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Seca uk biobank
Association between BMI category and risk of severe infectious disease, including non-fatal hospital-treated infections (A), fatal infections (B), and any infections (C) in the Finnish cohorts and UK <t>Biobank</t>
Uk Biobank, supplied by Seca, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/uk biobank/product/Seca
Average 86 stars, based on 1 article reviews
uk biobank - by Bioz Stars, 2026-06
86/100 stars

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1) Product Images from "Adult obesity and risk of severe infections: a multicohort study with global burden estimates"

Article Title: Adult obesity and risk of severe infections: a multicohort study with global burden estimates

Journal: Lancet (London, England)

doi: 10.1016/S0140-6736(25)02474-2

Association between BMI category and risk of severe infectious disease, including non-fatal hospital-treated infections (A), fatal infections (B), and any infections (C) in the Finnish cohorts and UK Biobank
Figure Legend Snippet: Association between BMI category and risk of severe infectious disease, including non-fatal hospital-treated infections (A), fatal infections (B), and any infections (C) in the Finnish cohorts and UK Biobank

Techniques Used:

Association between BMI category and risk of severe infectious disease after multivariable adjustments in the Finnish cohorts and UK Biobank
Figure Legend Snippet: Association between BMI category and risk of severe infectious disease after multivariable adjustments in the Finnish cohorts and UK Biobank

Techniques Used:

Association between BMI category and risk of severe infections in subgroups, including subgroups with lower infection risk (A) and those with higher infection risk (B) *Only Finnish cohorts. †Only UK Biobank. ‡Diabetes, coronary heart disease, stroke, asthma, chronic obstructive pulmonary disease, or cancer.
Figure Legend Snippet: Association between BMI category and risk of severe infections in subgroups, including subgroups with lower infection risk (A) and those with higher infection risk (B) *Only Finnish cohorts. †Only UK Biobank. ‡Diabetes, coronary heart disease, stroke, asthma, chronic obstructive pulmonary disease, or cancer.

Techniques Used: Infection



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Image Search Results


Association between BMI category and risk of severe infectious disease, including non-fatal hospital-treated infections (A), fatal infections (B), and any infections (C) in the Finnish cohorts and UK Biobank

Journal: Lancet (London, England)

Article Title: Adult obesity and risk of severe infections: a multicohort study with global burden estimates

doi: 10.1016/S0140-6736(25)02474-2

Figure Lengend Snippet: Association between BMI category and risk of severe infectious disease, including non-fatal hospital-treated infections (A), fatal infections (B), and any infections (C) in the Finnish cohorts and UK Biobank

Article Snippet: In UK Biobank, height was measured using a Seca 202 device, weight using the Tanita BC418MA body composition analyser (Tanita, Manchester, UK), and waist circumference with a horizontally positioned tape measure.

Techniques:

Association between BMI category and risk of severe infectious disease after multivariable adjustments in the Finnish cohorts and UK Biobank

Journal: Lancet (London, England)

Article Title: Adult obesity and risk of severe infections: a multicohort study with global burden estimates

doi: 10.1016/S0140-6736(25)02474-2

Figure Lengend Snippet: Association between BMI category and risk of severe infectious disease after multivariable adjustments in the Finnish cohorts and UK Biobank

Article Snippet: In UK Biobank, height was measured using a Seca 202 device, weight using the Tanita BC418MA body composition analyser (Tanita, Manchester, UK), and waist circumference with a horizontally positioned tape measure.

Techniques:

Association between BMI category and risk of severe infections in subgroups, including subgroups with lower infection risk (A) and those with higher infection risk (B) *Only Finnish cohorts. †Only UK Biobank. ‡Diabetes, coronary heart disease, stroke, asthma, chronic obstructive pulmonary disease, or cancer.

Journal: Lancet (London, England)

Article Title: Adult obesity and risk of severe infections: a multicohort study with global burden estimates

doi: 10.1016/S0140-6736(25)02474-2

Figure Lengend Snippet: Association between BMI category and risk of severe infections in subgroups, including subgroups with lower infection risk (A) and those with higher infection risk (B) *Only Finnish cohorts. †Only UK Biobank. ‡Diabetes, coronary heart disease, stroke, asthma, chronic obstructive pulmonary disease, or cancer.

Article Snippet: In UK Biobank, height was measured using a Seca 202 device, weight using the Tanita BC418MA body composition analyser (Tanita, Manchester, UK), and waist circumference with a horizontally positioned tape measure.

Techniques: Infection

Flowchart illustrating AI-ECG algorithm development and validation dataset. The six AI-ECG models used in this study s– four targeting functional abnormalities and two targeting structural abnormalities – were previously developed using ECG datasets from Seoul National University Bundang Hospital (SNUBH). These models were validated against CMR-derived values in the UK Biobank population. CMR = cardiac magnetic resonance imaging, ECG electrocardiography, QCG quantitative ECG, LVD left ventricular dysfunction, RVD right ventricular dysfunction, GLS global longitudinal strain, LVH left ventricular hypertrophy, LAE left atrial enlargement.

Journal: Scientific Reports

Article Title: Validation of AI-enhanced ECG image analysis for identifying extreme cardiac magnetic resonance metrics in a cross-ethnic UK biobank study

doi: 10.1038/s41598-026-41824-5

Figure Lengend Snippet: Flowchart illustrating AI-ECG algorithm development and validation dataset. The six AI-ECG models used in this study s– four targeting functional abnormalities and two targeting structural abnormalities – were previously developed using ECG datasets from Seoul National University Bundang Hospital (SNUBH). These models were validated against CMR-derived values in the UK Biobank population. CMR = cardiac magnetic resonance imaging, ECG electrocardiography, QCG quantitative ECG, LVD left ventricular dysfunction, RVD right ventricular dysfunction, GLS global longitudinal strain, LVH left ventricular hypertrophy, LAE left atrial enlargement.

Article Snippet: CMR imaging in the UK Biobank was conducted using 1.5-Tesla MAGNETOM Aera scanners (Siemens Healthcare, Syngo Platform VD13A), following a previously established protocol .

Techniques: Biomarker Discovery, Functional Assay, Derivative Assay, Magnetic Resonance Imaging

Journal: medRxiv

Article Title: Left atrial to ventricular volume ratio is a specific marker of atrial cardiopathy. Evidence from the UK Biobank and an ischemic stroke patient cohort

doi: 10.64898/2025.12.18.25342359

Figure Lengend Snippet:

Article Snippet: UK Biobank CMR imaging is performed using 1.5 T scanners (MAGNETOM Aera, Syngo Platform VD13A, Siemens Healthcare, Erlangen, Germany) according to a standardized protocol.

Techniques: Standard Deviation

(A) Association of Age, Sex and Activity with left atrial volume indexed to body surface area. (B) Association of Age, Sex and Activity with left atrial to ventricular volume ratio. Results from UK Biobank cohort used for ischemic stroke/TIA analysis. Blue lines show linear regression lines. For LAVi and LA:LV ratio outliers more than three standard deviations from the mean are not shown. Boxplots show mean (point) and median (line) values with interquartile range. Values outside two standard deviations from the mean are not shown. LAVi: left atrial volume indexed to body surface area, LA to LV ratio: left atrial to ventricular volume ratio, L: low, M: medium, H: high.

Journal: medRxiv

Article Title: Left atrial to ventricular volume ratio is a specific marker of atrial cardiopathy. Evidence from the UK Biobank and an ischemic stroke patient cohort

doi: 10.64898/2025.12.18.25342359

Figure Lengend Snippet: (A) Association of Age, Sex and Activity with left atrial volume indexed to body surface area. (B) Association of Age, Sex and Activity with left atrial to ventricular volume ratio. Results from UK Biobank cohort used for ischemic stroke/TIA analysis. Blue lines show linear regression lines. For LAVi and LA:LV ratio outliers more than three standard deviations from the mean are not shown. Boxplots show mean (point) and median (line) values with interquartile range. Values outside two standard deviations from the mean are not shown. LAVi: left atrial volume indexed to body surface area, LA to LV ratio: left atrial to ventricular volume ratio, L: low, M: medium, H: high.

Article Snippet: UK Biobank CMR imaging is performed using 1.5 T scanners (MAGNETOM Aera, Syngo Platform VD13A, Siemens Healthcare, Erlangen, Germany) according to a standardized protocol.

Techniques: Activity Assay

(A) Associations of LAVi with cortical volumes according to Desikan-Killiany parcellation. (B) Associations of LA:LV ratio with cortical volumes according to Desikan-Killiany parcellation. Colors show significant regression coefficients for association of standardized cortical volume with standardized LAVi/LA:LV ratio, adjusted for age, sex and intracranial volume. Red regions show atrophy associated with larger LAVi/LA:LV ratio. Parcellation of the temporal pole (grey) was not performed in the UK Biobank data due to unreliable results. Analysis included 28’954 participants with available heart and brain imaging. Plot created using python package pySimpleBrainPlot. LAVi: left atrial volume indexed to body surface area, LA to LV ratio: left atrial to ventricular volume ratio.

Journal: medRxiv

Article Title: Left atrial to ventricular volume ratio is a specific marker of atrial cardiopathy. Evidence from the UK Biobank and an ischemic stroke patient cohort

doi: 10.64898/2025.12.18.25342359

Figure Lengend Snippet: (A) Associations of LAVi with cortical volumes according to Desikan-Killiany parcellation. (B) Associations of LA:LV ratio with cortical volumes according to Desikan-Killiany parcellation. Colors show significant regression coefficients for association of standardized cortical volume with standardized LAVi/LA:LV ratio, adjusted for age, sex and intracranial volume. Red regions show atrophy associated with larger LAVi/LA:LV ratio. Parcellation of the temporal pole (grey) was not performed in the UK Biobank data due to unreliable results. Analysis included 28’954 participants with available heart and brain imaging. Plot created using python package pySimpleBrainPlot. LAVi: left atrial volume indexed to body surface area, LA to LV ratio: left atrial to ventricular volume ratio.

Article Snippet: UK Biobank CMR imaging is performed using 1.5 T scanners (MAGNETOM Aera, Syngo Platform VD13A, Siemens Healthcare, Erlangen, Germany) according to a standardized protocol.

Techniques: Imaging