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P N Lehner

Publications and source records attributed to P N Lehner.

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Sampling methods in behavior research.

Animals perform a continuous stream of behavior throughout their lives. Because their behavior is not random, appropriate sampling methods can be used to obtain data that accurately reflect the actual behavior and are valid for answering research questions. Answering questions related to several variables assists in narrowing the choices of sampling methods. First, a determination must be made of what behaviors to measure. If the behaviors are few and easily measured, then All Occurrences Sampling is the method of choice because it generates accurate frequency and duration data through continuous recording. Sequence and Sociometric Matrix Sampling are specialized types of All Occurrences Sampling that are restricted to sampling intra- or interindividual sequences and social interactions (e.g., agonistic), respectively. Second, if who (e.g., specific individual, sex, or genotype) performs the behavior is a major component of the research question, then consideration should be given to Focal Animal (Pair, Group) Sampling. Third, if when or where the behavior is performed is of interest (e.g., activity budget), then Instantaneous or Scan Sampling can often be effective. Ad libitum Sampling does not produce valid data for analyses, but it is useful when formulating and fine-tuning research questions. One-Zero Sampling is not recommended except when the research question relates to the presence or absence of behaviors only. Other factors to consider in selecting a sampling method are duration of the behavior (event or state), desired scale of measurement (nominal, ordinal, interval, or ratio), and logistics (e.g., time, and equipment and facilities available).

Animals

Design and execution of animal behavior research: an overview.

Animal behavior research, like other sciences, adheres to a rigorous methodology of design and execution. It begins with careful delineation of the research questions, objectives and hypotheses. Dependent and independent variables are identified, including behaviors to be measured or manipulated. A research protocol is structured, which casts the variables and animal subjects into the proper experimental design, prescribes appropriate scales of measurement and designates valid parametric or non-parametric statistical analyses. Data collection begins with the choice of appropriate sampling methods and equipment to insure validity, accuracy and reliability. The most robust and powerful data analyses, commensurate with the parameters of the data set, are conducted and interpreted relative to the research hypotheses and questions.

Animals

Comparison of scotopic sensitivity in diurnal (Anas platyrhynchos) and crepuscular (Dendrocygna autumnalis) ducks.

Scotopic visual adaptation curves were obtained from 4 mallard ducks. A curve of best fit was used to compare the mallards' mean adaptation curve to the curve previously reported for the black-bellied tree duck, a crepuscular species. The curves did not differ significantly in either their slopes or base levels (thresholds). The mallards curve had a rod-cone "break" at approximately 25 min. This break is evident in the scotopic curve for pigeons, but is absent from the black-bellied tree ducks' curve. Examination of retinal tissues indicated that the black-bellied tree ducks had significantly more rods and cones, and a larger rod:cone ratio than the mallards. The mallards' scotopic visual threshold is exceeded by the natural illumination present under several nocturnal conditions.

Adaptation, Ocular

Scotopic sensitivity in coyotes (Canis latrans).

The absolute scotopic limen for light intensity was measured for three 10-mo-old female coyotes. The methodology was similar to that used by Blough in determining psychophysical thresholds in pigeons. Three coyotes were operantly conditioned to depress one of two foot treadles, left or right, depending on the condition of the stimulus light. Scotopic adaptation curves for each coyote were generated. Nonlinear regression curves were then fitted to the raw data. The mean scotopic thresholds did not differ significantly. However, time to the curves' asymptotes did differ significantly for one of the coyotes. The adaptation curves showed a distinct rod-cone "break," and retinal histology confirmed that the coyote has a duplex retina with a preponderance of rods. In addition, electroretinographic analysis showed the relative contributions of rods and cones at various light intensities and indicated a rod-cone break at approximately 15 min. Scotopic spectral sensitivity curves were also generated. The coyotes' scotopic visual threshold is exceeded by the natural illumination available under many nocturnal conditions. The results are discussed in relation to the ecology of the species.

Animals