Temporal Bone Isolation

Temporal bone isolation is a dissection and specimen-preparation technique that separates the temporal bone from surrounding cranial tissues for focused anatomical study and engineering analysis. The process involves exposing the bone, removing attached soft tissue, and carefully cutting along defined cranial boundaries while preserving key structures such as the external auditory canal, middle ear, inner ear, and facial nerve pathways. In bioengineering, isolated temporal bones provide physical models for studying skull and ear biomechanics, validating imaging-based reconstructions, designing hearing implants, and developing surgical training systems. These preparations connect detailed human anatomy with device development and clinically relevant experimental testing.

Temporal Bone Isolation - Related Videos

Research

JoVE Journal - Immunology and Infection
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Murine Hind Limb Long Bone Dissection and Bone Marrow Isolation

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Cited by 293 •

2016

Here we present a protocol for the dissection of hind limb long bones (femurs and tibiae) from the laboratory mouse. We further describe a rapid technique for bone marrow isolation from these bones that utilizes centrifugation for removal of bone marrow from the bone marrow space.

Temporal Ordering of Dynamic Expression Data from Detailed Spatial Expression Maps

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2017

The segmentation clock drives oscillatory gene expression across the pre-somitic mesoderm (PSM). Dynamic Notch activity is key to this process. We use imaging and computational analyses to extract temporal dynamics from spatial expression data to demonstrate that Delta ligand and Notch receptor expression oscillate in the vertebrate PSM.

Research

JoVE Journal - Medicine

Extracting the Cochlea from a Human Temporal Bone: A Cadaveric Protocol

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2023

This article presents a reliable method for extracting the human cochlea from the cadaver temporal bone by drill-out while following distinct anatomical landmarks.

Isolation and Intravenous Injection of Murine Bone Marrow Derived Monocytes

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Cited by 31 •

2014

Here we present a protocol that generates large amounts of murine monocytes from heterogeneous bone marrow for translational applications. In comparison to others, this new method helps reduce the number of sacrificed animals and lowers costs by avoiding expensive methods such as high gradient magnetic cell separation (MACS).

Isolating Mesangiogenic Progenitor Cells (MPCs) from Human Bone Marrow

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Cited by 17 •

2016

Here we describe an optimized, highly reproducible protocol to isolate Mesodermal Progenitor Cells (MPCs) from human bone marrow (hBM). MPCs were characterized by flow cytometry and nestin expression. They showed the ability to give rise to exponentially growing MSC-like cell cultures while retaining their angiogenic potential.

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