Preferred Name

Epilepsy
Synonyms
Definitions

A disorder characterized by recurrent episodes of paroxysmal brain dysfunction due to a sudden, disorderly, and excessive neuronal discharge. Epilepsy classification systems are generally based upon: (1) clinical features of the seizure episodes (e.g., motor seizure), (2) etiology (e.g., post-traumatic), (3) anatomic site of seizure origin (e.g., frontal lobe seizure), (4) tendency to spread to other structures in the brain, and (5) temporal patterns (e.g., nocturnal epilepsy) (MeSH).

ID

http://uri.neuinfo.org/nif/nifstd/birnlex_12718

createdDate

2007-10-08

definition

A disorder characterized by recurrent episodes of paroxysmal brain dysfunction due to a sudden, disorderly, and excessive neuronal discharge. Epilepsy classification systems are generally based upon: (1) clinical features of the seizure episodes (e.g., motor seizure), (2) etiology (e.g., post-traumatic), (3) anatomic site of seizure origin (e.g., frontal lobe seizure), (4) tendency to spread to other structures in the brain, and (5) temporal patterns (e.g., nocturnal epilepsy) (MeSH).

editorial note

Note BIRNLex seeks to evolve a core subsumptive disease hierarchy based first on the effected function, then the effected structure, the latter for those categories of nervous system disease that have typically been associated with structural abnormalities or trauma (e.g., Motor neuron diseases, cerebrovascular trauma, etc.). Disease causation is in fact the ultimate goal of much biomedical research, and our recognitition of ALL the driving causes of a particular disease - and the ways in which these causes inter-relate with each other and with effected structures to cause a change in normal function is a critical representational task BIRNlex will increasingly take on to provide an evolving, nuanced functional reconstruction of disease as a process and an outcome. These relations will be represented using OWL ObjectProperties. Function is the most sensible context to drive the asserted subsumptive hierarchy for representing nervous system disease, since it is with the clinical description of altered, impaired, decreased, or lost function that the diagnosis - and the research - of disease is rooted. Much has already been described regarding both the effected biomaterial entities and the causes of disease. However, it is because understanding of such relations still is far from comprehensive, that biomedical investigation into nervous system disease continues. Finally, given the "realist" ontology design approach being used to construct BIRNLex, function must be represented as inhering in some biomaterial entity from molecules and their controlling elements on up through gross anatomical structures. Over time, BIRNLex will provide the required relations to depict these functionally-related structures for both the normal and pathological function of the nervous system. This will be true both for the causes and for the outcomes of nervous system disease. Initial work to extend this expressive representation will focus on the neurodegenerative diseases being studied by BIRN researchers. Though this will be te case, BIRNLex still needs to provide a core asserted hierarchy for a broad swarth of nervous system disease, so as to enable BIRN researchers to link to the breadth of disorders that may impact or relate to those directly under study.

http://uri.neuinfo.org/nif/nifstd/readable/uncurated

hasBirnlexCurator

http://uri.neuinfo.org/nif/nifstd/readable/Bill_Bug

hasCurationStatus

http://uri.neuinfo.org/nif/nifstd/readable/uncurated

hasDefinitionSource

http://uri.neuinfo.org/nif/nifstd/readable/MeSH_defSource

hasExternalSource

http://uri.neuinfo.org/nif/nifstd/readable/MeSH

label

Epilepsy

MeshUid

D004827

modifiedDate

2007-11-18

nifID

_8.3_5

note

A disorder characterized by recurrent episodes of paroxysmal brain dysfunction due to a sudden, disorderly, and excessive neuronal discharge. Epilepsy classification systems are generally based upon: (1) clinical features of the seizure episodes (e.g., motor seizure), (2) etiology (e.g., post-traumatic), (3) anatomic site of seizure origin (e.g., frontal lobe seizure), (4) tendency to spread to other structures in the brain, and (5) temporal patterns (e.g., nocturnal epilepsy) (MeSH).

Note BIRNLex seeks to evolve a core subsumptive disease hierarchy based first on the effected function, then the effected structure, the latter for those categories of nervous system disease that have typically been associated with structural abnormalities or trauma (e.g., Motor neuron diseases, cerebrovascular trauma, etc.). Disease causation is in fact the ultimate goal of much biomedical research, and our recognitition of ALL the driving causes of a particular disease - and the ways in which these causes inter-relate with each other and with effected structures to cause a change in normal function is a critical representational task BIRNlex will increasingly take on to provide an evolving, nuanced functional reconstruction of disease as a process and an outcome. These relations will be represented using OWL ObjectProperties. Function is the most sensible context to drive the asserted subsumptive hierarchy for representing nervous system disease, since it is with the clinical description of altered, impaired, decreased, or lost function that the diagnosis - and the research - of disease is rooted. Much has already been described regarding both the effected biomaterial entities and the causes of disease. However, it is because understanding of such relations still is far from comprehensive, that biomedical investigation into nervous system disease continues. Finally, given the "realist" ontology design approach being used to construct BIRNLex, function must be represented as inhering in some biomaterial entity from molecules and their controlling elements on up through gross anatomical structures. Over time, BIRNLex will provide the required relations to depict these functionally-related structures for both the normal and pathological function of the nervous system. This will be true both for the causes and for the outcomes of nervous system disease. Initial work to extend this expressive representation will focus on the neurodegenerative diseases being studied by BIRN researchers. Though this will be te case, BIRNLex still needs to provide a core asserted hierarchy for a broad swarth of nervous system disease, so as to enable BIRN researchers to link to the breadth of disorders that may impact or relate to those directly under study.

http://uri.neuinfo.org/nif/nifstd/readable/uncurated

preferred label

Epilepsy

synonym

Seizure Disorder

Epileptic Seizure

subClassOf

http://uri.neuinfo.org/nif/nifstd/birnlex_12796

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Delete Mapping To Ontology Source
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