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Module 1:Human Nervous System Lecture 2:Hindbrain The
Module 1:Human Nervous System Lecture 2:Hindbrain The

... Cerebellum, pons and medulla oblongata constitutes the hind brain. Cerebellum is of the size of fist and deals with fine motor coordination and muscular movement. It also has to do with sense of balance, posture and muscle tonus. Damage to it can cause tremor and shaking of the neck. Pons is the rel ...
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... of (LTM) using the old methodology named in Latin language “REPETITA JUVANT” In spite of this old tradition the Brain Landing project takes in consideration the contemporary need of improving the SHORT TERM MEMORY processes. As a matter of fact, in the Information Society LTM can be externalized in ...
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... Occipital lobe - located at the back of the head - concerned with vision as well as perception such as touch, pressure temperature and pain - site of visual cortex Temporal lobe - located at the side of the head above the ears interprets the impulses from the ears and give meaning to information - i ...
title of video - Discovery Education
title of video - Discovery Education

... 2. Why are the basal ganglia, limbic system and brain stem referred to as the "old brain"? The basal ganglia, limbic system and brain stem are called the "old brain" because they control the subconscious activities and are thought to have developed in humans before the more conscious brain structure ...
[PPS]An Integrative Approach to Psychopathology
[PPS]An Integrative Approach to Psychopathology

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Chapter Six

... effects of accidental or deliberate nervoussystem damage. There are two types: The case study method looks at the effects of brain damage due to stroke, head trauma, or other injury in humans. 2. In lesion studies, an electrode is used to selectively destroy a specific brain area of an animal. The r ...
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Neuroinformatics

Neuroinformatics is a research field concerned with the organization of neuroscience data by the application of computational models and analytical tools. These areas of research are important for the integration and analysis of increasingly large-volume, high-dimensional, and fine-grain experimental data. Neuroinformaticians provide computational tools, mathematical models, and create interoperable databases for clinicians and research scientists. Neuroscience is a heterogeneous field, consisting of many and various sub-disciplines (e.g., Cognitive Psychology, Behavioral Neuroscience, and Behavioral Genetics). In order for our understanding of the brain to continue to deepen, it is necessary that these sub-disciplines are able to share data and findings in a meaningful way; Neuroinformaticians facilitate this.Neuroinformatics stands at the intersection of neuroscience and information science. Other fields, like genomics, have demonstrated the effectiveness of freely-distributed databases and the application of theoretical and computational models for solving complex problems. In Neuroinformatics, such facilities allow researchers to more easily quantitatively confirm their working theories by computational modeling. Additionally, neuroinformatics fosters collaborative research—an important fact that facilitates the field's interest in studying the multi-level complexity of the brain.There are three main directions where neuroinformatics has to be applied: the development of tools and databases for management and sharing of neuroscience data at all levels of analysis, the development of tools for analyzing and modeling neuroscience data, the development of computational models of the nervous system and neural processes.In the recent decade, as vast amounts of diverse data about the brain were gathered by many research groups, the problem was raised of how to integrate the data from thousands of publications in order to enable efficient tools for further research. The biological and neuroscience data are highly interconnected and complex, and by itself, integration represents a great challenge for scientists.Combining informatics research and brain research provides benefits for both fields of science. On one hand, informatics facilitates brain data processing and data handling, by providing new electronic and software technologies for arranging databases, modeling and communication in brain research. On the other hand, enhanced discoveries in the field of neuroscience will invoke the development of new methods in information technologies (IT).
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