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SciCrunch Registry is a curated repository of scientific resources, with a focus on biomedical resources, including tools, databases, and core facilities - visit SciCrunch to register your resource.

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Resource Name Proper Citation Abbreviations Resource Type Description Keywords Resource Relationships Related Condition Funding Defining Citation Availability Specification URL Alternate IDs Alternate URLs Old URLs Parent Organization Resource ID Authority Synonyms Record Last Update Mentions Count
NICHD Developmental Neuroethology - Laboratory of Comparative Ethology
 
Resource Report
Resource Website
NICHD Developmental Neuroethology - Laboratory of Comparative Ethology (RRID:SCR_000416) NICHD Laboratory of Comparative Ethology data or information resource, laboratory portal, organization portal, portal Understanding the mechanisms underlying the expression and perception of auditory communication in nonhuman primates provides important insights for understanding the neural systems that mediate nonverbal auditory communication in humans. Our research is devoted to understanding the changes in vocal behavior that are associated with maturation and social experience under normative conditions, and to investigating neural systems to define their roles in auditory communication. The anterior cingulate gyrus, in the frontal cerebral cortex, is an essential neural system for the expression of the primate isolation call, a structural and functional equivalent of the cry sounds of humans. Bilateral removal of this structure in adult squirrel monkeys resulted in a long-lasting inability to emit isolation calls. Partial recovery, often over many weeks, initially took the form of production of short, faint and uninflected versions of the typical isolation call. Humans suffering infarct damage to this region likewise show an initial recovery in the form of short, faint, monosyllabic sounds, suggesting that the anterior cingulate gyrus of nonhuman primates is the evolutionary precursor of a neural structure involved in human affective expression and speech. Our working model of isolation call production is that the anterior cingulate gyrus is the site where the command to produce this vocalization is initiated. Since the anterior cingulate region also has reciprocal connections with temporal lobe auditory cortex, a presumptive feedback pathway exists for registering commands to initiate vocalization with the temporal lobe cortex, which plays a major role in perceiving and decoding the acoustic details of species-specific vocalizations. At present, we do not know the role of the anterior cingulate gyrus in the production of infant vocalizations. However, we have found that neonatal removal of the amygdala, an important forebrain component of the limbic system, or portions of the inferotemporal gyrus, which sends projections to the amygdala, result in significant changes in the vocal behavior of infant rhesus macaques. Vocal development is a dynamic process, and a pattern shared by several nonhuman primates has emerged regarding the nature of this process. Infants are highly vocal during periods of brief separation from their caregiver, and we take advantage of this to document the range of vocalizations produced by infants of different ages. In the neonatal period, infants of 3 species of nonhuman primate (rhesus macaque, squirrel monkey and common marmoset) all produce sounds that vary widely in their acoustic structure. Many of these bear a striking similarity to sounds used in a variety of social settings by adults, suggesting that neural systems responsible for generating adult vocalizations are already in place during early infancy. As infants mature, their vocal behavior during brief periods of social separation becomes much more stereotyped. It isn't until much later in development, as individuals engage in a variety of social interactions with peers and adults, that the sounds expressed in early infancy begin to re-appear in adult contexts. The role of individual experience during development is currently being explored to determine the mechanisms leading to the acquisition of adult vocal skills. behavior, ethology, development, auditory communication, nonverbal auditory communication, vocal behavior, maturation, social experience, neural system, vocal development, vocal skill, development, infant, amygdala, anterior cingulate gyrus, voice, sound, adult, neuroethology, primate behavior, functional neuroanatomy, atlas has parent organization: National Institute of Child Health and Human Development
is parent organization of: Brain atlas of the common marmoset
NICHD THIS RESOURCE IS NO LONGER IN SERVICE nif-0000-00398 SCR_000416 SciCrunch Registry Developmental Neuroethology - Laboratory of Comparative Ethology 2026-09-19 12:49:22 0
exact Low Resolution Electromagnetic Tomography
 
Resource Report
Resource Website
100+ mentions
exact Low Resolution Electromagnetic Tomography (RRID:SCR_013830) eLORETA software application, software resource Software application which computes cortical three-dimensional distribution of current density of the brain based on the scalp-recorded electric potential distribution. The exact low resolution brain electromagnetic tomography method has the property of exact localization to test point sources, yielding images of current density with exact localization, albeit with low spatial resolution. eLORETA has no localization bias even in the presence of structured noise. Deep structures, such as the anterior cingulate cortex and mesial temporal lobes, can be correctly localized with these methods. LORETA, EEG, MEG, brain, image, electromagnetic tomography is related to: Low Resolution Electromagnetic Tomography
is related to: sLORETA
is related to: sLORETA
has parent organization: University of Zurich; Zurich; Switzerland
Free, Not ready for public distribution, Must have administrator rights http://www.uzh.ch/keyinst/loretaOldy.htm SCR_013830 SciCrunch Registry Exact Low Resolution Brain Electromagnetic Tomography 2026-09-19 12:58:10 279
Swartz Center for Computational Neuroscience
 
Resource Report
Resource Website
10+ mentions
Swartz Center for Computational Neuroscience (RRID:SCR_001933) SCCN data or information resource, portal, topical portal Computational neuroscience center that observes and models how functional activities in multiple brain areas interact dynamically to support human cognition, creativity and social interaction. Center research involves development computational methods and software, experimental methods and equipment, collection and analysis of human cognitive experiments, and collaborations to analyze data collected by other groups in such experiments. The Center has a 72-channel EEG recording system customized for use in the fMRI environment, and a very-high density Biosemi Active Two active-electrode EEG system, rapidly configurable either as a 256-channel system for a single subject or as two 136-channel systems for recording from two subjects simultaneously. In addition, UCSD now has a 306-channel MEG plus 128-channel EEG system (Neuromag/Elektra). Projects in the Center include studies of human cognitive processes including attention and memory, role of the anterior/posterior cingulate, time perception and emotional expression. Data acquisition includes high-density EEG, concurrent EEG and fMRI recording and analysis, and face video processing. Current analysis approaches include independent component and time-frequency analysis. emotional expression, fmri, anterior cingulate, attention, brain, cognition, computational neuroscience, concurrent eeg, high-density eeg, human, memory, posterior cingulate, social interaction, software, time perception, video procession, job, eeg, cognitive process, creativity, independent component analysis, time-frequency analysis has parent organization: University of California at San Diego; California; USA
is parent organization of: Measure Projection Toolbox
is parent organization of: NFT
is parent organization of: Source Information Flow Toolbox
is parent organization of: FMRLAB
is parent organization of: BCILAB
is parent organization of: EEGLAB
Swartz Foundation nif-0000-10509 SCR_001933 SciCrunch Registry Swartz Center for Computational Neuroscience 2026-09-19 12:49:50 34

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