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A stochastic model of the electrically stimulated auditory nerve: pulse-train response

I.C. Bruce, L.S. Irlicht, M.W. White, S.J. O'Leary, S. Dynes, E. Javel, G.M. Clark
<span title="">1999</span> <i title="Institute of Electrical and Electronics Engineers (IEEE)"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/nrcoa2vuhjcvfctty6zgus57um" style="color: black;">IEEE Transactions on Biomedical Engineering</a> </i> &nbsp;
Third, it is shown that the stochastic model is able to predict the general magnitude and behavior of variance in discharge rate as a function of pulse rate, while the deterministic model predicts no variance  ...  for pulse-train stimuli is due to stochastic activity.  ...  Shepherd for their part in collecting the physiological data of [9] , R. Shepherd, A. Burkitt, L.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1109/10.764939">doi:10.1109/10.764939</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/10356869">pmid:10356869</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/bkb7ndtxavh3rongctiyv3qarm">fatcat:bkb7ndtxavh3rongctiyv3qarm</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20170812025009/http://cochlear-implant-science.info/literature/BrucePulseTrainNeuro.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/8b/87/8b8714de80a242bed89ca146670dc4a2beae7187.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1109/10.764939"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> ieee.com </button> </a>

Predicting the Threshold of Pulse-Train Electrical Stimuli Using a Stochastic Auditory Nerve Model: The Effects of Stimulus Noise

Y. Xu, L.M. Collins
<span title="">2004</span> <i title="Institute of Electrical and Electronics Engineers (IEEE)"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/nrcoa2vuhjcvfctty6zgus57um" style="color: black;">IEEE Transactions on Biomedical Engineering</a> </i> &nbsp;
In this paper, thresholds for noise-modulated pulse-train stimuli are predicted utilizing a stochastic neural-behavioral model of ensemble fiber responses to bi-phasic stimuli.  ...  suggest an NofM model for prediction of pulse-train threshold.  ...  Bruce et al. determined the closed-form solution for the mean and variance of total neural spike number under a noise-free electrical pulse train with constant amplitude using a renewal process model  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1109/tbme.2004.824143">doi:10.1109/tbme.2004.824143</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/15072213">pmid:15072213</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/dqrkeax34ndrzbom2j4qscemaa">fatcat:dqrkeax34ndrzbom2j4qscemaa</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20040905211125/http://www.duke.edu:80/%7Eyx3/papers/IEEEBMEXu2004.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/16/2e/162ec722d909109cdf275c4eab7bd7cf9d780a9e.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1109/tbme.2004.824143"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> ieee.com </button> </a>

Encoding and decoding amplitude-modulated cochlear implant stimuli—a point process analysis

Joshua H. Goldwyn, Eric Shea-Brown, Jay T. Rubinstein
<span title="2010-02-23">2010</span> <i title="Springer Nature"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/2awqvcobm5bw3bostcqrykczhe" style="color: black;">Journal of Computational Neuroscience</a> </i> &nbsp;
In this paper, we analyze simulated responses of the auditory nerve to amplitude-modulated cochlear implant stimuli using a point process model.  ...  Using a neural decoding method that jitters spike times to degrade its temporal resolution and then computes a common measure of phase locking from spike trains of a heterogeneous population of model nerve  ...  Acknowledgements The authors thank four anonymous reviewers for providing thoughtful critiques that have led to improvements of this manuscript. The authors also thank Dr. R.V. Shannon and Dr. J.J.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1007/s10827-010-0224-9">doi:10.1007/s10827-010-0224-9</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/20177761">pmid:20177761</a> <a target="_blank" rel="external noopener" href="https://pubmed.ncbi.nlm.nih.gov/PMC2898280/">pmcid:PMC2898280</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/uz4mldxnfna6pkvmyvmdxzcrga">fatcat:uz4mldxnfna6pkvmyvmdxzcrga</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20100619132410/http://www.amath.washington.edu/~jgoldwyn/content/PointProcessAMJCompNeuro.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/90/e9/90e9e89376274b2b277ee2c6f6d5b01dfb699197.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1007/s10827-010-0224-9"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> springer.com </button> </a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2898280" title="pubmed link"> <button class="ui compact blue labeled icon button serp-button"> <i class="file alternate outline icon"></i> pubmed.gov </button> </a>

Dynamical Instability Determines the Effect of Ongoing Noise on Neural Firing

David E. O'Gorman, John A. White, Christopher A. Shera
<span title="2009-03-24">2009</span> <i title="Springer Nature"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/w7szzptlx5egbprakqptqjii7u" style="color: black;">Journal of the Association for Research in Otolaryngology</a> </i> &nbsp;
At low stimulation rates, electrically stimulated auditory nerve fibers typically fire regularly, in lock-step to the applied stimulus.  ...  We demonstrate, however, that the nonlinear dynamics of neural excitation and refractoriness embodied in the FitzHugh-Nagumo (FN) model produce realistic firing irregularity at high stimulus rates, even  ...  stimulating discussions.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1007/s10162-008-0148-5">doi:10.1007/s10162-008-0148-5</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/19308644">pmid:19308644</a> <a target="_blank" rel="external noopener" href="https://pubmed.ncbi.nlm.nih.gov/PMC2674196/">pmcid:PMC2674196</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/lp5z2owrmrbjxmujfpekurh7zi">fatcat:lp5z2owrmrbjxmujfpekurh7zi</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20191205023212/http://europepmc.org/backend/ptpmcrender.fcgi?accid=PMC2674196&amp;blobtype=pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/64/cc/64cc65534d49d7ddfeb1dec5a44f7e9cf6314198.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1007/s10162-008-0148-5"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> springer.com </button> </a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2674196" title="pubmed link"> <button class="ui compact blue labeled icon button serp-button"> <i class="file alternate outline icon"></i> pubmed.gov </button> </a>

The effect of positive interspike interval correlations on neuronal information transmission

Sven Blankenburg, Benjamin Lindner
<span title="">2016</span> <i title="American Institute of Mathematical Sciences (AIMS)"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/vv36npzcdbcsned2lnm5bqyjhq" style="color: black;">Mathematical Biosciences and Engineering</a> </i> &nbsp;
We demonstrate that for low spiking variability the renewal model acts as a low-pass filter of information (coherence has a global maximum at zero frequency), whereas the non-renewal model displays a pronounced  ...  For these simplified neuron models we analytically calculate ISI density and power spectrum of the spontaneous spike train as well as approximations for input-output cross-spectrum and spike-train power  ...  Note that the non-renewal ISI sequence is equivalent to a moving average process of order one; for results on such processes (some of which are derived below for completeness), see for instance [23] .  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.3934/mbe.2016001">doi:10.3934/mbe.2016001</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/27106183">pmid:27106183</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/t6dij3cpjbhcvckjdcsariii4a">fatcat:t6dij3cpjbhcvckjdcsariii4a</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20190225162544/http://pdfs.semanticscholar.org/654d/a7b4f12b3bbf489d2617add009e7f40b5ec1.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/65/4d/654da7b4f12b3bbf489d2617add009e7f40b5ec1.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.3934/mbe.2016001"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="unlock alternate icon" style="background-color: #fb971f;"></i> Publisher / doi.org </button> </a>

Noise in Integrate-and-Fire Neurons: From Stochastic Input to Escape Rates

Hans E. Plesser, Wulfram Gerstner
<span title="">2000</span> <i title="MIT Press - Journals"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/rckx6fqoszfvva5c53bqivu5am" style="color: black;">Neural Computation</a> </i> &nbsp;
The approximation is improved if we add to the hazard function a probability current proportional to the derivative of the voltage.  ...  Stochastic resonance in response to periodic input occurs in both noise models and exhibits similar characteristics.  ...  Acknowledgments We acknowledge helpful comments by two anonymous referees on an earlier version of the manuscript. H. E.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1162/089976600300015835">doi:10.1162/089976600300015835</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/10636947">pmid:10636947</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/lbiiwn6ikjdnhoifjd44p6phzq">fatcat:lbiiwn6ikjdnhoifjd44p6phzq</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20170810234317/http://lcn.epfl.ch/~gerstner/PUBLICATIONS/Plesser00.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/cc/7d/cc7df432e01335cf642ffdd466955d011cd112d6.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1162/089976600300015835"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> mitpressjournals.org </button> </a>

A Review of the Integrate-and-fire Neuron Model: I. Homogeneous Synaptic Input

A. N. Burkitt
<span title="2006-04-19">2006</span> <i title="Springer Nature"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/yygdrbxuwbhipmoa6ihwvrwwue" style="color: black;">Biological cybernetics</a> </i> &nbsp;
The integrate-and-fire neuron model is one of the most widely used models for analyzing the behavior of neural systems.  ...  A brief overview is given of two issues in neural information processing that the integrate-and-fire neuron model has contributed to -the irregular nature of spiking in cortical neurons and neural gain  ...  Acknowledgements The author thanks Hamish Meffin and David Grayden for a critical reading of the manuscript and detailed comments.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1007/s00422-006-0068-6">doi:10.1007/s00422-006-0068-6</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/16622699">pmid:16622699</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/ruhoi6xlojhdfcscvbicfnrfze">fatcat:ruhoi6xlojhdfcscvbicfnrfze</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20170809114939/http://alice.nc.huji.ac.il/~netazach/action%20potential/burkitt%202006.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/cb/23/cb234efd512cfd2062b35b31ea02cc460dc409b9.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1007/s00422-006-0068-6"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> springer.com </button> </a>

Multiscale spike train variability in primary electrosensory afferents

Mark E. Nelson
<span title="">2002</span> <i title="Elsevier BV"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/7hv2fpxexvcfdabutsdakldzme" style="color: black;">Journal of Physiology - Paris</a> </i> &nbsp;
This increased regularity is beyond what would be expected for a renewal process model in which successive intervals are uncorrelated.  ...  Spike train variability is of fundamental importance for understanding how information is encoded and processed in the nervous system.  ...  Acknowledgements This work was supported by grants from the National Science Foundation (IBN-0078206) and the National Institute of Mental Health (R01 MH49242).  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1016/s0928-4257(03)00006-8">doi:10.1016/s0928-4257(03)00006-8</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/14692498">pmid:14692498</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/nruwk5yzcfavddl2qofapckm2e">fatcat:nruwk5yzcfavddl2qofapckm2e</a> </span>
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Noise Enhances Modulation Sensitivity in Cochlear Implant Listeners: Stochastic Resonance in a Prosthetic Sensory System?

Monita Chatterjee, Mark E. Robert
<span title="">2001</span> <i title="Springer Nature"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/w7szzptlx5egbprakqptqjii7u" style="color: black;">Journal of the Association for Research in Otolaryngology</a> </i> &nbsp;
electrical cochlea are stochastic in nature and have been successfully modeled as a Poisson process with deadtime stimulation of residual auditory nerve fibers.  ...  activity (Kiang nature of neural firing in response to electric stimulation.  ...  We thank Xiaosong Wang for her help with data collection. John J. Galvin III assisted in the experiments and is thanked for his comments on the manuscript.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1007/s101620010079">doi:10.1007/s101620010079</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/11550525">pmid:11550525</a> <a target="_blank" rel="external noopener" href="https://pubmed.ncbi.nlm.nih.gov/PMC3201182/">pmcid:PMC3201182</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/dnnzxqd2mrdfzoe33sommcngdi">fatcat:dnnzxqd2mrdfzoe33sommcngdi</a> </span>
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Behavioral Stochastic Resonance: How the Noise from a Daphnia Swarm Enhances Individual Prey Capture by Juvenile Paddlefish

JAN A FREUND, LUTZ SCHIMANSKY-GEIER, BEATRIX BEISNER, ALEXANDER NEIMAN, DAVID F RUSSELL, TATYANA YAKUSHEVA, FRANK MOSS
<span title="">2002</span> <i title="Elsevier BV"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/fydada535zbx7el5lxtbdrx6ga" style="color: black;">Journal of Theoretical Biology</a> </i> &nbsp;
However, stochastic resonance requires an external source of electrical noise in order to function. A swarm of plankton, for example Daphnia, can provide the required noise.  ...  We have previously shown that the "sh use stochastic resonance to enhance prey capture near the detection threshold of their sensory system.  ...  Spike generation in our threshold model of SR is a renewal process.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1006/jtbi.2001.2445">doi:10.1006/jtbi.2001.2445</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/11786033">pmid:11786033</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/5rzb2ehp3zh75jtirxm5qd6cre">fatcat:5rzb2ehp3zh75jtirxm5qd6cre</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20040521070138/http://summa.physik.hu-berlin.de:80/~janf/Publications/Papers_pdf/27.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/f2/b9/f2b9c17c2af7b59958b3d0a5d4edc5379c5cd06a.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1006/jtbi.2001.2445"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> Publisher / doi.org </button> </a>

Modelling non-invasive brain stimulation in cognitive neuroscience

Carlo Miniussi, Justin A. Harris, Manuela Ruzzoli
<span title="">2013</span> <i title="Elsevier BV"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/bphxj3vvszarjlpalo447rq3nm" style="color: black;">Neuroscience and Biobehavioral Reviews</a> </i> &nbsp;
Non-invasive brain stimulation (NIBS) is a method for the study of cognitive function that is quickly gaining popularity.  ...  Given that NIBS necessarily involves the relatively indiscriminate activation of large numbers of neurons, its impact on a neural system can be easily understood as modulation of neural activity that changes  ...  of stochastic resonance.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1016/j.neubiorev.2013.06.014">doi:10.1016/j.neubiorev.2013.06.014</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/23827785">pmid:23827785</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/chzsstj3cjh53lko4v3drxojgq">fatcat:chzsstj3cjh53lko4v3drxojgq</a> </span>
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Mind the Last Spike – Firing Rate Models for Mesoscopic Populations of Spiking Neurons [article]

Tilo Schwalger, Anton V. Chizhov
<span title="2019-09-22">2019</span> <i > arXiv </i> &nbsp; <span class="release-stage" >pre-print</span>
rate-based models for mesoscopic neural populations from realistic neuron dynamics at the microscopic level.  ...  The new types of rate models will allow a re-examination of models of cortical computations under biological constraints.  ...  Disclosure The authors declare no conflict of interest.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener" href="https://arxiv.org/abs/1909.10007v1">arXiv:1909.10007v1</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/ycu2rouplfh7dlrvwlbq2ucxtq">fatcat:ycu2rouplfh7dlrvwlbq2ucxtq</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20200906153236/https://arxiv.org/pdf/1909.10007v1.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/2d/0e/2d0ec73dc3c95ba27d8823b88298da7a4c222338.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener" href="https://arxiv.org/abs/1909.10007v1" title="arxiv.org access"> <button class="ui compact blue labeled icon button serp-button"> <i class="file alternate outline icon"></i> arxiv.org </button> </a>

Analysis of Integrate-and-Fire Neurons: Synchronization of Synaptic Input and Spike Output

A. N. Burkitt, G. M. Clark
<span title="">1999</span> <i title="MIT Press - Journals"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/rckx6fqoszfvva5c53bqivu5am" style="color: black;">Neural Computation</a> </i> &nbsp;
A new technique for analyzing the probability distribution of output spikes for the integrate-and-fire model is presented.  ...  for three classes of the integrate-and-fire model.  ...  Acknowledgments This work was funded by the Cooperative Research Centre for Cochlear Implant, Speech, and Hearing Research.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1162/089976699300016485">doi:10.1162/089976699300016485</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/10226187">pmid:10226187</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/l4bmoi7nrzee5m2eldmbjgmujm">fatcat:l4bmoi7nrzee5m2eldmbjgmujm</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20200310155953/https://minerva-access.unimelb.edu.au/bitstream/handle/11343/27524/119506_vol11_1137.pdf;jsessionid=DD61B9DECBBA9713D679578DEF185441?sequence=1" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/cd/3a/cd3ae68baeb49b6226ad54dad39e7a2055b6370c.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1162/089976699300016485"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> mitpressjournals.org </button> </a>

A Parametric Simulation of Neuronal Noise From Microelectrode Recordings

Kristian James Weegink, Paul A. Bellette, John J. Varghese, Peter A. Silburn, Paul A. Meehan, Andrew P. Bradley
<span title="">2017</span> <i title="Institute of Electrical and Electronics Engineers (IEEE)"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/kujklva47vealdwew7xiv34ble" style="color: black;">IEEE transactions on neural systems and rehabilitation engineering</a> </i> &nbsp;
In this paper we present an efficient model of the neuronal potentials recorded by a deep brain stimulation microelectrode (DBS MER) in the subthalamic nucleus.  ...  It was found that interspike interval times modeled using a Weibull distribution with a shape parameter of 0.8, slightly non-Poisosnian, gave the best fit of the simulations to patient recordings.  ...  Research funds were provided by The University of Queensland and Medtronics. A. P. B. is the recipient of an Australian Research Council Future Fellowship (FT110100623). K. J.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1109/tnsre.2016.2573318">doi:10.1109/tnsre.2016.2573318</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/27254870">pmid:27254870</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/6spc2xb7ojcjdfqziklmtzox34">fatcat:6spc2xb7ojcjdfqziklmtzox34</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20200831101022/https://arxiv.org/pdf/1307.5250v1.pdf" title="fulltext PDF download [not primary version]" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <span style="color: #f43e3e;">&#10033;</span> <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/4d/2f/4d2fd06b0724bcf232c4a50da9d934664115fcf7.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1109/tnsre.2016.2573318"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> ieee.com </button> </a>

Rectification of RF Fields in Load Dependent Coupled Systems: Application to Non-Invasive Electroceuticals

Sree N. Koneru, Charles R. Westgate, Kenneth J. McLeod
<span title="">2016</span> <i title="Scientific Research Publishing, Inc,"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/ok4mzlk3yfcl5gpvlswfyknepa" style="color: black;">Journal of Biomedical Science and Engineering</a> </i> &nbsp;
Applying these results in a physical prototype device, we show that up to7.5% demodulation can be obtained for a 40 MHz RF field pulsed at 1 KHz.  ...  Electroceuticals are medical devices that employ electric signals to alter the activity of specific nerve fibers to achieve therapeutic effects.  ...  Specifically, a popular nonpharmacological neurostimulation therapy for treating chronic pain is neural masking using Transcutaneous Electrical Nerve Stimulation [13] .  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.4236/jbise.2016.92007">doi:10.4236/jbise.2016.92007</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/jknwce5b55aabassjeefddiliu">fatcat:jknwce5b55aabassjeefddiliu</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20170923053228/http://file.scirp.org/pdf/JBiSE_2016022913444940.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/7e/57/7e57cf569cc984eff76fa0c7a8cba8795ce8cc6a.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.4236/jbise.2016.92007"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="unlock alternate icon" style="background-color: #fb971f;"></i> Publisher / doi.org </button> </a>
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