scholarly journals A note on the presence of the Elephant Louse Haematomyzus elephantis piaget (Mallophaga: Rhynchophthirina) in the Kruger National Park

Koedoe ◽  
1984 ◽  
Vol 27 (1) ◽  
Author(s):  
L.E.O Braack

First described in 1869, this rather unusual insect has been found to be a common ectoparasite on the Indian elephant (Elephas maximus), and has been collected in low numbers from the African elephant (Loxodonta africana) in nearly all of sub-saharan Africa (Ledger 1979, The arthropod parasites of vertebrates in Africa south of the Sahara (Ethiopian Region) Vol. IV.

Parasite ◽  
2020 ◽  
Vol 27 ◽  
pp. 13
Author(s):  
Louis J. La Grange ◽  
Samson Mukaratirwa

Knowledge on the epidemiology, host range and transmission of Trichinella spp. infections in different ecological zones in southern Africa including areas of wildlife-human interface is limited. The majority of reports on Trichinella infections in sub-Saharan Africa were from wildlife resident in protected areas. Elucidation of the epidemiology of the infections and the prediction of hosts involved in the sylvatic cycles within specific ecological niches is critical. Of recent, there have been reports of Trichinella infections in several wildlife species within the Greater Kruger National Park (GKNP) of South Africa, which has prompted the revision and update of published hypothetical transmission cycles including the hypothetical options based previously on the biology and feeding behaviour of wildlife hosts confined to the GKNP. Using data gathered from surveillance studies and reports spanning the period 1964–2019, confirmed transmission cycles and revised hypothesized transmission cycles of three known Trichinella species (T. zimbabwensis, Trichinella T8 and T. nelsoni) are presented. These were formulated based on the epidemiological factors, feeding habits of hosts and prevalence data gathered from the GKNP. We presume that the formulated sylvatic cycles may be extrapolated to similar national parks and wildlife protected areas in sub-Saharan Africa where the same host and parasite species are known to occur. The anecdotal nature of some of the presented data confirms the need for more intense epidemiological surveillance in national parks and wildlife protected areas in the rest of sub-Saharan Africa to unravel the epidemiology of Trichinella infections in these unique and diverse protected landscapes.


Koedoe ◽  
1978 ◽  
Vol 21 (1) ◽  
Author(s):  
C. Wallace

The present report is published because of the paucity of publication on the mitotic chromosomes of the African elephant Loxodonta africana, and because it is the fisrt study in which the meiotic chromosomes of the species are described.


Koedoe ◽  
1972 ◽  
Vol 15 (1) ◽  
Author(s):  
D. R Osterhoff ◽  
E Young ◽  
I. S Ward-Cox

In a random sample of 84 elephants from the Kruger National Park and five elephants from the Addo Elephant National Park, biochemical polymorphism in the serum transferrins could be established. It seems that elephants in the Kruger and Addo Parks are genetically similar but further studies are indicated to confirm these preliminary findings. For the haemo- globin investigations 109 blood samples were available, all originating from the Kruger National Park and all revealing only one type of haemoglobin.


Koedoe ◽  
2000 ◽  
Vol 43 (2) ◽  
Author(s):  
E.J. Raubenheimer

The embryologic development of the tush and tusk of the African elephant was studied by means of serial histologic sections prepared from elephant embryos with masses varying between Ig and 240 g. Statistics on tusklessness obtained during a four year population control programme in the Kruger National Park were analysed and compared with those reported in other elephant reserves in Southern Africa. Maxillae of eight elephant embryos, the maternal histories of which were available in six cases, were radiographed, dissected and examined microscopically. This study has shown that the tush and tusk develop from one tooth germ in a deciduous to permanent tooth relationship. Tusklessness was found to be unilateral or bilateral and associated with either the absence or presence of a tush. The possible causes of the differences in the frequency of bilateral tusklessness in different elephant populations are discussed.


Koedoe ◽  
1966 ◽  
Vol 9 (1) ◽  
Author(s):  
U. De V. Pienaar ◽  
J. W. Van Niekerk ◽  
E Young ◽  
P Van Wyk ◽  
N. Fairall

This paper was accepted for publication on the 16th August, 1965. - Editor


Author(s):  
G. Steenkamp ◽  
W.H. Ferguson ◽  
S.C. Boy ◽  
S.M. Ferreira ◽  
M.N. Bester

Captive and wild African elephants frequently suffer tusk fractures. Several institutions shorten the tusks of captive elephants to reduce fractures and injury as a result of behaviour within enclosures. Fracturing or coronal amputations that expose pulp lead to pain for the elephant. Estimating coronal pulp lengths may thus help to minimise the risk of pulp exposure during amputations. We aimed to determine the length of the pulp beyond the lip margin from an external tusk characteristic. Tusks collected from elephants in Namibia and the Kruger National Park had similar morphological relationships. This statistical property allowed us to correct for missing data in our data sets. Pulp volume and pulp length correlated with tusk circumference at the lip. Even so, the circumference at the lip could not predict the length of the pulp in the crown external to the lip. Our findings suggest that tusks, irrespective of sex or age, amputated further than 300 mm from the lip should not expose pulp.


Koedoe ◽  
1984 ◽  
Vol 27 (1) ◽  
Author(s):  
A.J Hall-Martin ◽  
L.A Van der Walt

A long-term study of the behaviour and ecology of the African elephant Loxodonta africana was begun in the Addo Elephant National Park in 1976. During the period June 1976 to March 1979 regular observations were made on all animals. Every individual elephant could be recognised (the population was less than 100 animals) and every individual was seen several times a month. From the start of the study records were kept of whether the temporal gland was secreting or not for every animal at every observation.


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