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A novel low-profile self-expanding epidural lead array system that is fully collapsible, deployable, and retrievable
Hassan Beheshti Seresht1, Trent D Emerick2, Gaurav Chauhan2
1Department of Industrial Engineering, University of Pittsburgh, Pittsburgh, PA 15260, United States.
Pain Medicine (Malden, Mass.)
|September 4, 2025
Summary
A new Spinal Cord Stimulator (SCS) design prevents lead migration and offers better pain coverage. This innovative device is deployable, retrievable, and anatomically designed for improved chronic pain management.
Area of Science:
- Biomedical Engineering
- Medical Devices
- Pain Management Technology
Background:
- Spinal Cord Stimulator (SCS) devices, used since the 1970s, manage chronic pain.
- Current SCS leads (cylindrical and paddle) have limitations: cylindrical leads migrate, paddle leads require large incisions.
- Existing devices face challenges with displacement and suboptimal pain relief.
Purpose of the Study:
- To develop a novel Spinal Cord Stimulator (SCS) device.
- To overcome limitations of current SCS technology, such as lead migration and invasiveness.
- To create a low-profile, deployable, and retrievable SCS system tailored to epidural anatomy.
Main Methods:
- Designed and fabricated a prototype SCS device with a nitinol mesh frame and ePTFE membrane.
- Integrated platinum-iridium electrodes with an external battery pack.
- Conducted in vitro mechanical and electrochemical tests to evaluate performance and material suitability.
Main Results:
- The nitinol mesh frame allows the device to self-expand and conform to the epidural space.
- The device collapses to a diameter smaller than a 14-gauge needle for minimally invasive delivery.
- Mechanical and electrochemical tests confirmed device functionality and material appropriateness.
Conclusions:
- The novel SCS design effectively prevents dislocation and migration, ensuring better wall apposition.
- The larger surface area enhances pain management capabilities.
- This next-generation SCS platform shows significant potential for improved chronic pain treatment.
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