MOTOR SIMULATION · Evaluating the role of mirror neurons in humans through ECOG and Lesion Studies
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2015-07-01 → 2018-06-30
- Финансиране от ЕС
- 263 385 €
- Участници
- 2
- Схема
- MSCA-IF
Линиите свързват координатора с партньорите.
Накратко на български
Огледалните неврони се изследват чрез анализ на мозъчни сигнали, за да се разбере как мозъкът активира едни и същи клетки при извършване и при наблюдение на едно и също действие. Това помага да се разбере как разпознаваме чуждите действия и реагираме правилно на тях.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Motor simulation: Evaluating the role of mirror neurons in humans through ECOG and Lesion Studies
"My research focuses on different aspects of social cognitive neuroscience – from the behavioral level, to the hormonal and brain levels, in healthy individuals as well as in those with brain damage. Since I come from a cognitive neuroscience background, I am interested in the interactions between the social and cognitive aspects of our mind and brain. One of the most intriguing, yet still controversial discoveries in the neuroscience field in the past two decades, is the discovery of the mirror neuron system (MNS). The essence of the mirror mechanism is thought to be the following: each time an individual observes another individual performing an action, a set of neurons that encode that action is activated in the observer’s cortical motor system. The result of this mechanism is thought to be the capacity to recognize that an individual is performing an action, to differentiate this action from others analogous to it, and to use this information in order to act appropriately. While many studies indirectly measured mirror neuron activity in humans using fMRI and MEG/EEG (as I did in my PhD) – two important methods of studying the human MNS and its significance were scarcely used, and can give us valuable information about this system: (a) Intracranial recordings, or electrocorticography (ECoG) of human brain signals. For purely clinical reasons, patients with epilepsy are sometimes implanted with such electrodes to localize their seizure onset prior to surgical therapy. This gives us the chance to study brain processes with unmatched temporal and spatial resolution in combination with wide brain coverage. I’ve recently published a paper describing what we've learned from our ECoG study which was focused on different aspects of the mirroring mechanism: We found regions with ""mirror"" properties in parietal, inferior frontal and sensorimotor cortices. We revealed that the parietal regions were active before the rest, and probably decode arm movements or the initiation of the movement, rather than the exact grasp. Lastly, we showed that within the different mirror regions, there are both ""pure mirroring"" sites, active both for viewing and for imitating, but not in between, and, what we called ""mnemonic mirroring"" sites, which were also active in between viewing and imitating, perhaps taking part in rehearsal of the action to be imitated (b) Lesion patients: If indeed this brain network is important for action recognition, damage to regions in this network should be followed, at least in part, by deficits in action recognition. For the last 3 years, I studied a group of brain injury patients (following stroke, tumor resection or traumatic brain injury) with lesions to different regions associated with the mirror neuron network. This work was done in collaboration with Oslo University. This collaboration enabled us to recruit 17 patients with lesions to the lateral prefrontal cortex and 18 matched controls. We showed that lateral prefrontal cortex damage results in deficits in recognizing emotions, as seen both by longer reaction times and reduced accuracy. Accuracy in these tasks also correlated with EEG mu suppression, thought to be a correlate of the human mirror neuron system. This research was also published this year. "
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
One of the most intriguing, yet controversial findings in neuroscience in the past two decades is the discovery of the mirror neuron system (MNS). These visuo-motor neurons discharge both when a monkey does a particular goal-directed action and also when it observes another individual doing a similar action. The result of this mechanism is thought to be the capacity to recognize that an individual is performing an action, to differentiate this action from others analogous to it, and to use this information in order to act appropriately. This mechanism has been proposed as the basis for social cognition, and deficits in social understanding, such as those seen in autism spectrum disorder, have been linked to deficits in the MNS. Here I propose to use 2 novel approaches to address the neurobiological and behavioral significance of the human mirror neuron system (hMNS). (a) I will use Electrocorticography (ECoG) in neurosurgical patients to assess where, when, and how neurons in the prefrontal, parietal and sensorimotor regions are involved in action recognition. (b) I will employ scalp EEG and behavioral measures in a unique cohort of patients with damage centered in the Inferior Frontal Gyrus (IFG) or the Inferior Parietal Lobule (IPL). If the IFG and IPL are the core regions of the hMNS, patients with lesions to these regions should show deficits in understanding others’ actions, intentions and emotions (when these are expressed by body motion). This research will further our knowledge on the neural underpinnings of social understanding, and on the consequences of deficits in these neural networks.
Оригинален текст от CORDIS (на английски).
Участници
- THE HEBREW UNIVERSITY OF JERUSALEM · JerusalemКоординаторИзраел
- THE REGENTS OF THE UNIVERSITY OF CALIFORNIA · OaklandСъединени щати
Връзки
Данни: CORDIS, © Европейски съюз
