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1.
J Neurosci ; 42(48): 9011-9029, 2022 Nov 30.
Article in English | MEDLINE | ID: covidwho-2140846

ABSTRACT

Personal space (PS) is the space around the body that people prefer to maintain between themselves and unfamiliar others. Intrusion into personal space evokes discomfort and an urge to move away. Physiologic studies in nonhuman primates suggest that defensive responses to intruding stimuli involve the parietal cortex. We hypothesized that the spatial encoding of interpersonal distance is initially transformed from purely sensory to more egocentric mapping within human parietal cortex. This hypothesis was tested using 7 Tesla (7T) fMRI at high spatial resolution (1.1 mm isotropic), in seven subjects (four females, three males). In response to visual stimuli presented at a range of virtual distances, we found two categories of distance encoding in two corresponding radially-extending columns of activity within parietal cortex. One set of columns (P columns) responded selectively to moving and stationary face images presented at virtual distances that were nearer (but not farther) than each subject's behaviorally-defined personal space boundary. In most P columns, BOLD response amplitudes increased monotonically and nonlinearly with increasing virtual face proximity. In the remaining P columns, BOLD responses decreased with increasing proximity. A second set of parietal columns (D columns) responded selectively to disparity-based distance cues (near or far) in random dot stimuli, similar to disparity-selective columns described previously in occipital cortex. Critically, in parietal cortex, P columns were topographically interdigitated (nonoverlapping) with D columns. These results suggest that visual spatial information is transformed from visual to body-centered (or person-centered) dimensions in multiple local sites within human parietal cortex.SIGNIFICANCE STATEMENT Recent COVID-related social distancing practices highlight the need to better understand brain mechanisms which regulate "personal space" (PS), which is defined by the closest interpersonal distance that is comfortable for an individual. Using high spatial resolution brain imaging, we tested whether a map of external space is transformed from purely visual (3D-based) information to a more egocentric map (related to personal space) in human parietal cortex. We confirmed this transformation and further showed that it was mediated by two mutually segregated sets of columns: one which encoded interpersonal distance and another that encoded visual distance. These results suggest that the cortical transformation of sensory-centered to person-centered encoding of space near the body involves short-range communication across interdigitated columns within parietal cortex.


Subject(s)
COVID-19 , Male , Animals , Female , Humans , Personal Space , Parietal Lobe , Brain Mapping , Magnetic Resonance Imaging/methods
2.
Hum Brain Mapp ; 43(3): 1076-1086, 2022 02 15.
Article in English | MEDLINE | ID: covidwho-1627415

ABSTRACT

The crucial role of the parietal cortex in working memory (WM) storage has been identified by fMRI studies. However, it remains unknown whether repeated parietal intermittent theta-burst stimulation (iTBS) can improve WM. In this within-subject randomized controlled study, under the guidance of fMRI-identified parietal activation in the left hemisphere, 22 healthy adults received real and sham iTBS sessions (five consecutive days, 600 pulses per day for each session) with an interval of 9 months between the two sessions. Electroencephalography signals of each subject before and after both iTBS sessions were collected during a change detection task. Changes in contralateral delay activity (CDA) and K-score were then calculated to reflect neural and behavioral WM improvement. Repeated-measures ANOVA suggested that real iTBS increased CDA more than the sham one (p = .011 for iTBS effect). Further analysis showed that this effect was more significant in the left hemisphere than in the right hemisphere (p = .029 for the hemisphere-by-iTBS interaction effect). Pearson correlation analyses showed significant correlations for two conditions between CDA changes in the left hemisphere and K score changes (ps <.05). In terms of the behavioral results, significant K score changes after real iTBS were observed for two conditions, but a repeated-measures ANOVA showed a nonsignificant main effect of iTBS (p = .826). These results indicate that the current iTBS protocol is a promising way to improve WM capability based on the neural indicator (CDA) but further optimization is needed to produce a behavioral effect.


Subject(s)
Electroencephalography/methods , Memory, Short-Term/physiology , Parietal Lobe/physiology , Psychomotor Performance/physiology , Transcranial Magnetic Stimulation , Adult , Female , Follow-Up Studies , Humans , Magnetic Resonance Imaging , Male , Young Adult
3.
Sci Rep ; 11(1): 23688, 2021 12 08.
Article in English | MEDLINE | ID: covidwho-1561240

ABSTRACT

The global virtual reality (VR) market is significantly expanding and being challenged with an increased demand owing to COVID-19. Unfortunately, VR is not useful for everyone due to large interindividual variability existing in VR suitability. To understand the neurobiological basis of this variability, we obtained neural structural and functional data from the participants using 3T magnetic resonance imaging. The participants completed one of two tasks (sports training or cognitive task) using VR, which differed in the time scale (months/minutes) and domain (motor learning/attention task). Behavioral results showed that some participants improved their motor skills in the real world after 1-month training in the virtual space or obtained high scores in the 3D attention task (high suitability for VR), whereas others did not (low suitability for VR). Brain structure analysis revealed that the structural properties of the superior and inferior parietal lobes contain information that can predict an individual's suitability for VR.


Subject(s)
Parietal Lobe/anatomy & histology , Virtual Reality , Adolescent , Algorithms , Female , Humans , Image Processing, Computer-Assisted , Imaging, Three-Dimensional , Magnetic Resonance Imaging , Male , Parietal Lobe/diagnostic imaging , Young Adult
4.
J Clin Neurosci ; 79: 275-276, 2020 Sep.
Article in English | MEDLINE | ID: covidwho-665722

ABSTRACT

Since the outbreak with novel corona virus in December 2019, a myriad of different neurological manifestations in patients with COVID-19 infection have been reported. We present a case of non-traumatic intracranial hemorrhage in the olfactory gyrus in a patient who tested positive for SARS-COV-2. The area of hemorrhage is not a common location for spontaneous hemorrhage. Given that loss of smell is considered a relatively common symptom of this pandemic, it is an intriguing association of COVID-19 and olfactory gyrus ICH for neurotropism of SARS-CoV2 for olfactory bulb and glia cells through nasal mucosa. Future studies will need to elucidate the exact mechanism of anosmia from COVID-19 and potential mechanisms leading to ICH.


Subject(s)
Betacoronavirus , Cerebral Hemorrhage/etiology , Coronavirus Infections/complications , Parietal Lobe/diagnostic imaging , Pneumonia, Viral/complications , COVID-19 , Cerebral Hemorrhage/diagnostic imaging , Humans , Magnetic Resonance Imaging , Male , Middle Aged , Olfaction Disorders/etiology , Pandemics , SARS-CoV-2 , Smell
5.
Neuroradiol J ; 33(5): 368-373, 2020 Oct.
Article in English | MEDLINE | ID: covidwho-646969

ABSTRACT

Central nervous system involvement in severe acute respiratory syndrome caused by coronavirus disease 2019 (COVID-19) has increasingly been recognised in the literature, and possible mechanisms of neuroinvasion, neurotropism and neurovirulence have been described. Neurological signs have been described in 84% of COVID-19 intensive care unit patients, and haemostatic abnormalities in such patients may play an important role, with a broad spectrum of neuroimaging findings. This report describes the magnetic resonance imaging neurovascular findings in an acutely ill patient with COVID-19, including perfusion abnormalities depicted in the arterial spin labelling technique.


Subject(s)
Brain/diagnostic imaging , Cerebrovascular Circulation , Coronavirus Infections/diagnostic imaging , Pneumonia, Viral/diagnostic imaging , Subarachnoid Hemorrhage/diagnostic imaging , Aged , Betacoronavirus , Brain/blood supply , COVID-19 , Coronavirus Infections/complications , Coronavirus Infections/physiopathology , Corpus Callosum , Frontal Lobe , Humans , Intracranial Hemorrhages , Magnetic Resonance Imaging , Male , Pandemics , Parietal Lobe , Perfusion Imaging , Pneumonia, Viral/complications , Pneumonia, Viral/physiopathology , SARS-CoV-2 , Spin Labels , Subarachnoid Hemorrhage/complications , Thalamus
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