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Biomedical subjects

P J Presidente

Publications and source records attributed to P J Presidente.

At least 19 recordsLinked to original sources

Parasites and associated pathology of the swamp wallaby, Wallabia bicolor (Marsupialia).

Thirty-five swamp wallabies from Victoria, New South Wales and Queensland, Australia were examined for parasites. Thirty-nine species of nematodes, five species of cestodes and eight species of arthropods were found. Wallabies from Queensland and northern New South Wales had a less diverse helminth fauna (23 species) than did wallabies from southern New South Wales and Victoria (32 species). Rugopharynx spp. and Cloacina spp. occurred in large numbers in the stomach but provoked no pathological changes. Known pathogenic species (Globocephaloides trifidospicularis and Hypodontus macropi) were encountered in small numbers only and did not produce any lesions. Pathological changes associated with parasites were: gastric nodules associated with Labiostrongylus clelandi and Parazoniolaimus collaris, bronchopneumonia due to Marsupostrongylus spp., biliary fibrosis associated with Progamotaenia festiva and fibrous peritonitis, pleuritis, pericarditis and eosinophilic splenitis due to Breinlia mundayi. Echinococcus granulosus was the only parasite found which also occurs in domestic animals.

Animals

A serological survey of Australian wildlife for antibodies to Leptospires of the Hebdomadis serogroup.

A serological survey for antibodies to Leptospira interrograns serovar hardjo was conducted on 574 serum samples from 10 native and 4 introduced wildlife species in south-eastern Australia. The microscopic agglutination (MA) test was used, and titres to hardjo antigen were detected in 33.5% of 352 brushtailed possums (Trichosurus vulpecula) sampled in several areas of Victoria. Prevalence of reactors ranged from 14 to 66% in 4 populations examined intensively. Serovar balcanica was isolated from possums with hardjo antibodies from two different areas. Of 20 wombats Vombatus ursinus) examined in Victoria, antibodies to hardjo were found in sera from 4 and titres to Pyrogenes and Pomona serogroups were detected in another. Hardjo antibodies were demonstrated in sera from 13 of 19 rusa deer (Cervus timorensis). Negative MA test results to hardjo antigens were recorded in 55 mountain possums (T. caninus), 63 macropods (Macropus spp.), 17 water rats (Hydrmys chrysogaster), 39 fallow deer (Dama dama), 2 hog deer (Axis porcinus) and 2 water buffalo (Bubalus bubalus). No MA antibodies to any of 16 leptospiral serogroups were detected in 17 water rats tested. Kidneys were examined from 330 of these animals and focal interstitial nephritis suggestive of leptospirosis was found in kidneys of 63 of 169 T. vulpecula, 3 of 55 T. caninus, 12 of 18 V. ursinus, 6 of 22 Macropus spp., 9 of 16 H. chrysogaster, 5 of 11 C. timorensis and 3 of 39 D. dama. A statistical association between focal interstitial nephritis and MA antibodies to hardjo was found in T. vulpecula.

Animal Population Groups

A sero-epidemiological study of Leptospira interrogans serovar Balcanica in four brush-tailed possum populations in Victoria, Australia.

The microscopic agglutination (MA) test was utilised to study the prevalence of antibodies to Leptospira interrogans serovar hardjo in 4 populations of brush-tailed possums (Trichosurus vulpecula). The overall antibody prevalence varied from 14% to 66%; however, the age distribution of MA test titres was remarkably similar in all 4 populations. Antibody prevalence was similar in both males and females and demonstrable antibodies were limited to sexually mature animals. The greater prevalence of high titres (greater than or equal to 1:128) in the 18- to 24-month age group suggested that primary infections were acquired at this age. The findings suggested that infection was maintained in possum populations by direct transmission, probably associated with breeding. Focal interstitial nephritis was observed in kidneys of possums greater than 18 months of age and was associated with MA titres to hardjo (P less than 0.001). Serovar balcanica was isolated from possum kidneys from 2 of these populations, suggesting that balcanica infections were responsible for most of the hardjo titres. However, agglutinin-absorption tests indicated that some possums may be infected with a leptospire more closely related to hardjo than to balcanica.

Age Factors

Experimental infections of brush-tailed possums, common wombats and water rats with Leptospira interrogans serovars balcanica and hardjo.

Of 12 brush-tailed possums (Trichosurus vulpecula) inoculated with Leptospira interrogans serovar balcanica 11 developed migroagglutination (MA) antibody to jardjo antigen by 14 days postincubation (PI). Leptospiruria was observed in 2 possums 117 to 145 days PI. Of 6 possums inoculated with serovar hardjo 4 developed low short-lived titres by day 18 PI. Two of 3 wombats (Vombatus ursinus) inoculated with balcanica had high MA titres (greater than or equal to 1:128) by day 16 PI and leptospiruria occurred by day 16. One wombat inoculated with hardjo developed a low MA titre. Low transitory MA titres to hardjo were found in 1 of 3 water rats (Hydromys chrysogaster) after inoculation with balcanica and 1 of 2 given hardjo. Histopathological examination of kidneys revealed mild to moderately severe focal interstitial nephritis in 4 of 8 possums, in 2 wombats and in 2 water rats following experimental infection with balcanica. Similar lesions were observed in 2 of 4 possums, 1 wombat and 2 water rats following experimental infection with hardjo.

Agglutination Tests

Experimental infection of calves and sheep with Leptospira interrogans serovar balcanica.

Two of four calves inoculated with Leptospira interrogans serovar balcanica developed low microscopic agglutinating (MA) titres to serovar hardjo. A third calf had an MA titre of 1:1024 by day 19 post-inoculation (PI). Transient leptospiruria was recorded in one calf on days 12 and 13 PI. An in-contact calf did not seroconvert. None of the calves had fever or other clinical signs of disease. Four ewes inoculated with balcanica developed MA titres to hardjo by day 13 PI, and a transient leptospiruria between days 14 and 25 PI. None of the ewes showed any evidence of clinical disease and three of them delivered healthy lambs 22 to 64 days PI. One ewe had mild lesions of focal interstitial nephritis.

Agglutination Tests

Coccidia of wombats: correction of host-parasite relationships. Eimeria wombati (Gilruth and Bull, 1912) Comb. Nov. and Eimeria ursini Supperer, 1957 from the hairy-nosed wombat and Eimeria arundeli sp. n. from the common wombat.

Coccidial oocysts morphologically consistent with Eimeria ursini Supperer 1957, and E. tasmaniae Supperer 1957 were recovered from the feces of wild and captive hairy-nosed wombats (Lasiorhinus latifrons) in Australia. Eimeria arundeli so. n. was recovered from the feces of wild and captive common wombats (Vombatus ursinus). Eimeria arundeli oocysts are ellipsoidal to slightly ovoid 60.2--67.2 (63.7) X 40.6--47.6 (43.4); micropyle 3 in diameter usually visible; with oocyst wall granular, dark brown and occasionally opaque, 4--7 thick; inner oocyst wall clear, about 1.5 thick; small oocyst residuum present, four sporocysts ovoid 22.4--29.4 (25.8) X 12.6--15.4 (14.1) with protuberant Stieda body; opposite end of sporocyst also often slighly pointed; large granular sporocyst residuum obscuring sporozoites. Gametocytes of E. arundeli sp. n. and of an organism which is consistent with E. tasmaniae, are described developing in the lamina propria of villi in the small intestine. The stages in the hairy-nosed wombat are those described as Ileocystis wombati Gilruth and Bull 1912. It is suggested that the identification of the host of Supperer's E. ursini and E. tasmaniae as V. ursinus was in error and that the allopatric L. latifrons is the natural host. Eimeria tasmaniae Supperer 1957 is suppressed and E. wombati (Gilruth and Bull, 1912) comb. nov. is proposed and redescribed. No schizonts were identified among the endogenous stages, consistent with observations in the literature on other coccidia with similar gametocyte and oocyst structure.

Animals

Cholangitis associated with species of Progamotaenia (Cestoda: Anoplocephalidae) in the bile ducts of marsupials.

Gross and histopathologic changes due to infection with Progamotaenia festiva and P. effigia in the bile ducts of the marsupials, Macropus rufus, M. giganteus, M. fuliginosus, Lagorchestes conspicillatus, Vombatus ursinus and Lasiorhinus latifrons are described. The integrity of the bile duct mucosa was not impaired but varying degrees of hyperplasia and hypertrophy of mucosa and mucosal glands, inflammatory infiltration and fibrosis were found. Portal fibrosis was the prominent reaction in Lasiorhinus latifrons. Reduced prevalence of cestode infection was recorded in two populations of M. giganteus in which Fasciola hepatica also was recovered.

Animals

Foreign body perforation of the esophagus initiating traumatic pericarditis in an Australian fur seal.

Postmortem examination of a juvenile Australian fur seal, Arctocephalus pusillus doriferus, washed ashore on Philip Island, Victoria, revealed traumatic fibrinous pericarditis and hemothorax. A foreign body lodged in the right ventricle was identified as the barbed spine of the ray Urolophus paucimaculatus. A small puncture wound through the esophagus indicated the initial perforation site.

Animals

Playing possum.

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Animals

Paragonimus kellicotti infection in wild carnivores in southwestern Ontario: I. Prevalence and gross pathologic features.

Paragonimus kellicotti Ward, 1908 was recovered from 16 of 105 mink (Mustela vison), 14 of 244 striped skunks (Mephitis mephitis), 10 of 446 red foxes (Vulpes vulpes), 1 of 31 coyotes (Canis latrans), 0 of 326 raccoons (Procyon lotor) and 0 of 8 weasels (Mustela spp.) collected from southwestern Ontario. The majority of carnivores harboring P. kellicotti was collected from two counties (Huron and Bruce) bordering the east shore of Lake Huron where 6.0% of the animals (excluding raccoons) were infected . There were extensive adhesions between the lungs and parietal pleura and dorsal mediastinal pleura in 25 of 301 raccoons collected from these two counties. This lesion was thought to be associated with a reaction to migrating P. kellicotti. This is the first time P.kellicotti has been reported in the striped skunk and red fox from Ontario and apparently the first record of this parasite in the coyote.

Animals

Experimentally induced Faciola hepatica infection in white-tailed deer. I. Clinicopathological and parasitological features.

Six white-tailed deer (Odocoileus virginianus) and six sheep were inoculated with metacercariae of Fasciola hepatica. Two animals of each species were given 100, 500 or 2500 metacercariae. Clinicopathological features of these infections were determined by analyses of blood samples collected each week from inoculated deer and sheep as well as from two noninoculated animals of each species. One animal in each inoculated group was killed and examined at six weeks postinoculation and the remainder at 15 weeks postinoculation. Compared with the values obtained from noninoculated controls, eosinophilia, hyperproteinemia and hyperglobulinemia occured in inoculated deer. There were no other significant changes in hematological values or in serum aspartate aminotransferase levels. Marked leukocytosis and eosinophilia, with hyperproteinemia, hyperglobulinemia, hypoalbuminemia, elevated serum aspartate aminotransferase levels and mild macrocytic normochromic anemia characterized the infection in lambs. Although approximately 29% of the inoculum was recovered from the hepatic parenchyma of the sheep, F. hepatica was found in only one of six inoculated deer. A patent infection was established in this deer and constitutes the second report of mature F. hepatica in this host.

Administration, Oral

Experimentally induced Fasciola hepatica infection in white-tailed deer. II. Pathological features.

Six white-tailed deer (Odocoileus virginianus) and six sheep were inoculated with metacercariae of Fasciola hepatica. Two animals of each species were given 100, 500 or 2500 metacercariae. One animal in each inocluated group was killed and examined at six weeks postinoculation and the remainder at 15 weeks postinoculation. At six weeks postinoculation the parietal surface of the livers from inoculated deer was covered with gray fibrous plaques and rust colored patches. Fibroplasia with mononuclear cell infiltration characterized Glisson's capsule on the parietal surface. Granulomas were found in the hepatic parenchyma and on the dorsal surface of the lung. Fresh and healing tracks were occasionally found in the liver. In the sheep fibrinous exudate and numerous subcapsular tracks were found on both surfaces of the liver. Inflammatory changes in portal areas and numerous fresh and healing tracks in the hepatic parenchyma were prominent features. At 15 weeks postinoculation inflammatory changes in Glisson's capsule of inoculated deer were less marked than at six weeks but portal fibrosis and hyperplasia of bile duct epithelium were more advanced. A zone of hemorrhage surrounded ducts that contained mature F. hepatica in one deer. The livers from the sheep were rough, pitted and covered with fibrous tags and adhesions to the diaphragm and greater omentum were common. Hemorrhagic tracks were common in the sheep given 500 and 2500 metacercariae. Portal fibrosis and hyperplasia of bile duct epithelium were seen in the sheep (100 metacercariae) that harbored mature F. hepatica.

Animals

Early pathological changes associated with Fasciola hepatica infections in white-tailed deer.

Three white-tailed deer (Odocoileus virginianus) were inoculated with 1000 metacercariae of Fasciola hepatica and examined on days 7, 14, and 28 postinoculation to determine the early response of a resistant host to this infection. It was concluded that only small numbers of the metacercariae penetrated the intestinal wall into the peritoneal cavity. Flukes that migrated to the liver penetrated through Glisson's capsule, primarily on the parietal surface. Marked fibroplasia and cellular infiltration of the capsule were induced and flukes were killed and destroyed in granulomas immediately beneath the capsule. Migration in hepatic parenchyma was minimal and immature flukes or migratory tracks were not found. There were infiltrations of eosinophils and mononuclear cells, bile duct hyperplasia and fibroplasia in portal areas. A few flukes penetrated through the diaphragm within 14 days postinoculation and on day 28 granulomas were observed on the dorsal surface of the lung where F. hepatica had penetrated this organ. The early reaction of Glisson's capsule to F. hepatica infection in white-tailed deer has not been described in cattle, sheep or swine infected with this fluke.

Animals