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C Conradi

Publications and source records attributed to C Conradi.

3 recordsLinked to original sources

Using chemical reaction network theory to discard a kinetic mechanism hypothesis.

Feinberg's chemical reaction network theory (CRNT) connects the structure of a biochemical reaction network to qualitative properties of the corresponding system of ordinary differential equations. No information about parameter values is needed. As such, it seems to be well suited for application in systems biology, where parameter uncertainty is predominant. However, its application in this area is rare. To demonstrate the potential benefits from its application, different reaction networks representing a single layer of the well-studied mitogen-activated protein kinase (MAPK) cascade are analysed. Recent results from Markevich et al. (2004) show that, unexpectedly, multilayered protein kinase cascades can exhibit multistationarity, even on a single cascade level. Using CRNT, we show that their assumption of a distributive mechanism for double phosphorylation and dephosphorylation is crucial for multistationarity on the single cascade level.

Algorithms↗

Lateral electrical surface stimulation in idiopathic scoliosis. Experience in two private practices.

One hundred twenty-six patients with idiopathic scoliosis were treated by lateral electrical surface stimulation. Of these, 39 patients satisfied a strict set of protocols and were evaluated as a group. In this subgroup, curves averaged 28 degrees (range, 20-38 degrees). Thirty-eight percent exhibited initial curves greater than 30 degrees. Thirty percent of patients had a Risser sign of 0. Follow-up was from 6 months to 6 years. Progression was greater than 5 degrees in 48% and greater than 10 degrees in 35%. The final curve was greater than 40 degrees in 30%. Twenty-eight required fusion. Compared with natural history studies, these results are acceptable, and the authors continue to offer lateral electrical surface stimulation as a method of nonoperative care for progressive idiopathic scoliosis.

Bone Development↗