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The porcine tonsils are a group of lymphoepithelial tissues located at the common openings of the gastrointestinal and respiratory tracts. The tonsils participate in a variety of functions involving innate, cellular and humoral immunity at the local and systemic levels. Among these immunological functions is the continuous surveillance for the presence of foreign antigens at the openings of the gastrointestinal and respiratory tracts. Within the pig, the movement of lymphocytes, cytokines and chemotactic molecules from the tonsils to other lymphoid organs confers immunity to other portals of pathogen entry and facilitates an efficient and rapid systemic immune response. In spite of the immunological nature of the tonsils, some microorganisms have acquired adaptations that allow them to circumvent the tonsillar immune defenses and utilize the tonsils as a site of entry, replication and colonization. Several bacterial and viral pathogens persist asymptomatically within the tonsils, making identification of asymptomatic carrier animals difficult in disease control and/or pathogen elimination. This paper reviews the current information on the anatomy, immunology and pathobiology of porcine tonsils and discusses the tonsils as a site of pathogen entry, replication and colonization using Salmonella spp., classical swine fever virus and porcine reproductive and respiratory syndrome virus as examples.  相似文献   
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New Concepts of Arthritis in Swine   总被引:1,自引:2,他引:1       下载免费PDF全文
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OBJECTIVES: To compare the value of different magnetic resonance sequences in the detection of brain lesions in dogs with multi-focal intracranial neurolocalised lesions and abnormal cisternal cerebrospinal fluid analysis. METHODS: T2-weighted, T1-weighted, T1-weighted-Gd, FLAIR (fluid attenuated inversion recovery) images of 73 dogs with multi-focal intracranial localised lesions were reviewed retrospectively. Control dogs (19) were selected on the basis of normal neurological examination, magnetic resonance images and cerebrospinal fluid analysis. Two board-certified radiologists blindly reviewed the magnetic resonance images. Magnetic resonance sequence sensitivities were compared using the chi-squared test and logistic regression, accounting for clustering at the patient level. Statistical significance was set at the 5 per cent level. RESULTS: The FLAIR sequence was found to have the highest sensitivity (84 per cent, 61 of 73), followed by T2-weighted (63 per cent, 46 of 73), T1-weighted postcontrast (62 per cent, 45 of 73) and T1-weighted (23 per cent, 17 of 73) (P<0.001). FLAIR images were 106.1 times (95 per cent confidence interval 25.2 to 447.5) more likely to correctly identify cerebrospinal fluid-positive patients than T1-weighted, 6.4 times (95 per cent confidence interval 2.2 to 18.2) than T1-weighted postcontrast and 5.8 times (95 per cent confidence interval 2.0 to 16.4) than T2-weighted. FLAIR identified 14 per cent of cases that were classified as normal based on the three others sequences. CLINICAL SIGNIFICANCE: Routine use of FLAIR sequence should be encouraged in dogs undergoing a brain magnetic resonance imaging and probably more specifically in cases of suspected inflammatory brain disease.  相似文献   
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AIM: To investigate and assess the epididymal and testicular lesions in rams up to 44 days after inoculation with Actinobacillus seminis via various routes. METHODS: Forty-four young (18-24 months old) rams were randomly divided into nine test and two control groups (n=4 per group). The test rams were infected by installation, drenching or injection of A. seminis organisms cultured for 24 h in a brain-heart infusion (BHI) broth containing 2.3 x 10(9) cells/ml, via the following nine routes: intra-epididymal (1 ml), intravenous (3 ml), intra-urethral (3 ml), intra-preputial (3 ml), vas deferens (1 ml), intramuscular (3 ml), oral (10 ml), intranasal (3 ml), and intra-conjunctival (3 drops). All test rams were necropsied 9-44 days post-inoculation (p.i.). Control rams were subdivided into in-contact and non-contact groups and necropsied at 45 and 46 days p.i., respectively. Thin tissue sections were examined for histopathology. RESULTS: Gross lesions were evident only in rams inoculated intra-epididymally. Epididymides on the inoculated side were two to three times larger than those on the un-inoculated side, and the testes attached to the inoculated epididymides were also enlarged. Fibrinopurulent periorchitis and tunica vaginalitis were seen in three rams and atrophy in one. Microscopically, epididymitis was present in 17 (47%) rams, the highest incidence being in the cauda, followed by the caput and the corpus epididymis. Seminiferous tubular degeneration with areas of lymphocytic infiltration were seen in four rams: three inoculated via the cauda epididymis and one via the urethra. No epididymal and/or testicular lesions were seen in rams inoculated via the nasal and conjunctival routes. CONCLUSIONS: Injection of A. seminis in young rams by all routes except intra-conjunctival and intranasal resulted in epididymitis, predominantly in the cauda epididymis. Development of lesions in the reproductive tract following non-genital routes of inoculation supports earlier suggestions that non-venereal transmission of genital actinobacillosis occurs. This study confirmed the predilection of A. seminis for the epididymis, especially the cauda.  相似文献   
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Objective: To report the manifestations, history, and pathophysiologic basis of disease in 2 dogs with Amanita muscaria toxicosis. Case summaries: Two dogs were evaluated for an acute onset of gastroenteritis and seizures. A. muscaria toxicosis was suspected in each dog after confirmation of environmental exposure and visualization of ingested mushrooms in vomitus. The diagnosis was confirmed following identification of toxic Amanita metabolites in the urine and serum of each dog. Administration of supportive and symptomatic therapies resulted in the complete recovery of each animal. Unique information provided: Ingestion of the mushroom, A. muscaria, by dogs can result in acute gastrointestinal distress that precedes a potentially life‐threatening central neurologic syndrome characterized by seizures, tremors, and somnolence. Central nervous system dysfunction results primarily from the actions of ibotenic acid and its decarboxylation product, muscimol, which are analogues of the neurotransmitters glutamate and γ‐aminobutyric acid (GABA), respectively. Identification of these toxins in the urine and serum of affected dogs using high‐performance liquid chromatography (HPLC) provides a definitive diagnosis.  相似文献   
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