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M C Hubbard

Publications and source records attributed to M C Hubbard.

2 recordsLinked to original sources

A comparison of nonlinear regression and neural network models for ground-level ozone forecasting.

A hybrid nonlinear regression (NLR) model and a neural network (NN) model, each designed to forecast next-day maximum 1-hr average ground-level O3 concentrations in Louisville, KY, were compared for two O3 seasons--1998 and 1999. The model predictions were compared for the forecast mode, using forecasted meteorological data as input, and for the hindcast mode, using observed meteorological data as input. The two models performed nearly the same in the forecast mode. For the two seasons combined, the mean absolute forecast error was 12.5 ppb for the NLR model and 12.3 ppb for the NN model. The detection rate of 120 ppb threshold exceedances was 42% for each model in the forecast mode. In the hindcast mode, the NLR model performed marginally better than the NN model. The mean absolute hindcast error was 11.1 ppb for the NLR model and 12.9 ppb for the NN model. The hindcast detection rate was 92% for the NLR model and 75% for the NN model.

Forecasting↗

A simple method for freezing lymphocytes in microtest plates.

Freezing lymphocytes in microtest plates instead of vials for the purpose of screening sera for HLA or other cytotoxic antibodies offers the same technical advantages as freezing sera in microtest plates for tissue typing. Plate-loading errors and cell wastage are minimized, and time required for serum screening is greatly reduced. A method for freezing lymphocytes in large numbers of microtest plates for use in serum screening that is simple, reproducible, and inexpensive is described. Cryoprotected lymphocytes dispensed into microtest plates are placed on a metal table that is lowered onto a tray containing 1 cm of liquid nitrogen in a Styrofoam box. The amount of liquid nitrogen in the tray and the height of the metal table above the tray determine the freezing rate of the lymphocytes. Over 100 microtest plates can be frozen per cycle with total cooling uniformity. The materials required for this freezing device can be assembled for less than $400. Commercial freezing units typically cost over $4,000.

Blood Preservation↗