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Image Search Results
Journal: Slas Technology
Article Title: Development and validation of automated methods for COVID-19 PCR Master Mix preparation
doi: 10.1016/j.slast.2024.100195
Figure Lengend Snippet: DF-prepared MMIX compared with manually-prepared MMIX endpoint RFU data from PCR reactions using dilutions of synthetic RNA positive control material (Twist) at and around the limit of detection. (A) ROX RFU kernel distribution and RFU counts. Dotted line represents the 1600 RFU cutoff. Dashed lines represent the arithmetic mean of ROX RFU. (B) Kernel Distribution and count for FAM RFU values. Dashed lines represent the arithmetic mean of FAM RFU. (C) Kernel Distribution and count for n_FAM values. Solid lines represent the “Inconclusive” PLOD (Blue) and “Detected” (Black) n_FAM cutoff for clinical calling. Dashed lines represent the arithmetic mean of n_FAM (D) Scatterplot n_FAM vs. ROX RFU. Data are pooled from six 384-well arrays for both conditions. Solid lines represent the “Inconclusive” PLOD (Blue) and “Detected” (Black) n_FAM cutoff for clinical calling. Dotted line represents the 1600 ROX RFU cutoff. Data are pooled from six 384-well arrays for both conditions. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
Article Snippet: Fig. 10 STARlet-prepared MMIX compared with manually-prepared MMIX endpoint RFU data from PCR reactions using dilutions of
Techniques: Positive Control
Journal: Slas Technology
Article Title: Development and validation of automated methods for COVID-19 PCR Master Mix preparation
doi: 10.1016/j.slast.2024.100195
Figure Lengend Snippet: DF-prepared MMIX compared with manually-prepared MMIX after addition of 0.05% Tween-20. endpoint RFU data from PCR reactions using dilutions of synthetic RNA positive control material (Twist) at and around the limit of detection. (A) ROX RFU kernel distribution and RFU counts. Dotted line represents the 1600 ROX RFU cutoff. Dashed lines represent the arithmetic mean of ROX RFU. (B) Kernel Distribution and count for FAM RFU values. Dashed lines represent the arithmetic mean of FAM RFU. (C) Kernel Distribution and count for n_FAM values. Solid lines represent the “Inconclusive” PLOD (Blue) and “Detected” (Black) n_FAM cutoff for clinical calling. Dashed lines represent the arithmetic mean of n_FAM. (D) Scatterplot n_FAM vs. ROX RFU. Solid lines represent the “Inconclusive” PLOD (Blue) and “Detected” (Black) n_FAM cutoff for clinical calling. Dotted line represents the 1600 ROX RFU cutoff. Data are pooled from seven 384-well arrays for both conditions. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
Article Snippet: Fig. 10 STARlet-prepared MMIX compared with manually-prepared MMIX endpoint RFU data from PCR reactions using dilutions of
Techniques: Positive Control
Journal: Slas Technology
Article Title: Development and validation of automated methods for COVID-19 PCR Master Mix preparation
doi: 10.1016/j.slast.2024.100195
Figure Lengend Snippet: STARlet-prepared MMIX compared with manually-prepared MMIX endpoint RFU data from PCR reactions using dilutions of synthetic RNA positive control material (Twist) at and around the limit of detection. (A) ROX RFU kernel distribution and RFU counts. Dotted line represents the 1600 ROX RFU cutoff. Dashed lines represent the arithmetic mean of ROX RFU. (B) Kernel Distribution and count for FAM RFU values. Dashed lines represent the arithmetic mean of FAM RFU. (C) Kernel Distribution and count for n_FAM values. Solid lines represent the “Inconclusive” PLOD (Blue) and “Detected” (Black) n_FAM cutoff for clinical calling. Dashed lines represent the arithmetic mean of n_FAM. (D) Scatterplot n_FAM vs. ROX RFU. Solid lines represent the “Inconclusive” PLOD (Blue) and “Detected” (Black) n_FAM cutoff for clinical calling. Dotted line represents the 1600 RFU cutoff. Data are pooled from three 384-well arrays for both conditions. It is worth noting that in this experiment we observed a higher average ROX RFU for both the STARlet and manually-prepared MMIX. This was caused by a higher concentration of fluorophore in the manufacturer-supplied ROX reagent. However, the higher concentration of normalizing dye shifted the n_FAM values, thus the thresholds for just this pilot experiment were shifted accordingly to match the shift in the clusters. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
Article Snippet: Fig. 10 STARlet-prepared MMIX compared with manually-prepared MMIX endpoint RFU data from PCR reactions using dilutions of
Techniques: Positive Control, Concentration Assay
Journal: Slas Technology
Article Title: Development and validation of automated methods for COVID-19 PCR Master Mix preparation
doi: 10.1016/j.slast.2024.100195
Figure Lengend Snippet: STARlet-prepared MMIX compared with manually-prepared MMIX endpoint RFU data from PCR reactions using dilutions of synthetic RNA positive control material (Seracare AccuPlex) at and around the limit of detection. (A) ROX RFU kernel distribution and RFU counts. Dotted line represents the 1600 ROX RFU cutoff. Dashed lines represent the arithmetic mean of ROX RFU. (B) Kernel Distribution and count for FAM RFU values. Dashed lines represent the arithmetic mean of FAM RFU. (C) Kernel Distribution and count for n_FAM values. Solid lines represent the “Inconclusive” PLOD (Blue) and “Detected” (Black) n_FAM cutoff for clinical calling. Dashed lines represent the arithmetic mean of n_FAM (D) Scatterplot n_FAM vs. ROX RFU. Solid lines represent the “Inconclusive” PLOD (Blue) and “Detected” (Black) n_FAM cutoff for clinical calling. Dotted line represents the 1600 ROX RFU cutoff. Data are pooled from six 384-well arrays for both conditions. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)
Article Snippet: Fig. 10 STARlet-prepared MMIX compared with manually-prepared MMIX endpoint RFU data from PCR reactions using dilutions of
Techniques: Positive Control