Monitoring mammal populations with line transect techniques in African forests
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- 1 April 2000
- journal article
- Published by Wiley in Journal of Applied Ecology
- Vol. 37 (2) , 356-368
- https://doi.org/10.1046/j.1365-2664.2000.00499.x
Abstract
Summary: 1. Line transect survey techniques have been used to estimate population density for a variety of mammal species in tropical forests. In many cases indirect methods, surveying signs of animals such as counts of dung or nests, have been used because of the poor visibility in these forests. The estimates of the production and decomposition rates of these signs each have their associated errors; however, for the majority of published studies these errors have not been incorporated into the estimate of the standard errors or confidence limits of the density estimate. An equation is given showing how this should be done.2. An equation is also given relating the resolution (R) of a density estimate to the coefficient of variation (CV) of the estimate. This shows that to detect a 10% change in a population the CV must be 3·6% (with a power of 50%) or 2·4% (with 80% power). Using this equation and data from studies in Africa, it is shown that differences of less than 10–30% change in the population are unlikely to be detected between two surveys where visual sightings of animals are made. When indirect methods of estimating the population are used, it is unlikely that less than a 30–50% change in the population could be detected.3. Some studies have surveyed primate groups using estimates of an average group spread. Data from primate groups in Budongo Forest, Uganda, show that group spread is highly variable and varies at different times of day and between months. This survey technique is not recommended.4. If line transects are used for monitoring populations, conversion factors should be minimized as each contributes to an increase in the CV and a reduction in the ability to detect small changes in population density.5. Monitoring trends in abundance over several survey periods can improve the detection of change, although this is costly and requires several surveys before any conclusions can be reached. Re‐using transects in subsequent surveys can also reduce the variation around the estimate and will improve the resolution. Focusing survey efforts in areas of high density is an alternative strategy, but one that could lead to other errors as high‐density areas may be the safest and hence the last to show change. Using biased survey methods is also a promising technique that can increase the precision of surveys. It is concluded that a combination of different survey methods will ensure that changes in abundance are identified.Keywords
This publication has 24 references indexed in Scilit:
- What It Will Take to Monitor Forest Elephant PopulationsConservation Biology, 1999
- Factors affecting the duration of elephant dung piles in rain forest in the Lopé Reserve, GabonAfrican Journal of Ecology, 1995
- Estimating the Biomass of Large Mammalian Herbivores in a Tropical Montane Forest: A Method of Faecal Counting That Avoids Assuming a 'Steady State' SystemJournal of Applied Ecology, 1995
- The Effect of Selective Logging on the Primate Populations in the Budongo Forest Reserve, UgandaJournal of Applied Ecology, 1994
- Biomass of Rain Forest Mammals in the Lope Reserve, GabonJournal of Animal Ecology, 1994
- Estimating decay rates of elephant dung piles in forestAfrican Journal of Ecology, 1992
- A population survey of forest elephants(Loxodonta africana cyclotis)in northern CongoAfrican Journal of Ecology, 1991
- African elephants: population trends and their causesOryx, 1987
- Counting elephants (Loxodonta africana cyclotis) in tropical rain forests with particular reference to the Tai National Park, Ivory CoastAfrican Journal of Ecology, 1986
- Density and seasonal movements of forest elephant (Loxodonta africana cyclotis, Matschie) in Bia National Park, GhanaAfrican Journal of Ecology, 1983