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NCT Number: NCT05505513

Can an Array of Micro-electrodes Implanted in a Human Nerve Record Neural Signals and Provide Feedback?

The investigators will investigate the device feasibility of human peripheral nerves and muscles recording and stimulation using percutaneous Utah Slanted Electrode Arrays (pUSEAs) implanted into residual peripheral arm nerves and EMG electrodes implanted in the residual muscles of patients with limb amputations in order to determine the ability of the HAPTIX (Hand Proprioception and Touch Interfaces) System to control an upper-extremity prosthesis, and to provide a sense of cutaneous touch and muscle proprioceptive feedback to the amputee.

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Key information

Conditions

Age range

18 year–65 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

The University Orthopaedic Center

Salt Lake City, Utah, 84108, United States

Location status: Recruiting

Location contact

Douglas Hutchinson, M.D.

CONTACT

801-587-5453

About this study

The investigators will assess the functional capability of microelectrode slanted arrays with a large number of electrodes implanted into peripheral nerves of patients with upper-limb transradial amputations. The investigators hypothesize that recording neural signals from individual electrodes will provide selective motor information that is adequate to allow control over artificial limbs with many moving parts, i.e., wrist, and individually moving digits. These studies will also investigate to what extent microstimulation can provide sensory feedback from a prosthetic limb.

The HAPTIX System study will investigate the safety and efficacy of using electromyography (EMG), plus neural recording and nerve stimulation, to control and provide cutaneous and proprioceptive feedback from a dexterous, motorized and sensorized, upper-extremity prosthesis (e.g., the DEKA LUKE arm) used by amputees.

The HAPTIX System is intended to permit the function of an upper-extremity prosthesis to assist in activities of daily living (ADLs) using neurostimulation and recording of EMG and neural signals to control the prosthesis, and evoke touch sensation and proprioception in upper-extremity amputees with DEKA LUKE sensorized upper extremity prosthesis.

The HAPTIX System study is an early feasibility study (EFS) of the use of a combination of EMG recording electrodes, neural recording and stimulating electrodes, and external electronics and algorithms designed to provide sensory and proprioceptive feedback to the amputee, and to control movements of a prosthetic hand.

EMG signals from the residual forearm muscles of amputees will be recorded using up to 8 custom bipolar PermaLoc® electrodes. The incorporation of these electrodes into the HAPTIX System is described in 001_G190131A002_Amended_Device Description. Nerve signals will also be recorded using up to 3 percutaneous Utah Slanted Electrode Arrays (pUSEAs), whose electrode tips will be implanted intrafascicularly in residual arm nerves. Present-version pUSEAs utilize a transcutaneous lead and extracorporeal connector. Motor signals from the nerve will contribute to decoding motor intents decoded to control an advanced prosthetic hand. Nerve stimulation to evoke sensory perceptions will be provided by passing current through individual pUSEA electrodes, separately or in combination.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • at least 18 years of age and less than 65 years of age
  • unilateral and bilateral traumatic or elective upper extremity amputations at the transradial level

Exclusion criteria

  • incarceration
  • pregnancy
  • inability to consent
  • psychiatric comorbidity
  • medical conditions that significantly increase the risk of adverse effects of general anesthesia

Treatment and study plan

percutaneous Utah Slanted Electrode Arrays (pUSEAs)

Device

Microelectrode slanted arrays with a large number of electrodes will be surgically implanted into peripheral nerves of patients with limb amputations.

Primary outcomes

  1. Measure Action Potentials (millivolts, mV)

    Time frame: Up to 2-years Follow-up

    Three participants after receiving a stimuli will have action potentials (millivolts, mV) arising from the axons surrounding the tip of each electrode recorded in time. The moving action potentials (mV) measure five phases: resting potential, depolarization, peak, repolarization, and hyperpolarization.

Study contacts

Contact information is provided by the study sponsor or research team.

Douglas Hutchinson, M.D.

CONTACT

[email protected]

801-587-5400

Sponsors and collaborators

Lead sponsor

University of Utah

Other

Registry information

Official study title

Can an Array of Micro-electrodes Implanted in a Human Nerve Record Neural Signals and Provide Sensory Feedback Useful for Controlling a Prosthetic Device?

Important dates

Study start
2020
Primary completion
2028
Study completion
2028
First posted
Aug 17, 2022
Registry last updated
May 13, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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