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H G Wallraff

Publications and source records attributed to H G Wallraff.

12 recordsLinked to original sources

Simulated navigation based on observed gradients of atmospheric trace gases (Models on pigeon homing, part 3).

An earlier developed model, simulating pigeon homing based on fictitious gradients of atmospheric odours, was applied to actually observed spatial distributions of volatile hydrocarbons. The model calculations demonstrate that sufficient information on a bird's current position with respect to home can be derived from the ratios among three or more chemical compounds which gradually vary over distances of several hundreds of kilometres, differently in different directions. Flight directions computed by model birds from such observed ratios are roughly but not perfectly homeward-oriented from most positions within the investigated radius of 200 km around home. Performances of model birds are at least as good as those of real pigeons in the field. According to calculations using atmospheric data collected under different wind directions, the birds might, but possibly need not, take the current weather conditions into account when evaluating olfactory signals. It is necessary, however, that the birds acquire, during their long-term stay at the home site, some knowledge of the directions of relevant gradients. Homing experiments with pigeons as well as measurements of atmospheric trace substances are consistent with the hypothesis that this knowledge is gained by correlating wind directions with specific changes of ratios among a number of compounds. This assumed process requires further elucidation.

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Migration and bidirectional phototaxis in Dictyostelium discoideum slugs lacking the actin cross-linking 120 kDa gelation factor.

Three mutant strains of Dictyostelium discoideum, lacking different actin-binding proteins, were tested for behavioural deficits in the multicellular pseudoplasmodium (slug) stage. Two strains, defective in the production of either -actinin (an actin cross-linker) or severin (an actin capping and severing protein), did not show changes in slug behaviour. Slugs of the mutant lacking another actin cross-linker, the 120 kDa gelation factor (ABP-120), however, migrated shorter distances in darkness as well as in horizontally directed light. More remarkably, they migrated at an angle of approximately 45 degrees to the left or right of the incident light, whereas wild-type slugs migrated on fairly straight paths towards the light. We discuss the hypothesis that this bidirectional oblique-angle phototaxis is due to changes in the optical properties of the pseudoplasmodia. Normally, in wild-type slugs, a lens effect causes stronger stimulation on the side distal to the incident light. We propose that in the mutant the lens quality is reduced, so that at small angles between the slug axis and the rays of light the proximal side is stimulated more intensely. As a result, the intended symmetrical stimulation is achieved at a certain angle to the left or right of the incident light. We assume that the absence of ABP-120 alters the shape of the lens and/or enhances internal light scattering via degradation of intercellular coherence; however, intracellular attenuation of light remains an additional or alternative possibility.

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Conceptual approaches to avian navigation systems.

The general basis of migratory orientation in birds is most probably an endogenous time-and-direction programme. Directions are selected with respect to celestial as well as geomagnetic clues. These clues appear to be integrated within a system that profits from the special advantages of either kind of environmental signal, and thereby can cope with their limitations. Using these clues, and following a genetically determined intended direction (or sequence of directions) over a genetically determined period of time, a bird may reach a larger population-specific area. However, it will hardly be able to find a particular location, such as, for instance, its previous breeding site. Homing to a familiar site over several hundred kilometers of unfamiliar terrain is substantially based on the smelling of atmospheric trace compounds. At shorter distances from home, orientation by means of--presumably visual--familiar landmarks completes the repertoire of mechanisms guiding a bird back home. These mechanisms are considered to be based on different kinds of 'maps' and 'compasses'. Conceptual approaches to the properties of an 'olfactory map' have as yet only reached an early state of speculation.

Animals↗

[Navigation by means of an olfactory map and a sun compass: the homing ability of pigeons].

Pigeon homing, investigated as a paradigmatic example of bird navigation, appears to be based on two mechanisms of orientation whose functions correspond to those of map and compass. Tasks of the latter are usually accomplished by a sun compass, taking into account the sun's movement and time of day. Under overcast skies, the magnetic field of the earth may be used for compass orientation. The "map" part of the system, responsible for site localization, makes use of olfactory perception of atmospheric trace compounds, which must be concluded to contain positional information in unfamiliar areas up to several hundreds of kilometers from home.

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Olfactory deprivation in pigeons: examination of methods applied in homing experiments.

1. Effectiveness of three methods of olfactory deprivation or impairment was tested by means of unconditioned cardiac acceleration in response to odorous stimuli. 2. Occlusion of nostrils reduced stimulus intensity to approx. 20-30% of the level in unimpeded state. Capability of stimulus quantification remained unimpaired. 3. Bilateral olfactory nerve section and backward bending of the nerve stumps irreversibly eliminated responses to weaker stimuli. With higher concentrations of the odorant, pigeons responded at a reduced level, most likely due to trigeminal reception. 4. Spraying the nasal cavities with an anaesthetic largely abolished sensitivity to odorous stimuli. However, its effect was quite variable depending on the kind of application (which cannot be fully standardized). The time course of effectiveness is shown. 5. The relevance of these findings to experiments on pigeon homing is discussed. Conclusions on involvement of unspecified non-olfactory stimuli can only be drawn if methods are applied that reliably isolate the birds from airborne environmental odours.

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Directional components derived from initial-orientation data of inexperienced homing pigeons.

1,324 vanishing bearings of individual pigeons, completely inexperienced in homing, were recorded during 100 releases at 36 sites symmetrically distributed around their home loft near Würzburg at distances ranging from 7 to 180 km. Two directional components could be derived from the data: a weak but significant 'homeward component' pointing to the loft site and a more pronounced 'compass component' pointing to the northwest. With the latter kind of tendency the pigeons clearly demonstrated what earlier had been described as 'preferred compass direction' (PCD). Homeward directedness at the 36 differently situated release sites is negatively correlated with angular divergence between PCD and homeward direction. Compass preferences derived from different quartets of symmetrically arranged sites were similar. Over a period of 11 years the PCD varied significantly in time but did not change fundamentally. Interrelations between various parameters of initial-orientation data were investigated by correlation analyses . PCDs have not only been found in the Würzburg area but around many other loft sites as well. They are, however, differently pronounced, and in experienced pigeons they are generally weaker than in first-flight birds. Various reasons (partly evident, partly thought possible) for variability of PCDs, and for their absence in some series of experiments, are discussed. As a PCD persists, and even tends to become clearer, after elimination of homeward orientation by olfactory deprivation, it is concluded that it reflects directional tendencies which are independent of the process of site localization. A great deal of what is called 'release-site biases', i.e., site-specific deviations from the beeline course towards home, can be understood on a PCD basis. The functional background of the PCD is unknown. Hypothetical advantages for the pigeons' homing strategy are considered.

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