anterior forceps of the corpus callosum (acc)

Also known as: corpus callosum, anterior forceps, corpus callosum, anterior forceps (Arnold), frontal forceps, anterior forceps of the corpus callosum, Forceps frontalis, Forceps minor, anterior forceps, Corpus callosum, forceps minor, Forceps minor corporis callosi, Forceps minor of corpus callosum, forceps minor of the corpus callosum

NeuroNames ID: 192

All Names & Sources

Showing 17 synonym(s)

Language
Name
Source
English
anterior forceps
English
anterior forceps of the corpus callosum
English
corpus callosum, anterior forceps
English
corpus callosum, anterior forceps (Arnold)
English
forceps minor of the corpus callosum
English
frontal forceps
Illustrations

Showing 1 illustration(s)

Species With The Structure
Equivalent By Human Macaque Rat Mouse
Topology Has The Structure Relevant Data Not Located Has The Structure Has The Structure

Showing 11 record(s)

Basis
Has Equivalent
Organism
Their Name
Source
Topology
Yes
anterior forceps
Topology
Yes
anterior forceps of the corpus callosum
Topology
Yes
Corpus callosum, forceps minor
Topology
Yes
Forceps frontalis
Topology
Yes
Forceps minor
Topology
Yes
Forceps minor corporis callosi
Topology
Yes
Forceps minor of corpus callosum
Topology
Yes
frontal forceps
Topology
Yes
corpus callosum, anterior forceps (Arnold)
Topology
Yes
corpus callosum, anterior forceps
Topology
Yes
forceps minor of the corpus callosum
Models Where It Appears
Functional CNS Model - Rat

The Functional CNS Model - Rat (FMrat) ( Swanson-2004) is one of three hierarchical models representing the internal organization of the central nervous system (CNS). The others are the Structural CNS Model - Human (SThmn) and the Functional CNS Model - Human (FMhmn). The FMrat model represents the basic organization of the mouse ( Hof-2000 AMBA-2024 ) and, presumably, other rodents. Functional CNS models differ from structural models in that structures are defined and named by connectivity rather than by proximity to other structures at the same level. Functional models are more useful for representing longitudinal components of are grouped based on information drawn from multiple neuroscientific disciplines. such as connections, neurochemical characteristics, and role in physiogical and behavioral processes. While the Functional Model was developed primarily for an atlas of the rat brain ( Swanson-2004 ), the hierarchical organization of structures is for the most part applicable to the human, macaque, mouse and other mammalian brains as well. Structures at lower levels of the Functional CNS hierarchy are largely the same as in the Classical and Developmental Models, i.e., they were originally identified by stains for gray matter (Nissl substance) and white matter (myelin). At the next higher level they are grouped into basic connectional and functional systems of the CNS, such as the subcortical sensory systems, the brainstem motor system and the behavioral state system. At the highest levels CNS structures are grouped on the basis of dissection and embryologic precursors into cerebrum ( cerebral cortex and cerebral nuclei ), cerebellum, and cerebrospinal trunk.