Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Finger representation in the cortex of the congenitally blind

View through CrossRef
Abstract Hand representation in the primary somatosensory cortex (S1) is thought to be shaped by experience. Individuals with congenital blindness rely on their sense of touch for completing daily tasks that in sighted people would be informed by vision, and possess superior tactile acuity. It has therefore been proposed that their S1 hand representation should differ from that of sighted individuals. Alternatively, it has been proposed that the improved tactile acuity in blind individuals is due to cross-modal plasticity, when regions in the occipital and temporal cortex are typically used for processing vision become activated by touch. We probed finger representation using psychophysics and 7T fMRI (1 mm 3 resolution) in three individuals with bilateral anophthalmia, a rare condition in which both eyes fail to develop, as well as sighted controls. Despite anophthalmic individuals’ increased reliance on touch and superior tactile acuity, we found no evidence that they had more pronounced hand representation in S1. This is in line with recent research highlighting the stability of early sensory cortex, despite altered sensorimotor experience in adulthood. Unlike sighted controls, anophthalmic individuals activated the left human middle temporal complex (hMT+) during finger movement. This area did not express any hallmark of typical sensorimotor organisation, suggesting this and previously reported activity does not indicate low-level sensorimotor hand representation. However, left hMT+ contained some single finger information, beyond that found in sighted controls. This latter finding suggests that when the developmentally flexible area hMT+ is unaffected by retinal input, it can acquire novel cross-modal processes, which are potentially unrelated to the area’s function in sighted people. As such, our findings highlight the opportunity for other organising principles, beyond domain specific plasticity, in shaping cross-modal reorganisation.
Title: Finger representation in the cortex of the congenitally blind
Description:
Abstract Hand representation in the primary somatosensory cortex (S1) is thought to be shaped by experience.
Individuals with congenital blindness rely on their sense of touch for completing daily tasks that in sighted people would be informed by vision, and possess superior tactile acuity.
It has therefore been proposed that their S1 hand representation should differ from that of sighted individuals.
Alternatively, it has been proposed that the improved tactile acuity in blind individuals is due to cross-modal plasticity, when regions in the occipital and temporal cortex are typically used for processing vision become activated by touch.
We probed finger representation using psychophysics and 7T fMRI (1 mm 3 resolution) in three individuals with bilateral anophthalmia, a rare condition in which both eyes fail to develop, as well as sighted controls.
Despite anophthalmic individuals’ increased reliance on touch and superior tactile acuity, we found no evidence that they had more pronounced hand representation in S1.
This is in line with recent research highlighting the stability of early sensory cortex, despite altered sensorimotor experience in adulthood.
Unlike sighted controls, anophthalmic individuals activated the left human middle temporal complex (hMT+) during finger movement.
This area did not express any hallmark of typical sensorimotor organisation, suggesting this and previously reported activity does not indicate low-level sensorimotor hand representation.
However, left hMT+ contained some single finger information, beyond that found in sighted controls.
This latter finding suggests that when the developmentally flexible area hMT+ is unaffected by retinal input, it can acquire novel cross-modal processes, which are potentially unrelated to the area’s function in sighted people.
As such, our findings highlight the opportunity for other organising principles, beyond domain specific plasticity, in shaping cross-modal reorganisation.

Related Results

Prevalence of Congenitally Missing Permanent Teeth in Aseer, KSA
Prevalence of Congenitally Missing Permanent Teeth in Aseer, KSA
Background: Hypodontia or congenitally missing teeth is among dental anomalies with different prevalence in each region. The aim of this study was to evaluate the prevalence of con...
Cerebral structures participating in motor preparation in humans: a positron emission tomography study
Cerebral structures participating in motor preparation in humans: a positron emission tomography study
1. Using positron emission tomography and measurement of regional cerebral blood flow (rCBF) as an index of cerebral activity we investigated the central processing of motor prepar...
The way of the light: how visual information reaches the auditory cortex in congenitally deaf adults
The way of the light: how visual information reaches the auditory cortex in congenitally deaf adults
Abstract Human and animal studies on cross-modal plasticity under congenital deafness suggest that early auditory cortex plays a significant role in the processing ...
Recent Advances in Myoelectric Control for Finger Prostheses for Multiple Finger Loss
Recent Advances in Myoelectric Control for Finger Prostheses for Multiple Finger Loss
The loss of one or multiple fingers can lead to psychological problems as well as functional impairment. Various options exist for replacement and restoration after hand or finger ...
Differential neural plasticity of individual fingers revealed by fMRI neurofeedback
Differential neural plasticity of individual fingers revealed by fMRI neurofeedback
AbstractPrevious work has shown that fMRI activity patterns associated with individual fingers can be shifted by temporary impairment of the hand. Here, we investigated whether the...
VIEWS ON THE SYMBOLIC USE OF TWO RARE BONE FINGER DISTAFFS WITH DOG REPRESENTATION FROM HALUK PERK MUSEUM IN ISTANBUL
VIEWS ON THE SYMBOLIC USE OF TWO RARE BONE FINGER DISTAFFS WITH DOG REPRESENTATION FROM HALUK PERK MUSEUM IN ISTANBUL
There are various interpretations on the functions of bone finger distaffs, which are among the important artifacts produced in the ancient world. Some scholars argue that finger d...

Back to Top