histograms fit with gaussian curves Search Results


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OriginLab corp nonlinear curve fit gaussian function
Nonlinear Curve Fit Gaussian Function, supplied by OriginLab corp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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GraphPad Software Inc histogram gaussian curves
Single-molecule mechanics on titin’s N2B element. (A) Schematic of an N2B molecule tethered between a microscope slide and cantilever tip. (B) Example of a force-extension curve of the N2B molecule. Three force peaks are present due to Ig domain unfolding, and a fourth peak represents the molecule breaking loose from the cantilever. Force curves were fit by the WLC equation; contour length (Lc) values are shown in the inset. The Lc of the first peak is due to the N2B-Us, and the subsequent Lc values indicate gains due to Ig domain unfolding. (C) Lc histogram of N2B-US. (D) Persistence length (Lp) histogram of N2B-Us. (E) Unfolding force (Uf) of Ig domains. Results were fit by <t>Gaussian</t> curves; peaks are shown on the graph. To see this figure in color, go online.
Histogram Gaussian Curves, supplied by GraphPad Software Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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OriginLab corp gaussian curve fit for pmad and dl gradients
Single-molecule mechanics on titin’s N2B element. (A) Schematic of an N2B molecule tethered between a microscope slide and cantilever tip. (B) Example of a force-extension curve of the N2B molecule. Three force peaks are present due to Ig domain unfolding, and a fourth peak represents the molecule breaking loose from the cantilever. Force curves were fit by the WLC equation; contour length (Lc) values are shown in the inset. The Lc of the first peak is due to the N2B-Us, and the subsequent Lc values indicate gains due to Ig domain unfolding. (C) Lc histogram of N2B-US. (D) Persistence length (Lp) histogram of N2B-Us. (E) Unfolding force (Uf) of Ig domains. Results were fit by <t>Gaussian</t> curves; peaks are shown on the graph. To see this figure in color, go online.
Gaussian Curve Fit For Pmad And Dl Gradients, supplied by OriginLab corp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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SYSTAT histogram fitted with a gaussian peak curve
Single-molecule mechanics on titin’s N2B element. (A) Schematic of an N2B molecule tethered between a microscope slide and cantilever tip. (B) Example of a force-extension curve of the N2B molecule. Three force peaks are present due to Ig domain unfolding, and a fourth peak represents the molecule breaking loose from the cantilever. Force curves were fit by the WLC equation; contour length (Lc) values are shown in the inset. The Lc of the first peak is due to the N2B-Us, and the subsequent Lc values indicate gains due to Ig domain unfolding. (C) Lc histogram of N2B-US. (D) Persistence length (Lp) histogram of N2B-Us. (E) Unfolding force (Uf) of Ig domains. Results were fit by <t>Gaussian</t> curves; peaks are shown on the graph. To see this figure in color, go online.
Histogram Fitted With A Gaussian Peak Curve, supplied by SYSTAT, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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OriginLab corp gaussian curve fit function of origin software
Single-molecule mechanics on titin’s N2B element. (A) Schematic of an N2B molecule tethered between a microscope slide and cantilever tip. (B) Example of a force-extension curve of the N2B molecule. Three force peaks are present due to Ig domain unfolding, and a fourth peak represents the molecule breaking loose from the cantilever. Force curves were fit by the WLC equation; contour length (Lc) values are shown in the inset. The Lc of the first peak is due to the N2B-Us, and the subsequent Lc values indicate gains due to Ig domain unfolding. (C) Lc histogram of N2B-US. (D) Persistence length (Lp) histogram of N2B-Us. (E) Unfolding force (Uf) of Ig domains. Results were fit by <t>Gaussian</t> curves; peaks are shown on the graph. To see this figure in color, go online.
Gaussian Curve Fit Function Of Origin Software, supplied by OriginLab corp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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GraphPad Software Inc gaussian least-square fit curves
Single-molecule mechanics on titin’s N2B element. (A) Schematic of an N2B molecule tethered between a microscope slide and cantilever tip. (B) Example of a force-extension curve of the N2B molecule. Three force peaks are present due to Ig domain unfolding, and a fourth peak represents the molecule breaking loose from the cantilever. Force curves were fit by the WLC equation; contour length (Lc) values are shown in the inset. The Lc of the first peak is due to the N2B-Us, and the subsequent Lc values indicate gains due to Ig domain unfolding. (C) Lc histogram of N2B-US. (D) Persistence length (Lp) histogram of N2B-Us. (E) Unfolding force (Uf) of Ig domains. Results were fit by <t>Gaussian</t> curves; peaks are shown on the graph. To see this figure in color, go online.
Gaussian Least Square Fit Curves, supplied by GraphPad Software Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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GraphPad Software Inc gaussian curve fit overlay
Single-molecule mechanics on titin’s N2B element. (A) Schematic of an N2B molecule tethered between a microscope slide and cantilever tip. (B) Example of a force-extension curve of the N2B molecule. Three force peaks are present due to Ig domain unfolding, and a fourth peak represents the molecule breaking loose from the cantilever. Force curves were fit by the WLC equation; contour length (Lc) values are shown in the inset. The Lc of the first peak is due to the N2B-Us, and the subsequent Lc values indicate gains due to Ig domain unfolding. (C) Lc histogram of N2B-US. (D) Persistence length (Lp) histogram of N2B-Us. (E) Unfolding force (Uf) of Ig domains. Results were fit by <t>Gaussian</t> curves; peaks are shown on the graph. To see this figure in color, go online.
Gaussian Curve Fit Overlay, supplied by GraphPad Software Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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wavemetrics inc uv-vis spectra fit with gaussian curves
Single-molecule mechanics on titin’s N2B element. (A) Schematic of an N2B molecule tethered between a microscope slide and cantilever tip. (B) Example of a force-extension curve of the N2B molecule. Three force peaks are present due to Ig domain unfolding, and a fourth peak represents the molecule breaking loose from the cantilever. Force curves were fit by the WLC equation; contour length (Lc) values are shown in the inset. The Lc of the first peak is due to the N2B-Us, and the subsequent Lc values indicate gains due to Ig domain unfolding. (C) Lc histogram of N2B-US. (D) Persistence length (Lp) histogram of N2B-Us. (E) Unfolding force (Uf) of Ig domains. Results were fit by <t>Gaussian</t> curves; peaks are shown on the graph. To see this figure in color, go online.
Uv Vis Spectra Fit With Gaussian Curves, supplied by wavemetrics inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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OriginLab corp spectra fit to gaussian curves
Single-molecule mechanics on titin’s N2B element. (A) Schematic of an N2B molecule tethered between a microscope slide and cantilever tip. (B) Example of a force-extension curve of the N2B molecule. Three force peaks are present due to Ig domain unfolding, and a fourth peak represents the molecule breaking loose from the cantilever. Force curves were fit by the WLC equation; contour length (Lc) values are shown in the inset. The Lc of the first peak is due to the N2B-Us, and the subsequent Lc values indicate gains due to Ig domain unfolding. (C) Lc histogram of N2B-US. (D) Persistence length (Lp) histogram of N2B-Us. (E) Unfolding force (Uf) of Ig domains. Results were fit by <t>Gaussian</t> curves; peaks are shown on the graph. To see this figure in color, go online.
Spectra Fit To Gaussian Curves, supplied by OriginLab corp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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OriginLab corp non-linear curve fit function gaussian model
Single-molecule mechanics on titin’s N2B element. (A) Schematic of an N2B molecule tethered between a microscope slide and cantilever tip. (B) Example of a force-extension curve of the N2B molecule. Three force peaks are present due to Ig domain unfolding, and a fourth peak represents the molecule breaking loose from the cantilever. Force curves were fit by the WLC equation; contour length (Lc) values are shown in the inset. The Lc of the first peak is due to the N2B-Us, and the subsequent Lc values indicate gains due to Ig domain unfolding. (C) Lc histogram of N2B-US. (D) Persistence length (Lp) histogram of N2B-Us. (E) Unfolding force (Uf) of Ig domains. Results were fit by <t>Gaussian</t> curves; peaks are shown on the graph. To see this figure in color, go online.
Non Linear Curve Fit Function Gaussian Model, supplied by OriginLab corp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Single-molecule mechanics on titin’s N2B element. (A) Schematic of an N2B molecule tethered between a microscope slide and cantilever tip. (B) Example of a force-extension curve of the N2B molecule. Three force peaks are present due to Ig domain unfolding, and a fourth peak represents the molecule breaking loose from the cantilever. Force curves were fit by the WLC equation; contour length (Lc) values are shown in the inset. The Lc of the first peak is due to the N2B-Us, and the subsequent Lc values indicate gains due to Ig domain unfolding. (C) Lc histogram of N2B-US. (D) Persistence length (Lp) histogram of N2B-Us. (E) Unfolding force (Uf) of Ig domains. Results were fit by Gaussian curves; peaks are shown on the graph. To see this figure in color, go online.

Journal: Biophysical Journal

Article Title: Phosphorylating Titin’s Cardiac N2B Element by ERK2 or CaMKII δ Lowers the Single Molecule and Cardiac Muscle Force

doi: 10.1016/j.bpj.2015.11.002

Figure Lengend Snippet: Single-molecule mechanics on titin’s N2B element. (A) Schematic of an N2B molecule tethered between a microscope slide and cantilever tip. (B) Example of a force-extension curve of the N2B molecule. Three force peaks are present due to Ig domain unfolding, and a fourth peak represents the molecule breaking loose from the cantilever. Force curves were fit by the WLC equation; contour length (Lc) values are shown in the inset. The Lc of the first peak is due to the N2B-Us, and the subsequent Lc values indicate gains due to Ig domain unfolding. (C) Lc histogram of N2B-US. (D) Persistence length (Lp) histogram of N2B-Us. (E) Unfolding force (Uf) of Ig domains. Results were fit by Gaussian curves; peaks are shown on the graph. To see this figure in color, go online.

Article Snippet: Values were also plotted in histograms that were fit with Gaussian curves (GraphPad Prism).

Techniques: Microscopy

(A and B) Effect of CaMKIIδ (A) and ERK2 (B) on the Lp of N2B-Us. After phosphorylation, the Lp distribution is shifted to the right from that of unphosphorylated molecules (indicated by broken curves; same data as in Fig. 1). The values shown are peak positions of Gaussian fits.

Journal: Biophysical Journal

Article Title: Phosphorylating Titin’s Cardiac N2B Element by ERK2 or CaMKII δ Lowers the Single Molecule and Cardiac Muscle Force

doi: 10.1016/j.bpj.2015.11.002

Figure Lengend Snippet: (A and B) Effect of CaMKIIδ (A) and ERK2 (B) on the Lp of N2B-Us. After phosphorylation, the Lp distribution is shifted to the right from that of unphosphorylated molecules (indicated by broken curves; same data as in Fig. 1). The values shown are peak positions of Gaussian fits.

Article Snippet: Values were also plotted in histograms that were fit with Gaussian curves (GraphPad Prism).

Techniques: Phospho-proteomics

Effect of ERK2 on N2B-Us measured under oxidizing conditions. (A) Left: N2B-Us with its six cysteines (red font) and the three ERK2 phospho-sites (blue font). Right: all possible cross-link combinations between the six cysteines, showing the number of residues in between the cross-links and the effect of cross-linking on the Lc of the N2B-Us (shown in parentheses and calculated assuming that each reduces the Lc by 0.35 nm). (B–D) Measurements obtained under oxidizing conditions (no DTT). (B) Lc of N2B-Us. The Lc distribution can be fit with a double Gaussian with peaks at 107 and 195 nm. Broken curve: measurements under reducing conditions (from Fig. 1B). The difference in peak positions (88 nm) can be explained by cross-linking between either the first and third or the second and fourth cysteines (indicated in red in (A), right). (C and D) ERK2 has no effect on the Lp. To see this figure in color, go online.

Journal: Biophysical Journal

Article Title: Phosphorylating Titin’s Cardiac N2B Element by ERK2 or CaMKII δ Lowers the Single Molecule and Cardiac Muscle Force

doi: 10.1016/j.bpj.2015.11.002

Figure Lengend Snippet: Effect of ERK2 on N2B-Us measured under oxidizing conditions. (A) Left: N2B-Us with its six cysteines (red font) and the three ERK2 phospho-sites (blue font). Right: all possible cross-link combinations between the six cysteines, showing the number of residues in between the cross-links and the effect of cross-linking on the Lc of the N2B-Us (shown in parentheses and calculated assuming that each reduces the Lc by 0.35 nm). (B–D) Measurements obtained under oxidizing conditions (no DTT). (B) Lc of N2B-Us. The Lc distribution can be fit with a double Gaussian with peaks at 107 and 195 nm. Broken curve: measurements under reducing conditions (from Fig. 1B). The difference in peak positions (88 nm) can be explained by cross-linking between either the first and third or the second and fourth cysteines (indicated in red in (A), right). (C and D) ERK2 has no effect on the Lp. To see this figure in color, go online.

Article Snippet: Values were also plotted in histograms that were fit with Gaussian curves (GraphPad Prism).

Techniques: