Papers
3
Total Citations
134
H-Index
3
About
Jonathan P. Miller’s research sits at the intersection of neural engineering, neuro-oncology, and sensory neuroprosthetics, where he tackles fundamental challenges in restoring function after neurological injury. His most influential work addresses signal processing for brain-computer interfaces (BCIs), specifically developing methods to reduce artifacts in microelectrode recordings caused by functional electrical stimulation (FES)—a critical step toward seamless, closed-loop control of neuroprostheses for paralyzed limbs. This 2017 paper, with 59 citations, has helped shape how researchers clean neural signals in real-world BCI applications. Miller also made significant contributions to radiation oncology, demonstrating in a 2018 study (53 citations) that higher biologically effective doses from hypofractionated stereotactic brain radiation improve local control of resected brain metastases—a finding with direct clinical impact. Most recently, his 2023 work on “tessellation of artificial touch” via microstimulation of somatosensory cortex (22 citations) has opened new avenues for restoring tactile feedback in prosthetic hands, showing that patterned stimulation can convey precise location information. Across these domains, Miller’s work consistently bridges engineering precision with clinical translation, earning him recognition as a versatile and impactful researcher whose contributions span from bench to bedside.
Research Focus
Key Achievements
Top Papers
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