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Structural well-organized control

What molecular machinery controls these forms of synaptic plasticity One of the most studied brain regions is the CA1 region of the hippocampus the CA1 region is not only crucial for memory formation (profound amnesia in patient R. B with selective CA1 lesion), but also exhibits a well-organized laminar structure ideal for electrophysio-logical recording. [Pg.862]

Despite the tremendous success in the development of nanomaterials, the level of control of their structure and properties is still very limited. When AuNPs are used as building blocks, monovalent, divalent, or higher valency nanoparticles would be required when aiming at the controlled and well-organized construction of 3D nanonetworks from a simple linear topology. [Pg.138]

The most successful synthetic approach to structurally well defined lanthanide hydroxide complexes is the ligand-controlled hydrolysis approach [69-71]. The essence of this methodology is schematically shown in Figure 6.25. It makes use of the high propensity of lanthanide ions toward hydrolysis, but controlled and limited by certain supporting ligands. The scheme starts with a lanthanide complex whose coordination sphere constitutes both organic and aqua... [Pg.250]

It is beyond the scope of this book to go into further details of comparing structural organization in synthetic and biological macromolecules. We cannot resist noting however, that one may consider as the ultimate goal of polymer materials chemistry to synthesize exact and accurate structures of the appropriate monomers in well-defined systems to achieve required functions. Differences in properties and function between man-made polymer parts and biomaterials made up of natural biomacromolecules may well be related to differences in their primary structure and architectural control. Proteins and nucleic acids are precisely defined in their... [Pg.86]

We repeat these simple examples from earlier work since they form a major justification for the elaborations we report below, and if they are understood well, then much of what follows should be clear. The dynamics in the differential equations are in qualitative agreement with the dynamics in the synthetic genetic networks in E. coU. One important aspect of biology is to understand the ways in which the organization and structure of the control networks can be used to predict the dynamics. Thus, we would like to develop methods that could be used to predict the dynamic behaviors just demonstrated without integrating or carrying out the stability analysis of the differential equations. [Pg.157]

The raw analytical data are stored in the source file (cf. Figure 7.1). Elimination of unimportant data, filtering, transformations, or compression of data leads to a library file, which is archived. The library files of an analytical database consist of a header and a collection of data blocks. The header contains information about the file organization, as well as control parameters. Stored in the data block are different sets of data that contain information about the analytical data, such as spectra, and about chemical structures and additional remarks. [Pg.275]


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