Abstract In the present study we investigated neural selection mechanisms for object and space separately by recording Motor RTs and event-related potentials (ERPs) of the brain in humans with an relatively high-density electrode montage (i.e., 32 channels) mostly placed at the back of the scalp and . Reaction times (RTs) were about 100 ms faster in the location than the frequency selection task. Different morphologies characterized ERPs obtained in the two selection modes over the posterior regions of the scalp. ERPs for space selection were characterized by a prominent Pl peaking at about 140 msec, followed by a tiny N1 and a very early P300 component. Conversely, ERPs for object selection showed an early PN80 deflection followed by a prominent selection negativity (SN) and a delayed late positive component (LPC). The present findings support the view of two anatomically and functionally relatively distinct neural mechanisms for space and object selection. These mechanisms seem to be related to the activation of the “dorsal” and “ventral” streams of neural information processing.

Scalp current density (SCD) mapping of cerebral activity during object and space selection in humans / Zani, A., Avella, C., Lilli, S., Proverbio, A.m.. - In: BIOMEDIZINISCHE TECHNIK. - ISSN 0013-5585. - 44:(1999), pp. 162-165. (2nd International Symposium on NonInvasive Functional Source Imaging within the human brain and Heart Zagreb, Croatia September 3-7, 1999).

Scalp current density (SCD) mapping of cerebral activity during object and space selection in humans

Zani A
Primo
Supervision
;
1999-01-01

Abstract

Abstract In the present study we investigated neural selection mechanisms for object and space separately by recording Motor RTs and event-related potentials (ERPs) of the brain in humans with an relatively high-density electrode montage (i.e., 32 channels) mostly placed at the back of the scalp and . Reaction times (RTs) were about 100 ms faster in the location than the frequency selection task. Different morphologies characterized ERPs obtained in the two selection modes over the posterior regions of the scalp. ERPs for space selection were characterized by a prominent Pl peaking at about 140 msec, followed by a tiny N1 and a very early P300 component. Conversely, ERPs for object selection showed an early PN80 deflection followed by a prominent selection negativity (SN) and a delayed late positive component (LPC). The present findings support the view of two anatomically and functionally relatively distinct neural mechanisms for space and object selection. These mechanisms seem to be related to the activation of the “dorsal” and “ventral” streams of neural information processing.
1999
Inglese
Book of Abstracts of NFSI '99
Supek Selma
Croatian Biophysical Society
HRV
CROAZIA
2nd International Symposium on NonInvasive Functional Source Imaging within the human brain and Heart
September 3-7, 1999
Zagreb, Croatia
Contributo
44
162
165
4
biom-technik_obj-space_1999 PDF (azcesp.wordpress.com)
Comitato scientifico
Internazionale
Goal 3: Good health and well-being
Brain, ERPs, Visual attention, Space and object selection
ISSN 0939-4990
No
4
info:eu-repo/semantics/conferenceObject
Scalp current density (SCD) mapping of cerebral activity during object and space selection in humans / Zani, A., Avella, C., Lilli, S., Proverbio, A.m.. - In: BIOMEDIZINISCHE TECHNIK. - ISSN 0013-5585. - 44:(1999), pp. 162-165. (2nd International Symposium on NonInvasive Functional Source Imaging within the human brain and Heart Zagreb, Croatia September 3-7, 1999).
none
274
4 Contributo in Atti di Convegno (Proceeding)::4.2 Abstract in Atti di convegno
Zani, A; Avella, C; Lilli, S; Proverbio, Am
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11768/92915
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