Skeletal Model

A skeletal model in chemistry is a simplified representation of a molecule’s carbon framework and bonding pattern, used to communicate structure efficiently. In a skeletal formula, lines represent covalent bonds, unlabeled vertices and line ends usually represent carbon atoms, attached hydrogen atoms are omitted, and heteroatoms such as oxygen or nitrogen are written explicitly. This notation helps chemists analyze connectivity, stereochemistry, isomers, reaction pathways, and functional groups. It supports drawing and interpreting organic compounds, predicting how structural changes affect properties, and communicating molecular information in research and education.

Skeletal Model - Related Videos

Research

JoVE Journal - Biology
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Tissue Triage and Freezing for Models of Skeletal Muscle Disease

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Cited by 98 •

2014

The analysis of skeletal muscle tissues to determine structural, functional, and biochemical properties is greatly facilitated by appropriate preparation. This protocol describes appropriate methods to prepare skeletal muscle tissue for a broad range of phenotyping studies.

Research

JoVE Journal - Medicine

Tibial Nerve Transection - A Standardized Model for Denervation-induced Skeletal Muscle Atrophy in Mice

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Cited by 38 •

2013

The tibial nerve transection model is a well-tolerated, validated, and reproducible model of skeletal muscle atrophy. The model surgical protocol is described and demonstrated in C57Black6 mice.

Evaluation of Injury-induced Senescence and In Vivo Reprogramming in the Skeletal Muscle

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Cited by 14 •

2017

Here we present a detailed protocol to detect both senescent and pluripotent stem cells in the skeletal muscle upon injury while inducing in vivo reprogramming. This method is suitable for evaluating the role of cellular senescence during tissue regeneration and reprogramming in vivo.

Mitochondrial Isolation from Skeletal Muscle

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Cited by 48 •

2011

This protocol describes a procedure to study the respiration of mitochondria isolated from skeletal muscles. This method was adapted from Scorrano et al. (2007). The mitochondrial isolation procedure requires about 2 hours. The mitochondrial respiration can be completed in about 1 hour.

Research

JoVE Journal - Biology
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Adult and Embryonic Skeletal Muscle Microexplant Culture and Isolation of Skeletal Muscle Stem Cells

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Cited by 6 •

2010

The micro-dissected explants technique is a robust and reliable method for isolating proliferative skeletal muscle cells from juvenile, adult or embryonic muscles as a source of skeletal muscle stem cells. Uniquely, these cells have been clonally derived to produce skeletal muscle stem cell lines used for in vivo transplantation.

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