1,570 research outputs found

    Green Purchases and Sustainability in Amazon’s Coffee Management

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    This study was conceived in the cradle of the Brazilian Amazon region, on managerial and cognitive knowledge of the perspectives of sustainable management in coffee cultivation. The objective is to study the green purchasing process and sustainability in coffee management; (1), to map the factors that interfere in the green purchasing processes and sustainability in the researched scenario (2), propose the innovation required with participative management in the face of sustainability with green purchasing (3). With a base on Contingency theories of adaptive nature and emerging demands, Ecodevelopment interprets and performs compatible actions for sustainable local development, the U Theory confronts the problems and transforms them with innovative solutions. The Method of Study adopted is the Case study, of a qualitative nature, such as bibliographic survey procedures, data collection by semi-structured interviews with social actors of the coffee system, data analysis through triangulation and criticism with the theoretical framework and construction of the innovation sustainable development proposal. The result shows the lack of knowledge about green purchasing and the sustainability aspect of the practices used in the Global Coffee Platform. The quality work of the coffee farmers was evidenced in an individual form, but in order to meet the quantitative demands of the market, it is required the structural and leadership development for the construction of APL or agricultural cooperative. The mental design configured at the base of the productive chain needs to break paradigms that interfere in the sustainable posture, to understand the needs of the consumers and to emphasize their participation on the responsibility with the Amazon and the beneficiary society as a whole. We presented suggestions of innovation discussed from the gaps detected by the mapping of factors

    Levantamento de Meloidogyne exigua na cultura da seringueira em São José do Rio Claro, MT, Brasil.

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    Este trabalho foi realizado com o objetivo de efetuar um levantamento da ocorrência de Meloidogyne e exigua em seringueira em São José do Rio Claro, MT. Foram amostradas 191 propriedades agríccolas, totalizando cerca de 18.000ha. Os nematóides foram identificados no Laboratório de Nematologia do Departamento de Fitossanidade da FCAV/UNESP, em Jaboticabal, SP. Foram encontrados níveis populacionais de M. exigua entre 0 e 61.824 juvenis/5g de raízes

    Screening a Targeted Panel of Genes by Next-Generation Sequencing Improves Risk Stratification in Real World Patients with Acute Myeloid Leukemia

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    Although mutation profiling of defined genes is recommended for classification of acute myeloid leukemia (AML) patients, screening of targeted gene panels using next-generation sequencing (NGS) is not always routinely used as standard of care. The objective of this study was to prospectively assess whether extended molecular monitoring using NGS adds clinical value for risk assessment in real-world AML patients. We analyzed a cohort of 268 newly diagnosed AML patients. We compared the prognostic stratification of our study population according to the European LeukemiaNet recommendations, before and after the incorporation of the extended mutational profile information obtained by NGS. Without access to NGS data, 63 patients (23%) failed to be stratified into risk groups. After NGS data, only 27 patients (10%) failed risk stratification. Another 33 patients were re-classified as adverse-risk patients once the NGS data was incorporated. In total, access to NGS data refined risk assessment for 62 patients (23%). We further compared clinical outcomes with prognostic stratification, and observed unexpected outcomes associated with FLT3 mutations. In conclusion, this study demonstrates the prognostic utility of screening AML patients for multiple gene mutations by NGS and underscores the need for further studies to refine the current risk classification criteria.info:eu-repo/semantics/publishedVersio

    Pathophysiology of Blood–Brain Barrier Permeability Throughout the Different Stages of Ischemic Stroke and Its Implication on Hemorrhagic Transformation and Recovery

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    The blood-brain barrier (BBB) is a dynamic interface responsible for maintaining the central nervous system homeostasis. Its unique characteristics allow protecting the brain from unwanted compounds, but its impairment is involved in a vast number of pathological conditions. Disruption of the BBB and increase in its permeability are key in the development of several neurological diseases and have been extensively studied in stroke. Ischemic stroke is the most prevalent type of stroke and is characterized by a myriad of pathological events triggered by an arterial occlusion that can eventually lead to fatal outcomes such as hemorrhagic transformation (HT). BBB permeability seems to follow a multiphasic pattern throughout the different stroke stages that have been associated with distinct biological substrates. In the hyperacute stage, sudden hypoxia damages the BBB, leading to cytotoxic edema and increased permeability; in the acute stage, the neuroinflammatory response aggravates the BBB injury, leading to higher permeability and a consequent risk of HT that can be motivated by reperfusion therapy; in the subacute stage (1-3 weeks), repair mechanisms take place, especially neoangiogenesis. Immature vessels show leaky BBB, but this permeability has been associated with improved clinical recovery. In the chronic stage (>6 weeks), an increase of BBB restoration factors leads the barrier to start decreasing its permeability. Nonetheless, permeability will persist to some degree several weeks after injury. Understanding the mechanisms behind BBB dysregulation and HT pathophysiology could potentially help guide acute stroke care decisions and the development of new therapeutic targets; however, effective translation into clinical practice is still lacking. In this review, we will address the different pathological and physiological repair mechanisms involved in BBB permeability through the different stages of ischemic stroke and their role in the development of HT and stroke recovery.info:eu-repo/semantics/publishedVersio

    Sudden onset blindness in sickle cell disease: a case report

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    Os autores apresentam o caso clínico de uma criança com doença falciforme, internada por choque séptico com meningite e pneumonia a Streptococcus pneumoniae. No decurso do internamento surgiu amaurose súbita à esquerda e herpes mucocutâ- neo labial. O exame oftalmológico foi sugestivo de oclusão arterial no olho esquerdo e de necrose retiniana viral à direita, pelo que foi instituída terapêutica antiviral e anticoagulante. A evolução clínica e imagiológica foi compatível com necrose retiniana aguda. Verificou-se ligeira melhoria da acuidade visual à direita (6/10) mas persistiu um défice grave da acuidade visual à esquerda (< 1/10). A necrose retiniana aguda é um evento raro em idade pediátrica, cujo diagnóstico diferencial inclui outras causas de amaurose súbita.We report the case of a 7-year-old child with sickle cell disease, admitted with Streptococcus pneumoniae sep - tic shock, meningitis and pneumonia. During hospital stay he complained of sudden left eye blindness, and mucocutaneous labial herpes was simultaneously no- ted. The ophthalmological evaluation suggested left eye arteriolar occlusion and right eye acute retinal necrosis. Antiviral and anticoagulant therapy was started. Clinical and imaging evolution were compatible with acute reti - nal necrosis. Slight improvement of visual acuity was seen in the right eye (6/10) but visual loss persisted in the left eye (<1/10). Acute retinal necrosis is a rare event in children. Differential diagnosis includes other causes of sudden onset blindness

    Treatment planning systems dosimetry auditing project in Portugal

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    BACKGROUND AND PURPOSE: The Medical Physics Division of the Portuguese Physics Society (DFM_SPF) in collaboration with the IAEA, carried out a national auditing project in radiotherapy, between September 2011 and April 2012. The objective of this audit was to ensure the optimal usage of treatment planning systems. The national results are presented in this paper. MATERIAL AND METHODS: The audit methodology simulated all steps of external beam radiotherapy workflow, from image acquisition to treatment planning and dose delivery. A thorax CIRS phantom lend by IAEA was used in 8 planning test-cases for photon beams corresponding to 15 measuring points (33 point dose results, including individual fields in multi-field test cases and 5 sum results) in different phantom materials covering a set of typical clinical delivery techniques in 3D Conformal Radiotherapy. RESULTS: All 24 radiotherapy centers in Portugal have participated. 50 photon beams with energies 4-18 MV have been audited using 25 linear accelerators and 32 calculation algorithms. In general a very good consistency was observed for the same type of algorithm in all centres and for each beam quality. CONCLUSIONS: The overall results confirmed that the national status of TPS calculations and dose delivery for 3D conformal radiotherapy is generally acceptable with no major causes for concern. This project contributed to the strengthening of the cooperation between the centres and professionals, paving the way to further national collaborations

    Crystal Structure, Optical Second Harmonic Generation, Piezoelectricity and Pyroelectricity

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    Funding Information: This research was funded by Fundação para a Ciência e Tecnologia through FEDER (European Fund for Regional Development)-COMPETE-QREN-EU (ref. UID/FIS/04650/2013 and UID/FIS/04650/2019) and E-Field—“Electric-Field Engineered Lattice Distortions (E-FiELD) for optoelectronic devices”, ref. PTDC/NAN-MAT/0098/2020. C.S.B.G. acknowledges funding from Fundação para a Ciência e Tecnologia FCT/MCTES through projects UIDB/50006/2020, UIDP/50006/2020 and LA/P/0008/2020 of the Associate Laboratory for Green Chemistry—LAQV, UIDB/04378/2020, UIDP/04378/2020 and LA/P/0140/2020 of UCIBIO and Associate Laboratory i4HB, respectively. Funding Information: We acknowledge national funds (OE), through FCT − Fundação para a Ciência e a Tecnologia, I.P., in the scope of the framework contract foreseen in the numbers 4, 5 and 6 of article 23 of the Decree-Law 57/2016, of August 29, changed by Law 57/2017, of July 19. Publisher Copyright: © 2023 by the authors.A polymorph of glycyl-L-alanine HI.H2O is synthesized from chiral cyclo-glycyl-L-alanine dipeptide. The dipeptide is known to show molecular flexibility in different environments, which leads to polymorphism. The crystal structure of the glycyl-L-alanine HI.H2O polymorph is determined at room temperature and indicates that the space group is polar (P21), with two molecules per unit cell and unit cell parameters a = 7.747 Å, b = 6.435 Å, c = 10.941 Å, α = 90°, β = 107.53(3)°, γ = 90° and V = 520.1(7) Å3. Crystallization in the polar point group 2, with one polar axis parallel to the b axis, allows pyroelectricity and optical second harmonic generation. Thermal melting of the glycyl-L-alanine HI.H2O polymorph starts at 533 K, close to the melting temperature reported for cyclo-glycyl-L-alanine (531 K) and 32 K lower than that reported for linear glycyl-L-alanine dipeptide (563 K), suggesting that although the dipeptide, when crystallized in the polymorphic form, is not anymore in its cyclic form, it keeps a memory of its initial closed chain and therefore shows a thermal memory effect. Here, we report a pyroelectric coefficient as high as 45 µC/m2K occurring at 345 K, one order of magnitude smaller than that of semi-organic ferroelectric triglycine sulphate (TGS) crystal. Moreover, the glycyl-L-alanine HI.H2O polymorph displays a nonlinear optical effective coefficient of 0.14 pm/V, around 14 times smaller than the value from a phase-matched inorganic barium borate (BBO) single crystal. The new polymorph displays an effective piezoelectric coefficient equal to (Formula presented.), when embedded into electrospun polymer fibers, indicating its suitability as an active system for energy harvesting.publishersversionpublishe

    Depth-specific fluctuations of gene expression and protein abundance modulate the photophysiology in the seagrass <i>Posidonia oceanica</i>

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    Here we present the results of a multiple organizational level analysis conceived to identify acclimative/adaptive strategies exhibited by the seagrass Posidonia oceanica to the daily fluctuations in the light environment, at contrasting depths. We assessed changes in photophysiological parameters, leaf respiration, pigments, and protein and mRNA expression levels. The results show that the diel oscillations of P. oceanica photophysiological and respiratory responses were related to transcripts and proteins expression of the genes involved in those processes and that there was a response asynchrony between shallow and deep plants probably caused by the strong differences in the light environment. The photochemical pathway of energy use was more effective in shallow plants due to higher light availability, but these plants needed more investment in photoprotection and photorepair, requiring higher translation and protein synthesis than deep plants. The genetic differentiation between deep and shallow stands suggests the existence of locally adapted genotypes to contrasting light environments. The depth-specific diel rhythms of photosynthetic and respiratory processes, from molecular to physiological levels, must be considered in the management and conservation of these key coastal ecosystems
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