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Interspecific communicative and coordinated hunting between groupers and giant moray eels in the Red Sea.

Intraspecific group hunting has received considerable attention because of the close links between cooperative behaviour and its cognitive demands. Accordingly, comparisons between species have focused on behaviours that can potentially distinguish between the different levels of cognitive complexity involved, such as "intentional" communication between partners in order to initiate a joint hunt, the adoption of different roles during a joint hunt (whether consistently or alternately), and the level of food sharing following a successful hunt. Here we report field observations from the Red Sea on the highly coordinated and communicative interspecific hunting between the grouper, Plectropomus pessuliferus, and the giant moray eel, Gymnothorax javanicus. We provide evidence of the following: (1) associations are nonrandom, (2) groupers signal to moray eels in order to initiate joint searching and recruit moray eels to prey hiding places, (3) signalling is dependent on grouper hunger level, and (4) both partners benefit from the association. The benefits of joint hunting appear to be due to complementary hunting skills, reflecting the evolved strategies of each species, rather than individual role specialisation during joint hunts. In addition, the partner species that catches a prey item swallows it whole immediately, making aggressive monopolisation of a carcass impossible. We propose that the potential for monopolisation of carcasses by one partner species represents the main constraint on the evolution of interspecific cooperative hunting for most potentially suitable predator combinations.

Animal Communication↗

[Painful ophthalmoplegia: the Tolosa-Hunt syndrome and orbital pseudotumor syndrome].

We experienced 9 patients with "painful ophthalmoplegia", which included 7 cases of the Tolosa-Hunt syndrome (2 males and 5 females, with ages ranging from 36 to 65 years) and 2 cases of the orbital pseudotumor syndrome (2 females aged 42 and 68). The diagnosis of these syndromes was based upon Hunt's criteria and the presence of the intraorbital mass on the brain CT scan. Main manifestations of both syndromes were periorbital pain and ipsilateral oculomotor nerve palsies. Out of 9 cases, 1 patient with Tolosa-Hunt syndrome and 1 patient with the orbital pseudotumor syndrome had bilateral retro-orbital pain and ophthalmoplegia. Pain preceded the ophthalmoplegia except in one patient with Tolosa-Hunt syndrome. Total paralysis of the extraocular muscles supplied by the oculomotor nerve was noted in all the nine patients, and mydriasis was observed on the affected side in 4 of 7 patients with Tolosa-Hunt syndrome and 2 patients with the orbital pseudotumor syndrome. Neurological involvement was not only the oculomotor nerve but also the other cranial nerves; the optic nerve (in 4 cases with Tolosa-Hunt syndrome and 2 cases with the orbital pseudotumor syndrome), the abducens nerve (in 3 cases with Tolosa-Hunt syndrome and 1 case with the orbital pseudotumor syndrome), and the first division of the trigeminal nerve (in 2 cases with Tolosa-Hunt syndrome). Six patients with Tolosa-Hunt syndrome and 2 patients with the orbital pseudotumor syndrome had palpebral edema. Visual disturbance and palpebral edema were severer in the patients with the orbital pseudotumor syndrome. After corticosteroid hormone was administered, there was diminution of the pain within 2 weeks.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Cortex Hormones↗

Neuronal analysis of hunting behavior of the pteropod mollusc Clione limacina.

The neurons of the cerebral ganglia controlling the movements of the hunting apparatus of the predatory pelagic pteropod mollusc, Clione limacina, are described in detail. A large group of high-threshold, electrically interconnected neurons, A, was identified, the impulse activity of which leads to the opening of the skin folds and the forward ejection of the hunting tentacles of the clione. Group B neurons which exhibit a constant background activity and which receive powerful inhibitory inputs from the A cells, conversely, induce the contraction and the withdrawal of the hunting tentacles into the head. The third group, are the C neurons, the impulse activity of which leads to the drawing together of the skin folds covering the hunting apparatus. The effect of such mediators as serotonin, dopamine, and gamma aminobutyric acid acid on the identified neurons was investigated. Serotonin depolarizes both A and B neurons, but the activation of the hunting apparatus appears to be an integrated effect: the activated A neurons inhibit the B neurons due to powerful IPSP, interrupting the direct excitatory effect of serotonin. Dopamine in various concentrations exerts the opposite effect: at low concentrations only B cells are activated and the tentacles are withdrawn into the head; at high concentrations the A neurons begin to operate; these neurons inhibit the B cells and activate the hunting apparatus. GABA exerts an integral, well-coordinated effect on the neurons controlling the movements of the hunting apparatus, and effect which is directed toward the activation of hunting behavior: it depolarizes-activates A neurons and hyperpolarizes-inhibits B and C neurons.

Animals↗

Nonspecific velocity and amplitude hunting reveals different specific detection performance of flexion and extension movements in the human knee joint.

A debate exists in the literature as to what extent perception is conscious. In some publications regarding proprioception, the term proprioception has explicitly only been seen as properly used when subjects were able to report the imposed movement's direction. Detections of movements without movement-direction perception, have been seen as nonspecific. Since a lot of studies discussed this point but never tested it explicitly, we tested it by using nonspecific hunting paradigms (only the occurrence of a movement has to be detected, not its direction) with the following rationale. If the perception performance is really nonspecific, no difference regarding the movement's direction should be found. Thus, if we found a different detection performance regarding flexion and extension by means of a nonspecific paradigm, it would demonstrate that this "nonspecific" perception is already specific. Therefore, we measured the perception characteristics separately for flexion and extension. The perception characteristics have been determined from the amplitude-velocity-relation curve. Two different, nonspecific hunting paradigms, modifications of our previously published specific hunting paradigm, have been used. Thus, we determined pairs of threshold values, regarding amplitude hunting using three different angular velocities (0.1 degrees s(-1), 0.25 degrees s(-1), and 0.5 degrees s(-1)) and regarding velocity hunting using three different angular displacements (0.25 degrees, 0.5 degrees, and 1 degrees) as well, for flexion and extension, respectively. We found that both threshold paradigms (velocity hunting and amplitude hunting) revealed the same perception characteristics for a given movement direction. With an increasing angular velocity, angular displacement threshold values converged toward a common value for flexion and extension (about 0.2 degrees); with an increasing angular displacement, angular velocity threshold values converged toward separate values for flexion (about 0.06 degrees s(-1)) and extension (about 0.1 degrees s(-1)). Thus, our findings demonstrate that detection performance is specific and not bound to conscious perception, since specific thresholds for flexion and extension were revealed with nonspecific hunting paradigms.

Adult↗

Accidental firearm fatalities during hunting.

Swedish legislation concerning firearms is highly restrictive. It is illegal to possess weapons (except airguns) without a license. From 1970 through 1982, there were 79 accidental firearm fatalities in Sweden. This number, corresponding to 0.074/100,000/year, is very low in comparison with similar statistics worldwide. Of these fatalities, 47 were associated with hunting and were studied carefully. Despite an increase in both the popularity of hunting and in licensing of weapons, on change in the number of accidents per year could be confirmed. Twenty-nine accidents occurred during small game hunting, of which 24 involved shotguns, and 18 occurred during moose hunting. The mean age overall was 46 years. All victims and shooters were men. Most accidents occurred before noon and during the autumn. During moose hunting, the victim most commonly was either mistaken for game or was standing beyond game. During small game hunting, the most common reason for death was improper handling of the weapon. Firing of defective weapons caused at least 10 fatal accidents. Alcohol inebriation was uncommon. It is unlikely that more restrictive firearm legislation would further decrease the number of fatal accidents. Instead, we believe that accidental firearm fatalities during hunting can be prevented by safer and more careful handling of weapons, including unloading weapons before transporting them; by replacing older weapons with more modern and safer ones; and by not allowing children to handle weapons. No shots should be fired until it is clarified that the target really is a game animal, and when hunting with rifles, the fields of fire should be clarified beforehand. Shooters at stand must be instructed not to leave their stands until explicitly told to do so.

Accident Prevention↗

Hunting-related shooting incidents in Pennsylvania, 1987-1999.

BACKGROUND: Characteristics and rates of shooting injuries associated with hunting various game species are unreported. METHODS: For the 1,345 hunting-related shooting incidents in Pennsylvania from 1987 to 1999, age-adjusted hunter injury rates and case-fatality ratios were calculated for each of seven species hunted. Differences in the incidents and injuries were tested (p < 0.05). RESULTS: Fall turkey hunters had the highest (7.5 per 100,000 hunters) and grouse hunters the lowest (1.9 per 100,000) injury rate. The case-fatality ratio was highest for deer hunters (10.3%) and lowest for pheasant hunters (1.3%). Poor skill was the leading cause of deer hunting injuries, and poor judgment the leading cause for injuries during the hunting of other species. Coinciding with changes in regulations requiring orange clothing for hunters, the injury rates for fall turkey hunters initially decreased (rate ratio, 4.1), then increased (rate ratio, 0.5). Hunters younger than 20 years had the highest injury rates. CONCLUSIONS: The rates and characteristics of hunting-related shooting injuries varied by hunted species. Hunter orange clothing regulations appeared to reduce fall turkey hunting injury rates.

Accidents↗

Local hunting and the conservation of large mammals in India.

Hunting by local communities is among the most widespread threats to Indian wildlife, yet, the understanding of its nature, extent, and impacts on wildlife has been poor. We surveyed 2 protected areas--Kudremukha and Nagara-holé--in southern India to assess the impacts of local hunting on large mammals. Detailed interviews with retired and active hunters were employed to describe hunting patterns. Impacts of hunting were assessed by comparing large-mammal abundance in adjacent sites differing in their vulnerability to hunting. In Kudremukha, at least 26 species of mammals were hunted, mostly with guns, at an estimated intensity of 216 hunter-days per month per village. In Nagaraholé, 6 of the 9 focal species of large mammals occurred at significantly lower densities at the heavily hunted site where enforcement capabilities were poorer. Our data underscore the importance of preservationist programs in the conservation of large mammals in a context of extensive local hunting.

Animals↗

The influence of hunting pressure on the social behavior of vertebrates.

The study of the influence of human hunting pressure on the social behavior of vertebrates requires a large background on both the hunting pressure and the social behavior of the species. Literature about this subject is relatively scarce. Most of the papers are restricted to shifts in demography, and are generally "species-specific". However, human hunting pressure can not only affect demography but also some factors of the social behavior of a species such as parental care, territoriality, reproductive behavior, group-size, fraying behavior, mating system, and intraspecific competition. The presence of hunters in the area can lead the animals to move out of their original home-rangers. This can breakup the social structure and can cause long-term effects on the demography of hunted as well as nearby populations, amplifying the impact of hunting. On the other hand, harvest can be compensated in territorial species by "surplus population" of non-territorial individuals. Moreover, alternatively, an increase in the reproductive activity, as a response to hunting pressure, can compensate its effects in some species. Understanding the implications of hunting pressure in the social behavior of vertebrates might be decisive to the establishment of wildlife management and conservation programs. Manipulative experiments might help us to model such complex interactions. The occurrence of qualitative and quantitative changes in vertebrate social behavior directly or indirectly related to human hunting pressure is reviewed and analyzed in this paper.

Animals↗

Sexual dimorphism in relation to big-game hunting and economy in modern human populations.

Postcranial skeletal data from two recent Eskimo populations are used to test David Frayer's model of sexual dimorphism reduction in Europe between the Upper Paleolithic and Mesolithic. Frayer argued that a change from big-game hunting and adoption of new technology in the Mesolithic reduced selection for large body size in males and led to a reduction in skeletal sexual dimorphism. Though aspects of Frayer's work have been criticized in the literature, the association of big-game hunting and high sexual dimorphism is untested. This study employs univariate and multivariate analysis to test that association by examining sexual dimorphism of cranial and postcranial bones of two recent Alaskan Eskimo populations, one being big-game (whale and other large marine mammal) hunting people, and the second being salmon fishing, riverine people. While big-game hunting influences skeletal robusticity, it cannot be said to lead to greater sexual dimorphism generally. The two populations had different relative sexual dimorphism levels for different parts of the body. Notably, the big-game hunting (whaling) Eskimos had the lower multivariate dimorphism in the humerus, which could be expected to be the structure under greatest exertion by such hunting in males. While the exertions of the whale hunting economic activities led to high skeletal robusticity, as predicted by Frayer's model, this was true of the females as well as the males, resulting in low sexual dimorphism in some features. Females are half the sexual dimorphism equation, and they cannot be seen as constants in any model of economic behavior.

Alaska↗

Behavioural differences between three breed groups of hunting dogs confronted with domestic sheep.

When running free in open fields, domestic dogs occasionally display predatory behaviour towards domestic sheep. This has not yet been studied scientifically. The aim of the present study was to investigate the inclination to chase sheep in three breed groups of hunting dogs that are most frequently used in areas with grazing sheep. We studied 41 elkhounds, 29 hare hunting dogs and 68 English setters. Behaviours indicative of motivation for chasing or attacking sheep were examined in three different ways. A path test examined functional traits such as hunting ability, contact willingness, reactivity to sudden noise, and response towards a lone sheep. In a sheep confrontation test, loose-leashed dogs were observed in a fenced enclosure with sheep and given electric shocks through an electronic dog collar if within 1-2m from the sheep. A questionnaire to the dog owners supplied information on their dog's previous experience with sheep and behavioural responses to various types of novel stimuli. No significant sex differences were found. The elkhounds showed the highest interest in a lone sheep in the path test, and displayed the highest initial hunting motivation, the highest percentage of dogs starting a sheep attack, the highest attack severity, and were most frequently given el. shocks. The hare hunting dogs were intermediate, while setters showed the lowest values for these variables. Dogs reported as showing low fearfulness more frequently acted as potential sheep chasers in the tests. Dogs up to 3 years of age showed a more pronounced initial hunting motivation and more frequent attacks than older dogs, although there were no age differences in the number of el. shocks given in the test. The latter may be related to the more frequent abruption of attacks among younger dogs. The main factors predicting a high hunting motivation and attack severity were lack of previous opportunity to chase sheep, low fearfulness towards gunshots and unfamiliar people, and general interest in sheep shown when encountering them. Probability of sheep chasing differed between dog breeds and age groups. Previous experience and certain character traits were indicative of a high predatory motivation towards sheep.

Journal Article↗

The current and future management of wild mammals hunted with dogs in England and Wales.

There is increasing concern about the use of lethal methods to control wild mammal populations, especially those methods that may have significant impacts on animal welfare. The continued use of dogs to hunt wild mammals in England and Wales, principally foxes (Vulpes vulpes), red deer (Cervus elaphus), brown hares (Lepus europaeus) and mink (Mustela vison), has become a focus for political debate and has been the subject of a recent UK government inquiry. This paper reports the results of a questionnaire study to quantify the use, effectiveness and acceptability of the different methods currently used to manage these four species, and future changes in management following a possible ban on hunting with dogs. There was no straightforward relationship between culling pressure and perceived pest status of the different species from the questionnaire data. For foxes and brown hares, the proportion of land managers (practitioners) carrying out lethal control was higher than that considering these species to be pests. However, the reverse was the case for mink. The most frequently used and effective control methods, which were most acceptable to practitioners and public alike, were various forms of shooting. The general public perceived hunting with dogs as one of the least acceptable means of control for all four species. Practitioners thought that hunting with dogs for red deer and the use of terriers against foxes were among the least acceptable forms of control, but considered hunting with dogs in other situations and for other species to be relatively acceptable. Most practitioners said a ban on hunting with dogs would make no difference to their management of the four species. A ban on hunting with dogs would have minimal impact on populations of foxes, red deer and mink, but it may be of conservation benefit to hares.

Animal Husbandry↗

Physiological effects of hunting red deer (Cervus elaphus).

When red deer (Cervus elaphus) were hunted by humans with hounds the average distance travelled was at least 19 km. This study of 64 hunted red deer provides the first empirical evidence on their state at the time of death. Blood and muscle samples obtained from hunted deer after death were compared with samples from 50 non-hunted red deer that had been cleanly shot with rifles. The effects on deer of long hunts were (i) depletion of carbohydrate resources for powering muscles, (ii) disruption of muscle tissue, and (iii) elevated secretion of beta-endorphin. High concentrations of cortisol, typically associated with extreme physiological and psychological stress, were found. Damage to red blood cells occurred early in the hunts; possible mechanisms are discussed. Taken together, the evidence suggests that red deer are not well-adapted by their evolutionary or individual history to cope with the level of activity imposed on them when hunted with hounds.

Animals↗

Impacts of roads and hunting on central African rainforest mammals.

Road expansion and associated increases in bunting pressure are a rapidly growing threat to African tropical wildlife. In the rainforests of southern Gabon, we compared abundances of larger (>1 kg) mammal species at varying distances from forest roads and between hunted and unhunted treatments (comparing a 130-km2 oil concession that was almost entirely protected from bunting with nearby areas outside the concession that had moderate hunting pressure). At each of 12 study sites that were evenly divided between hunted and unhunted areas, we established standardized 1-km transects at five distances (50, 300, 600, 900, and 1200 m) from an unpaved road, and then repeatedly surveyed mammals during the 2004 dry and wet seasons. Hunting had the greatest impact on duikers (Cephalophus spp.), forest buffalo (Syncerus caffer nanus), and red river hogs (Potamochoerus porcus), which declined in abundance outside the oil concession, and lesser effects on lowland gorillas (Gorilla gorilla gorilla) and carnivores. Roads depressed abundances of duikers, sitatungas (Tragelaphus spekei gratus), and forest elephants (Loxondonta africana cyclotis), with avoidance of roads being stronger outside than inside the concession. Five monkey species showed little response to roads or hunting, whereas some rodents and pangolins increased in abundance outside the concession, possibly in response to greater forest disturbance. Our findings suggest that even moderate hunting pressure can markedly alter the structure of mammal communities in central Africa. Roads had the greatest impacts on large and small ungulates, with the magnitude of road avoidance increasing with local hunting pressure.

Animals↗

Pharmacologically induced elements of the hunting and feeding behavior in the pteropod mollusk Clione limacina. II. Effects of physostigmine.

1. A contact of the pteropod mollusk Clione limacina with its prey (small pteropod mollusk Limacina helicina) evokes a complex pattern of hunting and feeding behavior: protraction of tentacles to seize the prey, activation of buccal apparatus to swallow the prey, activation of locomotor system (speeding up of wing beating), reversal of reaction to tactile stimulation of the head, loss of normal (vertical) orientation in space, and swimming in circles. After injection of physostigmine (PhS), the acetylcholinesterase inhibitor, into the hemocoel of intact Clione, all these manifestations of the hunting and feeding behavior could be evoked by tactile stimulation of the head, or they arose spontaneously. 2. In the preparation of the isolated CNS, the effect of PhS on the neural networks controlling different aspects of the hunting and feeding behavior was studied by recording from neurons monitoring activity of different networks (< or = 4 neurons simultaneously). Tactile stimulation of the head was mimicked by a short-term electrical stimulation of the corresponding nerve. Before PhS application, the nerve stimulation evoked elements of the defense reaction, i.e., long-lasting inhibition of all main motor control systems: the locomotor network in the pedal ganglia, the tentacle control network in the cerebral ganglia, and the network controlling radula and hook movements in the buccal ganglia. However, after PhS application, the same stimulus evoked a long-lasting bout of excitation in all the three networks accompanied by activation of the heart-exciting neuron as well as by a modification of the activity of statocyst receptor cells controlling Clione's spatial orientation (the "fictive hunting bout"). Similar hunting bouts could arise spontaneously. 3. Injection of acetylcholine (ACh) into the hemocoel of intact Clione was less effective than injection of PhS. After ACh injection, reversal of reaction to head stimulation was observed in < or = 20% of the experiments (the percentage of positive results was higher if ACh was injected into the head just over the CNS). Bath application of ACh to the isolated CNS did not produce the hunting bouts. However, a short-term local application of ACh to the cerebral ganglia in the isolated CNS resulted in activation of the main motor systems controlling locomotion, protraction of tentacles, and movements of buccal mass. 4. During spontaneous PhS-induced bouts, excitation of different networks involved in hunting behavior was sometimes not quite synchronous. Different networks could be excited in variable order over a period of up to several seconds.(ABSTRACT TRUNCATED AT 400 WORDS)

Acetylcholine↗

[A neuronal analysis of the hunting behavior of sea butterfly Clione limacina].

Neurones of the cerebral ganglia controlling the movements of the hunting apparatus of predatory pelagic mollusc Clione limacina are described in detail. A large group is identified of high-threshold electrically interconnected neurones A, the impulse activity of which leads to the opening of the skin folds and throwing forward Clione catching tentacles. Neurones of B group, having constant background activity and receiving powerful inhibitory inputs from A cells, on the contrary, elicit contraction and drawing in of the hunting tentacles inside the head. The third group--C neurons, the impulse activity of which leads to tightening of the skin folds covering the hunting apparatus. The action has been studied on identified neurones of such transmitters as serotonine, dopamine and gamma-aminobutyric acid. Serotonine depolarises both A and B neurones, but activation of the hunting apparatus is an integrating effect: activated neurones A owing to powerful TPSP inhibit neurones B, interrupting direct exciting action of serotonine. Dopamine in different concentrations has an opposite effect: at low concentrations only B cells are activated and tentacles are drawn inside the head; at high ones the neurones A start working which inhibit B cells and activate the hunting apparatus. GABA renders to neurones, regulating the movements of the hunting apparatus a total, well coordinated action directed to activation of the hunting behaviour: it depolarises-activates A neurones and hyperpolarises-inhibits neurones of B and C groups.

Animals↗

[Hunting and animal protection].

In the Federal Republic of Germany the handling of animals during hunting is governed more by the animal protection law than by the corresponding hunting law. Points of the animal protection law which directly affect hunting are (1) the release of wild animals, (2) the training and examination of animals concerning attacking other animals, (3) the setting of animals on other animals, and (4) the killing of vertebrates. Guiding principles for killing wild animals during hunting according to the animal protection law are formulated and discussed in relation to the traditional German understanding of hunting ethics. It can be expected that hunting will increasingly become a topic of public discussion on animal protection, in which the ethics of hunting in relation to the wild animal will be dominant.

Animal Welfare↗

American Indians, hunting and fishing rates, risk, and the Idaho National Engineering and Environmental Laboratory.

Hunting, fishing, and recreational rates of 276 American Indians attending a festival at Fort Hall, near the Idaho National Engineering and Environmental Laboratory (INEEL), were examined. Nearly half of the sample lived on the Fort Hall Reservation, and half were American Indians from elsewhere in the western United States. An additional 44 White people attending the festival were also interviewed. The hypothesis that there are differences in hunting, fishing, and recreational rates as a function of tribal affiliation, educational level, gender, and age was examined. Information on hunting and fishing rates are central for understanding potential exposure scenarios for American Indians if the Department of Energy's INEEL lands are ever opened to pubic access, and the data are important because of the existence of tribal treaties that govern the legal and cultural rights of the Shoshone-Bannock regarding INEEL lands. Variations in hunting, fishing, and photography rates were explained by tribal affiliation (except fishing), gender, age, and schooling. Hunting rates were significantly higher for Indians (both those living on Fort Hall and others) than Whites. Men engaged in significantly higher rates of outdoor activities than women (except for photography). Potential and current hunting and fishing on and adjacent to INEEL was more similar among the local Whites and Fort Hall Indians than between these two groups and other American Indians.

Adult↗

A biography of James Ramsay Hunt (1874-1937).

James Ramsay Hunt (1874-1937) was a pre-eminent twentieth-century American neurologist. The name of Ramsay Hunt is known today because several neurological disorders bear his name, including the herpetic geniculate ganglion syndrome and a form of ataxia and myoclonus. Despite his importance in the field of neurology, few biographical details have been recorded about Hunt's life. One of the authors of this report recently located Hunt's daughter. This biographical sketch was based on interviews conducted with her and review of documents in her possession, including letters written by Hunt. Details are depicted about Hunt's family background and childhood, medical education and early professional development, courtship and marriage, wartime experiences, family and social life, daily routine and professional development, as well as illness and death.

Herpes Zoster Oticus↗