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Yellowstone Region Drainage History as Determined from the 1955 Ashton, Idaho, Montana, and Wyoming 1:250,000 Scale Topographic Map, USA
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作者 Eric Clausen 《Open Journal of Geology》 CAS 2024年第3期317-338,共22页
The United States Geological Survey (USGS) 1955 (revised in 1972) Ashton topographic map (Ashton map) with a 1:250,000 scale and a 200-foot (about 60-meter) contour interval covers almost all of Yellowstone National P... The United States Geological Survey (USGS) 1955 (revised in 1972) Ashton topographic map (Ashton map) with a 1:250,000 scale and a 200-foot (about 60-meter) contour interval covers almost all of Yellowstone National Park and some adjacent regions to the south and west. In spite of numerous publications discussing Yellowstone region geologic history the drainage system and erosional landform evidence on the Ashton map appears to have been ignored. Drainage divides identifiable on the Ashton map separate the north-oriented Yellowstone, Gallatin, Madison, and Jefferson River drainage basins (which are located to the north and east of the continental divide with their water flowing to the Missouri River and ultimately the Gulf of Mexico) from the south-oriented Snake River drainage basin (with its water eventually reaching the Pacific Ocean). The Ashton map shows water-eroded passes and through valleys which link diverging and converging valleys which drain in opposite directions from the continental divide. These diverging and converging valleys suggest large volumes of south-oriented water once flowed across the Yellowstone region continental divide and some other Ashton map drainage divides. The accepted geology and glacial history paradigm (accepted paradigm) cannot satisfactorily explain the Ashton map drainage system and erosional landform evidence, which may be why geomorphologists have never addressed the map evidence. A new and fundamentally different geology and glacial history paradigm requiring the Yellowstone region to be located on the rim of a continental ice sheet created and occupied deep “hole” (which was uplifted as immense meltwater floods flowed across it) explains Ashton map drainage system and erosional landform evidence, but raises questions about previously published Yellowstone region geologic histories. 展开更多
关键词 Continental Divide Firehole River gallatin River GEOMORPHOLOGY Madison River Snake River
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骨形成蛋白(BMP)复合材料的实验研究
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作者 秦书俭 赵宝东 +2 位作者 周桂芬 赵玉莲 汪翠华 《辽宁医学院学报》 CAS 1992年第1期8-11,共4页
作者利用异种、同种、半脱钙骨基质明胶和羟基磷灰石四种材料植入20只大鼠肌肉内,通过光学显微镜观察比较了各种材料的吸收速度、抗原性和成骨情况。结果表明,异种骨基质明胶在植骨早期有轻度的排斥反应。羟基磷灰石不易被吸收,无诱导... 作者利用异种、同种、半脱钙骨基质明胶和羟基磷灰石四种材料植入20只大鼠肌肉内,通过光学显微镜观察比较了各种材料的吸收速度、抗原性和成骨情况。结果表明,异种骨基质明胶在植骨早期有轻度的排斥反应。羟基磷灰石不易被吸收,无诱导成骨作用。同种骨基质明胶适合作为较小骨缺损的骨形成蛋白复合材料,修复较大骨缺损,半脱钙骨基质明胶是较佳的复合材料。 展开更多
关键词 复合材料 骨基质明胶
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