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81.
M Boller K Kelers MA Stevenson KD Winkel S Hardjo J Heller PR Judge HM Ong AM Padula C Reddrop LCP Santos CR Sharp L Smart KL Swindells D Tabrett JR Wierenga 《Australian veterinary journal》2020,98(9):442-448
SnakeMap is a national cloud-based, veterinary snakebite registry. It was designed to prospectively collect data of the clinical circumstances and temporospatial information on cases of snake envenomation in dogs and cats. We herein introduce the project and summarise the data from the first 4 years of SnakeMap. The registry is a veterinary community-based online database allowing case entry from veterinary hospitals across Australia. Registry data comprise hospital characteristics, patient characteristics, envenoming snake type, treatment and outcome variables, including time and geolocation of the snake bite. We present summative information on select key variables from the SnakeMap registry (1 July 2015 to 30 June 2019). Twenty-eight hospitals from 6 states/territories entered 624 cases into the registry, including 419 dogs (67%) and 205 cats (33%). Bite time was available in 216 animals of which 90 (42%) were reported to be bitten in the 3 hours between 03:00 pm and 05:59 pm; median bite to presentation interval was 60 (interquartile range [IQR] 30, 211) minutes in dogs and 95 (IQR 41, 238) minutes in cats. Bites occurred in the owner's yard in 356 dogs (85%) and 53 cats (26%). A snake venom detection kit was used in 172 cases (28%) and antivenom was administered in 523 cases (85%). Most animals (n = 534, 88%) survived to discharge (median hospitalisation of 25 [IQR 16, 62] hours). SnakeMap effectively collects relevant clinical data from dogs and cats with presumed snake bite and provides locally specific information on the epidemiology of snake envenomation in small animals. 相似文献
82.
Adrian Boswood Sonya G. Gordon Jens Häggström Martin Vanselow Gerhard Wess Rebecca L. Stepien Mark A. Oyama Bruce W. Keene John Bonagura Kristin A. MacDonald Mark Patteson Sarah Smith Philip R. Fox Karen Sanderson Richard Woolley Viktor Szatmári Pierre Menaut Whitney M. Church M. Lynne O'Sullivan Jean-Philippe Jaudon Jan-Gerd Kresken John Rush Kirstie A. Barrett Steven L. Rosenthal Ashley B. Saunders Ingrid Ljungvall Michael Deinert Eric Bomassi Amara H. Estrada Maria J. Fernandez Del Palacio N. Sydney Moise Jonathan A. Abbott Yoko Fujii Alan Spier Michael W. Luethy Roberto A. Santilli Masami Uechi Anna Tidholm Christoph Schummer Philip Watson 《Journal of veterinary internal medicine / American College of Veterinary Internal Medicine》2020,34(3):1108-1118
83.
天水地区小麦条锈病流行规律研究简报 总被引:7,自引:0,他引:7
本文报道了天水地区小麦条锈菌的越夏越冬高度和主要地区范围,因降雨(雪)多少和温度高低的变化情况,以及秋、春季的发生发展规律,并且首次证明,天水地区小麦条锈菌的秋季菌源可随风传入关中,成为关中秋季发病的主要菌源。此外,还提出了防治策略。 相似文献
84.
2004年黑龙江省新城疫病毒分子流行病学分析 总被引:6,自引:3,他引:3
2004年从黑龙江省部分鸡场疑似新城疫(ND)病死鸡和鸽体内分离到9株NDV。对这9株NDV生物学特性进行测定,并对其F基因包括裂解位点在内的540bp片段进行了克隆、测序和同源性分析。结果表明,9株NDV鸡胚平均死亡时间(MDT)和1日龄雏鸡脑内接种致病指数(ICPI)分别在47.8h~78.4h和1.51~2.00之间;8个分离株在F蛋白裂解位点氨基酸顺序为112RRQKRF117,1个分离株F蛋白裂解位点氨基酸顺序为112RRQRRF117,表明了它们全为ND中、强毒株。同源性分析显示,9株NDV分离株之间核苷酸与推导的氨基酸同源性分别为79.7%~99.7%和79.8%~100%;系统发生树分析表明,6株分离株与台湾株(TW98、TW99和TW2000等)遗传距离较近,可能有共同的起源,为基因Ⅶe型NDV,2株为鸽源NDV基因Ⅵ型,1株与我国特有的F48E9遗传距离最近,为基因Ⅸ型NDV。 相似文献
85.
通过对动物棘球蚴病(包虫病)流行病学研究和分析,以及防治手段综合比较,找到该病流行规律及防制该病的策略和综合措施。 相似文献
86.
C. F. Ihler V. Rootwelt A. Heyeraas N. I. Dolvik 《Veterinary research communications》1995,19(6):487-494
The caecum and the adjacent 30 cm lengths of ileum and large colon of 201 horses from two different regions of Norway (Østlandet and Trøndelag) were examined for the presence ofAnoplocephala perfoliata. In all, 20% of the horses were infested with the cestode (27% in Østlandet and 7% in Trøndelag). The mean number of worms in infected horses from the two regions was 18 and 6, respectively.Information was obtained on the age, sex, breed, type of pasture and anthelmintic treatment after the grazing season for 183 of the 20 horses. The degree of infestation withA. perfoliata was not influenced by age, breed or sex. The odds ratio (confidence limits) for using permanent pastures that had been grazed by horses for at least the 5 last years in succession was 8.8 (3.2–24.4). There was a significantly higher prevalence ofA. perfoliata infestation in Østlandet (odds ratio 3.1 (1.1–9.1). The relatively low prevalence ofA. perfoliata infestation in Norwegian horses compared to the reported prevalences in other countries and the differences in the prevalence between Østlandet and Trøndelag are discussed. Gross pathological examination identified lesions such as mucosal thickening, hyperaemia and/or erosions. These lesions were found in all of the infected horses, compared with only 5% of the non-infected horses.Examination of faecal samples from 26 of the infected horses detected cestode eggs in only three cases. It was concluded that faecal examination is an inadequate method for the diagnosis ofA. perfoliata infestation. 相似文献
87.
奶牛隐孢子虫病流行病学调查及初生犊牛感染试验 总被引:5,自引:0,他引:5
应用饱和糖溶液漂浮法和改良抗酸染色法调查郑州、商丘和洛阳3个地区的5个奶牛场、2个专业村的582份粪样,查出阳性样品64份,隐孢子虫总阳性率11%(64/582),发现两种不同形态的卵囊,根据其形态结构等特点鉴定为小球隐孢子虫(C.parvum)和安氏隐孢子虫(C.andersoni)。其中2个场奶牛感染安氏隐孢子虫,有1个场的奶牛感染小球隐孢子虫,且感染强度较小。犊牛感染率较育成牛、成年牛高。并进行小球隐孢子虫分离株对初生犊牛的致病性试验,其结果为潜隐期7天,排卵囊高峰出现在感染后第16天,高峰期5天。剖检后消化道黏膜经抗酸染色鉴定,仅在回肠中段发现卵囊。 相似文献
88.
One hundred and five donkeys were examined over a 12-month period for the presence of Gasterophilus spp. larvae in their stomachs. G. intestinalis and G. nasalis were found, but there was a distinct seasonal variation in their abundance. The numbers of second-stage larvae (L2) peaked during the early winter and early summer, but they were absent or at low levels during the early spring and early autumn. This suggests that there are two periods of adult fly activity (late autumn and late spring) for both G. nasalis and G. intestinalis. Third-stage larvae (L3) were found throughout the year, but the lowest levels were seen in the late summer and autumn. The parasites also had an aggregated distribution, which may be due to host selection by the fly. The numbers of larvae did not vary significantly with age, which may be due to a lack of acquired protective immunity or to tolerance after repeated exposure. 相似文献
89.
我国部分地区NDV的分子流行病学研究 总被引:56,自引:10,他引:46
本研究根据新城疫病毒(NDV)F基因编码区1-374位核苷酸序列计算其遗传距离并给出了NDV的系统发育进化树,将68株NDV分为9个基因型(30株为国内分离株),其中Ⅰ-Ⅵ是早已存在的老基因型,Ⅶ、Ⅷ、Ⅸ为新发现的基因型,特别是Ⅸ为我国特有的基因型(F48EO、M3、HLJ-3、HeB-1P和NM-5)。1997-1999年我国云南、广西、甘肃、陕西、新疆等地分离的YN-1P、GX-3、H1、H2、P1、GX-1、GX-2、GS-3、SHX-2、SHX-3、SHX-6、SHX-7、XJ-2和1991年分离的HuB-1均属于Ⅶ基因型,该基因型的病毒是90年以来引起新城疫发生的主要病原。根据遗传距离和分离年代可将此基因型进一步划分为5个基因亚型,分别是Ⅶa、Ⅶb、Ⅶc、Ⅶd和Ⅶe。此外HuN-1/98、HLJ-4/95和HeH-1P属一个老的基因Ⅵ,1979-1985年分离自青海的QH-1、QH-2、QH-4属于一个新的基因型-Ⅷ型。可见在我国新城疫的流行是极其复杂的,既有老基因型的危害(Ⅰ-Ⅵ),又有新基因型(Ⅶ)的流行,更有我国独特Ⅷ和Ⅸ基因潜伏。 相似文献
90.
Antibiotic resistant Escherichia coli in southeastern Australian pig herds and implications for surveillance 下载免费PDF全文
To investigate public health implications of antibiotics to control post‐weaning scours, we surveyed 22 commercial pig herds in southeastern Australia. Fifty faecal samples per herd were collected from pre‐ and post‐weaned piglets. Presumptive Escherichia coli isolates were confirmed by MALDI‐TOF MS. Isolates (n = 325) were screened for susceptibility to 19 veterinary antibiotics using MIC broth microdilution. All 325 E. coli isolates underwent further testing against 27 antibiotics used in human medicine and were screened for ETEC adhesin and enterotoxin genes (F4 (K88), F5 (K99), F6 (987P), F18, F41, STa, STb, Stx2e and LT) by multiplex PCR. Isolates identified as phenotypically resistant to third‐generation cephalosporin (3GC) and aminoglycoside antibiotics were screened by multiplex PCR/reverse line blot to detect common β‐lactam and aminoglycosides resistance genes, confirmed by sequencing. Twenty (6.1%) of the E. coli isolates were resistant to 3GC antibiotics and 24 (7.4%) to the aminoglycoside antibiotic gentamicin. Genetic analysis revealed six different extended spectrum β‐lactamase (ESBL) genes (blaCTX‐M‐1, ‐14, ‐15, ‐27, blaSHV‐12 and blaCMY‐2‐like genes), four of which have not been previously reported in Australian pigs. Critically, the prevalence of 3GC resistance was higher in non‐pathogenic (non‐ETEC) isolates and those from clinically normal (non‐diarrhoeal) samples. This highlights the importance of non‐ETECE. coli as reservoirs of antimicrobial resistance genes in piglet pens. Antimicrobial resistance surveillance in pig production focused on diagnostic specimens from clinically‐affected animals might be potentially misleading. We recommend that surveillance for emerging antimicrobial resistance such as to 3GC antibiotics should include clinically healthy pigs. 相似文献