Best Remote Solutions for Clinical Trials

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Remote monitoring technologies are transforming clinical trials, enabling precise data collection, enhanced participant comfort, and improved efficiency. This article outlines the best remote solutions for clinical trials, categorized by their primary functions, to help researchers and clinicians choose the most suitable tools for their needs.

1. Devices for Activity and Sleep Monitoring

A man in a white t-shirt and jeans stands smiling, highlighting Fibion Wearables' cutting-edge features like a 3-Axis Accelerometer, HRV/PPG, Sleep Movement, and Posture Allocation. Ideal for clinical trials, these remote solutions enhance lifestyle monitoring effortlessly.
  • Fibion SENS
    • Features: Long battery life (22 weeks), compact design, 3-axis accelerometer.
    • Application: Ideal for long-term activity tracking in clinical trials.
  • Fibion Helix
    • Features: Tracks physical activity, heart rate, and heart rate variability (HRV). Customizable SDK and API for tailored integration.
    • Application: Perfect for comprehensive activity and sleep monitoring with flexibility for various research applications.
  • ActiGraph Leap
    • Features: Combines accelerometry and physiological measurements. Offers high-resolution data collection and robust software integration.
    • Application: Widely used in research for detailed activity and sleep tracking.

2. Tools for Physiological Data Monitoring

A person in a white shirt and electronic wearable devices is surrounded by information on FIBION Flash and FIBION Vitals features. The blue and white background highlights their role in remote solutions for clinical trials, merging technology with wellness insights.
  • Bittium Faros
    • Features: Multi-lead ECG monitoring with accelerometry, real-time Bluetooth data streaming.
    • Application: Advanced cardiac and physiological monitoring in clinical research.
  • Fibion Vitals
    • Features: Monitors heart rate, HRV, respiration, and movement patterns. Includes a comfortable chest strap and wireless connectivity.
    • Application: Ideal for in-depth physiological data collection, including sleep and respiratory assessments.
  • Fibion Flash
    • Features: Single-lead ECG, HRV monitoring, 9-axis motion sensor. Flexible attachment methods and customizable SDK.
    • Application: Comprehensive monitoring for physical activity and physiological studies.

3. Contactless Monitoring Solutions

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  • Fibion Emfit
    • Features: Utilizes ballistocardiography technology to measure heart rate variability, heart rate, and respiration. Designed for under-mattress use.
    • Application: Provides detailed sleep data with no need for wearable devices, ensuring high participant comfort.
  • Sleepiz
    • Features: Uses radar technology for contactless monitoring of respiratory patterns, sleep stages, and pulse rate.
    • Application: Suitable for capturing respiratory and sleep data remotely.
  • Albus Home RD
    • Features: Monitors respiratory symptoms and environmental metrics during sleep without direct contact.
    • Application: Enables remote monitoring of breathing patterns and sleep quality in clinical trials.

Conclusion

Remote monitoring technologies play a crucial role in enhancing the efficiency and accuracy of clinical trials.

  • For activity and sleep monitoring, devices like Fibion SENS, Fibion Helix, and ActiGraph Leap provide reliable and detailed data collection.
  • For physiological data monitoring, tools such as Bittium Faros, Fibion Vitals, and Fibion Flash offer advanced solutions tailored to various research needs.
  • Among the contactless options, Fibion Emfit stands out as the best solution, offering detailed sleep and physiological data without the need for wearables, ensuring maximum participant comfort and compliance.

By selecting the right remote monitoring tools, researchers and clinicians can improve participant experiences, optimize data collection, and drive successful trial outcomes.

Call to Action

📅 If you want to learn more about Fibion SENS, Fibion Helix, Fibion Flash, Fibion Emfit, and Fibion Vitals, do not hesitate to book a video call with our expert Dr. Miriam Cabrita, or to ask for a quote.

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Why is remote monitoring important in clinical trials? +

Remote monitoring improves the efficiency and accuracy of clinical trials by allowing real-time data collection, enhancing participant comfort, and reducing logistical challenges associated with in-person visits.

Which devices are best for monitoring activity and sleep in clinical trials? +

Devices like Fibion SENS, Fibion Helix, and ActiGraph Leap are excellent for tracking physical activity and sleep. They offer long battery life, high-resolution data, and customizable software integration for research needs.

What are the benefits of contactless monitoring in clinical trials? +

Contactless monitoring devices, like Fibion Emfit and Sleepiz, ensure high participant comfort by eliminating the need for wearables. They provide accurate data on sleep, respiration, and other physiological metrics without intruding on daily routines.

Which tools are recommended for physiological data monitoring? +

Tools like Bittium Faros, Fibion Vitals, and Fibion Flash are recommended for collecting physiological data. These devices monitor heart rate, HRV, respiration, and movement patterns with high precision, making them ideal for advanced clinical research.

How do researchers choose the best remote monitoring tool for clinical trials? +

Researchers should consider factors such as data accuracy, participant comfort, battery life, and integration capabilities (e.g., SDKs and APIs). Choosing a device that aligns with the study’s specific goals is critical for successful data collection.

Picture of Samad Esmaeilzadeh

Samad Esmaeilzadeh

About Fibion

Fibion Inc. offers scientifically valid measurement technologies for sleep, sedentary behavior, and physical activity, integrating these with cloud-based modern solutions for ease of use and streamlined research processes, ensuring better research with less hassle Contact us.

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