[HTML][HTML] Getting a head in hard soils: convergent skull evolution and divergent allometric patterns explain shape variation in a highly diverse genus of pocket gophers …

AE Marcy, EA Hadly, E Sherratt, K Garland… - BMC Evolutionary …, 2016 - Springer
Background High morphological diversity can occur in closely related animals when
selection favors morphologies that are subject to intrinsic biological constraints. A good …

Getting a head in hard soils: Convergent skull evolution and divergent allometric patterns explain shape variation in a highly diverse genus of pocket gophers …

AE Marcy, EA Hadly, E Sherratt… - BMC evolutionary …, 2016 - pubmed.ncbi.nlm.nih.gov
Background High morphological diversity can occur in closely related animals when
selection favors morphologies that are subject to intrinsic biological constraints. A good …

[PDF][PDF] Getting a head in hard soils: Convergent skull evolution and divergent allometric patterns explain shape variation in a highly diverse genus of pocket gophers …

AE Marcy, EA Hadly, E Sherratt, K Garland… - 2016 - core.ac.uk
Background: High morphological diversity can occur in closely related animals when
selection favors morphologies that are subject to intrinsic biological constraints. A good …

Getting a head in hard soils: Convergent skull evolution and divergent allometric patterns explain shape variation in a highly diverse genus of pocket gophers …

AE Marcy, EA Hadly, E Sherratt… - BMC …, 2016 - researchnow.flinders.edu.au
Background: High morphological diversity can occur in closely related animals when
selection favors morphologies that are subject to intrinsic biological constraints. A good …

[PDF][PDF] Getting a head in hard soils: Convergent skull evolution and divergent allometric patterns explain shape variation in a highly diverse genus of pocket gophers …

AE Marcy, EA Hadly, E Sherratt, K Garland… - 2016 - researchnow-admin.flinders.edu.au
Background: High morphological diversity can occur in closely related animals when
selection favors morphologies that are subject to intrinsic biological constraints. A good …

Getting a head in hard soils: convergent skull evolution and divergent allometric patterns explain shape variation in a highly diverse genus of pocket gophers …

A Marcy, E Hadly, E Sherratt, K Garland… - 2016 - digital.library.adelaide.edu.au
Background: High morphological diversity can occur in closely related animals when
selection favors morphologies that are subject to intrinsic biological constraints. A good …

Getting a head in hard soils: Convergent skull evolution and divergent allometric patterns explain shape variation in a highly diverse genus of pocket gophers …

AE Marcy, EA Hadly, E Sherratt… - BMC Evolutionary …, 2016 - search.ebscohost.com
Background: High morphological diversity can occur in closely related animals when
selection favors morphologies that are subject to intrinsic biological constraints. A good …

[引用][C] Getting a head in hard soils: convergent skull evolution and divergent allometric patterns explain shape variation in a highly diverse genus of pocket gophers …

AE Marcy, EA Hadly, E Sherratt… - BMC Evolutionary …, 2016 - espace.library.uq.edu.au
High morphological diversity can occur in closely related animals when selection favors
morphologies that are subject to intrinsic biological constraints. A good example is …

Getting a head in hard soils: Convergent skull evolution and divergent allometric patterns explain shape variation in a highly diverse genus of pocket gophers …

AE Marcy, EA Hadly, E Sherratt, K Garland… - BMC Evolutionary …, 2016 - go.gale.com
Background High morphological diversity can occur in closely related animals when
selection favors morphologies that are subject to intrinsic biological constraints. A good …

[PDF][PDF] Getting a head in hard soils: Convergent skull evolution and divergent allometric patterns explain shape variation in a highly diverse genus of pocket gophers …

AE Marcy, EA Hadly, E Sherratt, K Garland… - 2016 - cyberleninka.org
Background: High morphological diversity can occur in closely related animals when
selection favors morphologies that are subject to intrinsic biological constraints. A good …