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agentmess committed Oct 18, 2024
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2 changes: 1 addition & 1 deletion Artifacts.html
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Expand Up @@ -454,7 +454,7 @@ <h2>Learning Goals<a class="headerlink" href="#learning-goals" title="Permalink
<section id="introduction">
<h2>Introduction<a class="headerlink" href="#introduction" title="Permalink to this heading">#</a></h2>
<p>Many of the artifacts that occur in MRI can be understood and analyzed using the k-space perspective. In particular, they can be understood as the k-space data being modified by some function. This is described mathematically in
<span class="xref myst">MRI Signal Equation and K-psace - K-space Data Weighting</span></p>
<a class="reference internal" href="MRI%20Signal%20Equation.html"><span class="doc std std-doc">MRI Signal Equation and K-space</span></a> in the K-space Data Weighting section.</p>
</section>
<section id="artifact-comparison">
<h2>Artifact Comparison<a class="headerlink" href="#artifact-comparison" title="Permalink to this heading">#</a></h2>
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2 changes: 1 addition & 1 deletion MRI System.html
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Expand Up @@ -519,7 +519,7 @@ <h2>Fundamental MRI Experiment Procedure<a class="headerlink" href="#fundamental
<li><p>Components required: receive RF coil, <span class="math notranslate nohighlight">\(B_1^-(\vec{r},t)\)</span></p></li>
</ul>
</li>
<li><p>Spatial Encoding: Create spatial variations in the magnetic field to distinguish spins at different locations</p>
<li><p>Spatial Encoding: Create spatial variations in the magnetic field to distinguish spins at different locations. This can occur during excitation and acquisition.</p>
<ul class="simple">
<li><p>Components required: Magnetic field gradient coils, <span class="math notranslate nohighlight">\(\vec{G}(t)\)</span></p></li>
</ul>
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2 changes: 1 addition & 1 deletion _sources/Artifacts.ipynb
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Expand Up @@ -44,7 +44,7 @@
"## Introduction\n",
"\n",
"Many of the artifacts that occur in MRI can be understood and analyzed using the k-space perspective. In particular, they can be understood as the k-space data being modified by some function. This is described mathematically in \n",
"[MRI Signal Equation and K-psace - K-space Data Weighting](MRI%20Signal%20Equation#k-space-data-weighting)"
"[MRI Signal Equation and K-space](./MRI%20Signal%20Equation.ipynb) in the K-space Data Weighting section."
]
},
{
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2 changes: 1 addition & 1 deletion _sources/MRI System.ipynb
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Expand Up @@ -122,7 +122,7 @@
" * Components required: transmit RF coil, $B_1^+(\\vec{r},t)$\n",
"1. Acquisition: Detect the changing magnetic field RF energy from excited spins\n",
" * Components required: receive RF coil, $B_1^-(\\vec{r},t)$\n",
"1. Spatial Encoding: Create spatial variations in the magnetic field to distinguish spins at different locations \n",
"1. Spatial Encoding: Create spatial variations in the magnetic field to distinguish spins at different locations. This can occur during excitation and acquisition.\n",
" * Components required: Magnetic field gradient coils, $\\vec{G}(t)$\n",
"1. Repeat Excitation, acquisition, and encoding as needed to acquire enough data to form an image\n",
"\n",
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2 changes: 1 addition & 1 deletion searchindex.js

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