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  • Magyar Állatorvosok Lapja
  • 2017
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  •   HuVetA kezdőlap
  • Magyar Állatorvosok Lapja
  • 2017
  • Dokumentum megnyitása
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VATEM2 - Optometriai állatmérő rendszer

Megtekintés/Megnyitás
MAL 139 (8),501-508. (2017) (3.776Mb)
Dátum
2017-08
Szerző
Maróti-Agóts, Ákos
Bodó, Imre
Zenke, Petra
Jávorka, Levente
Kaltenecker, Endre
Baracskay, János
Beck, Attila
Fürlinger, Dóra
Szemenyei, Márton
Ratkóczy, Omár
Gáspárdy, András
Metaadat
Részletes rekord
Absztrakt
SUMMARY Background: 15 years ago the VATEM video based optometric system was created for the body measurement of populations kept extensively. Since then with the VATEM1 software we have measured 10 thousand animals (cattle, buffalos, sheep, horses, dogs) in seven countries. We would like to introduce a safe, fast, inexpensive and effective method which might become one of the new tools of optometric 2D multidata phenotyping. Objectives: We would like to show how the VATEM system works, and we would like to introduce the VATEM2 software (vatem.univet.hu) through the body measurement of the 2-year-old Hungarian Grey bulls bred in Sarród, sold at the 2016 bull fair. The description of the VAM field work (making the video footages) and the operation of the VAM2 software. Materials and Methods: In 2016 11 2-year-old breeding bulls were admitted to the cata logue of the Association of Hungarian Grey Cattle Breeders (MSzTE), and we have measured the body parameters of these animals. The first step of the VATEM method is the field work, during which we make video footages of the walking animals. The cameras making the footages from above and from the side are placed as far away as possible, in order to reduce perspective distortion. The animals are identified using ear tag ID screens. Before recording the animals, we record the standards, too. In the software phase from the foot ages we select standard images showing a standard posture. After that we specify the body parameters to be measured in schemes, and with the help of the standard image we define the pixel-centimetre ratio. By marking the anatomic points we perform optometric measurements, and on the standard images we create the measurement frames, where the real-life parameters are also inscribed. The sizes can be saved in an Excel spreadsheet. During the measurements the video footages were made at an average 100 animal/hour speed, while the software measurement frame is created in 8 minutes. Results and Discussion: Today genotyping is developing at a breakneck speed, however phenotyping is developing quite slowly. With the VATEM method, which is a safe and fast way of generating a big amount of phenotypic data on appearance, we intend to counter the above imbalance, as such an imbalance can hinder scientific advances. This is because genetics can only become really effective with the help of a big amount of phenotypic data on appearance and breeding, and by examining the animal as a whole. In the future the VATEM2 program will serve a simple and free tool for phenotyping, and it will be capable of processing a bigger amount of data, thereby somewhat accelerating the process of phe notyping. However, phenotyping also needs completely new methods, such as geometric morphometrics and real time 3D animal models.
URI
http://hdl.handle.net/10832/2719
Gyűjtemények
  • 2017

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