Left tactile extinction following visual stimulation of a rubber hand

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Left tactile extinction following visual stimulation of a rubber hand.

In close analogy with neurophysiological findings in monkeys, neuropsychological studies have shown that the human brain constructs visual maps of space surrounding different body parts. In right-brain-damaged patients with tactile extinction, the existence of a visual peripersonal space centred on the hand has been demonstrated by showing that cross-modal visual-tactile extinction is segregate...

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Rubber Hand Illusion under Delayed Visual Feedback

BACKGROUND Rubber hand illusion (RHI) is a subject's illusion of the self-ownership of a rubber hand that was touched synchronously with their own hand. Although previous studies have confirmed that this illusion disappears when the rubber hand was touched asynchronously with the subject's hand, the minimum temporal discrepancy of these two events for attenuation of RHI has not been examined. ...

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The influence of limb crossing on left tactile extinction.

BACKGROUND Previous research on patients with left tactile extinction has shown that crossing of hands, so that each hand is on the opposite side of the body midline relative to the other, improves detection of stimuli given to the left hand. OBJECTIVES To study the influence of the spatial position of limbs on left tactile extinction, and its relations with left visual neglect. METHODS Nor...

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Tactile stimulation can suppress visual perception

An input (e.g., airplane takeoff sound) to a sensory modality can suppress the percept of another input (e.g., talking voices of neighbors) of the same modality. This perceptual suppression effect is evidence that neural responses to different inputs closely interact with each other in the brain. While recent studies suggest that close interactions also occur across sensory modalities, crossmod...

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Using tactile and visual sensing with a robotic hand

Most robotic hands are either sensorless or lack the ability to accurately and robustly report position and force information relating to contact. This paper describes a robotic hand system that uses a limited set of native joint position and force sensing along with custom designed tactile sensors and real-time vision modules to accurately compute nger contacts and applied forces for grasping ...

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ژورنال

عنوان ژورنال: Brain

سال: 2000

ISSN: 1460-2156,0006-8950

DOI: 10.1093/brain/123.11.2350