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临床试验/NCT05327101
NCT05327101已完成不适用

Quantifying Patient Preferences for Leadless Pacemaker Devices

Abbott Medical Devices11 个研究点 分布在 1 个国家目标入组 117 人开始时间: 2022年3月28日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
117
试验地点
11
主要终点
Mean Rankings for Pacemaker Device Features

研究概览

简要总结

Prospective, non-randomized, multi-center study designed to quantify patient preferences pertaining to risks and features of conventional transvenous pacemakers and leadless pacemakers

详细描述

The purpose of this study is to quantify patient preferences pertaining to risks and features of conventional transvenous pacemakers and leadless pacemakers. The preference study is designed to elicit patient preferences for risks and features that vary between a dual chamber leadless pacemaker system and a dual chamber transvenous pacemaker system, to quantify their relative importance.

研究设计

研究类型
Observational
观察模型
Cohort
时间视角
Prospective

入排标准

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

入选标准

  • Able to read and speak English to consent to participate in the survey
  • Willing and able to use a tablet or computer to complete the survey
  • Scheduled to undergo evaluation for a de novo cardiac pacemaker at the study site (patient may or may not have a known indication for a pacemaker at the time)

排除标准

  • 未提供

结局指标

主要结局

Mean Rankings for Pacemaker Device Features

时间窗: Baseline

Ranking of six pacemaker device features from most concerning (1) to least concerning (6)

Results From RPL Model of Discrete Choice Experiment Choice Questions - Preference Weights (Effect-coded Parameters)

时间窗: Baseline

The preference weights for the RPL model. Effect-coded parameters generate log-odds preference weights representing the relative strength of preference for each attribute level versus the mean effect across levels normalized at zero. A higher weight indicates a more preferred level while a lower weight indicates a less preferred level.

Results From RPL Model of Discrete Choice Experiment Choice Questions- Standard Deviations

时间窗: Baseline

The standard deviations representing the degree of variation in preference weights, with larger estimates representing preference heterogeneity.

Maximum-acceptable Risks of a Complication

时间窗: Baseline

Maximum-acceptable risk (MAR) of a complication was calculated for patients based off latent-class analysis with two groups-leadless class and transvenous class (see secondary outcome Constrained 2-class Latent-class model preference weights). The MAR represents risk level patients would be willing to accept to obtain their preferred pacemaker type, no discomfort, a device with longer battery life, and a device with more time since regulatory approval.

Maximum-acceptable Risks of an Infection

时间窗: Baseline

Maximum-acceptable risk (MAR) of an infection was calculated for patients based off latent-class analysis with two groups-leadless class and transvenous class (see secondary outcome Constrained 2-class Latent-class model preference weights). The MAR represent the risk that patients would be willing to accept to obtain their preferred pacemaker type, no discomfort, a device with longer battery life, and a device with more time since regulatory approval.

Probability of Choosing Specified Pacemakers - All 3 Profiles

时间窗: Baseline

Preference weight estimates were used to calculate the predicted probabilities that patients would choose a hypothetical pacemaker profile out of three different pacemaker types- leadless pacemaker removable, leadless pacemaker non-removable, or pacemaker with leads. Attributes for each pacemaker profile were defined using historical or published values. Preference weights from the latent class model were used to compute the probability that respondents within each class preference would choose a pacemaker profile over another.

Probability of Choosing Specified Pacemakers - Leadless Pacemaker Removable vs. Leadless Pacemaker Non-removable

时间窗: Baseline

Preference weight estimates were used to calculate the predicted probabilities that patients would choose a hypothetical pacemaker profile out of three different pacemaker types- leadless pacemaker removable or leadless pacemaker non-removable. Attributes for each pacemaker profile were defined using historical or published values. Preference weights from the latent class model were used to compute the probability that respondents within each class preference would choose a pacemaker profile over another.

Probability of Choosing Specified Pacemakers - Leadless Pacemaker Removable vs. Pacemaker With Leads

时间窗: Baseline

Preference weight estimates were used to calculate the predicted probabilities that patients would choose a hypothetical pacemaker profile out of three different pacemaker types- leadless pacemaker removable or pacemaker with leads. Attributes for each pacemaker profile were defined using historical or published values. Preference weights from the latent class model were used to compute the probability that respondents within each class preference would choose a pacemaker profile over another.

Probability of Choosing Specified Pacemakers - Leadless Pacemaker Non-removable vs. Pacemaker With Leads

时间窗: Baseline

Preference weight estimates were used to calculate the predicted probabilities that patients would choose a hypothetical pacemaker profile out of three different pacemaker types- leadless pacemaker non-removable or pacemaker with leads. Attributes for each pacemaker profile were defined using historical or published values. Preference weights from the latent class model were used to compute the probability that respondents within each class preference would choose a pacemaker profile over another.

次要结局

  • Constrained 2-class Latent-class Model Preference Weights(Baseline)
  • Number of Discrete Choice Experiment Questions Answered(Baseline)
  • Association of Patient Characteristics With Membership in the Transvenous Class Versus the Leadless Class(Baseline)

研究者

申办方类型
Industry
责任方
Sponsor

研究点 (11)

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