跳至主要内容
临床试验/NCT07638735
NCT07638735Enrolling By Invitation不适用

eAMS-Eco: Implementation of a Climate Conscious Prescribing Aid at the Point-of-Care

University of Toronto2 个研究点 分布在 1 个国家目标入组 95 人开始时间: 2026年4月28日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
Enrolling By Invitation
入组人数
95
试验地点
2
主要终点
Prescribed inhaler carbon emissions

研究概览

简要总结

The goal of this study is to determine whether an 'eco' version of the Electronic Asthma Management System (eAMS) can reduce inhaler carbon emissions in primary care, in patients with asthma. The existing eAMS uses patient-specific criteria (asthma control, asthma flare-up risk, and current medications) to provide guideline-based computerized clinical decision support to clinicians, to improve the delivery of asthma care. The eAMS-Eco includes embedded cues and messaging on the environmental impact of inhaler medications and links to a patient-friendly conversation aid that facilitates shared decision-making and climate-conscious prescribing.

The study will evaluate the implementation of the eAMS-Eco in two primary care clinics that have been using the existing eAMS, using an interrupted time-series analysis (one year pre- and post-launch of the eAMS-Eco). The investigators will assess system uptake and user feedback on the eAMS-Eco, as well as changes in inhaler prescriptions (including resulting changes in carbon emissions and costs) and changes in asthma control, in the implementation period (eAMS-Eco) compared to the baseline period (eAMS).

详细描述

Climate change poses a significant threat to human health and yet healthcare itself contributes substantially to climate change. Reducing the carbon emissions from healthcare is one actionable step to combat the climate crisis. In regards to asthma care, reductions in carbon emissions could be achieved by addressing the unnecessary of metered-dose inhalers (MDIs), the propellants in which contain potent greenhouse gases. This could be achieved by preferentially prescribing inhaler devices such as dry powder inhalers (DPIs) and soft mist inhalers (SMIs), which do not use propellants and have much lower carbon footprints than MDIs. These devices are almost always available in the same medication classes as MDIs (sometimes with the same active ingredient) and demonstrate comparable clinical efficacy and patient acceptability. Yet MDIs still account for the majority of prescribed inhalers.

The investigators will leverage the existing Electronic Asthma Management System (eAMS), a computerized decision support system (CDSS) that recommends guideline-based medication changes based on assessment of the patients' asthma control and exacerbation risk, to promote climate-conscious prescribing at the point-of-care. When tested in real-world settings, the eAMS improved the quality of asthma care, with a significant increase in the provision of asthma action plans, assessment of asthma control, use of guideline-based inhaler medications, including escalation of controller therapy when indicated. Subsequently, the tool has been used widely in primary care sites in Ontario. To address the issue of inhaler GHG emissions, our team has now created an enhanced version of the existing eAMS, called the 'eAMS-Eco'.

The eAMS-Eco has embedded cues and messaging that indicate the relative carbon footprint of each medication recommended by the eAMS, to provide clinicians with the knowledge needed to enact climate-conscious prescribing. A an orange or red leaf appears next to the recommended medication with hover text indicating that the device has a moderate or high carbon footprint, respectively. The medication name and hover text are clickable links which take the clinician to an inhaler conversation aid, which serves to promote shared decision-making by presenting the carbon footprint (as the equivalent to kilometers driven in a gas powered car) and cost of each inhaler in the corresponding medication class, along with usage details (dosing, number of inhalations per dose, number of doses per device). The conversation aids also include information on inhaler contents (active ingredients) and include a safety warning that emphasizes the importance of considering patient-level factors, such as adequate technique, age, disease severity, and the impact on adherence, when selecting an inhaler device.

Ultimately, the eco-features added to the eAMS are designed to promote climate-conscious prescribing of inhalers while considering the preference and ability of each individual patient. Our study will evaluate the implementation of the eAMS-Eco in two primary care clinics which are already using the eAMS, with an overall goal of reducing inhaler emissions in the primary care of patients with asthma.

研究设计

研究类型
Interventional
分配方式
Non Randomized
干预模型
Sequential
主要目的
Health Services Research
盲法
None

入排标准

年龄范围
16 Years 至 —(Child, Adult, Older Adult)
性别
All
接受健康志愿者
否

入选标准

  • •Active clinician at one of the two study sites during the study period
  • •Patient eligibility criteria:
  • •Inclusion criteria:
  • •Patient at one of the two study sites with a visit during the study period
  • •Diagnosis of asthma (using validated algorithm for primary care of
  • •asthma billing code (493) in the past 3 years OR asthma in the cumulative patient profile (CPP) and
  • •prescription for an inhaler in the past year

排除标准

  • 未提供

研究组 & 干预措施

Electronic Asthma Management System (eAMS)

No Intervention

A retrospective chart review and system audit will assess outcomes during the one-year baseline period where the base version of the Electronic Asthma Management System (eAMS) was in use

eAMS-Eco

Active Comparator

The eAMS-Eco will be launched at study sites and available to clinicians to use for eligible patients with data collected prospectively for 12 months

干预措施: Climate-Conscious Clinical Decision Support System for Asthma Management (Behavioral)

结局指标

主要结局

Prescribed inhaler carbon emissions

时间窗: 24 months, cumulative and broken into individual time periods

Among patients entering on at least one metered dose inhaler, system analytics, chart review and existing data on inhaler carbon emissions will be used to assess the average and total difference in the change (exit versus entry medications) in estimated annual carbon emissions from inhalers per patient between the baseline and implementation periods

Proportion of low carbon footprint inhalers to moderate/high carbon footprint inhalers prescribed

时间窗: 24 months, cumulative and broken into individual time periods

For all new inhaler prescriptions, system analytics and chart review data will be used to compare the difference in the average proportion of low to moderate/high carbon footprint inhalers across all patients, between the baseline and implementation periods

次要结局

  • Qualitative provider free-text feedback questionnaire(12 months)
  • Cost of prescribed inhalers(24 months, cumulative and broken into individual time periods)
  • System usage: conversation aid access(12 months, cumulative and broken into individual time periods)
  • System usage: decision-support access(24 months, cumulative and broken into individual time periods)
  • Provider feedback: 10-item System Usability Scale(12 months)
  • Quantitative patient Likert-Scale questionnaire(12 months)
  • Patient feedback: 4-item Shared Decision-Making Process Scale(12 months)
  • Qualitative patient free-text feedback questionnaire(12 months)
  • Quantitative provider Likert-Scale questionnaire(12 months)
  • Asthma Control(24 months, cumulative and broken into individual time periods)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Samir Gupta

Associate Professor

University of Toronto

研究点 (2)

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