gaussian signal Search Results


90
Verlag GmbH signal detection in non-gaussian noise
Signal Detection In Non Gaussian Noise, supplied by Verlag GmbH, 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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90
Bruker Corporation “strong” gaussian function
13C NMR signals of glucose isolated from D. melanogaster cultivated on a medium containing [U-13C6]glucose. The upper traces show segments of the spectrum calculated with a “strong” <t>Gaussian</t> function (lb, -2; gb, 0.4 in Bruker terminology). The signals are assigned to corresponding X groups (see Table 2).
“Strong” Gaussian Function, supplied by Bruker Corporation, 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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90
Abbott Laboratories circular sine–gaussian signals
13C NMR signals of glucose isolated from D. melanogaster cultivated on a medium containing [U-13C6]glucose. The upper traces show segments of the spectrum calculated with a “strong” <t>Gaussian</t> function (lb, -2; gb, 0.4 in Bruker terminology). The signals are assigned to corresponding X groups (see Table 2).
Circular Sine–Gaussian Signals, supplied by Abbott Laboratories, 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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Signal Recovery additive gaussian noise
13C NMR signals of glucose isolated from D. melanogaster cultivated on a medium containing [U-13C6]glucose. The upper traces show segments of the spectrum calculated with a “strong” <t>Gaussian</t> function (lb, -2; gb, 0.4 in Bruker terminology). The signals are assigned to corresponding X groups (see Table 2).
Additive Gaussian Noise, supplied by Signal Recovery, 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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90
Takeda on-line gaussian mixture modeling in the log-power domain for signal-to-noise ratio estimation and speech enhancement
13C NMR signals of glucose isolated from D. melanogaster cultivated on a medium containing [U-13C6]glucose. The upper traces show segments of the spectrum calculated with a “strong” <t>Gaussian</t> function (lb, -2; gb, 0.4 in Bruker terminology). The signals are assigned to corresponding X groups (see Table 2).
On Line Gaussian Mixture Modeling In The Log Power Domain For Signal To Noise Ratio Estimation And Speech Enhancement, supplied by Takeda, 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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Ziemer USA Inc selection of blanking and limiting levels for binary signaling in gaussian plus impulse noise
13C NMR signals of glucose isolated from D. melanogaster cultivated on a medium containing [U-13C6]glucose. The upper traces show segments of the spectrum calculated with a “strong” <t>Gaussian</t> function (lb, -2; gb, 0.4 in Bruker terminology). The signals are assigned to corresponding X groups (see Table 2).
Selection Of Blanking And Limiting Levels For Binary Signaling In Gaussian Plus Impulse Noise, supplied by Ziemer USA Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/selection of blanking and limiting levels for binary signaling in gaussian plus impulse noise/product/Ziemer USA Inc
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Image Search Results


13C NMR signals of glucose isolated from D. melanogaster cultivated on a medium containing [U-13C6]glucose. The upper traces show segments of the spectrum calculated with a “strong” Gaussian function (lb, -2; gb, 0.4 in Bruker terminology). The signals are assigned to corresponding X groups (see Table 2).

Journal:

Article Title: Isotopolog perturbation techniques for metabolic networks: Metabolic recycling of nutritional glucose in Drosophila melanogaster

doi: 10.1073/pnas.0400916101

Figure Lengend Snippet: 13C NMR signals of glucose isolated from D. melanogaster cultivated on a medium containing [U-13C6]glucose. The upper traces show segments of the spectrum calculated with a “strong” Gaussian function (lb, -2; gb, 0.4 in Bruker terminology). The signals are assigned to corresponding X groups (see Table 2).

Article Snippet: The upper traces show segments of the spectrum calculated with a “strong” Gaussian function (lb, -2; gb, 0.4 in Bruker terminology).

Techniques: Isolation

13C NMR signal of C-1β of glucose isolated from D. melanogaster cultivated on a medium containing [U-13C6]glucose. On the basis of 13C13C coupling constants summarized in Table 1, coupling patterns are indicated with the coupled atoms in italic letters. Next to the detected coupling patterns, the corresponding isotopomers are shown. Filled circles indicate 13C,and open circles indicate 12C. Undetermined positions (12Cor 13C) are indicated by X. Next to the structures, the corresponding X groups are given with 1 = 13C, 0 = 12C, and X = 13Cor 12C. (A) Spectrum calculated with a “mild” Gaussian function (lb, -1; gb, 0.1 in Bruker terminology). (B) Spectrum calculated with a “strong” Gaussian function (lb, -2; gb, 0.4; only satellite signals are shown).

Journal:

Article Title: Isotopolog perturbation techniques for metabolic networks: Metabolic recycling of nutritional glucose in Drosophila melanogaster

doi: 10.1073/pnas.0400916101

Figure Lengend Snippet: 13C NMR signal of C-1β of glucose isolated from D. melanogaster cultivated on a medium containing [U-13C6]glucose. On the basis of 13C13C coupling constants summarized in Table 1, coupling patterns are indicated with the coupled atoms in italic letters. Next to the detected coupling patterns, the corresponding isotopomers are shown. Filled circles indicate 13C,and open circles indicate 12C. Undetermined positions (12Cor 13C) are indicated by X. Next to the structures, the corresponding X groups are given with 1 = 13C, 0 = 12C, and X = 13Cor 12C. (A) Spectrum calculated with a “mild” Gaussian function (lb, -1; gb, 0.1 in Bruker terminology). (B) Spectrum calculated with a “strong” Gaussian function (lb, -2; gb, 0.4; only satellite signals are shown).

Article Snippet: The upper traces show segments of the spectrum calculated with a “strong” Gaussian function (lb, -2; gb, 0.4 in Bruker terminology).

Techniques: Isolation