<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Neuromechanics | Andreas Skiadopoulos</title><link>https://askiadopoulos.xyz/tags/neuromechanics/</link><atom:link href="https://askiadopoulos.xyz/tags/neuromechanics/index.xml" rel="self" type="application/rss+xml"/><description>Neuromechanics</description><generator>Hugo Blox Builder (https://hugoblox.com)</generator><language>en-us</language><lastBuildDate>Thu, 26 Oct 2023 00:00:00 +0000</lastBuildDate><image><url>https://askiadopoulos.xyz/media/icon_hu_b8d6e68d47d96ac8.png</url><title>Neuromechanics</title><link>https://askiadopoulos.xyz/tags/neuromechanics/</link></image><item><title>Motor Control and Neurorehabilitation</title><link>https://askiadopoulos.xyz/project/tscs/</link><pubDate>Thu, 26 Oct 2023 00:00:00 +0000</pubDate><guid>https://askiadopoulos.xyz/project/tscs/</guid><description>&lt;p&gt;This project spans the planning, assessment, and implementation of an individualized transspinal stimulation and locomotor-training program for adults with spinal cord injury.&lt;/p&gt;
&lt;details class="print:hidden xl:hidden" open&gt;
&lt;summary&gt;Table of Contents&lt;/summary&gt;
&lt;div class="text-sm"&gt;
&lt;nav id="TableOfContents"&gt;
&lt;ul&gt;
&lt;li&gt;&lt;a href="#research-overview"&gt;Research Overview&lt;/a&gt;&lt;/li&gt;
&lt;li&gt;&lt;a href="#research-contributions"&gt;Research Contributions&lt;/a&gt;&lt;/li&gt;
&lt;li&gt;&lt;a href="#research-focus"&gt;Research Focus&lt;/a&gt;&lt;/li&gt;
&lt;li&gt;&lt;a href="#in-the-klab4recovery-lab"&gt;In the Klab4Recovery Lab&lt;/a&gt;&lt;/li&gt;
&lt;/ul&gt;
&lt;/nav&gt;
&lt;/div&gt;
&lt;/details&gt;
&lt;h2 id="research-overview"&gt;Research Overview&lt;/h2&gt;
&lt;p&gt;Noninvasive brain and spinal cord neuromodulatory techniques have shown strong potential as neural interfaces to support gait recovery in individuals with neurological disorders. Among these approaches, &lt;strong&gt;transspinal (transcutaneous spinal cord) stimulation (tSCS)&lt;/strong&gt; has emerged as a promising method for modulating spinal cord excitability and enhancing locomotor function following upper motoneuron lesions.&lt;/p&gt;
&lt;p&gt;During my postdoctoral research fellowship in Professor Maria Knikou’s &lt;strong&gt;Klab4Recovery Research Program&lt;/strong&gt; at the College of Staten Island, CUNY in New York, I focused on the &lt;strong&gt;biomechanical&lt;/strong&gt; and &lt;strong&gt;neurophysiological&lt;/strong&gt; analysis of human motor control through clinical research studies and clinical trials that examined the &lt;strong&gt;neuromechanical mechanisms&lt;/strong&gt; of noninvasive transspinal stimulation delivered alone or alongside locomotor training. Our work aimed to advance &lt;strong&gt;sensorimotor recovery&lt;/strong&gt; and improve &lt;strong&gt;standing and walking abilities&lt;/strong&gt; in individuals with chronic spinal cord injury. These studies were supported by grants from the &lt;strong&gt;National Institutes of Health (NIH)&lt;/strong&gt; and the &lt;strong&gt;New York State Department of Health Spinal Cord Injury Research Board&lt;/strong&gt;.&lt;/p&gt;
&lt;h2 id="research-contributions"&gt;Research Contributions&lt;/h2&gt;
&lt;p&gt;During my time in the Klab4Recovery program, I contributed to several clinical research projects in which transspinal stimulation was applied either as a &lt;strong&gt;neuromodulation&lt;/strong&gt; method or as a &lt;strong&gt;neurorecovery&lt;/strong&gt; intervention integrated with robot-assisted locomotor training (Lokomat® 6 Pro, Hocoma).&lt;/p&gt;
&lt;p&gt;My contributions included:&lt;/p&gt;
&lt;ul&gt;
&lt;li&gt;Completing &lt;strong&gt;more than 100 experimental sessions&lt;/strong&gt; involving clinical, neurophysiological, and biomechanical data collection&lt;/li&gt;
&lt;li&gt;Supporting the administration of &lt;strong&gt;over 200 locomotor training and transspinal stimulation treatment sessions&lt;/strong&gt;&lt;/li&gt;
&lt;li&gt;Developing &lt;strong&gt;signal processing approaches&lt;/strong&gt; and &lt;strong&gt;mathematical algorithms&lt;/strong&gt; for data analysis&lt;/li&gt;
&lt;li&gt;Contributing to all neurophysiological experiments involving healthy participants and individuals with spinal cord injury, including full setup and instrumentation&lt;/li&gt;
&lt;/ul&gt;
&lt;h2 id="research-focus"&gt;Research Focus&lt;/h2&gt;
&lt;p&gt;During my fellowship, I aimed to clarify the mechanisms through which spinal cord stimulation influences the neural control of gait. This work strengthened my understanding of how neuromodulatory techniques may improve rehabilitation outcomes in neurological populations and deepened my integration of neurophysiology and the biomechanics of human movement within a translational research framework.&lt;/p&gt;
&lt;h2 id="in-the-klab4recovery-lab"&gt;In the Klab4Recovery Lab&lt;/h2&gt;
&lt;p&gt;
&lt;figure id="figure-robot-assisted-locomotor-training-neurophysiological-testing-and-eeg-sessions-in-the-klab4recovery-lab-cuny"&gt;
&lt;div class="flex justify-center "&gt;
&lt;div class="w-full" &gt;&lt;img src="lab-gallery.jpg" alt="Klab4Recovery lab gallery: Lokomat-assisted locomotor training, harness fitting, TMS setup, reflex and EMG testing, electrode preparation, wireless EMG instrumentation, and an EEG session" loading="lazy" data-zoomable /&gt;&lt;/div&gt;
&lt;/div&gt;&lt;figcaption&gt;
Robot-assisted locomotor training, neurophysiological testing, and EEG sessions in the Klab4Recovery lab, CUNY
&lt;/figcaption&gt;&lt;/figure&gt;
&lt;/p&gt;
&lt;p&gt;Research projects were coordinated by Dr. Maria Knikou (
). The National Institutes of Health
Grant also supported by the
, the
, and co-coordinated by Dr. Noam Y. Harel (
).&lt;/p&gt;</description></item></channel></rss>