This is a multi-part message in MIME format.
------=_NextPart_000_001B_01C36891.54875DD0 Content-Type: text/plain; charset="windows-1255"
Content-Transfer-Encoding: quoted-printable
"Sam" <[email hidden]> wrote in message =
"]news:[email hidden]...
Quoted message said:Oh no, not the fat burning myth again...
Many people seem to be confused by this issue, as is Sam. One need only = to read some of the recent
body of research to understand this issue. I = have spent several years trying to understand this
complex issue.
My suggestion is to: a) reid Friel (p. 38-39), b) read the excellent = article by Holloszy, Kohrt &
Hansen (1998), or c) read some of the = citations I have provided below (perhaps too many).
Perhaps some of the confusion is caused by Ed Burke's book wherein he = states that the total number
of calories burned is what is important - = calories IS calories. Unfortunately, sports physiology
and metabolic = studies have not been able to substantiate this claim, and if you think = about it
from an evolutionary point of view, you'll aggree. There would = have to be a metabolic difference
between long-term endurance and = explosive strength.
But don't believe me (as your use of the term "myth" implies), read the = research:
From: Holloszy, J, O., Kohrt, W. M. and Hansen, P. A. The regulation of = carbohydrate and fat
metabolism during and after exercise, Frontiers in = Bioscience, 3, d1011-1027, September 15, 1998.
Abstract The rate of carbohydrate utilization during prolonged, strenuous = exercise is closely
geared to the energy needs of the working muscles. = In contrast, fat utilization during exercise is
not tightly regulated, = as there are no mechanisms for closely matching availability and =
metabolism of fatty acids to the rate of energy expenditure. As a = result, the rate of fat
oxidation during exercise is determined by the = availability of fatty acids and the rate of
carbohydrate utilization. = Blood glucose and muscle glycogen are essential for prolonged strenuous
= exercise, and exhaustion can result either from development of = hypoglycemia or depletion of
muscle glycogen.=20
Both absolute and relative (i.e. % of maximal O2 uptake) exercise = intensities play important roles
in the regulation of substrate = metabolism. The absolute work rate determines the total quantity of
fuel = required, while relative exercise intensity plays a major role in = determining the
proportions of carbohydrate and fat oxidized by the = working muscles. As relative exercise
intensity is increased, there is a = decrease in the proportion of the energy requirement derived
from fat = oxidation and an increase in that provided by carbohydrate oxidation. = During moderately
strenuous exercise of an intensity that can be = maintained for 90 minutes or longer (~55-75% of
VO2max), there is a = progressive decline in the proportion of energy derived from muscle = glycogen
and a progressive increase in plasma fatty acid oxidation.=20
The adaptations induced by endurance exercise training result in a = marked sparing of carbohydrate
during exercise, with an increased = proportion of the energy being provided by fat oxidation. The
mechanisms = by which training decreases utilization of blood glucose are not well = understood.
However, the slower rate of glycogenolysis can be explained = on the basis of lower concentrations
of inorganic phosphate (Pi) in = trained, as compared to untrained, muscles during exercise of the
same = intensity. The lower Pi level is a consequence of the increase in muscle = mitochondria
induced by endurance exercise training.=20
A large increase in muscle glycogen concentration, far above the level = found in the well-fed
sedentary state, occurs in response to = carbohydrate feeding following glycogen depleting exercise.
It was = recently found that this muscle "glycogen supercompensation" is markedly = enhanced by
endurance exercise training that induces an increase in the = GLUT4 isoform of the glucose
transporter in skeletal muscle.=20
other references:=20
Coggan, A.R., W.M. Kohrt, R.J. Spina, D.M. Bier & J.O. Holloszy: = Endurance training decreases
plasma glucose turnover and oxidation = during moderate-intensity exercise in men. J Appl Physiol
68, 990-996, = 1990.=20
Coggan, A.R., C.A. Raguso, A. Gastaldelli, B.D. Williams & R.R. Wolfe: = Regulation of glucose
production during exercise at 80% of VO2peak in = untrained humans. Am J Physiol 273,
E348-E354, 1997.=20
Coyle EF: Fat metabolism during exercise. Sports Sci Exch 8(6):1-6, = 1995.
Gollnick PD: Energy metabolism and prolonged exercise, in Lamb DR, = Murray R (eds): Perspectives in
Exercise Science and Sports Medicine, = Vol 1: Prolonged Exercise. Indianapolis, Benchmark Press,
1989, pp 1-36.
Hagenfeldt, L. Turnover of individual free fatty acids in man. Fed Proc = 34, 2236-2240, 1975.
Holloszy, J, O., Kohrt, W. M. and Hansen, P. A. The regulation of = carbohydrate and fat metabolism
during and after exercise, Frontiers in = Bioscience, 3, d1011-1027, September 15, 1998.
Kanaley, J.A., C.D. Mottram, D. Scanlon & M.D. Jensen: Fatty acid = kinetic responses to running
above or below lactate threshold. J Appl = Physiol 79, 439-447, 1995.=20
Klein, S., E. F. Coyle, and R. R. Wolfe. Fat metabolism during = low-intensity exercise in
endurance-trained and untrained men. Am. J. = Physiol. 267 (Endocrinol. Metab. 30):
E934=96E940, 1994.
Kjaer, M., B. Kiens, M. Hargreaves & E.A. Richter: Influence of active = muscle mass on glucose
homeostasis during exercise in humans. J Appl = Physiol 71, 552-557, 1991.=20
Klein, S., E.F. Coyle & R.R. Wolfe: Fat metabolism during low-intensity = exercise in
endurance-trained and untrained men. Am J Physiol 267, = E934-E940, 1994.=20
Klein, S., J. M. Weber, E. F. Coyle, and R. R. Wolfe. Effect of = endurance training on glycerol
kinetics during strenuous exercise in = humans. Metabolism 45: 357=96361, 1996.
Phillips, S. M., H. J. Green, M. A. Tarnopolsky, G. J. F. Heigenhauser, = and S. M. Grant.
Progressive effect of endurance training on metabolic = adaptations in working skeletal muscle. Am.
J. Physiol. 270 (Endocrinol. = Metab. 33): E265=96E272, 1996.
Romijn, J.A., E.F. Coyle, L.S. Sidossis, A. Gastaldelli, J.F. Horowitz, =
E. Endert & R.R. Wolfe: Regulation of endogenous fat and carbohydrate = metabolism in relation to
exercise intensity and duration. Am J Physiol = 265, E380-E391 (1993)=20
Sial, S., A. R. Coggan, R. Carroll, J. Goodwin, and S. Klein. Fat and = carbohydrate metabolism
during exercise in elderly and young subjects. = Am. J. Physiol. 271 (Endocrinol. Metab.
34):E983=96E989, 1996.
Tom
Quoted message said:"Tom G" <[email hidden]> wrote in message "]news:[email hidden]...
Quoted message said:Every thing that my betters have said before me is correct; however, remember, that the standard
formula is more often accurate than not. Definitely use Friel's method, but I'd be surprised if
there's a big differential.That said, running at 160 is too high if you want to build better =
aerobic
Quoted message said:Quoted message said:capacity and/or burn fat. Slow it down - try to keep around 130 for =
most
Quoted message said:Quoted message said:runs, and then once a week give it your best shot.
By the way, for losing weight and running, I've found that an =
excellent
Quoted message said:(and
Quoted message said:scientifically grounded) books is Maffetone
=
(amazon.comqid=3D106141685=Open ↗
8/sr=3D
Quoted message said:Quoted message said:=
8-2/ref=3Dsr_8_2/104-4106992-1353525?v=3Dglance&s=3Dbooks&n=3D507846). = Maffetone
Quoted message said:has
Quoted message said:been consistently ranked as tri coach of the year (whatever that =
means).
Quoted message said:Quoted message said:
Tom"Steve Holdoway" <[email hidden]> wrote in message
"]news:[email hidden]...Quoted message said:Hi Folks,
I've not long come back from fatland, and am back competing after =
a 10
Quoted message said:Quoted message said:Quoted message said:year layoff. Now we've got much better toys to play with, and I =
find
Quoted message said:Quoted message said:Quoted message said:it quite good to record my heart rate using a Polar S510. I'm =
shifting
Quoted message said:Quoted message said:Quoted message said:form Tris over to running for the next few months, 'cos they're =
the
Quoted message said:Quoted message said:Quoted message said:next few events that I'm doing.
I'm 43, and still have about 10kg to shift to get down to a decent weight ( I'm 5'10 and
90kg/200lb at the moment ). Reading through =
the
Quoted message said:Quoted message said:Quoted message said:dirty mags for general fitness, they reckon I should be training =
at a
Quoted message said:Quoted message said:Quoted message said:HR of 75% =3D (220-43)*.75, which is in the low 130's. I've just =
come
Quoted message said:Quoted message said:Quoted message said:back from my daily hour's run, and my average rate is 161, or over =
90%
Quoted message said:Quoted message said:Quoted message said:
Even on the bike, my HR is between 150-155. Should I be easing =
off, or
Quoted message said:Quoted message said:Quoted message said:just ignore the mags???
I surely would like to shift the weight... even if it's only to =
get a
Quoted message said:Quoted message said:Quoted message said:better BMI (:
Steve
=20
------=_NextPart_000_001B_01C36891.54875DD0 Content-Type: text/html; charset="windows-1255"
Content-Transfer-Encoding: quoted-printable
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0 Transitional//EN"> <HTML><HEAD> <META
http-equiv=3DContent-Type content=3D"text/html; = charset=3Dwindows-1255"> <META content=3D"MSHTML
6.00.2800.1226" name=3DGENERATOR> <STYLE></STYLE> </HEAD> <BODY>
<DIV><FONT face=3DArial size=3D2>"Sam" <</FONT><A=20
href=3D""][email hidden]"><FONT face=3DArial=20
size=3D2>[email hidden]</FONT></A><FONT face=3DArial = size=3D2>> wrote=20 in
message </FONT><A=20 href=3D""]news:[email hidden]"><FONT
= face=3DArial=20 size=3D2>"]news:[email hidden]</FONT><=
/A><FONT=20 face=3DArial size=3D2>...</FONT></DIV>
<DV><FONT face=3DArial size=3D2>> Oh no, not the fat burning myth=20 again...<BR></FONT></DIV>
<DVI><FONT face=3DArial size=3D2>Many people seem to be confused by this = issue, as=20 is Sam.
One need only to read some of the recent body of research to = understand=20 this issue. I
have spent several years trying to understand this complex =
issue.</FONT></DIV>
<DVII><FONT face=3DArial size=3D2></FONT> </DIV>
<DVIII><FONT face=3DArial size=3D2>My suggestion is to: a) reid Friel (p. = 38-39), b)=20 read the
excellent article by Holloszy, Kohrt & Hansen (1998), or c) = read=20 some of the
citations I have provided below (perhaps too = many).</FONT></DIV>
<DIX><FONT face=3DArial size=3D2></FONT> </DIV>
<DX><FONT face=3DArial size=3D2>Perhaps some of the confusion is caused = by Ed=20 Burke's book
wherein he states that the total number of calories burned = is what=20 is important -
calories IS calories. Unfortunately, sports physiology = and=20 metabolic studies have not
been able to substantiate this claim, and if = you=20 think about it from an evolutionary
point of view, you'll aggree. There = would=20 have to be a metabolic difference between
long-term endurance and = explosive=20 strength.</FONT></DIV>
<DXI><FONT face=3DArial size=3D2></FONT> </DIV>
<DXII><FONT face=3DArial size=3D2>But don't believe me (as your use of = the term=20 "myth"
implies), read the research:</FONT></DIV>
<DXIII><FONT face=3DArial size=3D2> </DIV></FONT>
<DXIV><FONT face=3DArial size=3D2>
<DXV><FONT face=3DArial size=3D2>From: Holloszy, J, O., Kohrt, W. =
M. and=20 Hansen, P. A. The regulation of carbohydrate and fat metabolism = during and=20
after exercise, <EM>Frontiers in Bioscience</EM>, 3, d1011-1027, = September 15,=20
1998<EM>.</EM></FONT></DIV>
<DIV><FONT face=3DArial size=3D2><EM></EM></FONT> </DIV>
<DV><FONT face=3DArial size=3D2><EM>Abstract</EM></DIV>
<DVI><FONT size=3D1><B> <P align=3Dleft></B><FONT face=3D"Times New Roman" size=3D1><FONT=20
face=3D"Times New Roman" size=3D1><FONT face=3DArial size=3D2>The rate = of carbohydrate=20
utilization during prolonged, strenuous exercise is closely geared to = the energy=20 needs
of the working muscles. In contrast, fat utilization during = exercise is=20 not tightly
regulated, as there are no mechanisms for closely matching=20 availability and metabolism of
fatty acids to the rate of energy = expenditure. As=20 a result, the rate of fat oxidation
during exercise is determined by the =
availability of fatty acids and the rate of carbohydrate utilization. = Blood=20 glucose and muscle
glycogen are essential for prolonged strenuous = exercise, and=20 exhaustion can result either from
development of hypoglycemia or = depletion of=20 muscle glycogen. </FONT></P>
<P><FONT face=3DArial size=3D2>Both absolute and relative (i.e. % of = maximal=20 O<SUB>2</SUB>
uptake) exercise intensities play important roles in the=20 regulation of substrate
metabolism. The absolute work rate determines = the total=20 quantity of fuel required, while
relative exercise intensity plays a = major role=20 in determining the proportions of
carbohydrate and fat oxidized by the = working=20 muscles. As relative exercise intensity is
increased, there is a = decrease in the=20 proportion of the energy requirement derived from
fat oxidation and an = increase=20 in that provided by carbohydrate oxidation. During
moderately strenuous = exercise=20 of an intensity that can be maintained for 90 minutes or
longer (~55-75% = of=20 VO<SUB>2</SUB>max), there is a progressive decline in the proportion
of = energy=20 derived from muscle glycogen and a progressive increase in plasma fatty =
acid=20 oxidation. </FONT>
<Q><FONT face=3DArial size=3D2>The adaptations induced by endurance = exercise=20 training
result in a marked sparing of carbohydrate during exercise, = with an=20 increased proportion
of the energy being provided by fat oxidation. The=20 mechanisms by which training decreases
utilization of blood glucose are = not well=20 understood. However, the slower rate of
glycogenolysis can be explained = on the=20 basis of lower concentrations of inorganic
phosphate (Pi) in trained, as =
compared to untrained, muscles during exercise of the same intensity. = The lower=20 Pi level is
a consequence of the increase in muscle mitochondria induced = by=20 endurance exercise
training. </FONT>
<R><FONT face=3DArial size=3D2>A large increase in muscle glycogen = concentration,=20 far above
the level found in the well-fed sedentary state, occurs in = response to=20 carbohydrate
feeding following glycogen depleting exercise. It was = recently=20 found that this muscle
"glycogen supercompensation" is markedly enhanced = by=20 endurance exercise training that
induces an increase in the GLUT4 = isoform of the=20 glucose transporter in skeletal
muscle.</FONT>=20 </P></FONT></FONT></FONT></DIV></FONT>
<DIV></FONT><FONT face=3DArial size=3D2><FONT face=3DArial = size=3D2>other references:=20
</FONT></DIV></DIV>
<DV>
<DVI><FONT face=3DArial size=3D2></FONT> </DIV>
<DVII><FONT face=3DArial size=3D2>Coggan, A.R., W.M. Kohrt, R.J. Spina, =
D.M. Bier=20 & J.O. Holloszy: Endurance training decreases plasma glucose = turnover and=20
oxidation during moderate-intensity exercise in men. <I>J Appl Physiol = </I>68,=20 990-996,
1990. </FONT></DIV>
<DIV><FONT face=3DArial size=3D2></FONT> </DIV>
<DV><FONT face=3DArial size=3D2>Coggan, A.R., C.A. Raguso, A. = Gastaldelli, B.D.=20 Williams
& R.R. Wolfe: Regulation of glucose production during = exercise at=20 80% of
VO<SUB>2peak</SUB> in untrained humans. <I>Am J Physiol </I>273,=20 E348-E354, 1997.
</FONT></DIV>
<DVI><FONT face=3DArial size=3D2></FONT> </DIV>
<DVII>
<DVIII><FONT face=3DArial size=3D2>Coyle EF: Fat metabolism during = exercise.=20 <EM>Sports Sci
Exch</EM> 8(6):1-6, 1995.</FONT></DIV>
<DIX><FONT face=3DArial size=3D2></FONT> </DIV></DIV>
<DX><FONT face=3DArial size=3D2>Gollnick PD: Energy metabolism and = prolonged=20 exercise, in
Lamb DR, Murray R (eds): Perspectives in Exercise Science = and=20 Sports Medicine, Vol 1:
Prolonged Exercise. Indianapolis, Benchmark = Press, 1989,=20 pp 1-36.</FONT></DIV>
<DXI><FONT face=3DArial size=3D2></FONT> </DIV>
<DXII><FONT face=3DArial size=3D2>Hagenfeldt, L. Turnover of individual = free fatty=20 acids in
man. <I>Fed Proc </I>34, 2236-2240, 1975.</FONT></DIV>
<DXIII><FONT face=3DArial size=3D2></FONT> </DIV>
<DXIV><FONT face=3DArial><FONT size=3D2>Holloszy, J, O., Kohrt, W. =
M. and=20 Hansen, P. A. The regulation of carbohydrate and fat metabolism = during and=20
after exercise, <EM>Frontiers in Bioscience</EM>, 3, d1011-1027, = September 15,=20
1998<EM>.</EM></FONT></FONT></DIV>
<DIV><EM><FONT face=3DArial size=3D2></FONT></EM> </DIV>
<DV><FONT face=3DArial size=3D2>Kanaley, J.A., C.D. Mottram, D. Scanlon = & M.D.=20 Jensen:
Fatty acid kinetic responses to running above or below lactate=20 threshold. <EM>J Appl
Physiol </EM>79, 439-447, 1995. </FONT></DIV>
<DVI><EM><FONT face=3DArial size=3D2></FONT></EM> </DIV>
<DVII><FONT face=3DArial size=3D2>Klein, S., E. F. Coyle, and R. R. = Wolfe. Fat=20 metabolism
during low-intensity exercise in endurance-trained and = untrained men.=20 Am. J. Physiol.
267 (Endocrinol. Metab. 30): E934=96E940, = 1994.</FONT></DIV>
<DVIII><FONT face=3DArial size=3D2></FONT> </DIV>
<DIX><FONT face=3DArial size=3D2>Kjaer, M., B. Kiens, M. Hargreaves = & E.A.=20 Richter:
Influence of active muscle mass on glucose homeostasis during = exercise=20 in humans. <I>J
Appl Physiol </I>71, 552-557, 1991. </FONT></DIV>
<DX><FONT face=3DArial size=3D2></FONT> </DIV>
<DXI><FONT face=3DArial size=3D2>Klein, S., E.F. Coyle & R.R. Wolfe: = Fat=20 metabolism
during low-intensity exercise in endurance-trained and = untrained men.=20
<DXII>Am J Physiol </I>267, E934-E940, 1994. </FONT></DIV>
<DXIII><FONT face=3DArial size=3D2></FONT> </DIV>
<DXIV><FONT size=3D2><FONT face=3DArial>Klein, S., J. M. Weber, E. F. = Coyle, and R.=20
R. Wolfe. Effect of endurance training on glycerol kinetics during = strenuous=20 exercise in
humans. <I>Metabolism </I></FONT><FONT face=3DArial>45: = 357=96361,=20 1996.</FONT></FONT></DIV>
<DIV><FONT face=3DArial size=3D2></FONT> </DIV>
<DV><FONT size=3D2><FONT face=3DArial>Phillips, S. M., H. J. Green, M. =
A.=20 Tarnopolsky, G. J. F. Heigenhauser, and S. M. Grant.<STRONG>=20 </STRONG>Progressive effect of
endurance training on metabolic = adaptations in=20 working skeletal muscle. <I>Am. J.
Physiol</I></FONT><FONT = face=3DArial>. 270=20 (<I>Endocrinol. Metab</I></FONT><FONT
face=3DArial>. 33): E265=96E272,=20 1996.</FONT></FONT></DIV>
<DIV><FONT size=3D2></FONT> </DIV>
<DV><FONT face=3DArial size=3D2>Romijn, J.A., E.F. Coyle, L.S. = Sidossis, A.=20 Gastaldelli,
J.F. Horowitz, E. Endert & R.R. Wolfe: Regulation of = endogenous=20 fat and carbohydrate
metabolism in relation to exercise intensity and = duration.=20
<DVI>Am J Physiol </I>265, E380-E391 (1993) </FONT></DIV>
<DVII><FONT size=3D2></FONT> </DIV>
<DVIII><FONT face=3DArial size=3D2>Sial, S., A. R. Coggan, R. Carroll, J. = Goodwin, and=20
S. Klein.<STRONG> </STRONG>Fat and carbohydrate metabolism during = exercise in=20 elderly and young
subjects. <I>Am. J. Physiol</I>. 271 (<I>Endocrinol.=20 Metab</I>. 34):E983=96E989,
1996.</FONT></DIV>
<DIV><FONT face=3DArial size=3D2></FONT> </DIV>
<DV><FONT face=3DArial size=3D2></FONT> </DIV></FONT></DIV>
<DVI><FONT face=3DArial size=3D2>Tom</DIV>
<DVII><BR>> "Tom G" <</FONT><A = href=3D""][email hidden]"><FONT=20 face=3DArial
size=3D2>[email hidden]</FONT></A><FONT = face=3DArial size=3D2>>=20 wrote in
message<BR>> </FONT><A=20 href=3D""]news:[email hidden]"><FONT face=3DArial=20
size=3D2>"]news:[email hidden]</FONT></A><FONT face=3DArial=20
size=3D2>...<BR>> > Every thing that my betters have said before = me is=20 correct;
however,<BR>> > remember, that the standard formula is = more often=20 accurate than
not.<BR>> > Definitely use Friel's method, but I'd = be=20 surprised if there's a
big<BR>> > differential.<BR>> = ><BR>> >=20 That said, running at 160 is
too high if you want to build better=20 aerobic<BR>> > capacity and/or burn fat. Slow
it down - try to = keep around=20 130 for most<BR>> > runs, and then once a week give
it your best=20 shot.<BR>> ><BR>> > By the way, for losing weight and = running,
I've=20 found that an excellent<BR>> (and<BR>> > scientifically = grounded) books=20
is Maffetone<BR>> ><BR>> (</FONT><A=20
href=3D"amazon.comqid=3D10=Open ↗
61416858/sr"><FONT=20 face=3DArial=20
size=3D2>amazon.comqid=3D1=Open ↗
61416859/sr</FONT></A><FONT=20 face=3DArial size=3D2>=3D<BR>> >=20
8-2/ref=3Dsr_8_2/104-4106992-1353525?v=3Dglance&s=3Dbooks&n=3D507=
61416860).=20 Maffetone<BR>> has<BR>> > been consistently ranked as tri coach = of the=20
year (whatever that means).<BR>> ><BR>> > Tom<BR>> = ><BR>>=20
Quoted message said:<BR>> > "Steve Holdoway" <</FONT><A=20
href=3D""][email hidden]"><FONT face=3DArial=20
size=3D2>[email hidden]</FONT></A><FONT face=3DArial = size=3D2>> wrote in=20
message<BR>> > </FONT><A=20
href=3D""]news:[email hidden]"><FONT = face=3DArial=20
size=3D2>"]news:[email hidden]</FONT></A><FONT =
face=3DArial size=3D2>...<BR>> > > Hi Folks,<BR>> > = ><BR>> >=20 > I've
not long come back from fatland, and am back competing after a =
10<BR>> > > year layoff. Now we've got much better toys to play = with,=20 and I
find<BR>> > > it quite good to record my heart rate using = a Polar=20
S510. I'm shifting<BR>> > > form Tris over to running for the = next few=20 months, 'cos
they're the<BR>> > > next few events that I'm=20 doing.<BR>> > ><BR>>
Quoted message said:Quoted message said:I'm 43, and still have about = 10kg to=20 shift to get down to a decent<BR>> >
weight ( I'm 5'10 and = 90kg/200lb=20 at the moment ). Reading through the<BR>> >
dirty mags for = general=20 fitness, they reckon I should be training at a<BR>> >
HR of = 75% =3D=20 (220-43)*.75, which is in the low 130's. I've just come<BR>> > =
back=20 from my daily hour's run, and my average rate is 161, or over = 90%<BR>>
=20 ><BR>> > > Even on the bike, my HR is between 150-155. = Should I be=20
easing off, or<BR>> > > just ignore the mags???<BR>> >=20 ><BR>> >
Quoted message said:I surely would like to shift the weight... even = if it's=20 only to get a<BR>> >
better BMI (:<BR>> > ><BR>> = >=20 > Steve<BR>> ><BR>>
<BR>> <BR>>=20 </FONT></DIV></BODY></HTML>
------=_NextPart_000_001B_01C36891.54875DD0--