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101.
To determine the extent to which wild deer are contributing in the transmission of Fasciola hepatica (liver fluke) livers from deer shot by hunters, farmers undertaking population control on their farms and vertebrate pest controllers were collected and frozen. The livers were later thawed, sliced and examined for the presence of adult flukes or evidence of past infection. Livers from 19 deer were examined (18 fallow [Dama dama] and one sambar [Rusa unicolor]). Seventeen of the fallow deer were animals collected on farms near Jindabyne, New South Wales. The remaining fallow deer was collected in the Australian Capital Territory and one sambar deer was collected in north-eastern Victoria. Nine of the 17 deer (53%) from the Jindabyne area were either infected with Fasciola hepatica (liver fluke) or had thickened bile ducts indicating past infection. Infection levels in the infected animals varied widely from 3 liver fluke to over 50 per liver. No sign of infection was present in the deer from the Australian Capital Territory or Victoria. Fallow deer are wide-spread in the Jindabyne area and their population is increasing. It is likely their contribution to the maintenance and distribution of F. hepatica to livestock in the Jindabyne area, and in other livestock rearing areas of south-eastern Australia, is important and increasing.  相似文献   
102.
Radar observations of asteroid 216 kleopatra   总被引:3,自引:0,他引:3  
Radar observations of the main-belt, M-class asteroid 216 Kleopatra reveal a dumbbell-shaped object with overall dimensions of 217 kilometers by 94 kilometers by 81 kilometers (+/-25%). The asteroid's surface properties are consistent with a regolith having a metallic composition and a porosity comparable to that of lunar soil. Kleopatra's shape is probably the outcome of an exotic sequence of collisional events, and much of its interior may have an unconsolidated rubble-pile structure.  相似文献   
103.
The performance of animals is determined by the interaction of their genes with environmental circumstances. Accordingly, animals exhibiting superior performance are not necessarily the animals with the best genes nor are they the best choice of parents. Statistical analyses of production records for repeated traits, e.g. lactation yields and reproductive performance, show that part of the variation in performance among animals in the same herd and year is due to genetic differences, and the remainder is due to so-called residual or environmental factors that are not passed on to offspring. These within-herd environmental factors can be partitioned into a component that affects performance throughout an animal's lifetime, and a part that is unique to each observation. The process of animal evaluation from pedigree and performance records partitions the superiority of each cow into these three components. Reliable assessment of the genetic merit of bulls has required progeny testing, and for cows has required observation of their own individual performance. Selection on the genetic or breeding value component has systematically improved animal performance over recent decades, but has been limited by the age at which assessments of genetic merit are available.

Emerging molecular technologies can read DNA sequences or measure RNA expression and have allowed the identification of a number of chromosome regions, and a few specific genes in those regions, that influence economic performance. This information allows better characterisation of the relationships between animals and more accurate predictions of genetic merit in bulls without progeny information and in cows that have yet to produce their own performance record. At some stage, enough genes responsible for variation in performance will be identified to allow faster genetic progress through selection of animals at young ages and therefore more rapid turnover of the generations. Mechanisms that modify gene expression have been identified and these may ultimately allow animals to be selected at an early age for lifetime productivity, accounting for processes that modify gene expression and lead to differences in performance that are not reflected by DNA sequence information. This review describes the status of these emerging technologies and their likely role in the improvement of dairy cattle.  相似文献   
104.
AIM: To use the electroencephalogram (EEG) to ascertain whether the response of the cerebral cortex to the noxious stimulus of castration varied with age in lambs.

METHODS: Two groups of East Friesian lambs were selected according to age; the mean age of the younger group (n=21) was 12 (SD 2) days and the older group (n=20) was 29 (SD 1) days. Anaesthesia was induced via mask using 4% halothane in oxygen, and maintained using 1.5% halothane in oxygen at a flow rate of 4 L/min. Once a stable plane of anaesthesia had been achieved, data collection of EEG and electrocardiographic (ECG) readings commenced, and the lambs were castrated 15 min later, using rubber rings. Median and 95% spectral edge frequencies (F95) and total EEG power (ptot) were derived from data from the EEG.

RESULTS: Following castration, there was an increase in the median frequency (F50) in the younger lambs (p=0.002), and an increase in ptot in both groups (p=0.05), which was of greater magnitude in the older lambs. There were no significant changes in the F95. Both younger and older lambs exhibited a transient bradycardia (p=0.001 and p=0.01, respectively).

CONCLUSIONS: These differences in the cortical response between the two groups suggest that 2-week-old lambs undergo a qualitatively different perception of the noxious stimulus of castration compared to 4-week-old lambs.  相似文献   
105.
106.
AIM: To identify whether cutting neck tissues or cutting major blood vessels initiates the mechanisms responsible for electroencephalographic (EEG) responses to slaughter by ventral-neck incision without prior stunning in halothane-anaesthetised calves.

METHODS: Calves were assigned to two groups, viz transection of neck tissues with intact blood circulation through the brain (n=10), or transection of the major blood vessels of the neck but not most other neck tissues (n=7). They were minimally anaesthetised with halothane, using an established anaesthesia protocol. The animals in the neck-tissue transection group had their carotid arteries and jugular veins exposed and cannulated proximal and distal to the proposed site of subsequent ventral-neck incision; this diverted blood fl ow through these vessels so that cerebral perfusion and drainage were preserved. In animals in the blood-vessel transection group, the carotid arteries and jugular veins were exposed bilaterally by surgical dissection. They were then transected without further damage to the remaining structures of the neck. Changes in the median frequency (F50), 95% spectral edge frequency (F95), total power of the EEG (Ptot), and arterial blood pressure were compared within each group before and after neck-tissue or blood-vessel transection, and between groups following treatments.

RESULTS: Neck-tissue transection resulted in little overall change in the F50, an increase in the F95, and an initial increase in Ptot followed by a transient decrease and eventual return to pre-treatment values. There was between-animal variation in these EEG parameters. Transection of the major blood vessels of the neck resulted in a decrease in F50 in most animals; changes in F95 were highly variable, and there was a decrease in Ptot.

CONCLUSIONS: The EEG responses seen following necktissue and blood-vessel transection were qualitatively distinct, and suggested that cutting neck tissues caused greater noxious sensory input than transection of only the major blood vessels of the neck. These observations support the conclusion that the EEG responses seen after ventral-neck incision in intact animals are primarily due to noxious stimulation as a result of incision of ventral-neck tissues and not mainly as a result of loss of blood flow through the brain.  相似文献   
107.
ABSTRACT

This review outlines the processes followed by New Zealand Thoroughbred Racing (NZTR) when developing its Thoroughbred Welfare Assessment Guidelines. It accepted that guidance on welfare management must be based on up-to-date knowledge of how animal welfare is understood scientifically. NZTR established an expert panel to facilitate this process. First, major changes in animal welfare science thinking over the last 40 years were considered. For example, the separate biological function and affective state orientations were later accepted as dynamically interacting elements within the body operating as an integrated whole entity; conceptual problems with the Five Freedoms framework led to the formulation of the Five Provisions and Welfare Aims paradigm and development of the Five Domains Model for assessing nutritional, environmental, health, behavioural and mental facets of animal welfare; and the initial major focus on negative experiences evolved to include both negative and positive experiences. The Five Domains Model was very effective for illustrating up-to-date understanding of animal welfare and its use demonstrated how comprehensive animal welfare assessments may be conducted. The NZTR panel followed a sequential approach that included an update on animal welfare thinking and the Five Provisions and Welfare Aims paradigm; the generic Five Domains Model was refocused specifically on equids; a detailed model assessment of equine welfare practices was conducted; enhanced equine welfare practices were emphasised by comparing them to inadequate welfare practices; guidelines were framed in terms which provide domain-specific advice on provisions that achieve positive welfare; other domain-specific guidelines were focused on welfare-compromising consequences of inadequate provisions; and welfare-appropriate conditions were clarified for all stages of a Thoroughbred’s life cycle (in work and rest) to facilitate exercising a life-long duty of care. Finally, the guidelines were expressed in general terms to avoid them becoming overly detailed and unwieldy. They therefore do not address specific welfare issues such as use of whips, bits, spurs and tight nosebands, however the Five Domains Model may also be used for these specific purposes. The guidelines, and the way they were formulated, provide an example of one approach which other organisations may find immediately useful, or which may stimulate them to devise their own approaches when progressing such equine welfare initiatives.  相似文献   
108.
The aim of this study was to determine leukotrienes (LTs) functions in the bovine corpus luteum (BCL) during the oestrous cycle. In steroidogenic CL cells we examined the effect of luteotropic [LH, prostaglandin E2 (PGE2)] and luteolytic (PGF, cytokines) factors on: the levels of LTB4 and C4, the expression of 5‐lipoxygenase (LO), LT receptors type I (LTR‐I) and LTR‐II, and the effects of LTB4 and C4 stimulations on the levels of progesterone (P4), PGE2, F and nitric oxide (NO) metabolites. Both luteolytic and luteotropic factors stimulated 5‐LO expression on days 2–4 and 17–19 of the cycle. Leukotriene receptors type I expression increased after PGE2 and tumour necrosis factor α with interferon γ (TNF/IFN) stimulation on days 2–4 of the cycle. Leukotriene receptor type II expression increased after PGE and TNF/IFN stimulation on days 2–4 and 17–19 of the cycle, and LTR‐II expression on days 8–10 of the cycle was unchanged after cell stimulation with any factor. Leukotriene B4 level increased after BSC incubation with luteotropic factors during all examined days of the cycle and after cytokine stimulation at early‐ and mid‐luteal stages, whereas luteolytic factors stimulated LTC4 secretion over the entire cycle. Leukotriene B4 stimulated P4 secretion at the mid‐luteal stage and stimulated NO secretion during all examined phases. Leukotriene B4 stimulated PGE2 secretion at the early‐ and mid‐luteal stage. Leukotriene C4 inhibited P4 secretion at the mid‐ and regressing‐luteal stage, stimulated NO (entire cycle) and PGF at mid‐ and regressing‐luteal phases. Leukotrienes modulate steroidogenic cells functions, depending on the stage of the cycle. Leukotriene B4 plays a luteotropic role stimulating P4 and PGE2 secretions; LTC4 stimulates the secretion of luteolytic factors and enhances the luteolytic cascade within BCL.  相似文献   
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