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K Tadaki

Publications and source records attributed to K Tadaki.

4 recordsLinked to original sources

Decoding "drug imprints" at the millennium: a proposal to increase accuracy and reduce costs.

The State of Washington mandated the use of imprints on all prescription drugs in 1980 and for "OTC's" in 1991. The FDA implemented federal requirements in 1995. Unfortunately, the FDA permitted the continued use of symbols, logotypes, and trademarks as code components, limiting the use of automated recognition systems. Analyses of several week-long samples of phone inquiries documented imprinting calls, the staff's ability to respond with an identification, the information sources used, and apparent reasons for any failure. In the first week we received 666 decoding requests, which when projected for the year amounted to > 25,000 calls. A review of 1999 data exceeded that number. Staff was able to reach drug identification in 93.8% of inquiries. Uninterpretable symbols and absence of code listings contributed to the 36 failures. Projecting over the US suggested as many as 1.25 million calls costing poison centers $25 million/y. A touch-tone telephone or website response system could permit automated responses. Neither solution is feasible without the elimination of symbols or logotypes when using an exclusively alpha-numeric code.

Drug Labeling↗

A logic-based dynamical theory for a genesis of biological threshold.

To help the study of constructing a formal neuron by computer, we propose a logic-based dynamical theory for a genesis of the biological threshold which specific proteins, such as ion channel proteins, or their networks can produce. By viewing such a protein or a protein network as a computational machine, the statements concerning the states of reaction chains which eventually activate or inactivate the protein are treated. By introducing dynamical systems, associated with an inference process based on statements with continuous truth values, we investigated invariant characters of such dynamics and we obtained a sigmoidal function for an invariant distribution function of the truth values. The domain of solutions of the functional equations regarded as representing the self-description of proteins or protein networks as a machine indicates the emergence of a threshold, namely the realization of dyadic value, 0 or 1, based on the continuous truth values. The results obtained may highlight the mechanism of neuronal threshold in a framework which differs from population dynamics. The derived dynamical systems may also provide a simple model of 'demon' rectifying the thermal fluctuations to drive unidirectional movements.

Animals↗