Marshall A T
Scan Electron Microsc. 1982(Pt 1):243-60.
Preliminary experiments aimed at establishing the validity of applying phi (rho z) curves to the analysis of elements from carbon to calcium in frozen-hydrated bulk biological specimens are described. Computer generated phi (rho z) curves permit simultaneous absorption and atomic number corrections to be made for quantitative analysis. The results so far obtained, whilst not conclusive, indicate that the method is valid for frozen-hydrated samples. The method allows non-ideal standards of inorganic salts to be used for quantitative light element analysis. Simultaneous oxygen analysis at 15kV with a windowless detector is possible using ice as a standard. With further refinements in spectrum processing, carbon analysis may also be possible using pure carbon as a standard. phi (rho z) curves are used to predict that absorption of x-rays from elements P to Ca will be low and that topographic changes in the specimen surface will have little effect on analyses, particularly with detectors using high take-off angles. Line-scan analyses support this prediction and in addition show that analyses of carbon and oxygen are strongly influenced by topography. The depth resolution of analysis is also predicted by phi (rho z) curves. For elements Na to Ca resolution at 15kV is approximately 2.0 micron and 1.0 micron at 10kV. These predictions are supported by experiments on frozen-hydrated sections. phi (rho z) curve analysis indicates that Na x-rays will be strongly absorbed in a frozen-hydrated specimen. It is shown experimentally that with a windowless detector the practical limit of Na detection in a frozen-hydrated bulk sample is between 10 and 25mM per kg wet wt at 15kV.
本文描述了旨在确定将φ(ρz)曲线应用于冷冻水合生物样本中从碳到钙元素分析的有效性的初步实验。计算机生成的φ(ρz)曲线允许对定量分析进行同时吸收和原子序数校正。目前获得的结果虽然尚无定论,但表明该方法对冷冻水合样本是有效的。该方法允许使用无机盐的非理想标准进行定量轻元素分析。使用冰作为标准,在15kV下用无窗探测器进行同时氧分析是可能的。随着光谱处理的进一步改进,使用纯碳作为标准也可能进行碳分析。φ(ρz)曲线用于预测从元素P到Ca的X射线吸收将很低,并且样本表面的地形变化对分析影响很小,特别是对于使用高掠射角的探测器。线扫描分析支持这一预测,此外还表明碳和氧的分析受地形的强烈影响。分析的深度分辨率也由φ(ρz)曲线预测。对于元素Na到Ca,在15kV下的分辨率约为2.0微米,在10kV下为1.0微米。这些预测得到了冷冻水合切片实验的支持。φ(ρz)曲线分析表明,Na的X射线将在冷冻水合样本中被强烈吸收。实验表明,使用无窗探测器,在15kV下冷冻水合大量样本中Na检测的实际极限为每千克湿重10至25mM。