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Titlebook: Lens Epithelium and Posterior Capsular Opacification; Shizuya Saika,Liliana Werner,Frank J. Lovicu Book 2014 Springer Japan 2014 biomateri

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Shannon Stallings M.D.,Liliana Werner M.D., Ph.D.ing better execution times, while preserving design flexibility. It is based on a new load balancing technique which distributes the initial nested loop’s workload to a variable user-defined number of Processing Elements (PEs) for execution. The flexibility offered by the proposed architecture is ba
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unctional properties like timing, power consumption, and temperature need to be validated against given requirements on all abstraction levels. For timing and power consumption at RT- and gate-level several techniques are available, but there is still a lack of methods and tools for power estimation
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. As technology continues to scale, the variability in process parameters may cause significant deviations in device behaviour. The complexity of designing spiral inductors has lead to the development of multi-objective optimization based design methodologies yielding the generation of Pareto-optima
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The Lens Capsule: Synthesis, Remodeling, and MMPsf type IV collagen and laminin along with additional extracellular matrix (ECM) components such as entactin/nidogen, heparin sulfate proteoglycans (HSPG), and secreted protein acidic and rich in cysteine (SPARC), which act to stabilize the lens capsule structure. As the lens grows during development
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