AbstractGlobally, there is an increasing interest in brain-mapping projects, including the Brain Research through Advancing Innovative Neurotechnologies (BRAIN) Initiative project in the USA, the Human Brain Project (HBP) in Europe, and the Brain Mapping by Integrated Neurotechnologies for Disease Studies (Brain/MINDS) project in Japan. These projects aim to map the structure and function of neuronal circuits to ultimately understand the vast complexity of the human brain. Brain/MINDS is focused on structural and functional mapping of the common marmoset (Callithrix jacchus) brain. This non-human primate has numerous advantages for brain mapping, including a well-developed frontal cortex and a compact brain size, as well as the availability...
The common marmoset has enormous promise as a nonhuman primate model of human brain functions. While...
A mini-atlas of the brain is designed to help students and young researchers who are not familiar wi...
The brain has the ability to reconstruct neural structures and functions to compensate for the brain...
AbstractGlobally, there is an increasing interest in brain-mapping projects, including the Brain Res...
AbstractSince the availability of the common marmoset monkey as a primate model in neuroscience rese...
AbstractThe common marmoset (Callithrix jacchus) has been valuable as a primate model in biomedical ...
Understanding the connectivity architecture of entire vertebrate brains is a fundamental but difficu...
Comprehensive integration of structural and functional connectivity data is required to model brain ...
Abstract The common marmoset (Callithrix jacchus) is a New-World monkey of growing interest in neuro...
© 2018 The common marmoset (Callithrix jacchus) has garnered recent attention as a potentially power...
The cerebellum is a key region of the brain for motor control and cognitive functioning, and it is i...
Common marmosets (Callithrix jacchus) are small-bodied New World primates that are increasingly popu...
Understanding the principles of neuronal connectivity requires tools for efficient quantification an...
The marmoset is an emerging animal model for large-scale attempts to understand primate brain connec...
The use of the common marmoset monkey (Callithrix jacchus) for neuroscientific research has grown ma...
The common marmoset has enormous promise as a nonhuman primate model of human brain functions. While...
A mini-atlas of the brain is designed to help students and young researchers who are not familiar wi...
The brain has the ability to reconstruct neural structures and functions to compensate for the brain...
AbstractGlobally, there is an increasing interest in brain-mapping projects, including the Brain Res...
AbstractSince the availability of the common marmoset monkey as a primate model in neuroscience rese...
AbstractThe common marmoset (Callithrix jacchus) has been valuable as a primate model in biomedical ...
Understanding the connectivity architecture of entire vertebrate brains is a fundamental but difficu...
Comprehensive integration of structural and functional connectivity data is required to model brain ...
Abstract The common marmoset (Callithrix jacchus) is a New-World monkey of growing interest in neuro...
© 2018 The common marmoset (Callithrix jacchus) has garnered recent attention as a potentially power...
The cerebellum is a key region of the brain for motor control and cognitive functioning, and it is i...
Common marmosets (Callithrix jacchus) are small-bodied New World primates that are increasingly popu...
Understanding the principles of neuronal connectivity requires tools for efficient quantification an...
The marmoset is an emerging animal model for large-scale attempts to understand primate brain connec...
The use of the common marmoset monkey (Callithrix jacchus) for neuroscientific research has grown ma...
The common marmoset has enormous promise as a nonhuman primate model of human brain functions. While...
A mini-atlas of the brain is designed to help students and young researchers who are not familiar wi...
The brain has the ability to reconstruct neural structures and functions to compensate for the brain...