Report of the Committee on Histopathological Criteria Contributing to Staging of Hodgkin's Disease.
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Biomedical subjects
Publications and source records attributed to J J Butler.
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Commonly used analytical approaches for estimation of pumping-induced drawdown and stream depletion are based on a series of idealistic assumptions about the stream-aquifer system. A new solution has been developed for estimation of drawdown and stream depletion under conditions that are more representative of those in natural systems (finite width stream of shallow penetration adjoining an aquifer of limited lateral extent). This solution shows that the conventional assumption of a fully penetrating stream will lead to a significant overestimation of stream depletion (> 100%) in many practical applications. The degree of overestimation will depend on the value of the stream leakance parameter and the distance from the pumping well to the stream. Although leakance will increase with stream width, a very wide stream will not necessarily be well represented by a model of a fully penetrating stream. The impact of lateral boundaries depends upon the distance from the pumping well to the stream and the stream leakance parameter. In most cases, aquifer width must be on the order of hundreds of stream widths before the assumption of a laterally infinite aquifer is appropriate for stream-depletion calculations. An important assumption underlying this solution is that stream-channel penetration is negligible relative to aquifer thickness. However, an approximate extension to the case of nonnegligible penetration provides reasonable results for the range of relative penetrations found in most natural systems (up to 85%). Since this solution allows consideration of a much wider range of conditions than existing analytical approaches, it could prove to be a valuable new tool for water management design and water rights adjudication purposes.
In a small cleaved, follicular center cell (poorly differentiated) lymphoma the majority of the cells appeared vacuolated by light microscopy. This is an example of the recently described signet-ring cell lymphoma. Immunoperoxidase staining demonstrated that the cells contained IgG/k. Ultrastructural observations indicated that small vacuoles coalesce to form the large vacuoles, which contain microvesicles approximately 50 nm in diameter.