The role of osteoblast placement in skeletal morphological variation is relatively well understood, but alternative developmental mechanisms affecting bone shape remain largely unknown. Specifically, very little attention has been paid to variation in later mineralization stages of intramembranous ossification as a driver of morphological diversity. We discover the occurrence of specific, sometimes large regions of nonmineralized osteoid within bones that also contain mineralized tissue. We show through a variety of histological, molecular, and tomographic tests that this “extended” osteoid material is most likely nonmineralized bone matrix. This tissue type is a significant determinant of gill cover bone shape in the teleostean suborder Co...
This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published arti...
International audienceVertebrate bone is composed of three main cell types: osteoblasts, osteoclasts...
Resorption and remodelling of skeletal tissues is required for development and growth, mechanical ad...
The opercle is a prominent craniofacial bone supporting the gill cover in all bony fish and has been...
The opercle is a prominent craniofacial bone supporting the gill cover in all bony fish and has been...
The opercle is a prominent craniofacial bone supporting the gill cover in all bony fish and has been...
Across vertebrates, skeletal shapes are diverse, and much of this variation appears to be adaptive. ...
Skeletal (cartilaginous, bony, and dental) tissues undoubtedly exemplify the key innovation of verte...
Vertebrate bone is composed of three main cell types: osteoblasts, osteoclasts and osteocytes, the l...
Vertebrate bone is composed of three main cell types: osteoblasts, osteoclasts and osteocytes, the l...
Skeletal tissues represent a key novelty of vertebrates, moreover, structural diversification and ph...
Understanding the developmental processes that underlie the production of adaptive variation (i.e. t...
Understanding the developmental processes that underlie the production of adaptive variation (i.e. t...
Understanding the developmental processes that underlie the production of adaptive variation (i.e. t...
Understanding the developmental processes that underlie the production of adaptive variation (i.e. t...
This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published arti...
International audienceVertebrate bone is composed of three main cell types: osteoblasts, osteoclasts...
Resorption and remodelling of skeletal tissues is required for development and growth, mechanical ad...
The opercle is a prominent craniofacial bone supporting the gill cover in all bony fish and has been...
The opercle is a prominent craniofacial bone supporting the gill cover in all bony fish and has been...
The opercle is a prominent craniofacial bone supporting the gill cover in all bony fish and has been...
Across vertebrates, skeletal shapes are diverse, and much of this variation appears to be adaptive. ...
Skeletal (cartilaginous, bony, and dental) tissues undoubtedly exemplify the key innovation of verte...
Vertebrate bone is composed of three main cell types: osteoblasts, osteoclasts and osteocytes, the l...
Vertebrate bone is composed of three main cell types: osteoblasts, osteoclasts and osteocytes, the l...
Skeletal tissues represent a key novelty of vertebrates, moreover, structural diversification and ph...
Understanding the developmental processes that underlie the production of adaptive variation (i.e. t...
Understanding the developmental processes that underlie the production of adaptive variation (i.e. t...
Understanding the developmental processes that underlie the production of adaptive variation (i.e. t...
Understanding the developmental processes that underlie the production of adaptive variation (i.e. t...
This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published arti...
International audienceVertebrate bone is composed of three main cell types: osteoblasts, osteoclasts...
Resorption and remodelling of skeletal tissues is required for development and growth, mechanical ad...