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		<title>k-Wave User Forum &#187; Topic: focused ultrasound</title>
		<link>http://www.k-wave.org/forum/topic/focused-ultrasound</link>
		<description>Support for the k-Wave MATLAB toolbox</description>
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		<pubDate>Wed, 13 May 2026 12:58:58 +0000</pubDate>
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			<title>Bradley Treeby on "focused ultrasound"</title>
			<link>http://www.k-wave.org/forum/topic/focused-ultrasound#post-5731</link>
			<pubDate>Tue, 01 Nov 2016 22:55:25 +0000</pubDate>
			<dc:creator>Bradley Treeby</dc:creator>
			<guid isPermaLink="false">5731@http://www.k-wave.org/forum/</guid>
			<description>&#60;p&#62;Hi paruchsr,&#60;/p&#62;
&#60;p&#62;There isn't a temperature diffusion code included in the current version of k-Wave (V1.1), although we intend to include one with the next release. &#60;/p&#62;
&#60;p&#62;Brad.
&#60;/p&#62;</description>
		</item>
		<item>
			<title>paruchsr on "focused ultrasound"</title>
			<link>http://www.k-wave.org/forum/topic/focused-ultrasound#post-5722</link>
			<pubDate>Wed, 26 Oct 2016 13:41:06 +0000</pubDate>
			<dc:creator>paruchsr</dc:creator>
			<guid isPermaLink="false">5722@http://www.k-wave.org/forum/</guid>
			<description>&#60;p&#62;Hello,&#60;br /&#62;
I would like to simulate HIFU within a 2D axisymmetric geometry. I want to obtain the focal temperature rise and lesion volume from the simulation. Would that be possible to do in k-wave as it is, or will I need to write a code for the thermal simulation in order to get the temperature rise from the pressure values? &#60;/p&#62;
&#60;p&#62;I appreciate any help you can provide.&#60;/p&#62;
&#60;p&#62;Thank you.
&#60;/p&#62;</description>
		</item>
		<item>
			<title>Bradley Treeby on "focused ultrasound"</title>
			<link>http://www.k-wave.org/forum/topic/focused-ultrasound#post-5603</link>
			<pubDate>Wed, 27 Jul 2016 09:33:25 +0000</pubDate>
			<dc:creator>Bradley Treeby</dc:creator>
			<guid isPermaLink="false">5603@http://www.k-wave.org/forum/</guid>
			<description>&#60;p&#62;Hi s.b1993,&#60;/p&#62;
&#60;p&#62;Unless I'm missing something, the f-number you define seems implausible if you are relying only on geometric focusing, as this would imply an aperture diameter of d = 4 cm / 0.0667 = 60 cm. Is this what you had in mind?&#60;/p&#62;
&#60;p&#62;If you're new to k-Wave, the best way to get started is to work through the examples included in the toolbox (via the MATLAB help browser), and the k-Wave manual.&#60;/p&#62;
&#60;p&#62;Brad.
&#60;/p&#62;</description>
		</item>
		<item>
			<title>s.b1993 on "focused ultrasound"</title>
			<link>http://www.k-wave.org/forum/topic/focused-ultrasound#post-5593</link>
			<pubDate>Fri, 22 Jul 2016 04:24:37 +0000</pubDate>
			<dc:creator>s.b1993</dc:creator>
			<guid isPermaLink="false">5593@http://www.k-wave.org/forum/</guid>
			<description>&#60;p&#62;how can i run this simulation ? :(
&#60;/p&#62;</description>
		</item>
		<item>
			<title>s.b1993 on "focused ultrasound"</title>
			<link>http://www.k-wave.org/forum/topic/focused-ultrasound#post-5591</link>
			<pubDate>Thu, 21 Jul 2016 12:40:40 +0000</pubDate>
			<dc:creator>s.b1993</dc:creator>
			<guid isPermaLink="false">5591@http://www.k-wave.org/forum/</guid>
			<description>&#60;p&#62;Hello&#60;br /&#62;
i want to simulate a 2D heterogeneous medium of water and a 3mm bone layer.&#60;br /&#62;
the time varying acoustic source is before the bone layer and it's a section of circle ( f-number=.06667) and it's focusing point is 4cm after bone layer.&#60;br /&#62;
I'm a beginner and i have difficulty in defining the source and focus location.&#60;br /&#62;
could you help me ?&#60;/p&#62;
&#60;p&#62;thank you in advance
&#60;/p&#62;</description>
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