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Application of neurobehavioral toxicology methods to the military deployment toxicology assessment program.

机译:神经表达毒理学方法在军事部署毒理学评估计划中的应用。

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The military Tri-Service (Army, Navy & Marines, Air Force) Deployment Toxicology Assessment Program (DTAP) represents a 30-year (1996-2026) planning effort to implement comprehensive systems for the protection of internationally deployed troops against toxicant exposures. A major objective of DTAP is the implementation of a global surveillance system to identify chemicals with the potential to reduce human performance capacity. Implementation requires prior development of complex human risk assessment models, known collectively as the Neurobehavioral Toxicity Evaluation Instrument (NTEI), based on mathematical interpolation of results from tissue-based and in vivo animal studies validated by human performance assessment research. The Neurobehavioral Toxicity Assessment Group (NTAG) at the Naval Health Research Center Detachment-Toxicology (NHRC-TD), Dayton, OH, and associated academic institutions are developing and cross-validating cellular-level (NTAS), laboratory small animal (NTAB), nonhuman primate (GASP), and human-based (GASH) toxicity assessment batteries. These batteries will be utilized to develop and evaluate mathematical predictors of human neurobehavioral toxicity, as a function of laboratory performance deficits predicted by quantitative structural analysis relationship (QSAR-like) properties of potential toxicants identified by international surveillance systems. Finally, physiologically-based pharmacokinetic (PBPK) and pharmacodynamic (PBPD) modeling of NTAS, NTAB, GASP, GASH data will support multi-organizational development and validation of the NTEI. The validated NTEI tool will represent a complex database management system, integrating global satellite surveillance input to provide real-time decision-making support for deployed military personnel.
机译:军事三级服务(陆军,海军和海军陆战队,空军)部署毒理学评估计划(DTAP)代表了30年(1996-2026)规划努力,为保护国际部署的毒物暴露实施综合制度。 DTAP的一个主要目标是实施全球监测系统,以识别化学品,以降低人力绩效能力。实施需要先前发展复杂的人类风险评估模型,共同称为神经兽性毒性评估仪(NTEI),基于由人类绩效评估研究验证的基于组织为基础和体内动物研究的数学插值。海军医疗研究中心脱离毒理学(NHRC-TD),代顿,哦和相关学术机构的神经表达毒性评估组(NTAG)正在开发和交叉验证细胞级(NTAS),实验室小动物(NTAB) ,非人类灵长类动物(喘气)和基于人的(GAHT)毒性评估电池。这些电池将用于开发和评估人类神经麻烦毒性的数学预测因子,作为通过国际监测系统确定的潜在毒物的定量结构分析关系(QSAR样)性质预测的实验室性能缺陷的函数。最后,基于生理学的药代动力学(PBPK)和药物动力学(PBPD)型NTA,NTAB,GASP,GASH数据的建模将支持NTEI的多组织开发和验证。经过验证的NTEI工具将代表一个复杂的数据库管理系统,整合全球卫星监控输入,为部署的军事人员提供实时决策支持。

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