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Human narcotic use emulator.

机译:人类麻醉剂使用模拟器。

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摘要

Last year the author extended his modular, open-systems, computerized human nervous system function emulator (HNSFE) by adding simulated hormone action. This year he extends the HNSFE with a related capability: emulation of the effects of therapeutic and non-therapeutic drug use. The opioid narcotic drug model was chosen because of its importance in medicine and because of its potential for misuse. For this research the author utilized a frequency-to-voltage converter (FVC) as an analog calculational element to simulate the effects of drug binding to neural cell membrane receptors. The resulting voltages are utilized in this human narcotic use emulator (HNUE) to represent the level of opioid drug activity at the cellular level which initiates high level somatic and behavioral responses in the HNSFE artificial intelligence system. The HNUE is compatible with the computerized postoperative pain / narcotic dosing model of Liu and Northrop. Some effects of long-term drug use (the development of tolerance, physical and psychological dependence, addiction and the withdrawal syndrome) are emulated.
机译:去年,作者通过添加模拟激素作用扩展了他的模块化,开放系统,计算机化的人类神经系统功能仿真器(HNSFE)。今年,他扩展了HNSFE的相关功能:模拟治疗性和非治疗性药物使用的效果。选择阿片类药物麻醉品模型是因为其在医学中的重要性以及滥用的可能性。对于这项研究,作者利用频率电压转换器(FVC)作为模拟计算元素来模拟药物与神经细胞膜受体结合的效果。在此人类麻醉剂使用模拟器(HNUE)中使用产生的电压来表示细胞水平上的阿片类药物活性水平,从而在HNSFE人工智能系统中引发高水平的躯体和行为反应。 HNUE与Liu和Northrop的计算机术后疼痛/麻醉给药模型兼容。模拟了长期吸毒的一些影响(耐受性的发展,身心依赖性,成瘾和戒断综合症)。

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