Hippocampus and homing in pigeons: left and right hemispheric differences in navigational map learning.
نویسندگان
چکیده
One-month-old, inexperienced homing pigeons, prior to any opportunity to learn a navigational map, were subjected to either right or left unilateral ablation of the hippocampal formation (HF). These pigeons were then held together with a group of age-matched control birds in an outdoor aviary, where they were kept for about 3 months with the opportunity to learn a navigational map. When subsequently tested for navigational map learning at about 4 months of age posthatching, control and right HF-ablated pigeons were equally good at orienting homeward from distant, unfamiliar locations, indicating successful navigational map learning. By contrast, left HF-ablated pigeons were impaired in orienting homeward, indicating a failure to learn a navigational map. Interestingly, both right and left HF-ablated pigeons displayed impaired homing performance relative to controls. These results suggest that different aspects of homing pigeon navigation may be lateralized to different hemispheres, and in particular, the HF of the different hemispheres. The left HF appears critical for navigational map learning, i.e. determining an approximate direction home from distant, unfamiliar locations. The right HF, and possibly the left HF as well, appear to play an important role in local navigation near the loft, which is likely based on familiar landmarks.
منابع مشابه
Asymmetry of different brain structures in homing pigeons with and without navigational experience.
Homing pigeons (Columba livia f.d.) are well-known for their homing abilities, and their brains seem to be functionally adapted to homing as exemplified, e.g. by their larger hippocampi and olfactory bulbs. Their hippocampus size is influenced by navigational experience, and, as in other birds, functional specialisation of the left and right hemispheres ('lateralisation') occurs in homing pigeo...
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Functional hemispheric asymmetry is a common feature of vertebrate brain organization, yet little is known about how hemispheric dominance is implemented at the neural level. One notable example of hemispheric dominance in birds is the leading role of the left hippocampal formation in controlling navigational processes that support homing in pigeons. Relying on resting state fMRI analyses (wher...
متن کاملThe orientation of homing pigeons (Columba livia f.d.) with and without navigational experience in a two-dimensional environment
Homing pigeons are known for their excellent homing ability, and their brains seem to be functionally adapted to homing. It is known that pigeons with navigational experience show a larger hippocampus and also a more lateralised brain than pigeons without navigational experience. So we hypothesized that experience may have an influence also on orientation ability. We examined two groups of pige...
متن کاملNavigational abilities of adult and experienced homing pigeons deprived of olfactory or trigeminally mediated magnetic information.
Anatomical evidence and conditioning experiments have suggested that magnetoreceptors innervated by the ophthalmic branch of the trigeminal nerve are located in the upper beak of homing pigeons. Following these findings it has been proposed that the trigeminally-mediated magnetorececeptors are able to detect magnetic field intensity, which might be useful for a position finding mechanism for pi...
متن کاملCombined recording of GPS positional data and EEG in freely flying homing pigeons reveals lateralised changes of hippocampal electrical activity upon approaching the home loft
Lesion studies have shown that the pigeon hippocampus is a critical structure for spatial mapping of the home loft area [1,2]. More recently, it was found that the left hemisphere of pigeons appears to play a role in homing mechanisms [7], while studies in caged migratory birds have indicated a possible left-hemispheric predominance of magnetoreception [8]. Since the occurrence of theta rhythm ...
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ورودعنوان ژورنال:
- The European journal of neuroscience
دوره 13 8 شماره
صفحات -
تاریخ انتشار 2001