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相关概念视频

The Fossil Record02:56

The Fossil Record

The fossil record documents only a small fraction of all organisms that have ever inhabited Earth. Fossilization is a rare process, and most organisms never become fossils. Moreover, the fossil record only exhibits fossils that have been discovered. Nevertheless, sedimentary rock fossils of long-lived, abundant, hard-bodied organisms dominate the fossil record. These fossils offer valuable information, such as an organism's physical form, behavior, and age. Studying the fossil record helps...
Overview of the Axial Skeleton01:09

Overview of the Axial Skeleton

The skeleton is subdivided into two major divisions—the axial skeleton and the appendicular skeleton. The axial skeleton forms the vertical, central axis of the body. It includes all of the bones of the head, neck, chest, and back. It protects the brain, spinal cord, heart, and lungs. It also serves as the attachment site for muscles that move the head, neck, and back and for muscles that act across the shoulder and hip joints to move their corresponding limbs.
The axial skeleton of the adult...
Overview of the Skull01:08

Overview of the Skull

The cranium (skull) is the skeletal structure of the head that supports the face and protects the brain. It is subdivided into the facial bones and the brain case, or cranial vault. The facial bones underlie the facial structures, form the nasal cavity, enclose the eyeballs, and support the teeth of the upper and lower jaws.
The cranial vault surrounds and protects the brain and houses the middle and inner ear structures. This cavity is bounded superiorly by the rounded top of the skull, which...
Cranial Bones: Superior and Posterior View01:14

Cranial Bones: Superior and Posterior View

The superior view of the cranium shows the frontal and paired parietal bones.
The frontal bone is the single bone that forms the forehead. At its anterior midline, between the eyebrows, there is a slight depression called the glabella. The frontal bone also forms the supraorbital margin of the orbit. Near the middle of this margin is the supraorbital foramen, the opening that provides passage for a sensory nerve to the forehead. The frontal bone is thickened just above each supraorbital margin,...
Cranial Bones: Lateral View01:27

Cranial Bones: Lateral View

The lateral view of the cranium is dominated by temporal, sphenoid, and ethmoid bones.
The temporal bone forms the lower lateral side of the skull. The temporal bone is subdivided into several regions. The flattened upper portion is the squamous portion of the temporal bone. Below this area and projecting anteriorly is the zygomatic process of the temporal bone, which forms the posterior portion of the zygomatic arch. Posteriorly is the mastoid portion of the temporal bone. Projecting...
Sutures of the Skull01:22

Sutures of the Skull

The human skull is composed of several bones that come together to protect the brain and support the structures of the face. The junctions where these bones meet are called sutures.
Sutures are immobile joints between adjacent bones of the skull. The narrow gap between the bones is filled with dense, fibrous connective tissue that unites the bones. The long sutures located between the skull bones are not straight but instead follow irregular, tightly twisting paths. These twisting lines tightly...

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相关实验视频

Updated: May 12, 2026

Assessing Signaling Properties of Ectodermal Epithelia During Craniofacial Development
09:25

Assessing Signaling Properties of Ectodermal Epithelia During Craniofacial Development

Published on: March 24, 2011

大型热足类恐龙的头骨设计和功能

E J Rayfield1, D B Norman, C C Horner

  • 1Department of Earth Sciences, University of Cambridge, UK. eray@esc.cam.ac.uk

Nature
|March 10, 2001
PubMed
概括

有限元素分析 (FEA) 显示,Allosaurus fragilis头骨具有高强度,但咬力较弱. 这表明这种大型食肉恐龙具有独特的食行为.

科学领域:

  • 古生物学的古生物学
  • 生物力学 生物力学
  • 工程 工程师 工程师 工程师

背景情况:

  • 有限元分析 (FEA) 是一种计算方法,用于预测结构如何应对外部力.
  • 在工程和人类生物力学中,FEA被广泛应用,但在动物生物力学设计中应用较少.
  • 精确的FEA3D模型可以通过计算机断层扫描 (CT) 等非侵入性成像技术来生成.

研究的目的:

  • 为了将FEA应用于Allosaurus fragilis的头骨上,这是一个大型食肉类热足类恐龙.
  • 为了创建迄今为止最详细的灭绝生物头骨的FEA模型.
  • 量化测试关于头骨形状和功能的假设.

主要方法:

  • 通过使用CT扫描数据,生成了Allosaurus fragilis头骨的几何完整和复杂的3D有限元素模型.
  • 在各种负载条件下应用FEA来模拟头骨的压力和应变.
  • 分析了头骨的机械特性,包括头骨的强度和咬伤力.

主要成果:

  • 龙的头骨表现出异常高的头骨强度.
  • 发现肌肉驱动的咬伤力相对较弱.
  • 头骨架构的特点是"轻"和"开放".

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Assessing Species-specific Contributions To Craniofacial Development Using Quail-duck Chimeras
09:38

Assessing Species-specific Contributions To Craniofacial Development Using Quail-duck Chimeras

Published on: May 31, 2014

Creating Avian Forebrain Chimeras to Assess Facial Development
04:10

Creating Avian Forebrain Chimeras to Assess Facial Development

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相关实验视频

Last Updated: May 12, 2026

Assessing Signaling Properties of Ectodermal Epithelia During Craniofacial Development
09:25

Assessing Signaling Properties of Ectodermal Epithelia During Craniofacial Development

Published on: March 24, 2011

Assessing Species-specific Contributions To Craniofacial Development Using Quail-duck Chimeras
09:38

Assessing Species-specific Contributions To Craniofacial Development Using Quail-duck Chimeras

Published on: May 31, 2014

Creating Avian Forebrain Chimeras to Assess Facial Development
04:10

Creating Avian Forebrain Chimeras to Assess Facial Development

Published on: February 18, 2021

结论:

  • 高强度,弱咬力和开放的骨结构的结合表明Allosaurus fragilis的特殊食行为.
  • FEA提供了一种强大的,以前无法使用的方法,用于定量分析化石结构的机械行为.
  • 这项研究强调了FEA在古生物学中的潜力,以了解灭绝的动物功能.