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临床试验/NCT05290792
NCT05290792已完成不适用

Use of Wearable Sensors for Early Detection and Tracking of Viral Respiratory Tract Infections: the WE SENSE Study

Emily McDonald1 个研究点 分布在 1 个国家目标入组 56 人开始时间: 2021年12月10日最近更新:
适应症
干预措施
相关药物

试验速览

阶段
不适用
状态
已完成
发起方
入组人数
56
试验地点
1
主要终点
Changes in heart rate (in beats per minute)

研究概览

简要总结

Viral respiratory tract infections (VRTI) are among the most common human illnesses, impacting billions globally. There is an unmet need to identify novel ways to detect, treat and prevent their spread. New wearable devices could address this need, using special biosensors worn by patients.

This is a single centre, controlled, before and after, longitudinal, clinical trial. Participants will receive FluMist, a live attenuated influenza vaccine, which will act as a proxy to a viral respiratory tract infection and create a very minor response to the immune system. Vital signs and activity levels will be monitored continuously using wearable biosensors for 7 days prior to and 7 days following, along with symptom tracking and blood tests to measure immune responses. Artificial intelligence (AI) and machine learning (ML) algorithms will be used to analyse the data.

AI and ML will identify subtle changes in vital signs and activity levels from the immune response to respiratory viruses. These data will help develop future methods to address important public health questions related to respiratory virus detection, containment and management.

The purpose of this study is to explore whether wearable sensors can detect, track the progress and recovery from viral respiratory tract infection.

详细描述

Presently, there are no tools to continuously assess the objective body's response to respiratory viral infection in real time. An individual's inflammatory response to infection is primarily measured by the presence of symptoms. For example, reliance on the presence of fever as a sensitive sign of viral infection, while objective and measurable, can miss at least 50% of symptomatic cases of influenza illness. Fever is also not a sufficient sign of infection in studies of SARS-CoV-2. An additional technology to pair with the present contact tracing, test and contain strategy could become a critical public health mitigation strategy for VRTIs. Evidence suggests that use of wearable biosensor technology may enable researchers and healthcare professionals to detect inflammatory responses. Therefore, they could assist in medical diagnosis at the early phase of disease development - even before the onset of clinical symptoms.

In this study, the investigators aim to leverage FLUMIST, an intranasal Live Attenuated Influenza Vaccine (LAIV), to create a very minor response of the immune system. FLUMIST is one of the vaccines recommended by the National Advisory Committee on Immunization (NACI), among other vaccines for this flu season. It will be used as a test case, representing body's response to a minor viral infection (like those of 'common cold'). In addition, the associated changes in vital signs (for example, changes in heart rate), activity levels, symptoms and inflammatory/immune markers will be monitored. Subtle patterns of change might only be detectable using artificial intelligence (AI). Applying AI and machine learning (ML) to the wearables' data can allow for the future early detection of VRTI, along with continuous tracking of its progress, recovery or deterioration.

Study schedule:

Patient participation in this research project will last 2 weeks and will include 14 visits. Each visit will last up to 60 minutes. During this 14-day follow-up period, participants will be required to wear 3 vital signs monitoring systems (shirt, watch and a ring) and to report twice daily about their wellbeing/symptoms and about their alcohol/caffeine/drugs consumption.

Assessments:

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Screening
盲法
None

入排标准

年龄范围
18 Years 至 59 Years(Adult)
性别
All
接受健康志愿者

入选标准

  • Men or women aged 18-59 years
  • Did not receive the 2021-2022 seasonal influenza vaccine
  • Not planning to get another vaccine during the 14-day observation period.

排除标准

  • PCR-confirmed VRTI at screening
  • Any infectious symptoms (fever, cough, rhinorrhea, sore throat, diarrhea, loss of smell or taste) within the previous 7 days
  • Any chronic medical condition;
  • Obesity (BMI>35 kg/m2);
  • Any prescription drug other than oral contraceptives or routine and stable dose medications;
  • Contraindication to LAIV
  • Current smoker or ex-smoker with >20 pack years of smoking
  • Recreational drug use
  • Self-reported history of substance abuse
  • Pregnant or attempting to become pregnant
  • Guillain-Barré syndrome (GBS) or BGS-like episode has occurred within 6 weeks of any prior influenza vaccination
  • Immunocompromised
  • People with severe asthma or medically attended wheezing in the 7 days prior to the proposed date of vaccination.

研究组 & 干预措施

Intra-individual changes of physiological and activity parameters

Other

Participants will be administered FluMist (live attenuated influenza vaccine) to induce a low grade VRTI (Day 0). Participants will be monitored in the 7 days prior and 7 days after vaccination via symptom questionnaires, blood draws, stair tests and vital sign monitoring from wearable sensors.

Each participant will serve as their own control, relying on the baseline measurements obtained over the 7-day period prior to inoculation.

干预措施: Administration of FluMist (Live Attenuated Influenza Vaccine) (Biological)

结局指标

主要结局

Changes in heart rate (in beats per minute)

时间窗: 14 days

Intra-individual changes in heart rate before and after receipt of the Live Attenuated Influenza Vaccine measured by wearable sensors.

Changes in heart rate variability (in milliseconds)

时间窗: 14 days

Intra-individual changes in heart rate variability before and after receipt of the Live Attenuated Influenza Vaccine measured by wearable sensors.

Changes in respiratory rate (in breaths per minute)

时间窗: 14 days

Intra-individual changes in respiratory rate before and after receipt of the Live Attenuated Influenza Vaccine measured by wearable sensors.

Changes in skin temperature (in degrees Celsius)

时间窗: 14 days

Intra-individual changes in skin temperature before and after receipt of the Live Attenuated Influenza Vaccine measured by wearable sensors.

Changes in oxygen saturation (SpO2 in %)

时间窗: 14 days

Intra-individual changes in oxygen saturation before and after receipt of the Live Attenuated Influenza Vaccine measured by wearable sensors.

Changes in acceleration (meters/second^2)

时间窗: 14 days

Intra-individual changes in acceleration before and after receipt of the Live Attenuated Influenza Vaccine measured by wearable sensors.

Changes in blood pressure (in mmHg)

时间窗: 14 days

Intra-individual changes in blood pressure before and after receipt of the Live Attenuated Influenza Vaccine measured by wearable sensors.

次要结局

未报告次要终点

研究者

发起方
Emily McDonald
申办方类型
Other
责任方
Sponsor Investigator
主要研究者

Emily McDonald

Associate Professor of Medicine, MD MSc FRCPC

McGill University Health Centre/Research Institute of the McGill University Health Centre

研究点 (1)

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