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Biomedical subjects

M W Lankester

Publications and source records attributed to M W Lankester.

14 recordsLinked to original sources

Spring migratory birds (Aves) extend the northern occurrence of blacklegged tick (Acari:Ixodidae).

Birds that had migrated northward across Lake Superior were captured upon reaching landfall at Thunder Cape (48 degrees 18' N, 88 degrees 56' W) at the southwestern tip of the Sibley Peninsula, northwestern Ontario, from 9 May to 9 June 1995. Twenty-one of 530 birds examined (6 of 55 species) had a total of 34 ticks; 1 blue jay, Cyanocitta cristata, had a northern fowl mite, Ornithonyssus sylviarum (Canestrini & Fanzago). Four blacklegged tick, Ixodes scapularis Say, larvae were found on an American robin, Turdus migratorius, and 2 on a chipping sparrow, Spizella passerina. This tick was not found on small mammals at Thunder Cape. Twenty-six larvae and a nymph of the rabbit tick, Haemaphysalis leporispalustris (Packard) were found on 1 American robin, 2 Swainson's thrushes, Catharus ustulatus, 1 white-throated sparrow, Zonotrichia albicollis, 1 common yellowthroat, Geothlypis trichas, 1 blue jay, and 12 chipping sparrows. A nymph of H. chordeilis (Packard) occurred on 1 chipping sparrow. Results demonstrate that northward migrating birds transport larvae of I. scapularis to areas of Ontario where the tick does not appear to have become established in small mammal populations. Spring migrants may be more involved in the dispersal of I. scapularis larvae than previously thought. Cooler temperatures and shorter seasons experienced in the more northerly, continental parts of the established distribution of this tick may extend the life cycle, resulting in a predominance of larvae rather than nymphs being acquired by northward-bound birds in early spring. Consequently, the role of spring migrating birds in the northward spread of I. scapularis and of borreliosis should be reevaluated.

Animals

The possible importance of wintering yards in the transmission of Parelaphostrongylus tenuis to white-tailed deer and moose.

Terrestrial gastropods were collected, 15 June to 25 November 1994, from beneath cardboard sheets on deer range in northeastern Minnesota (USA) and examined individually for larvae of Parelaphostrongylus tenuis, the meningeal worm of white-tailed deer (Odocoileus virginianus). Overall, 10 (0.08%) of 12,096 snails and slugs were infected with a mean (+/- SD) of 3.2 +/- 2.5 P. tenuis larvae. The prevalence of infection in gastropods was greater in a traditional deer wintering yard (seven of 4,401, 0.16%), where deer aggregated for almost 5 months at a density of 50/km2, than on summer range (three of 7,695, 0.04%) where they occurred at 4/km2. Despite relatively low densities of infected gastropods, their ingestion purely by chance remains a tenable explanation for the high prevalence of P. tenuis infection observed in white-tailed deer.

Animals

A practical method for cleaning Baermann glassware.

When using the Baermann technique to detect larvae of Parelaphostrongylus tenuis in deer feces, it is difficult to ensure that no larvae remain on glassware between samples. Of several cleaning methods tested here, emersion in 95% ethanol after flushing with hot or cold water was the most effective and practical.

Animals

Infrapopulation dynamics of Parelaphostrongylus tenuis in white-tailed deer.

The prevalence and intensity of Parelaphostrongylus tenuis was determined by examining the head and a fecal sample from each of 379 white-tailed deer (Odocoileus virginianus) of known age that had been killed by vehicles in northeastern Minnesota (USA), November 1991 to May 1993. Small numbers of adult worms (mean +/- SD, 3.2 +/- 2.2; maximum, 13) were found in the cranium of 311 (82%); but over a third (118 of 311) of the infected deer were not passing larvae in their feces. Most occult infections were sterile because only one sex of the parasite was present. Adult P. tenuis were not found in the vertebral canal of deer. Prevalence of adult worms and larvae was lower in fawns (68% and 35%, respectively) than in older age classes of deer (89% and 63%, respectively). Forty-three of 45 deer between 7 and 15 yr old were infected. Mean (+/- SD) intensity of adult worms was lower in fawns (2.7 +/- 1.8) and yearlings (3.0 +/- 2.1) than in deer 7 to 15 yr (4.1 +/- 2.5). Conversely, the mean (+/- SD) number of larvae in feces was higher in fawns (103 +/- 119 larvae/g) than in adults 2 to 6 yr old (36.2 +/- 46 larvae/g) and 7 to 15 yr old (35.6 +/- 60 larvae/g). Mean (+/- SD) fecundity of female worms was greatest in fawns (51.6 +/- 64.8 larvae/g of feces/female worm). Deer of all ages passed more lavae in the spring. Deer from an area where year-round density was 30 deer/km2 had a mean (+/- SD) of 3.5 (+/- 1.8) adult worms; deer from the study area, with a summer density 2 deer/km2, had 3.2 (+/- 2.2) worms; however, deer at the greater density passed a greater mean number of larvae (93.8 and 57.1 larvae/g, respectively). Based on our results we propose that P. tenuis is a long-lived parasite and that most deer become infected in their first or second summer of life, and acquire few additional worms thereafter.

Age Factors