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Hemera Zoa
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Articles 391 Documents
PF-33 Effects of GnRH Vaccine, Improvac®, on Oestrus, Ovarian Activity and Growth in Japanese Black Fattening Beef Heifers Leni Sri Lestari; Keita Kitagawa; Misato Tsugeuma; Masahiko Kibushi; Yoshihiro Deguchi; Mina Shirotozaki; Ryo Sasahara; Sintaro Tau; Hiromichi Tamada; Noritoshi Kawate
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
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Introduction Oestrus and mounting behaviors in female beef herds often lead to damage of carcass and reduction of feed intake. Gonadotropin releasing hormone (GnRH) vaccine suppresses gonadal functions in cattle, neutralize biological activity of endogenous GnRH by raising GnRH antibody. This method has been used as chemical castrations of young bulls and cows in several overseas countries. However, there have been no reports regarding effects of GnRH vaccine on gonadal functions of Japanese black fattening beef heifers. The present study was conducted to examine effects of Improvac®, a GnRH vaccine, on oestrus behavior, ovarian activity and growth in Japanese black fattening beef heifers.
IS-30 Fuji Film Fuji Film
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
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IS-31 WSAVA One Health Shane Ryan
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
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SA-14 Fracture of the Infraglenoid Tubersity in Canine Rama Arge Frismana; Albiruni Haryo; Hendrik Saputra
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
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INTRODUCTIONA broken bone or which was usually called bone fracture had been a medical condition in which there was an incomplete or complete break in the continuity of the bone. There are many different kinds of fracture. The Glenoid Fracture of Os scapula is a very rare occurrence that these fractures have only been described in some series of cases often as a part of scapular fracture series, therefore it was difficult to interpret (1).                In most incidents of ligaments or tendon injuries, fracture or luxation was involved (2). Tuber glenoid fracture often occurs in juvenile animals, it’s because they are very lively and often caused following faulty landing to a jump (3).
IS-32 Introduction of Linking Awareness Journey: Intercelluar (Non-Verbal) Communication Rani Octalia
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
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IS-33 Case Sharing: The Success of Acupuncture Therapy in Animals Gustav A Muller
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
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IS-34 Surgery Technique for Pelvic Problema and Femoro-acetabular Dislocation Dhirgo Adji
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
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KIVSA-6 Stomatitis Kompleks pada Seekor Anak Kucing Monika Danaparamitha Andriani; Arief Purwo Mihardi; Sherly Noviaria Pakpahan; Malni Sovinar
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
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ABSTRAK: Stomatitis kompleks merupakan suatu kondisi gangguan pada area rongga mulut yang mengalami stomatitis, glossitis, dan gingivitis disertai adanya ulcer. Seekor anak kucing ras campuran datang dengan keluhan tidak mau makan dan hipersalivasi selama 1 minggu. Penetapan diagnosa diperoleh dari hasil temuan klinis pada saat pemeriksaan fisik pasien. Peradangan yang terjadi pada hewan ini menyebabkan kesakitan pada area mulut, gusi, dan lidah. Kondisi tersebut mengakibatkan kesulitan makan dan diduga sudah berjalan kronis. Pengobatan yang dilakukan adalah terapi suportif melalui cairan infus dan antibiotik secara intravena. Prognosa dari hasil pemeriksaan tersebut adalah dubius infausta.
KIVSA-7 Persentase Kejadian Hiperbilirubinemia pada Kucing Zulfitra Utami Putri; Dondin Sajuthi; Erni Sulistiawati
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
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PENDAHULUANHiperbilirubinemia merupakan kondisi patologis akibat terjadinya peningkatan kadar bilirubin di dalam darah (1). Hiperbilirubinemia ditandai dengan temuan klinis berupa ikterus. Ikterus dapat dikategorikan menjadi tiga bentuk yaitu prehepatik, hepatik dan posthepatik.Ikterus prehepatik dapat disebabkan oleh meningkatnya bilirubin indirek di dalam darah yang dapat terjadi akibat adanya destruksi sel darah merah secara berlebihan (hemolisis). Kondisi ini pada kucing dapat disebabkan oleh berbagai penyebab seperti immune mediated hemolytic anemia (IMHA), perubahan sekunder dari penyakit infeksius seperti feline infectious peritonitis (FIP), feline leukemia virus (FeLV), dan infeksi Mycoplasma haemofelis (5). Ikterus prehepatik tidak hanya terkait dengan adanya hemolisis namun juga dipengaruhi oleh kapasitas organ hati dalam mengkonjugasi bilirubin yang terkait dengan hypoxic liver damage yang umumnya terjadi bersamaan dengan anemia (8).Ikterus hepatik merupakan adanya akumulasi bilirubin indirek atau direk akibat adanya kerusakan atau gangguan pada organ hati. Kondisi ini dapat disebabkan oleh hepatik lipidosis, kolangitis, toksik hepatopati dan hepatik neoplasia (5). Sedangkan, ikterus posthepatik yaitu adanya akumulasi bilirubin direk akibat gangguan traktus hepatobiliari atau obstruksi saluran empedu. Yangmana pada kucing umumnya terkait dengan feline triaditis syndrome dan liver fluke (2)(7).Hiperbilirubinemia pada kucing kurang sensitif jika digunakan sebagai indikator gangguan pada hati karena kurang dari 50% kejadian kasus gangguan fungsi hati pada kucing menunjukkan adanya hiperbilirubinemia yang disertai dengan ikterus (6). Gangguan fungsi hati berkorelasi dengan adanya kondisi anemia. Anemia dapat terjadi selama adanya gangguan fungsi hati setelah terjadinya infeksi, perdarahan atau neoplasia (4).Penulisan ilmiah ini bertujuan untuk mendapatkan informasi kejadian hiperbilirubinemia pada kucing melalui penelusuran lebih lanjut terkait ada atau tidaknya anemia dan mengkaji berbagai kausa yang mempengaruhi.
VPH-8 Analysis of 2017 Rabies Suspected Infectious Animal in Riau Province Anisah Hanoum
Hemera Zoa Proceedings of the 20th FAVA & the 15th KIVNAS PDHI 2018
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Known Rabies cases in Indonesia started since Dutch colonialism and firstly reported by Schoorl (1884) in Jakarta on horse. Then cases on buffalo in Bekasi by Doubletree Esser (1889), and on dog found by Penning (1890). While the case in humans known by de Haan (1894) in Cirebon. In mid 1900s, the disease has spread progressively to variety of provinces which historically rabies free regions such as, the West Sumatra, Central Java and East Java (1953), North Sumatra and North Sulawesi (1956), South Sulawesi (1958), South Sumatra (1959), Lampung (1969), Aceh (1970), Jambi and Yogyakarta (1971), Bengkulu, Jakarta and Central Sulawesi (1972), East Borneo (1974), Riau (1975), Central Kalimantan (1978), South Kalimantan (1983), and Flores Island (1997). In early 2000's the spreading extends to Ambon and Seram Islands (2003), Buru Island (2004), Halmahera and Morotai (2005) Ketapang (2005), Bali Island (2008), and then to Bengkalis and Rupat islands in Riau Province (2009). In 2010 it also spreads to Nias and Saumlaki Islands. Java island hrabies-free ad been considered became Rabies-free region in 2004, nevertheless outbreaks reappeared in Garut (2005, 2007), Tasikmalaya (2006) and covering most of West Java starting 2008.Whilest Rabies disease firstly found in Riau province in 1975, but from 1976 until 1981 no case reported, then the case spread out again since 1982 mostly in Riau mainland province except Indragiri Hilir district. All small islands along east side of Sumatra still stated as Rabiesfree region, later the case found on Indragiri Hilir district, and more recent outbreak of rabies also occurred on Rupat and Bengkalis islands starting2009.During 2017 there were 241 biting cases by Rabies suspected infectious animal in Riau Province. Based on distribution of biting cases, the highest occurance is in Pekanbaru 180 cases (75,63%), then Kampar 52 cases (21,85%) and one each are in Kuantan Singingi, Bengkalis, Indragiri Hulu,Rokan Hilir, Rokan Hulu and Siak.