1985
DOI: 10.1002/actp.1985.010360520
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Small angle x‐ray scattering. Von O. GLATTER und O. KRATKY. London: Academic Press Inc. Ltd. 1982. ISBN 0‐12‐286280‐5. X, 515 Seiten, geb. £ 43,60; US $ 81.00

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Cited by 56 publications

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“…We confirmed this prediction by analyzing the CTD structure in solution using Small Angle X-ray Scattering (SAXS). The Kratky plot derived from the scattering curve showed a plateau for high scattering vector q-values, typical of unfolded proteins, in contrast with the Gaussian curve observed in globular domains 33 (Supplementary Fig. 9).…”
Section: Resultsmentioning
confidence: 91%
Exaggerated anticipatory anxiety is common in social anxiety disorder (SAD). Neuroimaging studies have revealed altered neural activity in response to social stimuli in SAD, but fewer studies have examined neural activity during anticipation of feared social stimuli in SAD. The current study examined the time course and magnitude of activity in threat processing brain regions during speech anticipation in socially anxious individuals and healthy controls (HC). Method Participants (SAD n = 58; HC n = 16) underwent functional magnetic resonance imaging (fMRI) during which they completed a 90s control anticipation task and 90s speech anticipation task.
“…We confirmed this prediction by analyzing the CTD structure in solution using Small Angle X-ray Scattering (SAXS). The Kratky plot derived from the scattering curve showed a plateau for high scattering vector q-values, typical of unfolded proteins, in contrast with the Gaussian curve observed in globular domains 33 (Supplementary Fig. 9).…”
Section: Resultsmentioning
confidence: 91%
Exaggerated anticipatory anxiety is common in social anxiety disorder (SAD). Neuroimaging studies have revealed altered neural activity in response to social stimuli in SAD, but fewer studies have examined neural activity during anticipation of feared social stimuli in SAD. The current study examined the time course and magnitude of activity in threat processing brain regions during speech anticipation in socially anxious individuals and healthy controls (HC). Method Participants (SAD n = 58; HC n = 16) underwent functional magnetic resonance imaging (fMRI) during which they completed a 90s control anticipation task and 90s speech anticipation task.
“…In the present case, the scattering occurs due to density fluctuations arising from the primary spherical CFO NPs. The scattering profiles of all the samples have been analyzed based on the polydisperse spherical shell particle model under monodispersed approximation [ 36 , 37 ]. Figure 2 a–c shows the scattered intensity profiles and the fitted curves for all the samples.…”
Section: Resultsmentioning
confidence: 99%
Exaggerated anticipatory anxiety is common in social anxiety disorder (SAD). Neuroimaging studies have revealed altered neural activity in response to social stimuli in SAD, but fewer studies have examined neural activity during anticipation of feared social stimuli in SAD. The current study examined the time course and magnitude of activity in threat processing brain regions during speech anticipation in socially anxious individuals and healthy controls (HC). Method Participants (SAD n = 58; HC n = 16) underwent functional magnetic resonance imaging (fMRI) during which they completed a 90s control anticipation task and 90s speech anticipation task.
“…Based on SAXS theory, exponents of –1 and –2 are characteristic of rod‐ and disk‐like domains, respectively. [ 26 ] Figure 6b shows the 1D GISAXS profiles of the PTQ10:Y7, PTQ10:ID‐4Cl, PTQ10:m‐ITIC‐OR‐4Cl, and PTQ10:IT‐4Cl blend films. In the low‐ q region, the GISAXS profiles of these blend films exhibited power‐law scattering at the exponent of –2 or slightly lower, indicative of a disk‐like morphology for the acceptor domains being the dominant contributor to the GISAXS intensity.…”
Section: Resultsmentioning
confidence: 99%
Exaggerated anticipatory anxiety is common in social anxiety disorder (SAD). Neuroimaging studies have revealed altered neural activity in response to social stimuli in SAD, but fewer studies have examined neural activity during anticipation of feared social stimuli in SAD. The current study examined the time course and magnitude of activity in threat processing brain regions during speech anticipation in socially anxious individuals and healthy controls (HC). Method Participants (SAD n = 58; HC n = 16) underwent functional magnetic resonance imaging (fMRI) during which they completed a 90s control anticipation task and 90s speech anticipation task.