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R Lickliter

Publications and source records attributed to R Lickliter.

At least 19 recordsLinked to original sources

Order-dependent timing of unimodal and multimodal stimulation affects prenatal auditory learning in bobwhite quail embryos.

This study examined the relationship between unimodal and multimodal sensory stimulation and their effects on prenatal auditory learning in bobwhite quail embryos. Embryos exposed to a maternal call in the 24 hr prior to hatching (unimodal condition) significantly preferred this familiar call over an unfamiliar call in postnatal testing, but failed to demonstrate this preference when the maternal call was presented concurrently with non-synchronized patterned light (multimodal condition). To further explore this interference effect, we provided one group of embryos concurrent exposure to a maternal call and patterned light for 12 hr followed by 12 hr exposure to the call alone (multimodal-->unimodal call). This group failed to prefer the familiar call during postnatal testing. In contrast, reversing the order of presentation during prenatal exposure (unimodal call-->multimodal) led a second group of subjects to significantly prefer the familiar call, suggesting that the order-dependent timing of sensory stimulation can significantly impact prenatal auditory learning. Experiment 3 examined the influence of modality versus timing of sensory stimulation on prenatal auditory learning by providing three groups of embryos with exposure to a maternal call during the 12 hr prior to hatching and by varying the duration of visual stimulation. Results indicate that 12 hr unimodal exposure to patterned light does not support prenatal auditory learning when it is followed by 12 hr exposure to multimodal stimulation (light-->multimodal), but can facilitate prenatal auditory learning when it is followed by unimodal exposure to the call alone (light-->call). Results are discussed in terms of intersensory relationships during perinatal development.

Acoustic Stimulation↗

Intersensory redundancy guides attentional selectivity and perceptual learning in infancy.

This study assessed an intersensory redundancy hypothesis, which holds that in early infancy information presented redundantly and in temporal synchrony across two sense modalities selectively recruits attention and facilitates perceptual differentiation more effectively than does the same information presented unimodally. Five-month-old infants' sensitivity to the amodal property of rhythm was examined in 3 experiments. Results revealed that habituation to a bimodal (auditory and visual) rhythm resulted in discrimination of a novel rhythm, whereas habituation to the same rhythm presented unimodally (auditory or visual) resulted in no evidence of discrimination. Also, temporal synchrony between the bimodal auditory and visual information was necessary for rhythm discrimination. These findings support an intersensory redundancy hypothesis and provide further evidence for the importance of redundancy for guiding and constraining early perceptual learning.

Attention↗

The development of infant intersensory perception: advantages of a comparative convergent-operations approach.

Despite impressive demonstrations of human infants' intersensory capabilities over the past several decades, there has been little focus on the contributions of prenatal and postnatal experience or the specific developmental processes underlying the emergence of intersensory functioning. Research with nonhuman animals has, however, provided a number of advances in understanding early intersensory perception. The authors explore the value of a comparative, convergent-operations approach to the study of early intersensory perception and examine how this approach has highlighted the study of (a) prenatal factors, (b) brain-behavior relations, and (c) context and experience variables contributing to infants' intersensory responsiveness. Examples of how human and animal research programs can cross-fertilize one another in their attempts to understand developmental processes underlying intersensory perception are considered.

Animals↗

Atypical perinatal sensory stimulation and early perceptual development: insights from developmental psychobiology.

Comparative studies utilizing avian and mammalian embryos and neonates have proven particularly useful in exploring how alterations in sensory experience during the perinatal period can affect subsequent development. This article reviews research drawn from comparative developmental psychobiology and concludes that the effects of modified sensory stimulation on perceptual and behavioral development depend on several related factors, including the timing of stimulation relative to the developmental stage of the young organism, the overall amount of sensory stimulation provided or denied, and the type of sensory stimulation presented. Directions for future research on the care of the high-risk infant are discussed.

Animals↗

The role of sensory stimulation in perinatal development: insights from comparative research for care of the high-risk infant.

Studies of avian and mammalian species have highlighted the importance of normal patterns of perinatal sensory experience to early perceptual and behavioral capabilities, including recognition and preference for maternal olfactory, auditory, and visual information, the capability for prenatal and postnatal auditory learning, and sensitivity to temporal and spatial features of sensory stimulation. This animal-based research suggests that the effects that alterations of perinatal sensory stimulation may have on early perceptual and behavioral development likely depend on a number of related factors, including (a) the timing of the stimulation relative to the developmental stage of the organism, (b) the amount of stimulation provided or denied the young organism, and (c) the type of sensory stimulation presented. This article reviews research drawn from comparative developmental psychology and psychobiology on perinatal perceptual development and explores how it can inform research and practice concerned with the developmentally appropriate care of the high-risk infant.

Acoustic Stimulation↗

Augmented prenatal tactile and vestibular stimulation alters postnatal auditory and visual responsiveness in bobwhite quail chicks.

The fact that the sensory systems do not become functional at the same time during early development raises the question of how sensory systems and their respective stimulative histories might influence one another. Previous studies have shown that unusually early visual experience can alter subsequent responsiveness of both the visual system and the earlier developing olfactory and auditory systems. The question remains as to the extent which modified stimulation to an earlier developing system can also result in changes in responsiveness in later developing sensory systems. This study examined the effects of augmented prenatal tactile and vestibular stimulation on bobwhite quail chicks' postnatal visual and auditory responsiveness to maternal cues. Results indicate that augmented prenatal tactile and vestibular stimulation can alter postnatal perceptual responsivensss in the later developing auditory and visual sensory systems. Chicks exposed to augmented prenatal proximal stimulation continued to respond to maternal auditory cues into later stages of postnatal development and failed to demonstrate responsiveness to maternal visual cues in the days following hatching. However, augmented tactile and vestibular stimulation did not appear to affect prenatal auditory learning of an individual maternal call. These findings indicate a strong but selective pattern of influence between the sensory modalities during the prenatal period and support the view that substantially increased amounts of prenatal sensory stimulation can interfere with the emergence of species-typical perceptual functioning.

Animals↗

Intersensory experience and early perceptual development: postnatal experience with multimodal maternal cues affects intersensory responsiveness in bobwhite quail chicks.

Unlike the other sensory modalities of precocial infants, the visual modality does not normally become functional until after birth or hatching. Despite this unique developmental status, the role of emerging visual experience on postnatal perceptual organization remains unclear. In this study, bobwhite quail hatchlings were reared in conditions that manipulated postnatal experience with maternal visual cues, either alone or in conjunction with maternal auditory cues. Results revealed that bobwhite chicks require postnatal exposure to both maternal auditory and visual cues following hatching to demonstrate species-specific perceptual preferences. Chicks that received temporally disparate maternal auditory and visual cues or experience with only maternal visual or maternal auditory cues failed to show species-typical perceptual responsiveness. These results suggest that developmental mechanisms involving both visual and auditory sensory experience underlie the emergence of early intersensory integration.

Animals↗

Timing of presentation of prenatal auditory stimulation alters auditory and visual responsiveness in bobwhite quail chicks (Colinus virginianus).

One group of bobwhite quail embryos (Colinus virginianus) was exposed to 10 min/hr of bobwhite chick contentment calls immediately followed by 10 min/hr of bobwhite chick distress calls. A 2nd group of embryos was exposed to the same auditory stimulation but in the opposite order of presentation. Postnatal testing revealed that chicks exposed prenatally to the bobwhite chick contentment call and distress call (in either order of presentation) continued to respond to maternal auditory cues into later stages of postnatal development compared with unmanipulated chicks. Chicks exposed prenatally to the contentment call followed by the distress call showed an accelerated pattern of visual responsiveness to maternal cues, whereas chicks exposed prenatally to the distress call followed by the contentment call showed deficits in the normal pattern of perceptual visual responsiveness, suggesting that the auditory stimulation precocial avian embryos encounter 1st is influential in directing early intersensory development.

Affect↗

Modified sensory features of social stimulation alter the perceptual responsiveness of bobwhite quail chicks (Colinus virginianus).

This study examined the sensory features of postnatal social experience that bobwhite quail chicks (Colinus virginianus) require to maintain species-typical responding to maternal auditory-visual cues. Chicks were reared in 1 of 3 conditions after hatching: altered tactile, auditory, or visual experience with siblings. Findings revealed that altered tactile, auditory, or visual experience during the first 36 or the first 72 hr following hatching modified chicks' preferential responding to species-specific maternal cues. During the second 36 hr, altered tactile or auditory experience disrupted chicks' perceptual development, whereas altered visual experience did not affect species-typical responsiveness. Results indicate that (a) timing of early postnatal visual experience can affect early filial responsiveness to maternal cues and (b) normal sensory experience derived from early social interaction affects species-typical perceptual development.

Animals↗

Prolonged exposure to a visual pattern may promote behavioral organization in preterm infants.

The article reports a study documenting preterm infants' responses to visual patterns placed in their incubators in the neonatal intensive care unit (NICU) and the effects of long-term exposure to the patterns. In the first experiment, 20 preterm infants were exposed to a visual pattern in two conditions, stationary and rotating, during two successive exposure periods. Regardless of condition, the majority of infants looked longer at the visual display during the second exposure period and experienced decreased heart rates and quiet, alert states. In a second experiment, visual patterns placed in 9 preterm infants' incubators on transfer to the intermediate side of the NICU remained in the incubator until discharge. An additional 9 infants served as controls. Infants exposed to the visual patterns experienced fewer state changes and stronger visual skills than infants in incubators without visual displays. These findings, although tentative because of the relatively small sample sizes, suggest that visual patterns may promote behavioral organization and visual skills in preterm infants.

Female↗

Prenatal visual experience influences the development of turning bias in bobwhite quail chicks (Colinus virginianus).

This study examined the effects of prenatal sensory experience on the development of turning bias in a precocial avian species (bobwhite quail). Control tests with naive bobwhite quail chicks revealed a left-side turning bias in 85% of subjects. Such large population biases are considered unusual in nonhuman species. Experiments 1, 2, and 3 demonstrated that prenatal visual experience is a significant contributor to this population level left-side turning bias in bobwhite quail chicks. In contrast, prenatal auditory experience did not appear to significantly influence the development of postnatal turning bias. The findings of this study are discussed in terms of an epigenetic theory for the development of hemispheric specialization and behavioral asymmetry.

Acoustic Stimulation↗

Augmented prenatal auditory stimulation alters postnatal perception, arousal, and survival in bobwhite quail chicks.

This study examined whether previously reported effects of altered prenatal sensory experience on subsequent acceleration of intersensory development in precocial birds are mediated by mechanisms sensitive to the overall amount of stimulation provided. Results revealed that bobwhite quail chicks exposed to substantially augmented amounts of prenatal auditory stimulation show altered patterns of species-typical perceptual development. Specifically, chicks continued to respond to maternal auditory cues into later stages of postnatal development and failed to demonstrate responsiveness to maternal visual cues. In addition, embryos exposed to substantially augmented amounts of prenatal auditory stimulation exhibited a higher level of behavioral arousal and higher mortality rates than embryos provided either moderately augmented amounts or no additional amount of prenatal auditory stimulation. These findings suggest that substantially increased amounts of prenatal sensory stimulation can interfere with the emergence of species-typical patterns of postnatal perceptual functioning and lend support to the notion that sensory stimulation that falls within some optimal range maintains or facilitates normal patterns of perceptual development, whereas stimulation beyond the range of the species norm can result in intersensory and intersensory interference.

Acoustic Stimulation↗

Intersensory experience and early perceptual development: the role of spatial contiguity in Bobwhite quail chicks' responsiveness to multimodal maternal cues.

In contrast to the large body of work on young infants' capacity to perceive temporally based intersensory relations, little research has been done on the role of spatial contiguity in the development of audio-visual integration. This study examined the effects of early postnatal sensory experience on an avian neonate's responsiveness to the spatial contiguity between maternal auditory and visual cues. Specifically, we assessed whether a bobwhite quail chick's ability to respond to the correspondence between the location of auditory and visual events is affected by its sensory-stimulation history. Results revealed that chicks denied species-typical auditory or visual experience in the period immediately following hatching showed altered patterns of responsiveness to maternal auditory and visual cues. In particular, chicks that received modified postnatal sensory experience demonstrated a higher tolerance for audio-visual spatial discrepancy than did control chicks. These results provide evidence of the important role of sensory experience in the emergence of intersensory integration during the perinatal period and highlight the role of spatial information in early perceptual responsiveness to maternal cues.

Aging↗

Type of prenatal sensory experience affects prenatal auditory learning in bobwhite quail (Colinus virginianus).

This study examined the effects of specific types of prenatal auditory stimulation on the auditory learning capacity of bobwhite embryos (Colinus virginianus) incubated in either communal or isolation conditions. Results revealed that socially incubated embryos could learn an individual bobwhite maternal call, whereas embryos denied physical and tactile stimulation as a result of isolation incubation failed to demonstrate prenatal auditory learning of the maternal call. In contrast, embryos exposed to bobwhite chick contentment calls in the period prior to hatching demonstrated prenatal auditory learning, whether they were incubated socially or in isolation. Socially incubated and isolation-incubated embryos exposed to bobwhite chick distress calls failed to learn the individual maternal call, indicating that the type of sensory stimulation the developing organism encounters prenatally is important in fostering normal perceptual learning ability.

Animals↗

Augmented prenatal visual stimulation alters postnatal auditory and visual responsiveness in bobwhite quail chicks.

This study examined whether previously reported effects of altered prenatal sensory experience on subsequent acceleration of intersensory development in precocial birds are mediated by mechanisms sensitive to the overall amount of stimulation provided. Results revealed that bobwhite quail chicks exposed to substantially augmented amounts of prenatal visual stimulation show altered patterns of species-typical perceptual development. Specifically, chicks continued to respond to maternal auditory cues into later stages of postnatal development and failed to demonstrate responsiveness to maternal visual cues. Embryos also failed to demonstrate prenatal auditory learning of an individual maternal call, a behavior reliably seen in unmanipulated embryos. These findings suggest that substantially increased amounts of prenatal sensory stimulation can interfere with the emergence of species-typical patterns of postnatal intersensory functioning and lend support to the notion that sensory stimulation that falls within some optimal range maintains or facilitates normal patterns of perceptual development, whereas stimulation beyond the range of the species norm can result in intersensory interference.

Animals↗

Prenatal auditory experience directs species-typical perceptual responsiveness in bobwhite quail chicks (Colinus virginianus).

The present study examined the role of the relationship between pre- and postnatal stimulus cues in directing perceptual preferences of bobwhite quail chicks. Bobwhite quail were exposed to either prenatal auditory or prenatal auditory-visual stimulation. Both prenatal auditory and auditory-visual stimulation resulted in accelerated responsiveness to combined postnatal auditory-visual cues. However, whether or not subjects displayed accelerated perceptual responsiveness depended on the relationship between the nature of the pre- and postnatal auditory stimuli used. These results demonstrate the salience of auditory cues in directing early postnatal perceptual behavior in precocial birds and help to explicate why prior research in this area has found that augmented prenatal sensory stimulation can result in either accelerated or decelerated patterns of perceptual functioning.

Aging↗

Specific postnatal auditory stimulation interferes with species-typical visual responsiveness in bobwhite quail chicks.

The effects that a manipulation of sensory experience may have on perceptual development are likely to depend on a number of factors, including the amount and the type of stimulation provided. To examine the relative influence of these stimulation factors on early perceptual organization, this study exposed bobwhite quail hatchlings to augmented amounts of bobwhite chick distress calls, bobwhite chick contentment calls, domestic chicken distress calls, or no additional auditory stimulation during the first 72 hr following hatching. Results showed that bobwhite hatchlings exposed to bobwhite chick distress calls do not exhibit species-typical visual responsiveness to maternal cues. In contrast, bobwhite hatchlings exposed to bobwhite chick contentment calls, domestic chicken hatchling distress calls, or no augmented auditory stimulation exhibited species-typical auditory and visual responsiveness to maternal cues. These results demonstrate intermodal effects of postnatal sensory stimulation and suggest that specific types of postnatal auditory stimulation, rather than simply increased amount of stimulation, are necessary to interfere with species-typical intersensory functioning.

Animal Communication↗