<div dir="ltr"><div>In simNIBS we don't model TACS per se, but for typical low frequencies that are relevant for stimulation (and even up to several kHz) we are in the quasi stationary regime where you simply scale the field with the input waveform. Typically we would not believe that high frequencies above 500 Hz lead to stimulation effects unless combined with another closeby frequency to create temporal interference stimulation which is a separate issue governed by the non-linear effects of the envelope, so I am afraid I cannot advise on simulation with high frequencies in general.</div><div>Best,</div><div>Kristoffer<br></div></div><br><div class="gmail_quote"><div dir="ltr" class="gmail_attr">On Mon, 20 Sept 2021 at 09:05, SIKANDER KHAN <<a href="mailto:sikander.khan@s.unikl.edu.my">sikander.khan@s.unikl.edu.my</a>> wrote:<br></div><blockquote class="gmail_quote" style="margin:0px 0px 0px 0.8ex;border-left:1px solid rgb(204,204,204);padding-left:1ex">
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<div dir="auto">Dear Team,<br>
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<span style="white-space:pre-wrap">Kindly guide me about TACS Simulation (Frequency > 1 KHz, Voltage setting and Current),</span><br>
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<span style="white-space:pre-wrap">Waiting anxiously for your reply. </span></div>
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<b><font style="font-size:16px">Sikander Khan</font></b>
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<div dir="auto"><b><font style="font-size:12px">PhD(IT),</font></b></div>
<div dir="auto"><b><font style="font-size:12px">5248-0221-001</font></b></div>
<div dir="auto"><font style="font-size:12px"><a href="mailto:sikander.khan@s.unikl.edu.my" target="_blank">sikander.khan@s.unikl.edu.my</a></font></div>
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