CT DOSE Collaboratory
CT DOSE Collaboratory
批准号:
9229524
负责人:
REBECCA SMITH-BINDMAN
金额:
$127.15万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-09-12 至 2019-12-31
关键词:
AdoptedAdvocateAffectBedsBenchmarkingBiometryCanadaCaringClinics and HospitalsCohort StudiesCollaborationsCommunitiesComputer softwareCountryDataData CollectionDevicesDiagnosisDimensionsDoseElementsEuropeFee-for-Service PlansFeedbackFundingGeographyGoalsHealthHealth systemHealthcareHealthcare SystemsHospitalsIndividualInstitutionInterventionInterviewKnowledgeLeadershipLearningLettersMalignant NeoplasmsManufacturer NameMedicalMedical ImagingMethodsModelingMonitorObservational StudyParticipantPatientsPhasePhysicsPractice GuidelinesPrivatizationProcessPublic HealthRadiationRadiation DosageRadiation PhysicsRadiation exposureRadiology SpecialtyRandomizedRandomized Controlled TrialsReadinessRecruitment ActivityRegistriesResearchResearch PersonnelSafetyScanningScientistSecureServicesSiteStandardizationSuggestionSurveysSystemTestingThoracic RadiographyTimeTomography, Computed, ScannersVariantVeteransWorkX-Ray Computed Tomographybasecancer riskcare systemsclinical practicecollaboratorycommunity based caredesignevidence baseexperiencehealth care deliveryhealth care service organizationimplementation scienceimplementation trialimprovedinformantinterestmeetingsmulti-component interventionoperationorganizational structurepragmatic trialprogramspublic health relevancetrial comparing
中文摘要
描述(由申请人提供):计算机断层扫描(CT)经常用于医学扫描,并可向患者提供高剂量的辐射。然而,由于CT检查的标准很少,患者在CT期间接受的辐射剂量差异很大。然而,剂量高于医学诊断所需的剂量,高到足以增加癌症风险。拟议的项目是一个多地点合作研究改进的标准进行CT,包括使用的辐射剂量,并制定战略,应用(实施)和传播(传播)这些标准在不同的诊所和医院。该项目将使用多种方法,包括随机对照试验,观察数据和关键线人访谈。这项工作致力于通过降低患者接受的剂量来提高CT的安全性和与CT辐射相关的癌症。该项目包括一个实施试验,以了解如何广泛地向诊所和医院传授最佳和最安全的CT实践。变化的过程将因不同的医疗保健环境和不同的组织结构而异。本研究旨在了解最佳策略,以适应CT安全干预措施,通过学习什么因素,提高最佳实践指南的实施和传播。我们的项目是与美国、加拿大和欧洲的各种医疗保健提供组织合作,并与拜耳健康公司合作。这些公共、私人、学术和社区护理系统包括收费服务和预付费护理组织,将作为我们的试验基地。包括非美国机构,因为这些国家非常关注医学成像的辐射安全,并且他们的医院和研究人员在CT辐射剂量监测和优化方面具有经验。我们的研究团队包括具有生物统计学,放射学,辐射物理学,传播和实施科学专业知识的科学家,以及专注于质量改进并致力于优化医学成像剂量的卫生系统领导者。所有参与的医疗保健系统都已经使用拜耳健康软件eXtreme进行辐射剂量监测。购买eXtreme表明了医疗保健组织对收集临床实践中使用的辐射剂量数据以及使用数据优化医学成像剂量的兴趣和承诺。因此,这些网站是该项目的理想合作伙伴。每个人都有项目冠军,但没有优化CT辐射剂量的专业知识或策略。围绕已经可以从一系列软件平台安全收集数据的现有关系组织项目,最大限度地减少了数据收集的复杂性,克服了开发广泛可实施的质量改进计划的主要障碍。这将使我们的研究团队专注于传播和实施变革的拟议研究目标。我们将1)采用阶梯楔形设计进行一项随机对照实用性试验,以比较简单的反馈审计与定制的多组分干预作为设施级CT辐射剂量优化策略,2)评估实施程度并确定促进者,实施剂量优化和持续改善CT辐射剂量的成功和失败策略3)在几个机构广泛传播和评估干预措施的传播情况,重点是从务实的试验中找到最有效的解决办法。
英文摘要
DESCRIPTION (provided by applicant): Computed tomography (CT) is frequently used for medical scanning and can deliver high doses of radiation to patients. Yet because few standards exist for CT examinations, the radiation doses that patients receive during CT vary widely. Routinely, doses are higher than needed for medical diagnoses-and high enough to be associated with increased cancer risk. The proposed project is a multisite collaboration studying improved standards for conducting CT, including the radiation doses used, and developing strategies to apply (implement) and spread (disseminate) these standards in different clinics and hospitals. The project will use a mixture of methods including a randomized controlled trial, observational data, and key informant interviews. The work strives to improve CT safety and cancers associated with radiation from CT by lowering the doses that patients receive. The project includes an implementation trial to learn how to broadly teach clinics and hospitals about the best and safest CT practices. The process of change will vary with different health care settings and different organizational structures. This study seeks to understand the best strategies to adapt CT safety interventions by learning what factors improve both implementation and dissemination of the best practice guidelines. Our project is a partnership with diverse healthcare delivery organizations in the US, Canada, and Europe in collaboration with Bayer Health. These public, private, academic, and community-based care systems include both fee-for-service and prepaid care organizations and will serve as our test bed sites. Non-US institutions are included since radiation safety around medical imaging is a great concern in these countries, and their hospitals and researchers have experience in CT radiation dose monitoring and optimizing. Our research team includes scientists with expertise in biostatistics, radiology, radiation physics, and dissemination and implementation sciences, and health system leaders who focus on quality improvement and are champions for optimizing medical imaging doses. All participating health care systems already use eXposure, the Bayer Health software for radiation dose monitoring. The purchase of eXposure shows the interest and commitment of the health care organizations to collecting data on the radiation doses used in clinical practice and using data to optimize medical imaging doses. The sites are thus ideal partners for this project. Each has project champions, but not the expertise or strategy to optimize CT radiation dosages. Organizing the project around existing relationships that can already collect data securely from a range of software platforms minimizes data collection complexity, overcoming a main hurdle in developing a widely implementable quality improvement program. This will allow our research team to focus on the proposed study aims of disseminating and implementing change. We will 1) conduct a randomized controlled pragmatic trial with a stepped-wedge design to compare simple audit with feedback vs. a tailored, multicomponent intervention as strategies for facility-level optimization of CT radiation dose, 2) assess the degree of implementation and identify facilitators, barriers and successful and failed strategies for implementing dose optimization and sustaining improvements in CT radiation dosing over 2 years following intervention, and 3) broadly disseminate and evaluate dissemination of the intervention at several institutions, focusing on the most effective solutions from the pragmatic trial.
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