Current Brain Computer Interface (BCI) systems are limited by relying on neuronal spikes and decoding limited to kinematics only. For a BCI system to be practically useful, it should be able to decode brain information on a continuous basis with low latency. This study investigates if force can be decoded from local field potentials (LFP) recorded with deep brain electrodes located at the Subthalamic nucleus (STN) using data from 5 patients with Parkinson’s disease, on a continuous basis with low latency. A Wiener-Cascade (WC) model based decoder was proposed using both time-domain and frequency-domain features. The results suggest that high gamma band (300-500Hz) activity, in addition to the beta (13- 30Hz) and gamma band (55-90Hz) activit...
Local field potential (LFP) has gained increasing interest as an alternative input signal for brain-...
In recent years, local field potentials (LFPs) haveemerged as a promising alternative input signal f...
Brain-Computer Interface (BCI) offers the opportunity to paralyzed patients to control their movemen...
Current Brain Computer Interface (BCI) systems are limited by relying on neuronal spikes and decodin...
Lack of force information and longevity issues are impediments to the successful translation of Brai...
Limitations of many Brain Machine Interface (BMI) systems using invasive electrodes include reliance...
The functional use of brain-machine interfaces (BMIs) in everyday tasks requires the accurate decodi...
The basal ganglia are known to be involved in the planning, execution and control of gripping force ...
Neural oscillating patterns, or time-frequency features, predicting voluntary motor intention, can b...
Decoding neural activities related to voluntary and involuntary movements is fundamental to understa...
The first commercially sensing enabled deep brain stimulation (DBS) devices for the treatment of mov...
Brain signal decoding promises significant advances in the development of clinical brain computer in...
The basal ganglia are known to be involved in the planning, execution and control of gripping force ...
<p>Neurons in the subthalamic nucleus (STN) spontaneously fire rhythmically in vivo due to intrinsic...
There is much current interest in deep brain stimulation (DBS) of the subthalamic nucleus (STN) for ...
Local field potential (LFP) has gained increasing interest as an alternative input signal for brain-...
In recent years, local field potentials (LFPs) haveemerged as a promising alternative input signal f...
Brain-Computer Interface (BCI) offers the opportunity to paralyzed patients to control their movemen...
Current Brain Computer Interface (BCI) systems are limited by relying on neuronal spikes and decodin...
Lack of force information and longevity issues are impediments to the successful translation of Brai...
Limitations of many Brain Machine Interface (BMI) systems using invasive electrodes include reliance...
The functional use of brain-machine interfaces (BMIs) in everyday tasks requires the accurate decodi...
The basal ganglia are known to be involved in the planning, execution and control of gripping force ...
Neural oscillating patterns, or time-frequency features, predicting voluntary motor intention, can b...
Decoding neural activities related to voluntary and involuntary movements is fundamental to understa...
The first commercially sensing enabled deep brain stimulation (DBS) devices for the treatment of mov...
Brain signal decoding promises significant advances in the development of clinical brain computer in...
The basal ganglia are known to be involved in the planning, execution and control of gripping force ...
<p>Neurons in the subthalamic nucleus (STN) spontaneously fire rhythmically in vivo due to intrinsic...
There is much current interest in deep brain stimulation (DBS) of the subthalamic nucleus (STN) for ...
Local field potential (LFP) has gained increasing interest as an alternative input signal for brain-...
In recent years, local field potentials (LFPs) haveemerged as a promising alternative input signal f...
Brain-Computer Interface (BCI) offers the opportunity to paralyzed patients to control their movemen...