The dynamics and connectivity of neural circuits continuously change on timescales ranging from milliseconds to an animal's lifetime. Therefore, to understand biological networks, minimally invasive methods are required to repeatedly record them in behaving animals. Here we describe a suite of devices that enable long-term optical recordings of the adult Drosophila melanogaster ventral nerve cord (VNC). These consist of transparent, numbered windows to replace thoracic exoskeleton, compliant implants to displace internal organs, a precision arm to assist implantation, and a hinged stage to repeatedly tether flies. To validate and illustrate our toolkit we (i) show minimal impact on animal behavior and survival, (ii) follow the degradation o...
A variety of in vivo imaging techniques have been invented and adopted to study brain function, givi...
Detailed mechanisms governing the transport of mitochondria in neurons have recently emerged, althou...
We present a method developed specifically to image the whole Drosophila brain during ongoing behavi...
To understand neural circuits that control limbs, one must measure their activity during behavior. U...
To understand neural circuits that control limbs, one must measure their activity during behavior. U...
To understand neural circuits that control limbs, one must measure their activity during behavior. U...
To understand neural circuits that control limbs, one must measure their activity during behavior. U...
With powerful genetics and a translucent cuticle, the Drosophila larva is an ideal model system for ...
Background The brain of Drosophila shows dynamics at multiple timescales, from the millisecond range...
Monitoring neuronal responses to defined sensory stimuli is a powerful and widely used approach for...
Drosophila is the household fruit fly. Drosophilae provide a very powerful model that helps scientis...
Drosophila is the household fruit fly. Drosophilae provide a very powerful model that helps scientis...
Drosophila is the household fruit fly. Drosophilae provide a very powerful model that helps scientis...
Whole-cell patch-clamp recordings provide exceptional access to spiking and synaptic neural activity...
<div><p>With powerful genetics and a translucent cuticle, the <i>Drosophila</i> larva is an ideal mo...
A variety of in vivo imaging techniques have been invented and adopted to study brain function, givi...
Detailed mechanisms governing the transport of mitochondria in neurons have recently emerged, althou...
We present a method developed specifically to image the whole Drosophila brain during ongoing behavi...
To understand neural circuits that control limbs, one must measure their activity during behavior. U...
To understand neural circuits that control limbs, one must measure their activity during behavior. U...
To understand neural circuits that control limbs, one must measure their activity during behavior. U...
To understand neural circuits that control limbs, one must measure their activity during behavior. U...
With powerful genetics and a translucent cuticle, the Drosophila larva is an ideal model system for ...
Background The brain of Drosophila shows dynamics at multiple timescales, from the millisecond range...
Monitoring neuronal responses to defined sensory stimuli is a powerful and widely used approach for...
Drosophila is the household fruit fly. Drosophilae provide a very powerful model that helps scientis...
Drosophila is the household fruit fly. Drosophilae provide a very powerful model that helps scientis...
Drosophila is the household fruit fly. Drosophilae provide a very powerful model that helps scientis...
Whole-cell patch-clamp recordings provide exceptional access to spiking and synaptic neural activity...
<div><p>With powerful genetics and a translucent cuticle, the <i>Drosophila</i> larva is an ideal mo...
A variety of in vivo imaging techniques have been invented and adopted to study brain function, givi...
Detailed mechanisms governing the transport of mitochondria in neurons have recently emerged, althou...
We present a method developed specifically to image the whole Drosophila brain during ongoing behavi...