When faced with predatory threats, escape towards shelter is an adaptive action that offers long-term protection against the attacker. Animals rely on knowledge of safe locations in the environment to instinctively execute rapid shelter-directed escape actions1,2. Although previous work has identified neural mechanisms of escape initiation3,4, it is not known how the escape circuit incorporates spatial information to execute rapid flights along the most efficient route to shelter. Here we show that the mouse retrosplenial cortex (RSP) and superior colliculus (SC) form a circuit that encodes the shelter-direction vector and is specifically required for accurately orienting to shelter during escape. Shelter direction is encoded in RSP and SC ...
The parabigeminal nucleus (PBG) is the mammalian homologue to the isthmic complex of other vertebrat...
Borders and edges are salient and behaviourally relevant features for navigating the environment. Th...
The superior colliculus (SC) is responsible for sensorimotor transformations required to direct gaze...
When faced with predatory threats, escape towards shelter is an adaptive action that offers long-ter...
Adapting anti-predatory defensive strategies to the properties of the environment is critical for su...
Animals face frequent threats from predators and must generate appropriate behavioural responses to ...
Executing appropriate defensive actions is vital for survival. In mice, imminent threat elicits fas...
Naturalistic escape requires versatile context-specific flight with rapid evaluation of local geomet...
Naturalistic escape requires versatile context-specific flight with rapid evaluation of local geomet...
This study sets the stage for an investigation into the role of subiculum efferents to the mammillar...
The rodent retrosplenial cortex (RSC) functions as an integrative hub for sensory and motor signals,...
ABSTRACT During navigation, animals often use recognition of familiar environmental contexts to guid...
During navigation, animals often use recognition of familiar environmental contexts to guide motor a...
The behavioral strategies that mammals use to learn multi-step routes are unknown. In this study, we...
During navigation, animals often use recognition of familiar environmental contexts to guide motor a...
The parabigeminal nucleus (PBG) is the mammalian homologue to the isthmic complex of other vertebrat...
Borders and edges are salient and behaviourally relevant features for navigating the environment. Th...
The superior colliculus (SC) is responsible for sensorimotor transformations required to direct gaze...
When faced with predatory threats, escape towards shelter is an adaptive action that offers long-ter...
Adapting anti-predatory defensive strategies to the properties of the environment is critical for su...
Animals face frequent threats from predators and must generate appropriate behavioural responses to ...
Executing appropriate defensive actions is vital for survival. In mice, imminent threat elicits fas...
Naturalistic escape requires versatile context-specific flight with rapid evaluation of local geomet...
Naturalistic escape requires versatile context-specific flight with rapid evaluation of local geomet...
This study sets the stage for an investigation into the role of subiculum efferents to the mammillar...
The rodent retrosplenial cortex (RSC) functions as an integrative hub for sensory and motor signals,...
ABSTRACT During navigation, animals often use recognition of familiar environmental contexts to guid...
During navigation, animals often use recognition of familiar environmental contexts to guide motor a...
The behavioral strategies that mammals use to learn multi-step routes are unknown. In this study, we...
During navigation, animals often use recognition of familiar environmental contexts to guide motor a...
The parabigeminal nucleus (PBG) is the mammalian homologue to the isthmic complex of other vertebrat...
Borders and edges are salient and behaviourally relevant features for navigating the environment. Th...
The superior colliculus (SC) is responsible for sensorimotor transformations required to direct gaze...