7 research outputs found
Analysis of Mandibular Fractures Caused by Work Related Accidents. Retrospective Descriptive Study
Indexación: Web of Science; Scielo.El objetivo de este estudio fue evaluar la tendencia de los pacientes con fracturas mandibulares asociados a accidentes laborales. Se realizó un estudio descriptivo retrospectivo en todos los casos de fracturas mandibulares que asistieron al servicio de cirugía maxilofacial del Hospital Clínico Mutual de Seguridad C.Ch.C., Santiago de Chile en un periodo de 4 años (enero 2009 - diciembre 2012). Todas las fracturas mandibulares fueron consignadas. La información fue recopilada a través de revisión de fichas clínicas electrónicas. Entre los años 2009 al 2012 se presentaron un total de 74 pacientes incluidos en el estudio con 102 rasgos de fracturas mandibulares. La fractura más común fue la de cóndilo mandibular (35 pacientes). Se observó una tasa de complicaciones del 8%. Los resultados mostrados en este estudio están en línea con la literatura y el análisis de este reporte provee información para el diseño de planes de prevención de riesgos, especialmente para desarrollar medidas de protección facial. Nivel de Evidencia: Tipo II. Estudio descriptivo.ABSTRACT: The objective of this study was to evaluate the tendency of patients with mandibular fractures associated with working accidents. A retrospective descriptive study was performed in all cases of mandibular fractures who attended the maxillofacial surgery service at the Clinical Hospital Mutual Seguridad C.CH.C. Santiago de Chile, in a 4-year period (January 2009 - December 2012). All mandibular fractures were recorded. The information was collected through review of electronic medical records. Between 2009 and 2012, 74 patients were included in the study with 102 lines of mandibular fractures. The most common fracture was the mandibular condyle (35 patients). The complication rate was 8%. The results shown in this study are in line with the literature and the analysis of this report provides information for the design of risk prevention plans, especially in developing measures of facial protection.http://ref.scielo.org/p5w48
Cosmology from Cross-Correlation of ACT-DR4 CMB Lensing and DES-Y3 Cosmic Shear
Cross-correlation between weak lensing of the Cosmic Microwave Background
(CMB) and weak lensing of galaxies offers a way to place robust constraints on
cosmological and astrophysical parameters with reduced sensitivity to certain
systematic effects affecting individual surveys. We measure the angular
cross-power spectrum between the Atacama Cosmology Telescope (ACT) DR4 CMB
lensing and the galaxy weak lensing measured by the Dark Energy Survey (DES) Y3
data. Our baseline analysis uses the CMB convergence map derived from ACT-DR4
and data, where most of the contamination due to the thermal
Sunyaev Zel'dovich effect is removed, thus avoiding important systematics in
the cross-correlation. In our modelling, we consider the nuisance parameters of
the photometric uncertainty, multiplicative shear bias and intrinsic alignment
of galaxies. The resulting cross-power spectrum has a signal-to-noise ratio and passes a set of null tests. We use it to infer the amplitude of the
fluctuations in the matter distribution () with informative but well-motivated priors on
the nuisance parameters. We also investigate the validity of these priors by
significantly relaxing them and checking the consistency of the resulting
posteriors, finding them consistent, albeit only with relatively weak
constraints. This cross-correlation measurement will improve significantly with
the new ACT-DR6 lensing map and form a key component of the joint 6x2pt
analysis between DES and ACT.Comment: 26 pages, 30 figures (including appendices). Data associated with
this article is available at
https://github.com/itrharrison/actdr4kappa-x-desy3gamma-dat
Cosmology from cross-correlation of ACT-DR4 CMB lensing and DES-Y3 cosmic shear
Cross-correlation between weak lensing of the Cosmic Microwave Background (CMB) and weak lensing of galaxies offers a way to place robust constraints on cosmological and astrophysical parameters with reduced sensitivity to certain systematic effects affecting individual surveys. We measure the angular cross-power spectrum between the Atacama Cosmology Telescope (ACT) DR4 CMB lensing and the galaxy weak lensing measured by the Dark Energy Survey (DES) Y3 data. Our baseline analysis uses the CMB convergence map derived from ACT-DR4 and Planck data, where most of the contamination due to the thermal Sunyaev Zel’dovich effect is removed, thus avoiding important systematics in the cross-correlation. In our modelling, we consider the nuisance parameters of the photometric uncertainty, multiplicative shear bias and intrinsic alignment of galaxies. The resulting cross-power spectrum has a signal-to-noise ratio = 7.1 and passes a set of null tests. We use it to infer the amplitude of the fluctuations in the matter distribution (S8 ≡ σ8(Ωm/0.3)0.5 = 0.782 ± 0.059) with informative but well-motivated priors on the nuisance parameters. We also investigate the validity of these priors by significantly relaxing them and checking the consistency of the resulting posteriors, finding them consistent, albeit only with relatively weak constraints. This cross-correlation measurement will improve significantly with the new ACT-DR6 lensing map and form a key component of the joint 6×2pt analysis between DES and ACT
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The Atacama Cosmology Telescope: Cosmology from Cross-correlations of unWISE Galaxies and ACT DR6 CMB Lensing
Abstract
We present tomographic measurements of structure growth using cross-correlations of Atacama Cosmology Telescope (ACT) DR6 and Planck cosmic microwave background (CMB) lensing maps with the unWISE Blue and Green galaxy samples, which span the redshift ranges 0.2 ≲ z ≲ 1.1 and 0.3 ≲ z ≲ 1.8, respectively. We improve on prior unWISE cross-correlations not just by making use of the new, high-precision ACT DR6 lensing maps, but also by including additional spectroscopic data for redshift calibration and by analyzing our measurements with a more flexible theoretical model. We determine the amplitude of matter fluctuations at low redshifts (z ≃ 0.2–1.6), finding
S
8
≡
σ
8
(
Ω
m
/
0.3
)
0.5
=
0.813
±
0.021
using the ACT cross-correlation alone and S
8 = 0.810 ± 0.015 with a combination of Planck and ACT cross-correlations; these measurements are fully consistent with the predictions from primary CMB measurements assuming standard structure growth. The addition of baryon acoustic oscillation data breaks the degeneracy between σ
8 and Ω
m
, allowing us to measure σ
8 = 0.813 ± 0.020 from the cross-correlation of unWISE with ACT and σ
8 = 0.813 ± 0.015 from the combination of cross-correlations with ACT and Planck. These results also agree with the expectations from primary CMB extrapolations in ΛCDM cosmology; the consistency of σ
8 derived from our two redshift samples at z ∼ 0.6 and 1.1 provides a further check of our cosmological model. Our results suggest that structure formation on linear scales is well described by ΛCDM even down to low redshifts z ≲ 1.</jats:p
Cosmology from Cross-Correlation of ACT-DR4 CMB Lensing and DES-Y3 Cosmic Shear
International audienceCross-correlation between weak lensing of the Cosmic Microwave Background (CMB) and weak lensing of galaxies offers a way to place robust constraints on cosmological and astrophysical parameters with reduced sensitivity to certain systematic effects affecting individual surveys. We measure the angular cross-power spectrum between the Atacama Cosmology Telescope (ACT) DR4 CMB lensing and the galaxy weak lensing measured by the Dark Energy Survey (DES) Y3 data. Our baseline analysis uses the CMB convergence map derived from ACT-DR4 and data, where most of the contamination due to the thermal Sunyaev Zel'dovich effect is removed, thus avoiding important systematics in the cross-correlation. In our modelling, we consider the nuisance parameters of the photometric uncertainty, multiplicative shear bias and intrinsic alignment of galaxies. The resulting cross-power spectrum has a signal-to-noise ratio and passes a set of null tests. We use it to infer the amplitude of the fluctuations in the matter distribution () with informative but well-motivated priors on the nuisance parameters. We also investigate the validity of these priors by significantly relaxing them and checking the consistency of the resulting posteriors, finding them consistent, albeit only with relatively weak constraints. This cross-correlation measurement will improve significantly with the new ACT-DR6 lensing map and form a key component of the joint 6x2pt analysis between DES and ACT
Cosmology from Cross-Correlation of ACT-DR4 CMB Lensing and DES-Y3 Cosmic Shear
International audienceCross-correlation between weak lensing of the Cosmic Microwave Background (CMB) and weak lensing of galaxies offers a way to place robust constraints on cosmological and astrophysical parameters with reduced sensitivity to certain systematic effects affecting individual surveys. We measure the angular cross-power spectrum between the Atacama Cosmology Telescope (ACT) DR4 CMB lensing and the galaxy weak lensing measured by the Dark Energy Survey (DES) Y3 data. Our baseline analysis uses the CMB convergence map derived from ACT-DR4 and data, where most of the contamination due to the thermal Sunyaev Zel'dovich effect is removed, thus avoiding important systematics in the cross-correlation. In our modelling, we consider the nuisance parameters of the photometric uncertainty, multiplicative shear bias and intrinsic alignment of galaxies. The resulting cross-power spectrum has a signal-to-noise ratio and passes a set of null tests. We use it to infer the amplitude of the fluctuations in the matter distribution () with informative but well-motivated priors on the nuisance parameters. We also investigate the validity of these priors by significantly relaxing them and checking the consistency of the resulting posteriors, finding them consistent, albeit only with relatively weak constraints. This cross-correlation measurement will improve significantly with the new ACT-DR6 lensing map and form a key component of the joint 6x2pt analysis between DES and ACT
Cosmology from cross-correlation of ACT-DR4 CMB lensing and DES-Y3 cosmic shear
Cross-correlation between weak lensing of the Cosmic Microwave Background (CMB) and weak lensing of galaxies offers a way to place robust constraints on cosmological and astrophysical parameters with reduced sensitivity to certain systematic effects affecting individual surveys. We measure the angular cross-power spectrum between the Atacama Cosmology Telescope (ACT) DR4 CMB lensing and the galaxy weak lensing measured by the Dark Energy Survey (DES) Y3 data. Our baseline analysis uses the CMB convergence map derived from ACT-DR4 and Planck data, where most of the contamination due to the thermal Sunyaev Zel'dovich effect is removed, thus avoiding important systematics in the cross-correlation. In our modelling, we consider the nuisance parameters of the photometric uncertainty, multiplicative shear bias and intrinsic alignment of galaxies. The resulting cross-power spectrum has a signal-to-noise ratio =7.1 and passes a set of null tests. We use it to infer the amplitude of the fluctuations in the matter distribution (S8≡σ8(Ωm/0.3)0.5=0.782±0.059) with informative but well-motivated priors on the nuisance parameters. We also investigate the validity of these priors by significantly relaxing them and checking the consistency of the resulting posteriors, finding them consistent, albeit only with relatively weak constraints. This cross-correlation measurement will improve significantly with the new ACT-DR6 lensing map and form a key component of the joint 6x2pt analysis between DES and ACT