Giraffe in Kenya Range and Habitat Where Do You Find Giraffe in Kenya?
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Browsing and Non-Browsing Extant and Extinct Giraffids Evidence From
Browsing and non-browsing extant and extinct giraffids Evidence from dental microwear textural analysis Gildas Merceron, Marc Colyn, Denis Geraads To cite this version: Gildas Merceron, Marc Colyn, Denis Geraads. Browsing and non-browsing extant and extinct giraffids Evidence from dental microwear textural analysis. Palaeogeography, Palaeoclimatology, Palaeoecol- ogy, Elsevier, 2018, 505, pp.128-139. 10.1016/j.palaeo.2018.05.036. hal-01834854v2 HAL Id: hal-01834854 https://hal-univ-rennes1.archives-ouvertes.fr/hal-01834854v2 Submitted on 6 Sep 2018 HAL is a multi-disciplinary open access L’archive ouverte pluridisciplinaire HAL, est archive for the deposit and dissemination of sci- destinée au dépôt et à la diffusion de documents entific research documents, whether they are pub- scientifiques de niveau recherche, publiés ou non, lished or not. The documents may come from émanant des établissements d’enseignement et de teaching and research institutions in France or recherche français ou étrangers, des laboratoires abroad, or from public or private research centers. publics ou privés. 1 Browsing and non-browsing extant and extinct giraffids: evidence from dental microwear 2 textural analysis. 3 4 Gildas MERCERON1, Marc COLYN2, Denis GERAADS3 5 6 1 Palevoprim (UMR 7262, CNRS & Université de Poitiers, France) 7 2 ECOBIO (UMR 6553, CNRS & Université de Rennes 1, Station Biologique de Paimpont, 8 France) 9 3 CR2P (UMR 7207, Sorbonne Universités, MNHN, CNRS, UPMC, France) 10 11 1Corresponding author: [email protected] 12 13 Abstract: 14 15 Today, the family Giraffidae is restricted to two genera endemic to the African 16 continent, Okapia and Giraffa, but, with over ten genera and dozens of species, it was far 17 more diverse in the Old World during the late Miocene. -
Lake Turkana and the Lower Omo the Arid and Semi-Arid Lands Account for 50% of Kenya’S Livestock Production (Snyder, 2006)
Lake Turkana & the Lower Omo: Hydrological Impacts of Major Dam & Irrigation Development REPORT African Studies Centre Sean Avery (BSc., PhD., C.Eng., C. Env.) © Antonella865 | Dreamstime © Antonella865 Consultant’s email: [email protected] Web: www.watres.com LAKE TURKANA & THE LOWER OMO: HYDROLOGICAL IMPACTS OF MAJOR DAM & IRRIGATION DEVELOPMENTS CONTENTS – VOLUME I REPORT Chapter Description Page EXECUTIVE(SUMMARY ..................................................................................................................................1! 1! INTRODUCTION .................................................................................................................................... 12! 1.1! THE(CONTEXT ........................................................................................................................................ 12! 1.2! THE(ASSIGNMENT .................................................................................................................................. 14! 1.3! METHODOLOGY...................................................................................................................................... 15! 2! DEVELOPMENT(PLANNING(IN(THE(OMO(BASIN ......................................................................... 18! 2.1! INTRODUCTION(AND(SUMMARY(OVERVIEW(OF(FINDINGS................................................................... 18! 2.2! OMO?GIBE(BASIN(MASTER(PLAN(STUDY,(DECEMBER(1996..............................................................19! 2.2.1! OMO'GIBE!BASIN!MASTER!PLAN!'!TERMS!OF!REFERENCE...........................................................................19! -
Tsavo: Small Steps, Big Impacts ©IFAW/D
Tsavo: Small Steps, Big Impacts July 2007 - June 2008 Tsavo: Small Steps, Big Impacts Tsavo: A Front cover: Elephants ©IFAW/D. Willetts Community ©IFAW/E. Indakwa A desert rose in full bloom in Tsavo IFAW/D. Willetts IFAW/D. © IFAW/D. Willetts IFAW/D. © Great white egrets at Lake Jipe in Tsavo West IFAW/D. Willetts IFAW/D. © Tsavo: Small Steps, Big Impacts Tsavo: Eland strut the Tsavo landscape 1 IFAW/D. Willetts IFAW/D. Message from James Isiche © Investing in a Worthy Cause The third financial year for the Tsavo Conservation Area Project (TCAP) commenced on an exciting note for IFAW and Kenya Wildlife Service (KWS). Set objectives were on course; Kenya’s economy was booming; tourist numbers and park revenues were at an all-time high; and KWS seemed poised to achieve financial self- sustenance by 2013. Unfortunately, two unrelated events patrols and maintenance of fire breaks in pummeled the financial fortunes of the fire-prone sections of the park were done. Tsavo Parks and left the country’s wildlife – elephants in particular – in great peril. These huge challenges cannot, however, obscure the tremendous gains made during The decision by CITES in 2007 to allow this period. Our support for innovative four Southern African states to offload their community conservation projects aimed ivory stockpiles to Japan and China placed at reducing human-wildlife conflicts and a threat on elephants in other countries uplifting livelihoods will certainly enhance within the continent. Then, an eruption of community support for conservation. violence after Kenya’s disputed presidential Most heartening, also, is the unwavering election at the close of 2007 followed. -
Chyulu-Water-PES-Article-Swara-Final
CONSERVATION 30 JULY - SEPTEMBER 2019 CONSERVATION hat water is the essence of life developed and implemented the Chyulu Hills is both a familiar cliché and REDD+ Project. This project specifically aims an inescapable truth. Such is to reduce carbon emissions from deforestation the importance of water that across the Chyulus landscape to generate carbon Section 43(d) of the Kenyan credits being sold on the international carbon Constitution says that “every markets. Between them, these organisations person has the right to clean have been remarkably successful in conserving and safe water in adequate quantities” With the Chyulu Hills landscape even though there Tincreasing threats to water security, Kenya is are significant threats and there has been some recognising the vital role played by its upland deforestation and loss of wildlife. BELOW: The areas, many now designated as “water towers” water stored in As a water tower, the Chyulu Hills are an through the Kenya Water Towers Bill (2018). the Chyulus is important water catchment with its most visible The Chyulus water tower is one of the more equivalent to a manifestation being the sparkling and clear water encouraging stories. Gazetted as a national park lake 10km long by that bubbles up at Mzima Springs. Although there in 1983, the southern boundary borders Tsavo 3 km wide by 20m are a number of springs around the Chyulus, West National Park. Part of the eastern side has deep. recent modelling of the aquifer suggests that 80- the Kibwezi Forest Reserve, owned by Kenya 90 per cent of the total water captured emerges Forest Service and managed by the Sheldrick through Mzima. -
Case Study Report For
Case Study One Indigenous Peoples’ Rights in the Kenya Lake System in the Great Rift Valley 1 By DR. KANYINKE SENA Indigenous Peoples’ Rights in the Kenya Lake System in the Great Rift Valley 1 CASE STUDY ONE Indigenous Peoples’ Rights in the Kenya World Heritage (IIPFWH), as a standing global Lake System in the Great Rift Valley body aimed at representing indigenous peo- ples voices in the World Heritage Committee processes.5 The Committee referred to the establishment of the IIPFWH, “As an impor- tant reflection platform on the involvement of Indigenous Peoples in the identification, conservation and management of World Heritage properties, with a particular focus on the nomination process.” 6 Pursuant to the mandate of the Forum, this report aims at analyzing Indigenous Peoples’ involvement in the Kenya Lakes System in the Great Rift Valley World Heritage Site. The report is as result of extensive literature re- view and interviews with communities in and around the lakes that comprise the Kenya K. Sena: Lake Bogoria Lakes System. The Kenya Lake System in the Great Rift Val- ley is a World Heritage site in Kenya which comprises three inter-linked, relatively shal- low, alkaline lakes and their surrounding territories. The lakes system includes Lakes Elementeita, Nakuru and Bogoria in the Rift Valley. The lakes cover a total area of 32,034 and was inscribed as a world heritage site in 2011. The inscription was based on the lakes system outstanding universal values and criterion (vii), (ix) and (x) as provided for, under paragraph 77 of the Operational Guidelines for the Implementation of the World Heritage Convention. -
Foraging Ecologies of Giraffe (Giraffa Camelopardalis Reticulata)
Foraging ecologies of giraffe (Giraffa camelopardalis reticulata) and camels (Camelus dromedarius) in northern Kenya: effects of habitat structure and possibilities for competition? David A. O’Connor1,2,3*, Bilal Butt2 and Johannes B. Foufopoulos2 1San Diego Zoo Institute for Conservation Research, 15600 San Pasqual Valley Road, Escondido, CA, 92027, U.S.A., 2School of Natural Resources and Environment, University of Michigan, 440 Church St. Ann Arbor, Michigan, 48109-1041, U.S.A. and 3National Geographic Society 1145 17th St., NW, Washington, DC, 20036, U.S.A. Abstract au Kenya, ou ces especes sont recemment devenues The foraging ecologies of reticulated giraffe (Giraffa camel- sympatriques. La popularite croissante des dromadaires opardalis reticulata) and domestic camels (Camelus drome- dans la region a suscite des inquietudes au sujet des darius) were examined in the Laikipia District of Kenya, impacts sur l’environnement et d’une eventuelle competi- where these species have recently become sympatric. tion pour les ressources avec les girafes sauvages. Nous Camels increased popularity in the region has lead to avons recolte des donnees sur l’alimentation des deux concerns about their environmental impacts and possible especes au moyen de scan de groupe de deux minutes, qui competition with wild giraffe for resources. We gathered enregistraient la hauteur a laquelle les animaux mangea- foraging data on both species using 2-min group scans ient et les plantes preferees. Des transects ont permis de that recorded feeding heights and plant food preferences. recolter des echantillons de vegetation dans les zones ou les Transects sampled the vegetation in areas where foraging observations alimentaires ont ete faites. -
Experince Kenya's 'Out of Africa' Safari
MERU MARA EXPEDITION CAMP, Experince Kenya’s Maasai Mara THE EMAKOKO National Reserve Nairobi National Park DAY 5-8 DAY 1-2 NAIROBI KITUI ‘Out of Africa’ Safari OL DONYO LODGE, Chyulu Hills National Park SERENGETI DAY 2-5 NATIONAL PARK KENYA SUGGESTED ITINERARY OVERVIEW ACCOMMODATION DESTINATION NIGHTS BASIS ROOM TYPE The Emakoko Nairobi National Park, Kenya 1 FB Standard Room ol Donyo Lodge Chyulu Hills National Park, Kenya 3 FB Standard Pool Suite Mara Expedition Camp Maasai Mara National Reserve, Kenya 3 FB Luxury Tent DAYS 1-2 THE EMAKOKO, NAIROBI NATIONAL PARK NAIROBI NATIONAL PARK Nairobi is Africa’s 4th largest city and is a vibrant and exciting place. Although it has developed a reputation which keeps tourist visits brief, there are some fascinating attractions, namely its café culture, unbridled nightlife, the National Museum, Karen Blixen Museum and most notably, just 20 minutes from the city centre, wild lions and buffalo roam in the Nairobi National Park. THE EMAKOKO 1 night at The Emakoko in a standard room on a full board basis. The Emakoko is a luxury lodge artfully built into the side of a valley on the Mbagathi River, bordering the Nairobi National Park. Great care has been taken to incorporate the beautiful fig trees which grow on the cliff where the lodge is situated. All rooms look straight over the river and into the Park. The Emakoko allows people to start and finish their safari in the wildlife environment they have travelled so far to enjoy. Within 20 minutes of clearing customs they can now be viewing game in the amazing Nairobi National Park. -
Extensive Population Genetic Structure in the Giraffe
BMC Biology BioMed Central Research article Open Access Extensive population genetic structure in the giraffe David M Brown1, Rick A Brenneman2, Klaus-Peter Koepfli1, John P Pollinger1, Borja Milá1, Nicholas J Georgiadis3, Edward E Louis Jr2, Gregory F Grether1, David K Jacobs1 and Robert K Wayne*1 Address: 1Department of Ecology and Evolutionary Biology, University of California, Los Angeles, CA, 90095, USA, 2Center for Conservation and Research, Omaha's Henry Doorly Zoo, 3701 South 10th Street, Omaha, NE 68107, USA and 3Mpala Research Centre, PO Box 555, Nanyuki, Kenya Email: David M Brown - [email protected]; Rick A Brenneman - [email protected]; Klaus-Peter Koepfli - [email protected]; John P Pollinger - [email protected]; Borja Milá - [email protected]; Nicholas J Georgiadis - [email protected] ; Edward E Louis - [email protected]; Gregory F Grether - [email protected]; David K Jacobs - [email protected]; Robert K Wayne* - [email protected] * Corresponding author Published: 21 December 2007 Received: 2 October 2007 Accepted: 21 December 2007 BMC Biology 2007, 5:57 doi:10.1186/1741-7007-5-57 This article is available from: http://www.biomedcentral.com/1741-7007/5/57 © 2007 Brown et al; licensee BioMed Central Ltd. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Abstract Background: A central question in the evolutionary diversification of large, widespread, mobile mammals is how substantial differentiation can arise, particularly in the absence of topographic or habitat barriers to dispersal. -
Activity Pack: African Animals
Activity Pack: African Animals This pack is designed to provide teachers with information to help you lead a trip to Colchester Zoo focusing on African Animals How to Use this Pack: This African Animal Tour Guide pack was designed to help your students learn about African animals and prepare for a trip to Colchester Zoo. The pack starts with suggested African animals to visit at Colchester Zoo including a map of where to see them and which encounters/feeds to attend. The next section contains fact sheets about these animals. This includes general information about the type of animal (e.g. where they live, what they eat, etc.) and specific information about individuals at Colchester Zoo (e.g. their names, how to tell them apart, etc.). This information will help you plan your day, and your route around the zoo to see the most African Animals. We recommend all teachers read through this pack and give copies to adult helpers visiting with your school trip. The rest of the pack is broken into “Pre-Trip”, “At the Zoo”, and “Post-Trip”. Each of these sections start with ideas to help teachers think of ways to relate African animals to other topics. There are also a variety of pre-made activities and worksheets included in this pack. Activities are typically hands on ‘games’ that introduce and reinforce concepts. Worksheets are typically paper hand-outs teachers can photocopy and have pupils complete independently. Teachers can pick and choose which they want to use since all the activities/worksheets can be used independently (you can just use one worksheet if you wish; you don’t need to complete the others). -
Omenda Geothermal Heat Sources in East Africa Rift System 2016
Heat Sources for Geothermal Systems in East African Rift System Peter Omenda Classification by Temperature Volcano hosted Geothermal Systems • Typical model for volcano hosted geothermal system Volcano hosted Geothermal Systems-Menengai • Associated with main rift volcanoes Menengai Geothermal field • Temperatures of > 400oC measured • Shallow magma bodies ~2.3km Geophysical Model across Menengai • Seismics show high velocity under volcano • Common feature of all volcanoes in EARS rift axis MEQ Studies T o B MN15 a Marigat MN13 r in g Coffee o Farm MN12 Bahati ru Majani Mingi ru hu ya 9985000 N To MN14 • Studies revealed that 9980000 Kabarak s s s MN09 Bahati g g g brittle ductile transition MN10 n n n i i i CALDERA Settlement h h h t t t r r r o o o MN11 N N N MN07 To d d d i i i E r r r l MN08 do G G G re zone under Menengai is 9975000 t MN06 Residential Area MN04 at 6km depth T o Nairobi 9970000 NAKURU MN05 MN03URBAN AREA Lake Rongai Nakuru Lake Nakuru Farms National Park MN02 MN01 165000 170000 175000 180000 Grid Eastings (m) NorthWest Ol Rongai Men. Caldera SouthEast 0 -2 ) ) m m K K ( ( h h t t -4 p p e e D D -6 -8 165000 167500 170000 172500 175000 177500 180000 Distance (M) Menengai Stratigraphy • Stratigraphy dominated by trachytes and pyroclastics • Magma body at ~2.3km • Syenitic cap present • Tmax 400oC Menengai stratigraphic Model Tuff layers Trachyte Syenite Magma Menengai Model 200 isotherm 250 isotherm 350 isotherm Magma Olkaria Volcanic Complex • The heat source at Olkaria is associated with – discrete magma chambers that underlie the volcanic centres Main Ethiopian Rift Recent volcano tectonic activity is mainly within the axis. -
Analysis and Mapping of Water-Related Conflicts in the Catchment of Lake Naivasha (Kenya)
Competition over water resources: analysis and mapping of water-related conflicts in the catchment of Lake Naivasha (Kenya) Carolina Boix Fayos February 2002 Competition over water resources: analysis and mapping of water-related conflicts in the catchment of Lake Naivasha (Kenya) By Carolina Boix Fayos Supervisors: Dr. M.McCall (Social Sciences) Drs. J. Verplanke (Social Sciences) Drs. R. Becht (Water Resources) Thesis submitted to the International Institute for Geoinformation Science and Earth Observation in partial fulfilment of the requirements for the degree of Master of Science in Water Resources and Environmental Management Degree Assessment Board Chairman: Prof. Dr. A.M.J. Meijerink (Water Resources) External examiner: Prof. A. van der Veen (University of Twente) Members: Dr. M.K. McCall (Social Sciences) Drs. J.J. Verplanke (Social Sciences) Drs. R. Becht (Water Resources) INTERNATIONAL INSTITUTE FOR GEOINFORMATION SCIENCE AND EARTH OBSERVATION ENSCHEDE, THE NETHERLANDS Disclaimer This document describes work undertaken as part of a programme of study at the International Institute for Geoinformation Science and Earth Observation. All views and opinions expressed therein remain the sole responsibility of the author, and do not necessarily represent those of the institute. A mi abuelo Paco (Francisco Fayos Artés) que me enseñó a apreciar la tierra y sus gentes y a disfrutar con la Geografía y la Historia ACKNOWLEDGEMENT The experience of ITC has been very special. I am very grateful to the Fundación Alfonso Martín Escudero (Madrid, Spain) who paid the ITC fees and supported me economically during the whole period. I am also very grateful to my supervisors Dr. Mike McCall, Drs. -
Reticulated Giraffe Giraffa Camelopardalis Reticulata
Reticulated Giraffe Giraffa camelopardalis reticulata I’m Just Browsing… - Everything about a giraffe is longer or taller than other animals! Because of their height, giraffes do not have to compete for food. The giraffe’s legs are longer than an average man is tall (six feet), and their front legs are longer than their back legs. Even the giraffe’s tongue is long – as much as 18 inches. The tongue is strong and flexible allowing them to grasp and strip leaves from thorny branches. Pacing and Galloping - Because of their long legs, giraffe walk by moving both legs on one side of the body forward at the same time – a movement called pacing. When they run or gallop, their back legs are brought forward and ahead of their front legs. Giraffe can run up to 35 miles per hour over short distances. Classification One of nine described subspecies, all of which can easily interbreed. The closest living relative is the okapi. Class: Mammalia Order: Artiodactyla Family: Giraffidae Genus: Giraffa Species: camelopardalis Subspecies: reticulata Distribution Inhabits Eastern Africa and game reserves in South Africa. Habitat Dry savannah and open woodlands. Physical Description • Male giraffes are 16-18 feet (4.8-5.5 m) tall; females are 14-16 feet (4.2-4.8 m) tall. • Males can weigh up to 4,200 pounds (1,900 kg), and females weigh up to 2,600 pounds (1,180 kg). • Their coat has a regular box-like pattern of brown patches against a white background. • Their dark prehensile tongue is about 18 inches (45 cm) long.