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<title>Addional Information about Neurological Symptoms</title>
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<body bgcolor=3Dwhite
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<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center'><span class=
=3DGramE><b
style=3D'mso-bidi-font-weight:normal'><span style=3D'font-size:10.0pt;font-=
family:
Georgia;color:maroon'>&copy; 2006 Neurodiagnostic Consultants, LLC.</span><=
/b></span><b
style=3D'mso-bidi-font-weight:normal'><span style=3D'font-size:10.0pt;font-=
family:
Georgia;color:maroon'><o:p></o:p></span></b></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center'><span class=
=3DGramE><b
style=3D'mso-bidi-font-weight:normal'><span style=3D'font-size:10.0pt;font-=
family:
Georgia;color:maroon'>PATIENT<span style=3D'mso-spacerun:yes'>&nbsp;
</span>INFORMATION</span></b></span><b style=3D'mso-bidi-font-weight:normal=
'><span
style=3D'font-size:10.0pt;font-family:Georgia;color:maroon'><o:p></o:p></sp=
an></b></p>

<p class=3DMsoNormal><span style=3D'font-family:Georgia'><o:p>&nbsp;</o:p><=
/span></p>

<p class=3DMsoNormal><span style=3D'font-family:Georgia'><o:p>&nbsp;</o:p><=
/span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;font-family:Georgia;color:maroon'>ELECTRODIAGNOST=
IC
TESTS</span></b><b style=3D'mso-bidi-font-weight:normal'><span style=3D'fon=
t-size:
10.0pt;font-family:Georgia;color:maroon'><o:p></o:p></span></b></p>

<p class=3DMsoNormal><span style=3D'font-size:10.0pt;font-family:Georgia'><=
o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'>To put in very simplistic terms, our nervous system is=
 an
electrical appliance.<span style=3D'mso-spacerun:yes'>&nbsp; </span>Conside=
r your
regular iron: its normal function depends on at least three conditions: <sp=
an
style=3D'mso-spacerun:yes'>&nbsp;</span>a) supply of electricity from your =
local
electricity provider;<span style=3D'mso-spacerun:yes'>&nbsp; </span>b)<span
style=3D'mso-spacerun:yes'>&nbsp; </span>electrical cables that run from the
electricity provider&#8217;s distribution sub-station to your electrical
outlet;<span style=3D'mso-spacerun:yes'>&nbsp; </span>c) reception of elect=
rical
signal by the iron when you plug it in.<span style=3D'mso-spacerun:yes'>&nb=
sp;
</span>If something destroys any one or all of these components, your iron =
will
not work.<span style=3D'mso-spacerun:yes'>&nbsp; </span>What does this have=
 to do
with your nervous system?<span style=3D'mso-spacerun:yes'>&nbsp; </span>Con=
sider
this:<span style=3D'mso-spacerun:yes'>&nbsp; </span>your brain is your
body&#8217;s &#8220;local electricity provider&#8221;; your nerves are your
body&#8217;s &#8220;electrical cables&#8221; and your organs are your
body&#8217;s &#8220;electrical appliances&#8221;.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'>To continue with this analogy, a neurologist is an
&#8220;electrician&#8221; for your body:<span style=3D'mso-spacerun:yes'>&n=
bsp;
</span>when your &#8220;appliances&#8221; do something they should not do or
when they do not do what they should, a neurologist wants to know where the
problem is.<span style=3D'mso-spacerun:yes'>&nbsp; </span>Is it your electr=
ical
supply, or is it your cables, or is it your &#8220;appliance&#8221;?<span
style=3D'mso-spacerun:yes'>&nbsp; </span>One of the ways this can be assess=
ed is
through the recording of electrical activity in the nervous system.<o:p></o=
:p></span></p>

<p class=3DMsoNormal><span style=3D'font-size:10.0pt;font-family:Georgia'><=
o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'mso-bidi-font-size:10.0pt;font-family:Georgia;color:maroon'>NERVE
CONDUCTION STUDY (NCS)<o:p></o:p></span></b></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'>One of the fundamental tools in neurology is the
assessment of the peripheral nervous system&#8217;s ability to conduct an
electric impulse.<span style=3D'mso-spacerun:yes'>&nbsp; </span>By supplyin=
g an
external (one coming from <span class=3DGramE>a</span> electrodiagnostic ma=
chine,
not from the brain) electrical stimulus, and by measuring the speed of impu=
lse
propagation along the nerve fiber and the magnitude of the evoked response,=
 <span
style=3D'color:red'>one can localize the lesion of the affected nerve and d=
etect
generalized disease processes in the peripheral nervous system</span>.<o:p>=
</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

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es=3D"_x0000_s1275"></span><![endif]><span
style=3D'font-size:10.0pt;font-family:Georgia'><span style=3D'mso-tab-count=
:7'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp=
;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&n=
bsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp=
;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&n=
bsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp=
;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&n=
bsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp=
;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&n=
bsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </sp=
an><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:3.5in;text-align:justify'><span
style=3D'font-size:10.0pt;font-family:Georgia'>To artificially supply an el=
ectrical
stimulus, a neurologist may use a <span style=3D'color:red'>surface electro=
de</span>
(applied to the surface of the skin above the location of the nerve that is=
 to
be studied) or a <span style=3D'color:red'>needle electrode</span> (a very =
thin,
disposable needle that is inserted through the skin) may be used.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>The advantage of using a needle
electrode is greater precision in localization and a lesser charge delivere=
d to
the nerve, which more many may mean less discomfort.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>The <span style=3D'color:red'>dura=
tion</span>
of such artificial stimulation is very short &#8211; usually a fraction of a
second is enough for needle stimulation.<span style=3D'mso-spacerun:yes'>&n=
bsp;
</span>A neurologist must also select an appropriate <span style=3D'color:r=
ed'>voltage</span>,
or the strength of this electrical stimulus, which depends on the health
condition of the nerve.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:3.5in;text-align:justify'><span
style=3D'font-size:10.0pt;font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:3.5in;text-align:justify'><span
style=3D'font-size:10.0pt;font-family:Georgia'>Once an electrical stimulus =
is
delivered to the nerve, the nerve responds by creating its own electrical
charge, or an &#8220;action potential&#8221;, and transmits it over
distance.<span style=3D'mso-spacerun:yes'>&nbsp; </span>A specialized machi=
ne
that is connected to the electrodes records this charge and the speed with
which it is propagated along the nerve fiber&#8217;s length.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>The strength of the charge can be
inferred from <a name=3DAmplitude><span style=3D'color:red'>amplitude</span=
></a>
depicted as the height of the spike recorded by the machine (one the drawin=
g on
the left: the height of the elevation between point 1 and point 2).<span
style=3D'mso-spacerun:yes'>&nbsp; </span><a name=3DDuration><span style=3D'=
color:
red'>Duration</span></a> is judged from how &#8220;wide&#8221; the spike is=
 horizontally
(one the drawing on the left: the length between point 1 and point 3).<o:p>=
</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><b style=3D'mso-bidi-font=
-weight:
normal'><span style=3D'font-size:9.0pt;font-family:Georgia'>Fig. 1 Sample o=
f a
nerve conduction recording<o:p></o:p></span></b></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><span style=3D'font-size:10.0pt;font-family:Georgia'><=
o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'mso-bidi-font-size:12.0pt;font-family:Georgia;color:maroon;text-tr=
ansform:
uppercase'>ELECTROMYOGRAM (emg)<o:p></o:p></span></b></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'>Inserting a needle electrode into a muscle and recordi=
ng
the ensuing electrical activity is referred to as <span style=3D'color:red'=
>needle
electromyography</span>.<span style=3D'mso-spacerun:yes'>&nbsp; </span>The =
fact
that a foreign object, albeit very thin, is inserted into the body may be
uncomfortable or painful, depending on one&#8217;s ability to tolerate.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>Once the needle electrode is inser=
ted
into the muscle, the patient is asked to contract the tested muscle.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>Specialized equipment connected to=
 the
electrode records electrical activity in the resting muscle upon the insert=
ing
of the needle (<a name=3DInsertionalActivity><span style=3D'color:red'>inse=
rtional
activity</span></a>), after the needle has been inserted and before the mus=
cle
is voluntarily contracted (<span style=3D'color:red'>spontaneous activity</=
span>),
as well as after a voluntary contraction is initiated by the patient (<span
style=3D'color:red'>motor unit action potential</span>).<o:p></o:p></span><=
/p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'>The presence or absence of a signal, as well as its <a
href=3D"#Amplitude"><span style=3D'text-decoration:none;text-underline:none=
'>amplitude</span></a>
and <a href=3D"#Duration"><span style=3D'text-decoration:none;text-underlin=
e:none'>duration</span></a>
may provide valuable information about the relative health of the muscle, as
many diseases and conditions affect insertional activity, spontaneous activ=
ity
and motor unit action potential.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><span style=3D'font-size:10.0pt;font-family:Georgia'><=
o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'mso-bidi-font-size:12.0pt;font-family:Georgia;color:maroon;text-tr=
ansform:
uppercase'>ELECTROENCEPHALORGAM (EEG)<o:p></o:p></span></b></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'>Electrical activity in the brain generated by the cort=
ex
(and influenced by other brain structures that connect with cortex nerve ce=
lls)
may also be assessed through a method called electroencephalography.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>It is an analysis of electrical ac=
tivity
occurring in millions of nerve cells as reflected in the changes of electri=
cal
field at the scalp surface.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>Similarly to nerve and muscle testing described above, electrodes and
recording equipment are necessary to record brain&#8217;s electrical activi=
ty
and analyze it.<span style=3D'mso-spacerun:yes'>&nbsp; </span>EEG also prov=
ides
information about continuous brain function over time.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'>The fact that electrical activity is not recorded dire=
ctly
from nerve cells and that it is &#8220;buffered&#8221; by a number of tissu=
es (cerebrospinal
fluid, dura mater, skull bones, subcutaneous tissue, skin, etc.), contribut=
es
to certain <span style=3D'color:red'>limitations</span> of this diagnostic
technique:<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><span style=3D'mso-tab-count:1'>&nbsp;&nbsp;&nbsp;&nbs=
p;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span=
></span><span
style=3D'font-size:10.0pt'>&#9658;</span><span style=3D'font-size:10.0pt;
font-family:Georgia'> First, relatively large areas of cortex have to be in=
volved
and the electrical charge has to be strong enough in order to appear on an =
EEG;
electrical activity from very small areas or small charge may not reach the
scalp surface and, therefore, may not be recorded.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>In this case, a normal EEG may be =
produced
in a patient, who manifests clear signs of local brain abnormalities on a
neurological examination.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><span style=3D'mso-tab-count:1'>&nbsp;&nbsp;&nbsp;&nbs=
p;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span=
></span><span
style=3D'font-size:10.0pt'>&#9658;</span><span style=3D'font-size:10.0pt;
font-family:Georgia'> Second, not all diseases and conditions produce unique
EEG recording. Therefore, not every abnormal EEG recording may be unambiguo=
usly
attributed to a specific disease.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>However, some abnormalities (epilepsies, metabolic <span class=3DSpe=
llE>encephalopathies</span>,
etc.) do produce highly suggestive patterns.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><span style=3D'mso-tab-count:1'>&nbsp;&nbsp;&nbsp;&nbs=
p;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span=
></span><span
style=3D'font-size:10.0pt'>&#9658;</span><span style=3D'font-size:10.0pt;
font-family:Georgia'> Third, because electrical activity in the cortex (the
outermost layer of the brain) can be influenced by subcortical structures, =
EEG
may not specifically indicate where in the brain the abnormality exists.<o:=
p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><!--[if gte vml 1]><v:sha=
pe id=3D"_x0000_s1276"
 type=3D"#_x0000_t75" style=3D'position:absolute;left:0;text-align:left;
 margin-left:0;margin-top:0;width:393.75pt;height:186pt;z-index:2;
 mso-wrap-distance-left:0;mso-wrap-distance-right:28.8pt;
 mso-position-horizontal:left;mso-position-vertical:top;
 mso-position-vertical-relative:line' o:allowoverlap=3D"f" stroked=3D"t"
 strokecolor=3D"maroon" strokeweight=3D"3pt">
 <v:imagedata src=3D"file:///C:\0F745AF3\ElectodiagnosticTests_files\image0=
03.jpg"
  o:title=3D"EEG"/>
 <w:wrap type=3D"square" side=3D"right"/>
</v:shape><![endif]--><![if !vml]><img width=3D533 height=3D256
src=3D"file:///C:\0F745AF3\ElectodiagnosticTests_files\image004.jpg" align=
=3Dleft
hspace=3D19 style=3D'margin-left:-19px;margin-right:19px;margin-left:-19px;
margin-right:19px' v:shapes=3D"_x0000_s1276"><![endif]><span style=3D'font-=
size:
10.0pt;font-family:Georgia'>There are, however, distinct pattern (combinati=
on
of specific <a href=3D"#Amplitude"><span style=3D'text-decoration:none;text=
-underline:
none'>amplitudes</span></a> and <a href=3D"#Duration"><span style=3D'text-d=
ecoration:
none;text-underline:none'>durations</span></a> of spikes) of electrical
activity that our brains produce while we perform routine tasks or activiti=
es,
like walking, sleeping, opening eyes, awakening and mental activity.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>Many known factors, such as drugs,
infarction, hemorrhage, tumor or abscess, change these distinct patterns and
allow for a confirmation of an abnormal electrical activity in the brain.<s=
pan
style=3D'mso-spacerun:yes'>&nbsp; </span>Many known factors, such as drugs,
infarction, hemorrhage, tumor or abscess, degenerative processes, change th=
ese
distinct patterns and allow for a confirmation of an abnormal electrical
activity in the brain.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><u><span style=3D'font-si=
ze:10.0pt;
font-family:Georgia;color:red'>Routine EEG consists</span></u><span
style=3D'font-size:10.0pt;font-family:Georgia'> of placing surface electrod=
es
(usually 10-20) on the scalp and recording 30-45 minutes of <span
style=3D'color:red'>spontaneous (at rest) electrical activity</span>, usual=
ly
followed by stimulating activities: <span style=3D'color:red'>hyperventilat=
ion</span><span
style=3D'mso-spacerun:yes'>&nbsp; </span>(patient may be asked to make a nu=
mber
of deep <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><!--[if gte vml 1]><v:sha=
petype
 id=3D"_x0000_t202" coordsize=3D"21600,21600" o:spt=3D"202" path=3D"m,l,216=
00r21600,l21600,xe">
 <v:stroke joinstyle=3D"miter"/>
 <v:path gradientshapeok=3D"t" o:connecttype=3D"rect"/>
</v:shapetype><v:shape id=3D"_x0000_s1279" type=3D"#_x0000_t202" style=3D'p=
osition:absolute;
 left:0;text-align:left;margin-left:0;margin-top:2.3pt;width:396.7pt;height=
:27.75pt;
 z-index:3' stroked=3D"f">
 <v:fill opacity=3D"0"/>
 <v:textbox style=3D'mso-next-textbox:#_x0000_s1279'>
  <![if !mso]>
  <table cellpadding=3D0 cellspacing=3D0 width=3D"100%">
   <tr>
    <td><![endif]>
    <div>
    <p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
    style=3D'font-size:9.0pt;font-family:Georgia'>Fig. <span class=3DGramE>=
2<span
    style=3D'mso-spacerun:yes'>&nbsp; </span>Sample</span> of an EEG record=
ing<o:p></o:p></span></b></p>
    </div>
    <![if !mso]></td>
   </tr>
  </table>
  <![endif]></v:textbox>
</v:shape><![endif]--><![if !vml]><span style=3D'mso-ignore:vglayout'>

<table cellpadding=3D0 cellspacing=3D0 align=3Dleft>
 <tr>
  <td width=3D0 height=3D3></td>
 </tr>
 <tr>
  <td></td>
  <td><img width=3D533 height=3D42
  src=3D"file:///C:\0F745AF3\ElectodiagnosticTests_files\image005.gif"
  alt=3D"Text Box: Fig. 2  Sample of an EEG recording" v:shapes=3D"_x0000_s=
1279"></td>
 </tr>
</table>

</span><![endif]><span style=3D'font-size:10.0pt;font-family:Georgia'><o:p>=
&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

<br style=3D'mso-ignore:vglayout' clear=3DALL>

<p class=3DMsoNormal style=3D'text-align:justify'><span class=3DGramE><span
style=3D'font-size:10.0pt;font-family:Georgia'>breaths</span></span><span
style=3D'font-size:10.0pt;font-family:Georgia'>) or <span style=3D'color:re=
d'>photic
stimulation</span> (strobe lights placed around the patient are flashed).<s=
pan
style=3D'mso-spacerun:yes'>&nbsp; </span>In some patients these activities =
elicit
abnormal electrical activity that would otherwise be impossible to detect.<=
o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'font-size:=
10.0pt;
font-family:Georgia'>Additionally, a patient may be asked to be sleep depri=
ved
during an EEG (usually patients are asked to go to bed later than they norm=
ally
would and/or wake up earlier than they usually would).<span
style=3D'mso-spacerun:yes'>&nbsp; </span>Alternatively, a patient may be as=
ked to
fall asleep during an EEG, so that sleep electrical patterns could be
recorded.<span style=3D'mso-spacerun:yes'>&nbsp; </span>Both of these techn=
iques
may produce informative EEG patterns.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>Additional stimulation may be required (for instance, requests to
perform a particular move, additional sensory stimulation with light and so=
und)
to elicit informative EEG patterns.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><b style=3D'mso-bidi-font=
-weight:
normal'><span style=3D'font-size:10.0pt;font-family:Georgia'><o:p>&nbsp;</o=
:p></span></b></p>

</div>

</body>

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