scholarly journals Comparison of active brain area for wide and dense optode configurations using initial dip

2018 ◽  
Vol 12 ◽  
Author(s):  
Amad Zafar ◽  
Usman Ghafoor ◽  
Keum-Shik Hong
2019 ◽  
Author(s):  
Chetan Sinha

<p>What does the brain mean in a legal domain and how the integration of neuroscience and law goes beyond the practical difficulties highlighted by the social scientists and legal theorists? On the one hand, the legal theorists took it as a conceptual error and on the other hand, advocates of neurosciences took it as a promising emerging field of integration. Some scholars took an alternative route considering it as a fascinating element of scientific discourse. The present article aims to show that the coming of “brain language” in comparison to the other forensic languages in the everyday legal discourse is not going to become a reality, as truth inferred through the everyday experiences and the interpretations of scientific knowledge by the judges. Scientific knowledge through the mapping of active brain area by the available brain visualising techniques shows the correlation between brain and behaviour and not the causation. So its use in the legal domain seems less institutionalised, showing the determinism of the brain as less authentic in itself when compared with the intuitive path embedded in the culture and history. </p> <p><b><i> </i></b></p>


2019 ◽  
Author(s):  
Chetan Sinha

<p>What does the brain mean in a legal domain and how the integration of neuroscience and law goes beyond the practical difficulties highlighted by the social scientists and legal theorists? On the one hand, the legal theorists took it as a conceptual error and on the other hand, advocates of neurosciences took it as a promising emerging field of integration. Some scholars took an alternative route considering it as a fascinating element of scientific discourse. The present article aims to show that the coming of “brain language” in comparison to the other forensic languages in the everyday legal discourse is not going to become a reality, as truth inferred through the everyday experiences and the interpretations of scientific knowledge by the judges. Scientific knowledge through the mapping of active brain area by the available brain visualising techniques shows the correlation between brain and behaviour and not the causation. So its use in the legal domain seems less institutionalised, showing the determinism of the brain as less authentic in itself when compared with the intuitive path embedded in the culture and history. </p> <p><b><i> </i></b></p>


1989 ◽  
Vol 28 (05) ◽  
pp. 181-186
Author(s):  
A. Ludolph ◽  
O. Schober ◽  
G. Lottes ◽  
I. Böttger ◽  
H.-F. Beer ◽  
...  

99mTc-HMPAO-SPECT and SPECT with the 123I-labelled benzodiazepine (Bz) receptor ligand Ro 16-0154 were performed in 10 patients suffering from partial epilepsy, without cerebral lesion in MRT or CT. 2 h p.i. of Ro 16-0154 the distribution of activity correlated with the known distribution of Bz- receptors in the human brain. Perfusion and receptor-binding were found decreased in 7 patients of each study in the suspicious brain-area. 123l-labelled Ro 16-0154 is suitable for Bz-receptor mapping by SPECT. The decrease of Bz-receptor binding in epileptic foci, as described in PET-studies, was also detected by SPECT in 7 of 10 patients.


2011 ◽  
Vol 29 (supplement) ◽  
pp. 352-377 ◽  
Author(s):  
Seon Hee Jang ◽  
Frank E Pollick

The study of dance has been helpful to advance our understanding of how human brain networks of action observation are influenced by experience. However previous studies have not examined the effect of extensive visual experience alone: for example, an art critic or dance fan who has a rich experience of watching dance but negligible experience performing dance. To explore the effect of pure visual experience we performed a single experiment using functional Magnetic Resonance Imaging (fMRI) to compare the neural processing of dance actions in 3 groups: a) 14 ballet dancers, b) 10 experienced viewers, c) 12 novices without any extensive dance or viewing experience. Each of the 36 participants viewed short 2-second displays of ballet derived from motion capture of a professional ballerina. These displays represented the ballerina as only points of light at the major joints. We wished to study the action observation network broadly and thus included two different types of display and two different tasks for participants to perform. The two different displays were: a) brief movies of a ballet action and b) frames from the ballet movies with the points of lights connected by lines to show a ballet posture. The two different tasks were: a) passively observe the display and b) imagine performing the action depicted in the display. The two levels of display and task were combined factorially to produce four experimental conditions (observe movie, observe posture, motor imagery of movie, motor imagery of posture). The set of stimuli used in the experiment are available for download after this paper. A random effects ANOVA was performed on brain activity and an effect of experience was obtained in seven different brain areas including: right Temporoparietal Junction (TPJ), left Retrosplenial Cortex (RSC), right Primary Somatosensory Cortex (S1), bilateral Primary Motor Cortex (M1), right Orbitofrontal Cortex (OFC), right Temporal Pole (TP). The patterns of activation were plotted in each of these areas (TPJ, RSC, S1, M1, OFC, TP) to investigate more closely how the effect of experience changed across these areas. For this analysis, novices were treated as baseline and the relative effect of experience examined in the dancer and experienced viewer groups. Interpretation of these results suggests that both visual and motor experience appear equivalent in producing more extensive early processing of dance actions in early stages of representation (TPJ and RSC) and we hypothesise that this could be due to the involvement of autobiographical memory processes. The pattern of results found for dancers in S1 and M1 suggest that their perception of dance actions are enhanced by embodied processes. For example, the S1 results are consistent with claims that this brain area shows mirror properties. The pattern of results found for the experienced viewers in OFC and TP suggests that their perception of dance actions are enhanced by cognitive processes. For example, involving aspects of social cognition and hedonic processing – the experienced viewers find the motor imagery task more pleasant and have richer connections of dance to social memory. While aspects of our interpretation are speculative the core results clearly show common and distinct aspects of how viewing experience and physical experience shape brain responses to watching dance.


2020 ◽  
Vol 3 (1) ◽  
pp. 54-59
Author(s):  
Nargiza Ergasheva ◽  
◽  
Sardor Anorboev ◽  
Gavkhar Kendjaeva ◽  

Cerebral palsy (CP) is a disorder characterized by abnormal tone, posture and movement. The incidence of CP is 2–4 per 1,000 live births in the world. Prematurityand low birth weight are important risk factors for CP; however, multiple other factors have been associated with an increased risk for CP, including maternal infections and diseases, and abnormal birth process. In most cases of CP the initial injury to the brain occurs during early fetal brain development, later a brain area that is injured cannot function properly in the future. CP is classified clinically based on the predominant motor syndrome—spastic hemiplegia, spastic diplegia, spastic quadriplegia, ataxic and dyskinetic cerebral palsies. The diagnosis of CPis based on a combination of clinical history, use of standardized neuromotor assessment and findings on magnetic resonance imaging (MRI). If there is a suspicionof genetic or inborn metabolic disorders, screening tests should be provided additionally. Because CP is associated with multiple associated and secondary medical conditions, its management requires a multidisciplinary team approach


Author(s):  
Jair Leopoldo Raso

Abstract Introduction The precise identification of anatomical structures and lesions in the brain is the main objective of neuronavigation systems. Brain shift, displacement of the brain after opening the cisterns and draining cerebrospinal fluid, is one of the limitations of such systems. Objective To describe a simple method to avoid brain shift in craniotomies for subcortical lesions. Method We used the surgical technique hereby described in five patients with subcortical neoplasms. We performed the neuronavigation-guided craniotomies with the conventional technique. After opening the dura and exposing the cortical surface, we placed two or three arachnoid anchoring sutures to the dura mater, close to the edges of the exposed cortical surface. We placed these anchoring sutures under microscopy, using a 6–0 mononylon wire. With this technique, the cortex surface was kept close to the dura mater, minimizing its displacement during the approach to the subcortical lesion. In these five cases we operated, the cortical surface remained close to the dura, anchored by the arachnoid sutures. All the lesions were located with a good correlation between the handpiece tip inserted in the desired brain area and the display on the navigation system. Conclusion Arachnoid anchoring sutures to the dura mater on the edges of the cortex area exposed by craniotomy constitute a simple method to minimize brain displacement (brain-shift) in craniotomies for subcortical injuries, optimizing the use of the neuronavigation system.


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