field, which is characterized by two perceptual asymmetries: horizontal-vertical anisotropy (better discrimination along the horizontal than vertical meridian) and vertical meridian asymmetry (better discrimination along the lower than upper vertical meridian). We investigated whether and to what extent microsaccade directionality varies when stimuli are at isoeccentric locations along the cardinals under conditions of heterogeneous discriminability (Experiment 1) and homogeneous discriminability, equated by adjusting stimulus contrast (Experiment 2). Participants performed a two-alternative forced-choice orientation discrimination task. In both experiments, performance was better on trials without microsaccades between ready signal onset and stimulus offset than on trials with microsaccades. Across the trial sequence, the microsaccade rate and directional pattern were similar across locations. Our results indicate that microsaccades were similar regardless of stimulus discriminability and target location, except during the response period-once the stimuli were no longer present and target location no longer uncertain-when microsaccades were biased toward the target location. Thus, this study reveals that microsaccades do not flexibly adapt as a function of varying discriminability in a basic visual task around the visual field.


Asunto(s)
Estimulación Luminosa , Movimientos Sacádicos , Campos Visuales , Humanos , Movimientos Sacádicos/fisiología , Campos Visuales/fisiología , Masculino , Adulto , Femenino , Adulto Joven , Estimulación Luminosa/métodos , Fijación Ocular/fisiología , Orientación/fisiología , Discriminación en Psicología/fisiología , Fóvea Central/fisiología
5.
J Cogn Neurosci ; 36(9): 1807-1826, 2024 Sep 01.
Artículo en Inglés | MEDLINE | ID: mdl-38940724

RESUMEN

Visual working memory is believed to rely on top-down attentional mechanisms that sustain active sensory representations in early visual cortex, a mechanism referred to as sensory recruitment. However, both bottom-up sensory input and top-down attentional modulations thereof appear to prioritize the fovea over the periphery, such that initially peripheral percepts may even be assimilated by foveal processes. This raises the question whether and how visual working memory differs for central and peripheral input. To address this, we conducted a delayed orientation recall task in which an orientation was presented either at the center of the screen or at 15° eccentricity to the left or right. Response accuracy, EEG activity, and gaze position were recorded from 30 participants. Accuracy was slightly but significantly higher for foveal versus peripheral memories. Decoding of EEG recordings revealed a clear dissociation between early sensory and later maintenance signals. Although sensory signals were clearly decodable for foveal stimuli, they were not for peripheral input. In contrast, maintenance signals were equally decodable for both foveal and peripheral memories, suggesting comparable top-down components regardless of eccentricity. Moreover, although memory representations were initially spatially specific and reflected in voltage fluctuations, later during the maintenance period, they generalized across locations, as emerged in alpha oscillations, thus revealing a dynamic transformation within memory from separate sensory traces to what we propose are common output-related codes. Furthermore, the combined absence of reliable decoding of sensory signals and robust presence of maintenance decoding indicates that storage activity patterns as measured by EEG reflect signals beyond primary visual cortex. We discuss the implications for the sensory recruitment hypothesis.


Asunto(s)
Electroencefalografía , Fóvea Central , Memoria a Corto Plazo , Humanos , Masculino , Femenino , Adulto Joven , Adulto , Memoria a Corto Plazo/fisiología , Fóvea Central/fisiología , Percepción Visual/fisiología , Atención/fisiología , Recuerdo Mental/fisiología
6.
Cell Rep ; 43(7): 114371, 2024 Jul 23.
Artículo en Inglés | MEDLINE | ID: mdl-38923458

RESUMEN

High-dimensional brain activity is often organized into lower-dimensional neural manifolds. However, the neural manifolds of the visual cortex remain understudied. Here, we study large-scale multi-electrode electrophysiological recordings of macaque (Macaca mulatta) areas V1, V4, and DP with a high spatiotemporal resolution. We find that the population activity of V1 contains two separate neural manifolds, which correlate strongly with eye closure (eyes open/closed) and have distinct dimensionalities. Moreover, we find strong top-down signals from V4 to V1, particularly to the foveal region of V1, which are significantly stronger during the eyes-open periods. Finally, in silico simulations of a balanced spiking neuron network qualitatively reproduce the experimental findings. Taken together, our analyses and simulations suggest that top-down signals modulate the population activity of V1. We postulate that the top-down modulation during the eyes-open periods prepares V1 for fast and efficient visual responses, resulting in a type of visual stand-by state.


Asunto(s)
Fóvea Central , Macaca mulatta , Corteza Visual , Animales , Corteza Visual/fisiología , Fóvea Central/fisiología , Neuronas/fisiología , Masculino , Modelos Neurológicos , Simulación por Computador
7.
Sci Rep ; 14(1): 13757, 2024 06 14.
Artículo en Inglés | MEDLINE | ID: mdl-38877079

RESUMEN

While perceiving the emotional state of others may be crucial for our behavior even when this information is present outside of central vision, emotion perception studies typically focus on central visual field. We have recently investigated emotional valence (pleasantness) perception across the parafovea (≤ 4°) and found that for briefly presented (200 ms) emotional face images (from the established KDEF image-set), positive (happy) valence was the least affected by eccentricity (distance from the central visual field) and negative (fearful) valence the most. Furthermore, we found that performance at 2° predicted performance at 4°. Here we tested (n = 37) whether these effects replicate with face stimuli of different identities from a different well-established image-set (NimStim). All our prior findings replicated and eccentricity-based modulation magnitude was smaller with NimStim (~ 16.6% accuracy reduction at 4°) than with KDEF stimuli (~ 27.3% reduction). Our current investigations support our earlier findings that for briefly presented parafoveal stimuli, positive and negative valence perception are differently affected by eccentricity and may be dissociated. Furthermore, our results highlight the importance of investigating emotions beyond central vision and demonstrate commonalities and differences across different image sets in the parafovea, emphasizing the contribution of replication studies to substantiate our knowledge about perceptual mechanisms.


Asunto(s)
Emociones , Campos Visuales , Humanos , Masculino , Femenino , Adulto , Adulto Joven , Emociones/fisiología , Campos Visuales/fisiología , Expresión Facial , Estimulación Luminosa , Reconocimiento Facial/fisiología , Fóvea Central/fisiología , Percepción Visual/fisiología , Adolescente
8.
J Vis ; 24(6): 2, 2024 Jun 03.
Artículo en Inglés | MEDLINE | ID: mdl-38833255

RESUMEN

The spectral locus of unique yellow was determined for flashes of different sizes (<11 arcmin) and durations (<500 ms) presented in and near the fovea. An adaptive optics scanning laser ophthalmoscope was used to minimize the effects of higher-order aberrations during simultaneous stimulus delivery and retinal imaging. In certain subjects, parafoveal cones were classified as L, M, or S, which permitted the comparison of unique yellow measurements with variations in local L/M ratios within and between observers. Unique yellow shifted to longer wavelengths as stimulus size or duration was reduced. This effect is most pronounced for changes in size and more apparent in the fovea than in the parafovea. The observed variations in unique yellow are not entirely predicted from variations in L/M ratio and therefore implicate neural processes beyond photoreception.


Asunto(s)
Fóvea Central , Estimulación Luminosa , Células Fotorreceptoras Retinianas Conos , Humanos , Estimulación Luminosa/métodos , Células Fotorreceptoras Retinianas Conos/fisiología , Fóvea Central/fisiología , Percepción de Color/fisiología , Retina/fisiología , Adulto , Oftalmoscopía/métodos
9.
J Vis ; 24(6): 4, 2024 Jun 03.
Artículo en Inglés | MEDLINE | ID: mdl-38842836

RESUMEN

The interception (or avoidance) of moving objects is a common component of various daily living tasks; however, it remains unclear whether precise alignment of foveal vision with a target is important for motor performance. Furthermore, there has also been little examination of individual differences in visual tracking strategy and the use of anticipatory gaze adjustments. We examined the importance of in-flight tracking and predictive visual behaviors using a virtual reality environment that required participants (n = 41) to intercept tennis balls projected from one of two possible locations. Here, we explored whether different tracking strategies spontaneously arose during the task, and which were most effective. Although indices of closer in-flight tracking (pursuit gain, tracking coherence, tracking lag, and saccades) were predictive of better interception performance, these relationships were rather weak. Anticipatory gaze shifts toward the correct release location of the ball provided no benefit for subsequent interception. Nonetheless, two interceptive strategies were evident: 1) early anticipation of the ball's onset location followed by attempts to closely track the ball in flight (i.e., predictive strategy); or 2) positioning gaze between possible onset locations and then using peripheral vision to locate the moving ball (i.e., a visual pivot strategy). Despite showing much poorer in-flight foveal tracking of the ball, participants adopting a visual pivot strategy performed slightly better in the task. Overall, these results indicate that precise alignment of the fovea with the target may not be critical for interception tasks, but that observers can adopt quite varied visual guidance approaches.


Asunto(s)
Individualidad , Percepción de Movimiento , Humanos , Masculino , Femenino , Adulto Joven , Percepción de Movimiento/fisiología , Adulto , Desempeño Psicomotor/fisiología , Fijación Ocular/fisiología , Realidad Virtual , Movimientos Sacádicos/fisiología , Fóvea Central/fisiología , Movimientos Oculares/fisiología
10.
Sci Robot ; 9(90): eadk6903, 2024 May 29.
Artículo en Inglés | MEDLINE | ID: mdl-38809996

RESUMEN

Avian eyes have deep central foveae as a result of extensive evolution. Deep foveae efficiently refract incident light, creating a magnified image of the target object and making it easier to track object motion. These features are essential for detecting and tracking remote objects in dynamic environments. Furthermore, avian eyes respond to a wide spectrum of light, including visible and ultraviolet light, allowing them to efficiently distinguish the target object from complex backgrounds. Despite notable advances in artificial vision systems that mimic animal vision, the exceptional object detection and targeting capabilities of avian eyes via foveated and multispectral imaging remain underexplored. Here, we present an artificial vision system that capitalizes on these aspects of avian vision. We introduce an artificial fovea and vertically stacked perovskite photodetector arrays whose designs were optimized by theoretical simulations for the demonstration of foveated and multispectral imaging. The artificial vision system successfully identifies colored and mixed-color objects and detects remote objects through foveated imaging. The potential for use in uncrewed aerial vehicles that need to detect, track, and recognize distant targets in dynamic environments is also discussed. Our avian eye-inspired perovskite artificial vision system marks a notable advance in bioinspired artificial visions.


Asunto(s)
Biomimética , Aves , Compuestos de Calcio , Óxidos , Titanio , Visión Ocular , Animales , Aves/fisiología , Visión Ocular/fisiología , Biomimética/instrumentación , Fóvea Central/fisiología , Diseño de Equipo , Materiales Biomiméticos , Simulación por Computador
11.
J Vis ; 24(4): 23, 2024 Apr 01.
Artículo en Inglés | MEDLINE | ID: mdl-38662346

RESUMEN

This paper reviews projection models and their perception in realistic pictures, and proposes hypotheses for three-dimensional (3D) shape and space perception in pictures. In these hypotheses, eye fixations, and foveal vision play a central role. Many past theories and experimental studies focus solely on linear perspective. Yet, these theories fail to explain many important perceptual phenomena, including the effectiveness of nonlinear projections. Indeed, few classical paintings strictly obey linear perspective, nor do the best distortion-avoidance techniques for wide-angle computational photography. The hypotheses here employ a two-stage model for 3D human vision. When viewing a picture, the first stage perceives 3D shape for the current gaze. Each fixation has its own perspective projection, but, owing to the nature of foveal and peripheral vision, shape information is obtained primarily for a small region of the picture around the fixation. As a viewer moves their eyes, the second stage continually integrates some of the per-gaze information into an overall interpretation of a picture. The interpretation need not be geometrically stable or consistent over time. It is argued that this framework could explain many disparate pictorial phenomena, including different projection styles throughout art history and computational photography, while being consistent with the constraints of human 3D vision. The paper reviews open questions and suggests new studies to explore these hypotheses.


Asunto(s)
Fijación Ocular , Humanos , Fijación Ocular/fisiología , Percepción de Forma/fisiología , Percepción de Profundidad/fisiología , Percepción Espacial/fisiología , Movimientos Oculares/fisiología , Fóvea Central/fisiología
12.
Proc Natl Acad Sci U S A ; 121(16): e2313820121, 2024 Apr 16.
Artículo en Inglés | MEDLINE | ID: mdl-38598343

RESUMEN

In primates, high-acuity vision is mediated by the fovea, a small specialized central region of the retina. The fovea, unique to the anthropoid lineage among mammals, undergoes notable neuronal morphological changes during postnatal maturation. However, the extent of cellular similarity across anthropoid foveas and the molecular underpinnings of foveal maturation remain unclear. Here, we used high-throughput single-cell RNA sequencing to profile retinal cells of the common marmoset (Callithrix jacchus), an early divergent in anthropoid evolution from humans, apes, and macaques. We generated atlases of the marmoset fovea and peripheral retina for both neonates and adults. Our comparative analysis revealed that marmosets share almost all their foveal types with both humans and macaques, highlighting a conserved cellular structure among primate foveas. Furthermore, by tracing the developmental trajectory of cell types in the foveal and peripheral retina, we found distinct maturation paths for each. In-depth analysis of gene expression differences demonstrated that cone photoreceptors and Müller glia (MG), among others, show the greatest molecular divergence between these two regions. Utilizing single-cell ATAC-seq and gene-regulatory network inference, we uncovered distinct transcriptional regulations differentiating foveal cones from their peripheral counterparts. Further analysis of predicted ligand-receptor interactions suggested a potential role for MG in supporting the maturation of foveal cones. Together, these results provide valuable insights into foveal development, structure, and evolution.


Asunto(s)
Callithrix , Retina , Humanos , Animales , Recién Nacido , Callithrix/anatomía & histología , Retina/metabolismo , Fóvea Central/fisiología , Células Fotorreceptoras Retinianas Conos , Macaca , Mamíferos
13.
J Neurosci ; 44(18)2024 May 01.
Artículo en Inglés | MEDLINE | ID: mdl-38548340

RESUMEN

A long-standing question in vision science is how the three cone photoreceptor types-long (L), medium (M), and short (S) wavelength sensitive-combine to generate our perception of color. Hue perception can be described along two opponent axes: red-green and blue-yellow. Psychophysical measurements of color appearance indicate that the cone inputs to the red-green and blue-yellow opponent axes are M vs. L + S and L vs. M + S, respectively. However, the "cardinal directions of color space" revealed by psychophysical measurements of color detection thresholds following adaptation are L vs. M and S vs. L + M. These cardinal directions match the most common cone-opponent retinal ganglion cells (RGCs) in the primate retina. Accordingly, the cone opponency necessary for color appearance is thought to be established in the cortex. While neurons with the appropriate M vs. L + S and L vs. M + S opponency have been reported in the retina and lateral geniculate nucleus, their existence continues to be debated. Resolving this long-standing debate is necessary because a complete account of the cone opponency in the retinal output is critical for understanding how downstream neural circuits process color. Here, we performed adaptive optics calcium imaging to noninvasively measure foveal RGC light responses in the living Macaca fascicularis eye. We confirm the presence of L vs. M + S and M vs. L + S neurons with noncardinal cone opponency and demonstrate that cone-opponent signals in the retinal output are more diverse than classically thought.


Asunto(s)
Percepción de Color , Fóvea Central , Células Fotorreceptoras Retinianas Conos , Células Ganglionares de la Retina , Animales , Células Ganglionares de la Retina/fisiología , Células Fotorreceptoras Retinianas Conos/fisiología , Fóvea Central/fisiología , Percepción de Color/fisiología , Estimulación Luminosa/métodos , Masculino , Femenino , Macaca fascicularis
14.
Atten Percept Psychophys ; 86(4): 1360-1374, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38532237

RESUMEN

Words with high orthographic relatedness are termed "word neighbors" (angle/angel; birch/birth). Activation-based models of word recognition assume that lateral inhibition occurs between words and their activated neighbors. However, studies of eye movements during reading have not found inhibitory effects in early measures assumed to reflect lexical access (e.g., gaze duration). Instead, inhibition in eye-movement studies has been found in later measures of processing (e.g., total time, regressions in). We conducted an eye-movement boundary change study (Rayner, Cognitive Psychology, 7(1), 65-81, 1975) that manipulated the parafoveal preview of the word following the neighbor word (word N+1). In this way, we explored whether the late inhibitory effects seen with transposed letter words and words with higher-frequency neighbors result from reduced parafoveal preview due to increased foveal load and/or interference during late stages of lexical processing (the L2 stage within the E-Z Reader framework). For word N+1, while there were clear preview effects, there was not an effect of the neighborhood status of word N, nor a significant interaction. This suggests that the late inhibitory effects of earlier eye-movement studies are driven by misidentification of neighbor words rather than being due to increased foveal load.


Asunto(s)
Movimientos Oculares , Fóvea Central , Reconocimiento Visual de Modelos , Lectura , Humanos , Fóvea Central/fisiología , Movimientos Oculares/fisiología , Reconocimiento Visual de Modelos/fisiología , Inhibición Psicológica , Atención/fisiología , Fijación Ocular/fisiología , Adulto , Adulto Joven
15.
J Neurosci ; 44(3)2024 Jan 17.
Artículo en Inglés | MEDLINE | ID: mdl-38050093

RESUMEN

Human visual performance for basic visual dimensions (e.g., contrast sensitivity and acuity) peaks at the fovea and decreases with eccentricity. The eccentricity effect is related to the larger visual cortical surface area corresponding to the fovea, but it is unknown if differential feature tuning contributes to this eccentricity effect. Here, we investigated two system-level computations underlying the eccentricity effect: featural representation (tuning) and internal noise. Observers (both sexes) detected a Gabor embedded in filtered white noise which appeared at the fovea or one of four perifoveal locations. We used psychophysical reverse correlation to estimate the weights assigned by the visual system to a range of orientations and spatial frequencies (SFs) in noisy stimuli, which are conventionally interpreted as perceptual sensitivity to the corresponding features. We found higher sensitivity to task-relevant orientations and SFs at the fovea than that at the perifovea, and no difference in selectivity for either orientation or SF. Concurrently, we measured response consistency using a double-pass method, which allowed us to infer the level of internal noise by implementing a noisy observer model. We found lower internal noise at the fovea than that at the perifovea. Finally, individual variability in contrast sensitivity correlated with sensitivity to and selectivity for task-relevant features as well as with internal noise. Moreover, the behavioral eccentricity effect mainly reflects the foveal advantage in orientation sensitivity compared with other computations. These findings suggest that the eccentricity effect stems from a better representation of task-relevant features and lower internal noise at the fovea than that at the perifovea.


Asunto(s)
Sensibilidad de Contraste , Corteza Visual , Masculino , Femenino , Humanos , Orientación/fisiología , Corteza Visual/fisiología , Fóvea Central/fisiología , Ruido
16.
Bioessays ; 46(1): e2300054, 2024 01.
Artículo en Inglés | MEDLINE | ID: mdl-38037292

RESUMEN

The human fovea is known for its distinctive pit-like appearance, which results from the displacement of retinal layers superficial to the photoreceptors cells. The photoreceptors are found at high density within the foveal region but not the surrounding retina. Efforts to elucidate the mechanisms responsible for these unique features have ruled out cell death as an explanation for pit formation and changes in cell proliferation as the cause of increased photoreceptor density. These findings have led to speculation that mechanical forces acting within and on the retina during development underly the formation of foveal architecture. Here we review eye morphogenesis and retinal remodeling in human embryonic development. Our meta-analysis of the literature suggests that fovea formation is a protracted process involving dynamic changes in ocular shape that start early and continue throughout most of human embryonic development. From these observations, we propose a new model for fovea development.


Asunto(s)
Fóvea Central , Retina , Humanos , Fóvea Central/fisiología , Células Fotorreceptoras
17.
PLoS One ; 18(10): e0291275, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37796804

RESUMEN

Visual object recognition was traditionally believed to rely on a hierarchical feedforward process. However, recent evidence challenges this notion by demonstrating the crucial role of foveal retinotopic cortex and feedback signals from higher-level visual areas in processing peripheral visual information. The nature of the information conveyed through foveal feedback remains a topic of debate. To address this, we conducted a study employing a foveal mask paradigm with varying stimulus-mask onset asynchronies in a peripheral same/different task, where peripheral objects exhibited different degrees of similarity. Our hypothesis posited that simultaneous arrival of feedback and mask information in the foveal cortex would lead to neural contamination, biasing perception. Notably, when the two peripheral objects were identical, we observed a significant increase in the number of "different" responses, peaking at approximately 100 ms. Similar effect was found when the objects were dissimilar, but with an overall later timing (around 150 ms). No significant difference was found when comparing easy (dissimilar objects) and difficult trials (similar objects). The findings challenge the hypothesis that foveation planning alone accounts for the observed effects. Instead, these and previous observations support the notion that the foveal cortex serves as a visual sketchpad for maintaining and manipulating task-relevant information.


Asunto(s)
Reconocimiento Visual de Modelos , Corteza Visual , Retroalimentación , Reconocimiento Visual de Modelos/fisiología , Percepción Visual/fisiología , Fóvea Central/fisiología , Corteza Visual/fisiología , Estimulación Luminosa
18.
J Exp Psychol Hum Percept Perform ; 49(12): 1564-1578, 2023 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-37883013

RESUMEN

Prior research has investigated the quality of information a reader can extract from upcoming parafoveal words. However, very few studies have considered parafoveal processing in bilingual readers, who may differ from monolinguals due to slower lexical access and susceptibility to cross-language activation. This eye-tracking experiment, therefore, investigated how bilingual readers process parafoveal semantic information within and across languages. We used the boundary technique to replace a preview word in a sentence with a different target word during the first rightward saccade from the pretarget region. We manipulated both preview language (nonswitch vs. code-switch) and semantic relatedness (synonym/translation vs. unrelated) between previews and targets. Upon fixation, target words always appeared in the same language as the rest of the sentence to create an essentially monolingual language context. Semantic preview benefits emerged for nonswitched synonym previews but not for code-switched translation previews. Furthermore, participants skipped code-switched previews less often than nonswitched previews and no more often than previews that were unfamiliar to them. These data suggest that bilinguals can extract within-language semantic information from the parafovea in both native and nonnative languages, but that cross-language words are not accessible while reading in a monolingual language mode, as per the partial selectivity hypothesis of bilingual language control. (PsycInfo Database Record (c) 2023 APA, all rights reserved).


Asunto(s)
Lenguaje , Semántica , Humanos , Movimientos Sacádicos , Lectura , Fóvea Central/fisiología , Fijación Ocular
19.
Exp Eye Res ; 234: 109611, 2023 09.
Artículo en Inglés | MEDLINE | ID: mdl-37536437

RESUMEN

The fovea is a pit in the center of the macula, which is a region of the retina with a high concentration of photoreceptor cells, which accounts for a large degree of visual acuity in primates. The maturation of this primate visual acuity area is characterized by the shallowing and widening of the foveal pit, a decrease in the diameter of the rod-free zone, and an increase in photoreceptor cells packing after birth. Maturation occurs concurrently with progressing age, increasing eye size, and retinal length/area. These observations have led to the hypothesis that the maturation of the fovea might be a function of mechanical variables that remodel the retina. However, this has never been explored outside of primates. Here, we take advantage of the Anolis sagrei lizard, which has a bifoveated retina, to study maturation of the fovea and macula. Eyes were collected from male and female lizards-hatchling, 2-month, 4-month, 6-month, and adult. We found that Anolis maculae undergo a maturation process somewhat different than what has been observed in primates. Anole macular diameters actually increase in size and undergo minimal photoreceptor cell packing, possessing a near complete complement of these cells at the time of hatching. As the anole eye expands, foveal centers experience little change in overall retina cell density with most cell redistribution occurring at macular borders and peripheral retina areas. Gene editing technology has recently been developed in lizards; this study provides a baseline of normal retina maturation for future genetic manipulation studies in anoles.


Asunto(s)
Lagartos , Animales , Masculino , Femenino , Lagartos/fisiología , Fóvea Central/fisiología , Retina/fisiología , Células Fotorreceptoras/fisiología , Primates
20.
J Exp Psychol Hum Percept Perform ; 49(5): 687-708, 2023 May.
Artículo en Inglés | MEDLINE | ID: mdl-37261774

RESUMEN

Word recognition begins before a reader looks directly at a word, as demonstrated by the parafoveal preview benefit and word skipping. Both low-level form and high-level semantic features can be accessed in parafoveal vision and used to promote reading efficiency. However, words are not recognized in isolation during reading; once a semantic representation is retrieved, it must be integrated with the broader sentence context. One open question about parafoveal processing is whether it is limited to shallow stages of lexico-semantic activation or extends to semantic integration. In the present two-experiment study, we recorded event-related brain potentials in response to a sentence-final word that was presented in foveal or parafoveal vision and was either expected, unexpected, or anomalous in the sentence context. We found that word recognition, indexed by the N400, ensued regardless of perception location whereas identification of the semantic fit of a word in its sentence context, indexed by the late positive component, was only observed for foveally perceived but not parafoveally perceived words. This pattern was not sensitive to task differences that promote different levels of orthographic scrutiny, as manipulated between the two experiments. These findings demonstrate separate roles for parafoveal and foveal processing in reading. (PsycInfo Database Record (c) 2023 APA, all rights reserved).


Asunto(s)
Electroencefalografía , Potenciales Evocados , Humanos , Masculino , Femenino , Potenciales Evocados/fisiología , Semántica , Encéfalo/fisiología , Fóvea Central/fisiología , Lectura , Fijación Ocular
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