Search Results - "Otto, K.J."

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  1. 1

    Voltage pulses change neural interface properties and improve unit recordings with chronically implanted microelectrodes by Otto, K.J., Johnson, M.D., Kipke, D.R.

    “…Current neuroprosthetic systems based on electrophysiological recording have an extended, yet finite working lifetime. Some posited lifetime-extension…”
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    Journal Article
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    Repeated voltage biasing improves unit recordings by reducing resistive tissue impedances by Johnson, M.D., Otto, K.J., Kipke, D.R.

    “…Reactive tissue encapsulation of chronically implanted microelectrode probes can preclude long-term recording of extracellular action potentials. We…”
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    Journal Article
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    Brain-machine interfaces in rat motor cortex: neuronal operant conditioning to perform a sensory detection task by Vetter, R.J., Otto, K.J., Marzullo, T.C., Kipke, D.R.

    “…A chief concern in the pursuit of controlling a neuroprosthetic device using direct brain signals is the question of how many bits of information are…”
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    Conference Proceeding
  7. 7

    Effects of adsorbed proteins, an antifouling agent and long-duration DC voltage pulses on the impedance of silicon-based neural microelectrodes by Sommakia, S., Rickus, J.L., Otto, K.J.

    “…The successful use of implantable neural microelectrodes as neuroprosthetic devices depends on the mitigation of the reactive tissue response of the brain. One…”
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    Conference Proceeding Journal Article
  8. 8

    Titanium-based multi-channel, micro-electrode array for recording neural signals by McCarthy, P.T., Madangopal, R., Otto, K.J., Rao, M.P.

    “…Micro-scale brain-machine interface (BMI) devices have provided an opportunity for direct probing of neural function and have also shown significant promise…”
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    Conference Proceeding Journal Article
  9. 9

    Pursuing dynamic reorganization in auditory cortex using chronic, multichannel unit recordings in awake, behaving cats by Witte, R.S, Otto, K.J, Williams, J.C, Kipke, D.R

    Published in Neurocomputing (Amsterdam) (01-06-1999)
    “…We implanted microelectrode arrays bilaterally into auditory cortex of trained cats in order to assess dynamic cortical reorganization. Cats were trained to…”
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    Journal Article
  10. 10

    Evaluation of micro-electrocorticographic electrodes for electrostimulation by Wilks, S.J., Koivuniemi, A.S., Thongpang, S., Williams, J.C., Otto, K.J.

    “…Chronic neural recording and stimulation on the surface of the cortex with macroelectrodes has been shown to be promising for treating a wide range of…”
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    Conference Proceeding Journal Article
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    The benefits of modular brain-machine interface system design by Otto, K.J., Rousche, P.J., Kipke, D.R.

    “…Construction of a brain-machine interface system for neuroprosthetic purposes is at the forefront of many current neural engineering thrusts. Due to recent…”
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    Conference Proceeding
  12. 12

    Optimization of Microelectrode Design for Cortical Recording Based on Thermal Noise Considerations by Lempka, S.F., Johnson, M.D., Barnett, D.W., Moffitt, M.A., Otto, K.J., Kipke, D.R., McIntyre, C.C.

    “…Intracortical microelectrode recordings of neural activity show great promise as control signals for neuroprosthetic applications. However, faithful,…”
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    Conference Proceeding Journal Article
  13. 13

    In vitro and in vivo testing of a wireless multichannel stimulating telemetry microsystem by Ghovanloo, M., Otto, K.J., Kipke, D.R., Najafi, K.

    “…An inductively powered 64-site current microstimulating system, Interestim-2B, with a modular architecture and minimal number of off-chip components has been…”
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    Conference Proceeding
  14. 14

    Bias voltages at microelectrodes change neural interface properties in vivo by Johnson, M.D., Otto, K.J., Williams, J.C., Kipke, D.R.

    “…Rejuvenation of iridium microelectrode sites, which involves applying a 1.5 V bias for 4 s, has been shown to reduce site impedances of chronically implanted…”
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    Conference Proceeding
  15. 15

    Co-adaptive Kalman filtering in a naive rat cortical control task by Gage, G.J., Otto, K.J., Ludwig, K.A., Kipke, D.R.

    “…Control of prosthetic devices is possible via extra-cellular recordings from cortical neurons. Many of the current cortical control paradigms consist of…”
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    Conference Proceeding
  16. 16

    Brain-machine interfaces in rat motor cortex: implications of adaptive decoding algorithms by Otto, K.J., Vetter, R.J., Marzullo, T.C., Kipke, D.R.

    “…Construction of a direct brain-machine interface (BMI) for neuroprosthetic purposes is at the forefront of many current neural engineering thrusts. Due to…”
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    Conference Proceeding