Ruxandra I Tivadar
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Explore the profile of Ruxandra I Tivadar including associated specialties, affiliations and a list of published articles.
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12
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43
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Recent Articles
1.
Tivadar R, Franceschiello B, Minier A, Murray M
NPJ Sci Learn
. 2023 Dec;
8(1):61.
PMID: 38102127
Learning spatial layouts and navigating through them rely not simply on sight but rather on multisensory processes, including touch. Digital haptics based on ultrasounds are effective for creating and manipulating...
2.
Tivadar R, Arnold R, Turoman N, Knebel J, Murray M
Sci Rep
. 2022 Jun;
12(1):9728.
PMID: 35710569
Dashboard-mounted touchscreen tablets are now common in vehicles. Screen/phone use in cars likely shifts drivers' attention away from the road and contributes to risk of accidents. Nevertheless, vision is subject...
3.
Turoman N, Tivadar R, Retsa C, Murray M, Matusz P
Neuroimage
. 2021 Sep;
244:118556.
PMID: 34492292
Research on attentional control has largely focused on single senses and the importance of behavioural goals in controlling attention. However, everyday situations are multisensory and contain regularities, both likely influencing...
4.
Tivadar R, Knight R, Tzovara A
Front Hum Neurosci
. 2021 Sep;
15:702520.
PMID: 34489663
The human brain has the astonishing capacity of integrating streams of sensory information from the environment and forming predictions about future events in an automatic way. Despite being initially developed...
5.
Tivadar R, Gaglianese A, Murray M
Multisens Res
. 2021 Mar;
34(1):1-15.
PMID: 33706283
Illusory contours (ICs) are borders that are perceived in the absence of contrast gradients. Until recently, IC processes were considered exclusively visual in nature and presumed to be unaffected by...
6.
Turoman N, Tivadar R, Retsa C, Maillard A, Scerif G, Matusz P
Dev Cogn Neurosci
. 2021 Feb;
48:100930.
PMID: 33561691
Outside the laboratory, people need to pay attention to relevant objects that are typically multisensory, but it remains poorly understood how the underlying neurocognitive mechanisms develop. We investigated when adult-like...
7.
Tivadar R, Chappaz C, Anaflous F, Roche J, Murray M
Front Neurosci
. 2020 Apr;
14:197.
PMID: 32265628
In the event of visual impairment or blindness, information from other intact senses can be used as substitutes to retrain (and replace) visual functions. Abilities including reading, mental representation of...
8.
Tivadar R, Rouillard T, Chappaz C, Knebel J, Turoman N, Anaflous F, et al.
Front Integr Neurosci
. 2019 Apr;
13:7.
PMID: 30930756
Sensory substitution is an effective means to rehabilitate many visual functions after visual impairment or blindness. Tactile information, for example, is particularly useful for functions such as reading, mental rotation,...
9.
Matusz P, Turoman N, Tivadar R, Retsa C, Murray M
J Cogn Neurosci
. 2018 Dec;
31(3):412-430.
PMID: 30513045
In real-world environments, information is typically multisensory, and objects are a primary unit of information processing. Object recognition and action necessitate attentional selection of task-relevant from among task-irrelevant objects. However,...
10.
Jamieson G, Kittenis M, Tivadar R, Evans I
Neurosci Conscious
. 2018 Jul;
2017(1):nix005.
PMID: 30042839
Hypnotic amnesia is a functional dissociation from awareness during which information from specific neural processes is unavailable to consciousness. We test the proposal that changes in topographic patterns of cortical...