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This technique provided a suitable method for the graphical representation of the chain type distribution (CTD), which was not previously possible.
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To enable comparison between genotypes, the normalized wild type distribution value for each chain length was subtracted from the equivalent value for a particular mutant.
The present work is devoted to investigating the distribution of nonlinear effects in one-dimensional chain type structures with local nonlinearity in which only one or few components are of nonlinear property.
Fiber type distribution was determined by simultaneous immunostaining for myosin heavy chain (MHC) isoforms type I, IIa, and IIb of 10-μm cryosections.
Fibre type distribution, assessed by staining against the slow and fast myosin heavy chain, showed a marked reduction of myosin slow immunoreactivity, suggesting preferential hypotrophy of type I fibres.
Distribution of fibre type was determined by labeling sections with antibodies against myosin heavy chain type I (DSHB, Iowa City, Iowa), myosin heavy chain type IIA (DSHB) and myosin heavy chain type IIB (DSHB).
The myosin heavy chain (MyHC) fibre-type distribution in the adult masseter is sexually dimorphic and is influenced by hormones such as testosterone.
First, we consider a basic chain type network.
Thus, chain type indices also describe more local-type properties.
The signal transduced by ubiquitin chains will vary depending on which chain type is assembled.
Small, weldless chain types include knotted chain, stamped-link chain, bead chain, and jewelry chain; these find use in electric fixtures, key chains, jewelry, and other small articles.
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