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1

Oka, Gusti Made. "Factors affecting the management of Muntjac Deer (Muntiacus muntjak) in Bali Barat National Park, Indonesia /". Richmond, N.S.W. : Faculty of Environmental Management and Agriculture, University of Western Sydney, Hawkesbury, 1998. http://library.uws.edu.au/adt-NUWS/public/adt-NUWS20030805.131126/index.html.

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2

Oka, Gusti Made. "Factors affecting the management of Muntjac Deer (Muntiacus muntjak) in Bali Barat National Park, Indonesia". Thesis, Richmond, N.S.W. : Faculty of Environmental Management and Agriculture, University of Western Sydney, Hawkesbury, 1998. http://hdl.handle.net/1959.7/uws:176.

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Abstract (sommario):
The principal aim of the study which was conducted between May 1995 and May 1997 was to collect and analyze information that would be considered vital to any future management actions that may be applied to the deer living in the wild in the Bali Barat National Park ecosystem in Indonesia. The systems approach used sought to analyze the complex interactions between the soil, plant, animal and human activity subsystems. In particular, interaction between Rusa deer and Muntjac deer was compared where possible, although the principal focus of the study was on the population of Muntjac deer. The soils in habitats frequented by deer in Bali Barat National Park were found to be of relatively low fertility status. Chemical analysis of the soil revealed that all of the mineral element contents considered in this study were in the lowest range for soils, in general. During this study the population of Muntjac deer in the Bali Barat National Park was submitted to phylogenetic analysis to determine whether the Bali population is distinct. Preliminary results indicate that these deer are apart of a diverse, but monophyletic group of Muntiacus Muntjac. The potential unique status of Muntjac deer in Bali Barat National Park, and the need to preserve them as part of the natural resource base that constitutes the Indonesian archipelago increased the importance of this study of the ecosystem and social system surrounding Bali Barat National Park.
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3

Oka, Gusti Made, of Western Sydney Hawkesbury University e Faculty of Environmental Management and Agriculture. "Factors affecting the management of Muntjac Deer (Muntiacus muntjak) in Bali Barat National Park, Indonesia". THESIS_FEMA_XXX_Oka_G.xml, 1998. http://handle.uws.edu.au:8081/1959.7/176.

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Abstract (sommario):
The principal aim of the study which was conducted between May 1995 and May 1997 was to collect and analyze information that would be considered vital to any future management actions that may be applied to the deer living in the wild in the Bali Barat National Park ecosystem in Indonesia. The systems approach used sought to analyze the complex interactions between the soil, plant, animal and human activity subsystems. In particular, interaction between Rusa deer and Muntjac deer was compared where possible, although the principal focus of the study was on the population of Muntjac deer. The soils in habitats frequented by deer in Bali Barat National Park were found to be of relatively low fertility status. Chemical analysis of the soil revealed that all of the mineral element contents considered in this study were in the lowest range for soils, in general. During this study the population of Muntjac deer in the Bali Barat National Park was submitted to phylogenetic analysis to determine whether the Bali population is distinct. Preliminary results indicate that these deer are apart of a diverse, but monophyletic group of Muntiacus Muntjac. The potential unique status of Muntjac deer in Bali Barat National Park, and the need to preserve them as part of the natural resource base that constitutes the Indonesian archipelago increased the importance of this study of the ecosystem and social system surrounding Bali Barat National Park.
Doctor of Philosophy (PhD)
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4

Keeling, Jonathan Giles Matthew. "Ecological determinants of muntjac deer Muntiacus reevesi behaviour". Thesis, University of Bristol, 1995. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.296650.

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5

Williams, Timothy Roy. "Reeves' muntjac : a molecular genetic study of an invading species". Thesis, University of Kent, 1994. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.283343.

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6

Rahman, Dede Aulia. "New insights into ecology and conservation status of Bawean deer (Axis kuhlii) and red muntjac (Muntiacus muntjak) in Indonesian tropical rainforest". Thesis, Toulouse 3, 2016. http://www.theses.fr/2016TOU30136.

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Les objectifs de cette étude consistaient d'une part à étudier l'écologie de deux cerf tropical de taille moyenne, le cerf de Bawean Axis kuhlii et le Muntjac Muntiacus muntjac dans la réserve naturelle et sanctuaire de la vie sauvage de l'île de Bawean et le parc national d'Ujung Kulon respectivement, et d'autre part de mettre à jour leur statut de conservation. Nous avons utilisé pour la première fois une nouvelle technique de contrôle, les caméras-pièges, associées à aux méthodes écologiques classiques afin d'évaluer la taille des populations, d'examiner l'utilisation de l'habitat, d'estimer le domaine utilisé et d'identifier les patrons d'activité. Les résultats montrent que si les caméra-pièges sont couteuses au départ, elles ont facilité le recueil de données sur le terrain et ont fourni beaucoup d'informations pour les analyses ultérieures. De plus, la méthode des caméra-pièges a permis d'acquérir un plus grand nombre d'informations sur espèces étudiées mais aussi sur les autres espèces présentes sur les sites, que les autres méthodes employées. Pour l'estimation des tailles de population nous avons utilisé un modèle de rencontre aléatoire (REM), une technique efficace pour évaluer la densité d'espèce élusives, rares et dont les individus ne sont pas reconnaissables individuellement. Ce qui ne peut être obtenu par la technique de capture-recapture photographique qui requière que les individus soient identifiables et donc une grande qualité photographique. Les résultats ont été comparés avec ceux obtenus par la technique de comptage de tas de fèces. Les deux méthodes ont fourni des évaluations de densité de population semblables, plus élevées durant la saison sèche et une taille de population estimée entre 227 et 416 cerfs de Bawean. L'étendue de l'aire utilisée par le cerf de Bawean est apparue considérablement plus réduite que lors des précédentes estimations, le comptage de tas de fèces ayant fourni des données complémentaires aux images issues des caméra-pièges. Les deus espèces de cervidés ont essentiellement été relevées dans des habitats de forêt secondaire. L'analyse faite par la méthode de l'entropie maximale (Maxent) a montré que les variables anthropogéniques (pour les deux espèces) et climatiques (Muntjac seulement) sont les prédicteurs principaux pour l'utilisation de l'habitat. Enfin, en utilisant les indicateurs horaires fournis par les caméra-pièges, les patrons d'activité ont été examinés en relation avec le sexe et les conditions environnementales. Bien qu'il soit considéré comme espèce nocturne, l'essentiel des clichés de cerf de Bawean ont été pris durant le jour, et l'activité nocturne dépend de la luminosité. Le muntjac a également témoigné d'une certaine activité diurne avec les plus forts pics situés après le lever et avant le coucher de soleil, alors que l'activité nocturne n'est pas apparue liée à la luminosité. Il n'a pas été observé de différences entre mâles et femelles pour les deux espèces. Alors que le statut du muntjac est classé "peu préoccupant" par UICN, même si des mesures locales de conservation devraient être prises dans la zone d'étude, le cerf de Bawean devrait être maintenu dans la catégorie "en danger critique" car cette population qui apparaît toujours aussi réduite est toujours soumise à une perte d'habitat par déforestation illégale et à des perturbations par les chiens et les chasseurs
The aim of this study was to investigate the ecology of two medium-sized tropical deer, the Bawean deer Axis kuhlii and the red muntjac Muntiacus muntjac in Bawean Island Nature Reserve and Wildlife Sanctuary and Ujung Kulon National Park respectively, and to update their conservation status. We used for the first time a new monitoring technique, camera trapping, together with classical ecological field methods for estimating population size, investigating habitat use, predicting range, and identifying activity pattern. Results show that camera traps were initially expensive but they lightened the field work and provided much information for further analyses. Moreover, camera trapping provided a higher number of records and accurate species identification than other methods. For estimating population size we used a random encounter model (REM), a technique accurate for estimating density of elusive, rare and unmarked species contrary to photographic capture-recapture techniques which require both unique mark and good photographs for individual recognition, and compared the results with those obtained by faecal pellet group count. Both methods provided similar population density estimates, higher in the dry than in the wet season, and a population size of ca. 227-416 deer. The range of Bawean deer established dramatically narrower than previously reported, faecal pellet group count bringing additional data to camera trapping. Both deer species were mainly recorded in secondary forests; Analysis with Maximum entropy model (Maxent) showed that anthropogenic (for both species) and climatic (for red muntjac only) variables were the main predictors of habitat use. Finally, using time data recorded by camera traps, we investigated the activity pattern related to sex and environmental conditions. The believed nocturnal Bawean deer was predominantly photographed during the day, and its nocturnal activity was linked to luminosity. Red muntjac also showed some diurnal activity with higher peaks after sunrise and before sunset, and a nocturnal activity which was not influenced by luminosity. No difference was observed between males and females for both species. Whereas red muntjac is listed "Least concern" by IUCN even if local conservation measures should be undertaken in our study area, Bawean deer should remain "Critically endangered" as the population is still small and the main threats, habitat loss due to illegal logging and human disturbance by dogs and hunters, are ongoing
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7

Harding, S. P. "Aspects of the ecology and social organisation of the muntjac deer (Muntiacus reevesi)". Thesis, University of Oxford, 1986. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.371654.

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8

Forde, Peter. "Comparative ecology of muntjac Muntiacus reevesi and roe deer Capreolus capreolus in a commercial coniferous forest". Thesis, University of Bristol, 1989. http://hdl.handle.net/1983/c1d0f952-d672-4cbc-ad99-02096105ceb1.

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9

Hemami, Mahmoud-Reza. "The ecology of roe deer (Capreolus capreolus) and muntjac (Muntiacus reevesi) in a forested landscape in eastern England". Thesis, University of East Anglia, 2003. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.399812.

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10

Ellwood, Stephen A. "Evaluating deer monitoring methods and the density dependence and independence of skeletal size and body condition of fallow and muntjac deer in a UK lowland wood". Thesis, University of Oxford, 2006. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.442751.

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11

Tyson, Martin John. "The ecology of muntjak deer (Muntiacus muntjak) in Baluran National Park, Java and their interactions with other mammal species". Thesis, Manchester Metropolitan University, 2007. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.436650.

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12

Schiergens, Katharina Verfasser], e Ania [Akademischer Betreuer] [Muntau. "Der Wirkmechanismus des natürlichen Kofaktors Tetrahydrobiopterin als pharmakologisches Chaperon bei der Behandlung der Phenylketonurie / Katharina Schiergens ; Betreuer: Ania Carolina Muntau". München : Universitätsbibliothek der Ludwig-Maximilians-Universität, 2017. http://d-nb.info/1132995299/34.

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13

Beckerath, Clemens von Verfasser], e Ania [Akademischer Betreuer] [Muntau. "Regulation, Funktion und Interaktionsmuster der Splicevariante PEX19∆2 : komplexe Regulierungsmechanismen der frühen peroxisomalen Biogenese / Clemens von Beckerath. Betreuer: Ania Muntau". München : Universitätsbibliothek der Ludwig-Maximilians-Universität, 2014. http://d-nb.info/1063875013/34.

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14

Geiger, Florian [Verfasser], e Ania [Akademischer Betreuer] Muntau. "Fluoreszenzspektroskopische und biochemische Charakterisierung der Protein-Protein Wechselwirkungen von CFP- und YFP- Fusionsproteinvarianten peroxisomaler Membranproteine / Florian Geiger. Betreuer: Ania Muntau". München : Universitätsbibliothek der Ludwig-Maximilians-Universität, 2013. http://d-nb.info/1033504629/34.

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15

Schatz, Ulrich Andreas Verfasser], e Ania [Akademischer Betreuer] [Muntau. "Aufbau eines Systems zur Untersuchung peroxisomaler Protein-Protein-Interaktionen in der lebenden Zelle mittels Biolumineszenz Resonanzenergietransfer / Ulrich Andreas Schatz. Betreuer: Ania Carolina Muntau". München : Universitätsbibliothek der Ludwig-Maximilians-Universität, 2014. http://d-nb.info/1058076590/34.

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16

Staudigl, Michael [Verfasser], e Ania [Akademischer Betreuer] Muntau. "Funktion und Fehlfunktion der Phenylalaninhydroxylase in Abhängigkeit von Genotyp, metabolischem Status und Therapie mit dem pharmakologischen Chaperon Tetrahydrobiopterin / Michael Staudigl. Betreuer: Ania Muntau". München : Universitätsbibliothek der Ludwig-Maximilians-Universität, 2012. http://d-nb.info/1028738048/34.

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17

Fuchs, Alice Verfasser], e Ania [Akademischer Betreuer] [Muntau. "Tierexperimentelle Untersuchungen zu den pharmakodynamischen Effekten von Tetrahydrobiopterin und Natrium-Phenylbutyrat auf die in vivo Phenylalaninoxidationsrate von Mäusen mit genetisch bedingtem Defekt der Phenylalaninhydroxylase / Alice Fuchs. Betreuer: Ania Muntau". München : Universitätsbibliothek der Ludwig-Maximilians-Universität, 2014. http://d-nb.info/105807699X/34.

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