Walter Coudyzer
Biographic Data
| ID | 3528217 |
|---|---|
| NAME | Walter Coudyzer |
| GIVEN NAMES | Walter |
| FAMILY NAME | Coudyzer |
| SIGNATURE | COUDYZER W |
| AFFILIATIONS | KU Leuven |
| ORCID | 0000-0002-9367-8720 |
| VERIFIED | Yes |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 26 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2009 |
| LATEST PUBLICATION YEAR | 2015 |
| H-INDEX | 3 |
Implications of the Relationship Between Basicranial Flexion and Facial Orientation for the Evolution of Hominid Craniofacial Structures
Integration between the face and the mandible of Pongo and the evolution of the craniofacial morphology of orangutans
OBJECTIVES: Extant Pongo diverges from other hominids by a series of craniofacial morphological features, such as a concave face, a reduced supraorbital torus, or an upwardly orientated palate. These traits are not independent because the skull is a complex integrated structure. The aim of this study is to describe the relationship between the face and mandible of Pongo, in order to examine the link between mandibular structures and the set-up of…
Assessing endocranial variations in great apes and humans using 3D data from virtual endocasts
Modern humans are characterized by their large, complex, and specialized brain. Human brain evolution can be addressed through direct evidence provided by fossil hominid endocasts (i.e. paleoneurology), or through indirect evidence of extant species comparative neurology. Here we use the second approach, providing an extant comparative framework for hominid paleoneurological studies. We explore endocranial size and shape differences among great a…
Internal cranial anatomy of the type specimen of Pan paniscus and available data for study
Assessing endocranial variations in great apes and humans using 3D data from virtual endocasts
Modern humans are characterized by their large, complex, and specialized brain. Human brain evolution can be addressed through direct evidence provided by fossil hominid endocasts (i.e. paleoneurology), or through indirect evidence of extant species comparative neurology. Here we use the second approach, providing an extant comparative framework for hominid paleoneurological studies. We explore endocranial size and shape differences among great a…
Internal cranial anatomy of the type specimen of Pan paniscus and available data for study
Integration between the face and the mandible of Pongo and the evolution of the craniofacial morphology of orangutans
OBJECTIVES: Extant Pongo diverges from other hominids by a series of craniofacial morphological features, such as a concave face, a reduced supraorbital torus, or an upwardly orientated palate. These traits are not independent because the skull is a complex integrated structure. The aim of this study is to describe the relationship between the face and mandible of Pongo, in order to examine the link between mandibular structures and the set-up of…
Implications of the Relationship Between Basicranial Flexion and Facial Orientation for the Evolution of Hominid Craniofacial Structures
Internal cranial anatomy of the type specimen of Pan paniscus and available data for study
Assessing endocranial variations in great apes and humans using 3D data from virtual endocasts
Modern humans are characterized by their large, complex, and specialized brain. Human brain evolution can be addressed through direct evidence provided by fossil hominid endocasts (i.e. paleoneurology), or through indirect evidence of extant species comparative neurology. Here we use the second approach, providing an extant comparative framework for hominid paleoneurological studies. We explore endocranial size and shape differences among great a…
Implications of the Relationship Between Basicranial Flexion and Facial Orientation for the Evolution of Hominid Craniofacial Structures
Integration between the face and the mandible of Pongo and the evolution of the craniofacial morphology of orangutans
OBJECTIVES: Extant Pongo diverges from other hominids by a series of craniofacial morphological features, such as a concave face, a reduced supraorbital torus, or an upwardly orientated palate. These traits are not independent because the skull is a complex integrated structure. The aim of this study is to describe the relationship between the face and mandible of Pongo, in order to examine the link between mandibular structures and the set-up of…
Anatomy (4 works) · Biology (4 works) · Skull (4 works) · Anatomy (3 works) · Evolutionary biology (3 works) · Geography (3 works) · Gorilla (3 works) · Homo sapiens (3 works) · Morphological variations and asymmetry (3 works) · Paleontology (3 works)