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Master's Dissertation
DOI
https://doi.org/10.11606/D.41.2010.tde-07122010-172814
Document
Author
Full name
Nicolle Veiga Sydney
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2010
Supervisor
Committee
Rosso, Sergio (President)
Monteiro Filho, Emygdio Leite de Araujo
Zaher, Erika Hingst
Title in Portuguese
Ontogenia e assimetria craniana do boto-cinza, Sotalia guianensis(Cetacea: Delphinidae)
Keywords in Portuguese
Assimetria direcional
Morfometria geométrica
Ontogenia
Sotalia guianensis
Abstract in Portuguese
Vários estudos sobre ontogenia e assimetria foram e vêm sendo realizados com cetáceos odontocetos através da utilização da morfometria convencional. Frequentemente compara-se o tamanho de estruturas do sistema respiratório de ambos os lados do crânio para avaliar a assimetria de tamanho e analisa-se o aumento de tamanho do corpo com a idade para avaliar ontogenia. Porém, através da morfometria convencional nem sempre é possível descrever ou representar a variabilidade de forma dos organismos, sendo que informações sobre a forma craniana dos odontocetos são bastante escassas. A morfometria geométrica é uma técnica que vem sendo amplamente utilizada em estudos de comparação da forma dos organismos, a qual leva em consideração o caráter geométrico das formas biológicas e analisa estatisticamente sua variação. Além disso, possibilita a realização de descrições independentes de forma e tamanho, o que permite que os mesmos sejam analisados separadamente. Sendo assim, este estudo se propôs a investigar as alterações ontogenéticas na forma e tamanho do crânio do boto-cinza, Sotalia guianensis, buscando alterações cranianas entre indivíduos de diferentes classes etárias, além de verificar a existência e analisar a assimetria direcional na forma e tamanho craniano para esta espécie. Para isso, os crânios foram digitalizados através de um braço digitalizador e depois de um tratamento geométrico as configurações geradas foram analisadas estatisticamente, a partir dos seus componentes de forma e tamanho. Foi observada assimetria de tamanho e forma para muitas das estruturas cranianas estudadas, notando-se diferenças com relação à assimetria entre as subunidades de desenvolvimento do crânio. Com relação à ontogenia, verificou-se um padrão semelhante para a alteração da forma e do tamanho com a idade, evidenciando que, tanto a forma como o tamanho craniano, se estabilizam por volta dos oito anos de idade.
Title in English
Ontogeny and asymmetry of estuarine dolphin skull, Sotalia guianensis (Cetacea: Delphinidae)
Keywords in English
Directional asymmetry
Geometric morphometrics
Ontogeny
Sotalia guianensis
Abstract in English
Several studies exploring the ontogeny and asymmetry involving the skull and skeleton of the species of the Suborder Odontoceti have been performed using traditional morphometric techniques. Ontogenetic studies are usually based on the relationship between body size and age, while those focusing on the existence and degree of asymmetry compare the size of skull elements related to the respiratory tract. However, traditional morphometrics can not describe or represent adequately the variability of shape between organisms and therefore information about shape of dolphin skulls are very scarce. Geometric Morphometrics is a toolbox of techniques that is been widely applied in studies comparing the shape of organisms taking into consideration the biological shapes and analyzing their variation statistically. In addition, this technique allows to independently describe both shape and size separately, as well as exploring their relationship. The main objective of this study is to investigate the changes in skull shape and size during the ontogeny for the estuarine dolphin, Sotalia guianensis, characterizing the shape of the skull among different age groups. The second goal is to verify and analyze directional asymmetry in skull size and shape for this species. Dolphin skulls were scanned using a Microscribe-3D digitizer, statistically analyzing size and shape of the configurations created after translating, rotating and rescaling the original variables. Asymmetry in size and shape was detected for some cranial structures. There were also differences in asymmetry degree between the development subunits of the skull. For the ontogenetic trajectory it was detected a similar pattern of changes in shape and in size with age, in which both are stabilizing around eight years old for this species.
 
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Sydney.pdf (11.83 Mbytes)
Publishing Date
2011-01-20
 
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