The Experts below are selected from a list of 321 Experts worldwide ranked by ideXlab platform
Esperanza Romero - One of the best experts on this subject based on the ideXlab platform.
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Multidisciplinary Assessment of pesticide mitigation in soil amended with vermicomposted agroindustrial wastes
Journal of Hazardous Materials, 2016Co-Authors: Jean Manuel Castillo, Fabrice Martin-laurent, Jérémie Béguet, Esperanza RomeroAbstract:Soil organic amendment affects biotic and abiotic processes that control the fate of pesticides, but the treatment history of the soil is also relevant. These processes were assessed in a Multidisciplinary study with the aim of optimizing pesticide mitigation in soils. Soil microcosms pre-treated (E2) or not with diuron (E1) were amended with either winery (W) or olive waste (0) vermicomposts. Herbicide dissipation followed a double first-order model in El microcosms, but a single first-order model in E2. Also, diuron persistence was longer in El than in E2 (E1-DT50 > 200 day(-1), E2-DT50 < 16 day(-1)). The genetic structure of the bacterial community was modified by both diuron exposure and amendment. O-vermicompost increased enzymatic activities in both experiments, but diuron-degrading genetic potential (puhB) was quantified only in E2 microcosms in accordance with reduced diuron persistence. Therefore, O-vermicompost addition favoured the proliferation of diuron degraders, increasing the soil diuron-depuration capability.
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Multidisciplinary Assessment of pesticide mitigation in soil amended with vermicomposted agroindustrial wastes.
Journal of hazardous materials, 2015Co-Authors: Jean Manuel Castillo, Fabrice Martin-laurent, Jérémie Béguet, Esperanza RomeroAbstract:Soil organic amendment affects biotic and abiotic processes that control the fate of pesticides, but the treatment history of the soil is also relevant. These processes were assessed in a Multidisciplinary study with the aim of optimizing pesticide mitigation in soils. Soil microcosms pre-treated (E2) or not with diuron (E1) were amended with either winery (W) or olive waste (O) vermicomposts. Herbicide dissipation followed a double first-order model in E1 microcosms, but a single first-order model in E2. Also, diuron persistence was longer in E1 than in E2 (E1-DT50>200 day(-1), E2-DT50
Jérémie Béguet - One of the best experts on this subject based on the ideXlab platform.
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Multidisciplinary Assessment of pesticide mitigation in soil amended with vermicomposted agroindustrial wastes
Journal of Hazardous Materials, 2016Co-Authors: Jean Manuel Castillo, Fabrice Martin-laurent, Jérémie Béguet, Esperanza RomeroAbstract:Soil organic amendment affects biotic and abiotic processes that control the fate of pesticides, but the treatment history of the soil is also relevant. These processes were assessed in a Multidisciplinary study with the aim of optimizing pesticide mitigation in soils. Soil microcosms pre-treated (E2) or not with diuron (E1) were amended with either winery (W) or olive waste (0) vermicomposts. Herbicide dissipation followed a double first-order model in El microcosms, but a single first-order model in E2. Also, diuron persistence was longer in El than in E2 (E1-DT50 > 200 day(-1), E2-DT50 < 16 day(-1)). The genetic structure of the bacterial community was modified by both diuron exposure and amendment. O-vermicompost increased enzymatic activities in both experiments, but diuron-degrading genetic potential (puhB) was quantified only in E2 microcosms in accordance with reduced diuron persistence. Therefore, O-vermicompost addition favoured the proliferation of diuron degraders, increasing the soil diuron-depuration capability.
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Multidisciplinary Assessment of pesticide mitigation in soil amended with vermicomposted agroindustrial wastes.
Journal of hazardous materials, 2015Co-Authors: Jean Manuel Castillo, Fabrice Martin-laurent, Jérémie Béguet, Esperanza RomeroAbstract:Soil organic amendment affects biotic and abiotic processes that control the fate of pesticides, but the treatment history of the soil is also relevant. These processes were assessed in a Multidisciplinary study with the aim of optimizing pesticide mitigation in soils. Soil microcosms pre-treated (E2) or not with diuron (E1) were amended with either winery (W) or olive waste (O) vermicomposts. Herbicide dissipation followed a double first-order model in E1 microcosms, but a single first-order model in E2. Also, diuron persistence was longer in E1 than in E2 (E1-DT50>200 day(-1), E2-DT50
Fabrice Martin-laurent - One of the best experts on this subject based on the ideXlab platform.
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Multidisciplinary Assessment of pesticide mitigation in soil amended with vermicomposted agroindustrial wastes
Journal of Hazardous Materials, 2016Co-Authors: Jean Manuel Castillo, Fabrice Martin-laurent, Jérémie Béguet, Esperanza RomeroAbstract:Soil organic amendment affects biotic and abiotic processes that control the fate of pesticides, but the treatment history of the soil is also relevant. These processes were assessed in a Multidisciplinary study with the aim of optimizing pesticide mitigation in soils. Soil microcosms pre-treated (E2) or not with diuron (E1) were amended with either winery (W) or olive waste (0) vermicomposts. Herbicide dissipation followed a double first-order model in El microcosms, but a single first-order model in E2. Also, diuron persistence was longer in El than in E2 (E1-DT50 > 200 day(-1), E2-DT50 < 16 day(-1)). The genetic structure of the bacterial community was modified by both diuron exposure and amendment. O-vermicompost increased enzymatic activities in both experiments, but diuron-degrading genetic potential (puhB) was quantified only in E2 microcosms in accordance with reduced diuron persistence. Therefore, O-vermicompost addition favoured the proliferation of diuron degraders, increasing the soil diuron-depuration capability.
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Multidisciplinary Assessment of pesticide mitigation in soil amended with vermicomposted agroindustrial wastes.
Journal of hazardous materials, 2015Co-Authors: Jean Manuel Castillo, Fabrice Martin-laurent, Jérémie Béguet, Esperanza RomeroAbstract:Soil organic amendment affects biotic and abiotic processes that control the fate of pesticides, but the treatment history of the soil is also relevant. These processes were assessed in a Multidisciplinary study with the aim of optimizing pesticide mitigation in soils. Soil microcosms pre-treated (E2) or not with diuron (E1) were amended with either winery (W) or olive waste (O) vermicomposts. Herbicide dissipation followed a double first-order model in E1 microcosms, but a single first-order model in E2. Also, diuron persistence was longer in E1 than in E2 (E1-DT50>200 day(-1), E2-DT50
Per Lytsy - One of the best experts on this subject based on the ideXlab platform.
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Comparing the Efficacy of Multidisciplinary Assessment and Treatment, or Acceptance and Commitment Therapy, with Treatment as Usual on Health Outcomes in Women on Long-Term Sick Leave—A Randomised Controlled Trial
International Journal of Environmental Research and Public Health, 2021Co-Authors: Anna Finnes, Ingrid Anderzén, Ronnie Pingel, Joanne Dahl, Linnea Molin, Per LytsyAbstract:Background: Chronic pain and mental disorders are common reasons for long term sick leave. The study objective was to evaluate the efficacy of a Multidisciplinary Assessment and treatment program including acceptance and commitment therapy (TEAM) and stand-alone acceptance and commitment therapy (ACT), compared with treatment as usual (Control) on health outcomes in women on long-term sick leave. Method: Participants (n = 308), women of working age on long term sick leave due to musculoskeletal pain and/or common mental disorders, were randomized to TEAM (n = 102), ACT (n = 102) or Control (n = 104). Participants in the Multidisciplinary Assessment treatment program received ACT, but also medical Assessment, occupational therapy and social counselling. The second intervention included ACT only. Health outcomes were assessed over 12 months using adjusted linear mixed models. The results showed significant interaction effects for both ACT and TEAM compared with Control in anxiety (ACT [p < 0.05]; TEAM [p < 0.001]), depression (ACT [p < 0.001]; TEAM [p < 0.001]) and general well-being (ACT [p < 0.05]; TEAM [p < 0.001]). For self-rated pain, there was a significant interaction effect in favour of ACT (p < 0.05), and for satisfaction with life in favour of TEAM (p < 0.001). Conclusion: Both ACT alone and Multidisciplinary Assessment and treatment including ACT were superior to treatment as usual in clinical outcomes.
Jean Manuel Castillo - One of the best experts on this subject based on the ideXlab platform.
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Multidisciplinary Assessment of pesticide mitigation in soil amended with vermicomposted agroindustrial wastes
Journal of Hazardous Materials, 2016Co-Authors: Jean Manuel Castillo, Fabrice Martin-laurent, Jérémie Béguet, Esperanza RomeroAbstract:Soil organic amendment affects biotic and abiotic processes that control the fate of pesticides, but the treatment history of the soil is also relevant. These processes were assessed in a Multidisciplinary study with the aim of optimizing pesticide mitigation in soils. Soil microcosms pre-treated (E2) or not with diuron (E1) were amended with either winery (W) or olive waste (0) vermicomposts. Herbicide dissipation followed a double first-order model in El microcosms, but a single first-order model in E2. Also, diuron persistence was longer in El than in E2 (E1-DT50 > 200 day(-1), E2-DT50 < 16 day(-1)). The genetic structure of the bacterial community was modified by both diuron exposure and amendment. O-vermicompost increased enzymatic activities in both experiments, but diuron-degrading genetic potential (puhB) was quantified only in E2 microcosms in accordance with reduced diuron persistence. Therefore, O-vermicompost addition favoured the proliferation of diuron degraders, increasing the soil diuron-depuration capability.