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Biomedical subjects

S A Ramirez

Publications and source records attributed to S A Ramirez.

4 recordsLinked to original sources

Cancellous bone Young's modulus variation within the vertebral body of a ligamentous lumbar spine--application of bone adaptive remodeling concepts.

Bone remodeling theory based on strain energy density (SED) as the feedback control variable was used in conjunction with the finite element method to analyze the shape of the vertebral bodies within the ligamentous motion segment. The remodeling theory was once again applied to the altered two motion segments model to predict the Young's modulus distribution of the cancellous bone within the vertebral bodies. A three-dimensional finite element model of the two motion segments ligamentous lumbar spine (L3-5) was developed. Bone remodeling response (external as well as internal) of the motion segments to a uniaxial compressive load of 424.7 N was studied. The external shape of the converged model matched the normal shape of a vertebral body. The internal remodeling resulted in regional cancellous bone Young's moduli (or bone density) distributions similar to those reported in the literature; posterocentral regions of the vertebrae were predicted to have greater values of the elastic modulus than that of the outer regions. The results of the present study suggest that vertebral body assumes an adequate/optimum structure in terms of both its shape and its elastic moduli distribution within the cancellous region in response to the applied load. Extensions of the present model and its clinically relevant applications are discussed.

Adaptation, Physiological↗

Detergent lysis for isolation of intact polysomes of Nivikoff hepatoma ascites cells.

An efficient, rapid procedure for the isolation of polysomes from Novikoff hepatoma ascites cells that avoids mechanical shear was developed, and Ivory was used as the detergent to lyse the cells. This method yields classes of large polysomes and 3- to 5-fold increased yields over that of routine homogenization procedures. Up to 70% of the polysome population is larger than tetramers. The polysomes and ribosomes are morphologically intact and contain undegraded ribosomal RNA and biologically active messenger RNA. This procedure also yields nuclei free of cytoplasmic contamination as a by-product of polysome isolation. These nuclei do not show evidence of protein degradation and are enzymatically active with respect to RNA polymerases I and II.

Animals↗