To understand brain function it is necessary to characterize both the underlying structural connectivity between neurons and the physiological integrity of these connections. Previous research exploring insect brain connectivity has typically used electron microscopy techniques, but this methodology cannot be applied to living animals and so cannot be used to understand dynamic physiological processes. The relatively large brain of the desert locust, Schistercera gregaria (Forks?l) is ideal for exploring a novel methodology; micro diffusion magnetic resonance imaging (micro-dMRI) for the characterization of neuronal connectivity in an insect brain. The diffusion-weighted imaging (DWI) data were acquired on a preclinical system using a custo...
Locusts show an extreme example of density-dependent phase polymorphism, demonstrating within the sp...
The central complex of the insect brain comprises a group of neuropils involved in spatial orientati...
[[abstract]]Herein, we present a complete three-dimensional (3D) map of major neuropil structures in...
To understand brain function it is necessary to characterize both the underlying structural connecti...
Nitric oxide (NO), generated enzymatically by NO synthase (NOS), acts as an important signaling mole...
Many insects use the pattern of polarized light in the sky for spatial orientation and navigation. W...
Understanding the neural mechanisms for sensing environmental information and controlling behavior i...
Parallels between invertebrates and vertebrates in nervous system development, organisation and circ...
Classically, the investigation of the internal morphology of insects relies on histologic methods, e...
For many decades the insect nervous system has provided novel insights into the mechanisms of visual...
This is an open access article. This work is licensed under a Creative Commons Attribution 4.0 Inte...
BACKGROUND: Optical Projection Tomography (OPT) is a microscopic technique that generates three dime...
Background: Optical Projection Tomography (OPT) is a microscopic technique that generates three dime...
Copyright © 2012 Hidetoshi Ikeno et al. This is an open access article distributed under the Creativ...
The study of neurogenesis is critical to understanding of the evolution of nervous systems. Within i...
Locusts show an extreme example of density-dependent phase polymorphism, demonstrating within the sp...
The central complex of the insect brain comprises a group of neuropils involved in spatial orientati...
[[abstract]]Herein, we present a complete three-dimensional (3D) map of major neuropil structures in...
To understand brain function it is necessary to characterize both the underlying structural connecti...
Nitric oxide (NO), generated enzymatically by NO synthase (NOS), acts as an important signaling mole...
Many insects use the pattern of polarized light in the sky for spatial orientation and navigation. W...
Understanding the neural mechanisms for sensing environmental information and controlling behavior i...
Parallels between invertebrates and vertebrates in nervous system development, organisation and circ...
Classically, the investigation of the internal morphology of insects relies on histologic methods, e...
For many decades the insect nervous system has provided novel insights into the mechanisms of visual...
This is an open access article. This work is licensed under a Creative Commons Attribution 4.0 Inte...
BACKGROUND: Optical Projection Tomography (OPT) is a microscopic technique that generates three dime...
Background: Optical Projection Tomography (OPT) is a microscopic technique that generates three dime...
Copyright © 2012 Hidetoshi Ikeno et al. This is an open access article distributed under the Creativ...
The study of neurogenesis is critical to understanding of the evolution of nervous systems. Within i...
Locusts show an extreme example of density-dependent phase polymorphism, demonstrating within the sp...
The central complex of the insect brain comprises a group of neuropils involved in spatial orientati...
[[abstract]]Herein, we present a complete three-dimensional (3D) map of major neuropil structures in...