The Radical Pair Model proposes that the avian magnetic compass is based on spin-chemical processes: since the ratio between the two spin states singlet and triplet of radical pairs depends on their alignment in the magnetic field, it can provide information on magnetic directions. Cryptochromes, blue light-absorbing flavoproteins, with flavin adenine dinucleotide as chromophore, are suggested as molecules forming the radical pairs underlying magnetoreception. When activated by light, cryptochromes undergo a redox cycle, in the course of which radical pairs are generated during photo-reduction as well as during light-independent re-oxidation. This raised the question as to which radical pair is crucial for mediating magnetic directions. Her...
According to the radical pair model, the magnetic compass sense of migratory birds relies on photoch...
Cryptochrome 1a, located in the UV/violet-sensitive cones in the avian retina, is discussed as recep...
The light-dependent magnetic compass sense of night-migratory songbirds can be disrupted by weak rad...
The Radical Pair Model proposes that the avian magnetic compass is based on spin-chemical processes:...
The Radical Pair Model proposes that the avian magnetic compass is based on spin-chemical processes:...
The Radical Pair Model proposes that the avian magnetic compass is based on spin-chemical processes:...
Birds can use the geomagnetic field for compass orientation. Behavioral experiments, mostly with mig...
AbstractA large variety of animals has the ability to sense the geomagnetic field and utilize it as ...
For decades, scientists have documented the ability of numerous animal species to sense the Earth’s ...
For decades, scientists have documented the ability of numerous animal species to sense the Earth’s ...
International audienceThe radical pair model proposes that the avian magnetic compass is based on ra...
The avian magnetic compass has been well characterized in behavioral tests: it is an "inclination co...
Cryptochromes (Cry) have been suggested to form the basis of light-dependent magnetic compass orient...
Magnetic fields as weak as the Earth's can change the yields of radical pair reactions even though t...
According to the radical pair model, the magnetic compass sense of migratory birds relies on photoch...
According to the radical pair model, the magnetic compass sense of migratory birds relies on photoch...
Cryptochrome 1a, located in the UV/violet-sensitive cones in the avian retina, is discussed as recep...
The light-dependent magnetic compass sense of night-migratory songbirds can be disrupted by weak rad...
The Radical Pair Model proposes that the avian magnetic compass is based on spin-chemical processes:...
The Radical Pair Model proposes that the avian magnetic compass is based on spin-chemical processes:...
The Radical Pair Model proposes that the avian magnetic compass is based on spin-chemical processes:...
Birds can use the geomagnetic field for compass orientation. Behavioral experiments, mostly with mig...
AbstractA large variety of animals has the ability to sense the geomagnetic field and utilize it as ...
For decades, scientists have documented the ability of numerous animal species to sense the Earth’s ...
For decades, scientists have documented the ability of numerous animal species to sense the Earth’s ...
International audienceThe radical pair model proposes that the avian magnetic compass is based on ra...
The avian magnetic compass has been well characterized in behavioral tests: it is an "inclination co...
Cryptochromes (Cry) have been suggested to form the basis of light-dependent magnetic compass orient...
Magnetic fields as weak as the Earth's can change the yields of radical pair reactions even though t...
According to the radical pair model, the magnetic compass sense of migratory birds relies on photoch...
According to the radical pair model, the magnetic compass sense of migratory birds relies on photoch...
Cryptochrome 1a, located in the UV/violet-sensitive cones in the avian retina, is discussed as recep...
The light-dependent magnetic compass sense of night-migratory songbirds can be disrupted by weak rad...