How the brain repairs stuttering

Как мозг восстанавливается после заикания
Christian A. Kell, Katrin Neumann, Katharina von Kriegstein, Claudia Posenenske, Alexander W. von Gudenberg, Harald Α. Euler, Anne‐Lise Giraud
2009-08-26

contralateral reorganizationneurodevelopmental stutteringorbitofrontal cortexspontaneous adult recoverywhite matter anomalies
Stuttering is a neurodevelopmental disorder associated with left inferior frontal structural anomalies. While children often recover, stuttering may also spontaneously disappear much later after years of dysfluency. These rare cases of unassisted recovery in adulthood provide a model of optimal brain repair outside the classical windows of developmental plasticity. Here we explore what distinguishes this type of recovery from less optimal repair modes, i.e. therapy-induced assisted recovery and attempted compensation in subjects who are still affected. We show that persistent stuttering is associated with mobilization of brain regions contralateral to the structural anomalies for compensation attempt. In contrast, the only neural landmark of optimal repair is activation of the left BA 47/12 in the orbitofrontal cortex, adjacent to a region where a white matter anomaly is observed in persistent stutterers, but normalized in recovered subjects. These findings show that late repair of neurodevelopmental stuttering follows the principles of contralateral and perianomalous reorganization.
1
Adults who spontaneously recover after years of stuttering show activation of left orbitofrontal BA 47/12 as the only neural landmark of optimal repair.
2
Late spontaneous repair of neurodevelopmental stuttering follows contralateral and perianomalous brain reorganization, outside classical developmental plasticity windows.
3
Persistent stuttering is associated with recruitment of brain regions contralateral to left inferior frontal structural anomalies, reflecting attempted compensation.
4
The BA 47/12 region lies adjacent to a white-matter anomaly that is present in persistent stutterers but normalized in recovered individuals.
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The study uses rare cases of unassisted adult recovery to distinguish optimal repair from therapy-induced recovery and unsuccessful compensation.

Neurodevelopmental stuttering and its brain repair in adults, including persistent, therapy-recovered, and spontaneously recovered cases

Neural reorganization mechanisms distinguishing optimal late spontaneous recovery from compensatory and therapy-induced recovery in stuttering, including contralateral recruitment and perianomalous left orbitofrontal repair

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2009-08-26
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Christian A. Kell
Katrin Neumann
Katharina von Kriegstein
Claudia Posenenske
Alexander W. von Gudenberg
Harald Α. Euler
Anne‐Lise Giraud
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