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Info on The Measurements

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Road Cycling
Published
1 August 2006
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3 August 2006
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Phil Holman
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  1. T/E Ratio - legal ratio 4:1 or less
    13C/12C - a normal ratio -21.3 to -24.4/1000 (delta 13C/1000 range)
    Typical user ratio -27.43 +/- 0.76/1000 (mean and SD).

    Following on from a previous discussion on the accuracy of the testing,
    the 13C/12C ratio is very sensitive to error of measured values. This
    isn't a case of categorical data (it's either synthetic or it isn't);
    the determination is made from what should be very precise quantitive
    data.

    We know what Floyd's T/E ratio is; I've seen all the reports and it
    ranges from 5:1 to 11:1 (LOL). I do hope we get a reliable report on his
    delta 13C value.

    Phil H

  2. Phil Holman said:

    T/E Ratio - legal ratio 4:1 or less
    13C/12C - a normal ratio -21.3 to -24.4/1000 (delta 13C/1000 range)
    Typical user ratio -27.43 +/- 0.76/1000 (mean and SD).

    Following on from a previous discussion on the accuracy of the testing,
    the 13C/12C ratio is very sensitive to error of measured values. This
    isn't a case of categorical data (it's either synthetic or it isn't);
    the determination is made from what should be very precise quantitive
    data.

    We know what Floyd's T/E ratio is; I've seen all the reports and it
    ranges from 5:1 to 11:1 (LOL). I do hope we get a reliable report on his
    delta 13C value.


    I lack the informational base to understand what you are saying above.
    A ratio of two positive counts can't be negative, so I'm going to
    assume that's the log of the ratio. I'm going to try to put what you
    said above in different terms, so you can see where I'm likely lost.

    Let's suppose there are 10,000,000,000,000 carbon 12 atoms observed
    (1*10^13).

    If we observed 5617 carbon 13 atoms, this would be a ratio of 5617/
    10,000,000,000,000, which is a tiny number. The natural log of this
    ratio would be -21.3.

    If we observed 253 carbon 13 atoms, this would be a ratio of 253/
    10,000,000,000,000, which is a tiny number. The natural log of this
    ratio would be -24.4.

    In the typical drug case, there is a ratio of -27.43 which would be 12
    carbon13 atoms out of 10,000,000,000,000.

    If we go down 3 standard deviations on this ratio (-27.43 +3*.76 =
    -25.15), this would be 119 atoms.

    Since I didn't make use of the "/1000" above I think I've misunderstood
    something. Also, this sounds like a lot of carbon atoms for a urine
    sample that's mostly water, but I'm again ignorant.

    It's also not clear from your post whether the measurement error is
    already factored into the normal range. In other words, is that
    normal ratio based on "normal measurements given this amount of urine
    tested under these conditions" -- in which case the applicable
    measurement error is already factored in -- or is it the normal ratio
    based on idealized information, in which case measurement error would
    be an additional source of error?

    This isn't a criticism; just wondering. This isn't stuff I ever
    figured I'd want/need to know about.

  3. "Bob Dole" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Phil Holman said:

    T/E Ratio - legal ratio 4:1 or less
    13C/12C - a normal ratio -21.3 to -24.4/1000 (delta 13C/1000 range)
    Typical user ratio -27.43 +/- 0.76/1000 (mean and SD).

    Following on from a previous discussion on the accuracy of the
    testing,
    the 13C/12C ratio is very sensitive to error of measured values. This
    isn't a case of categorical data (it's either synthetic or it isn't);
    the determination is made from what should be very precise quantitive
    data.

    We know what Floyd's T/E ratio is; I've seen all the reports and it
    ranges from 5:1 to 11:1 (LOL). I do hope we get a reliable report on
    his
    delta 13C value.


    I lack the informational base to understand what you are saying above.
    A ratio of two positive counts can't be negative, so I'm going to
    assume that's the log of the ratio. I'm going to try to put what you
    said above in different terms, so you can see where I'm likely lost.

    Let's suppose there are 10,000,000,000,000 carbon 12 atoms observed
    (1*10^13).

    If we observed 5617 carbon 13 atoms, this would be a ratio of 5617/
    10,000,000,000,000, which is a tiny number. The natural log of this
    ratio would be -21.3.

    If we observed 253 carbon 13 atoms, this would be a ratio of 253/
    10,000,000,000,000, which is a tiny number. The natural log of this
    ratio would be -24.4.

    In the typical drug case, there is a ratio of -27.43 which would be 12
    carbon13 atoms out of 10,000,000,000,000.

    If we go down 3 standard deviations on this ratio (-27.43 +3*.76 =
    -25.15), this would be 119 atoms.

    Since I didn't make use of the "/1000" above I think I've
    misunderstood
    something. Also, this sounds like a lot of carbon atoms for a urine
    sample that's mostly water, but I'm again ignorant.

    A delta 13C/1000 value is used which I take as converting to a range of
    975.6/1000 to 978.7/1000 for a normal 13C/12C ratio [-21.3 to -24.4/1000
    (delta 13C/1000 range)]
    A "user" ratio would be 972.57/1000 +/- 0.76 which means that approx
    2/3rds of the subjects tested fell within the range of 971.81/1000 to
    973.33/1000.

    Quoted message said:


    It's also not clear from your post whether the measurement error is
    already factored into the normal range. In other words, is that
    normal ratio based on "normal measurements given this amount of urine
    tested under these conditions" -- in which case the applicable
    measurement error is already factored in -- or is it the normal ratio
    based on idealized information, in which case measurement error would
    be an additional source of error?

    Any kind of distribution will include some error in measurement but
    nothing like the 20% error mentioned in a previous post. See the
    "Testosterone Testing: More on False Positives" thread (7/29/06). We are
    looking at a difference as small as 3/1000 to determine either a
    positive or negative result which means it is very sensitive to error.

    Quoted message said:


    This isn't a criticism; just wondering. This isn't stuff I ever
    figured I'd want/need to know about.

    Phil H

  4. "Phil Holman" <piholmanc@yourservice> wrote in message
    news:[email hidden]...

    Quoted message said:


    "Bob Dole" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Phil Holman said:

    T/E Ratio - legal ratio 4:1 or less
    13C/12C - a normal ratio -21.3 to -24.4/1000 (delta 13C/1000 range)
    Typical user ratio -27.43 +/- 0.76/1000 (mean and SD).

    Following on from a previous discussion on the accuracy of the
    testing,
    the 13C/12C ratio is very sensitive to error of measured values.
    This
    isn't a case of categorical data (it's either synthetic or it
    isn't);
    the determination is made from what should be very precise
    quantitive
    data.

    We know what Floyd's T/E ratio is; I've seen all the reports and it
    ranges from 5:1 to 11:1 (LOL). I do hope we get a reliable report on
    his
    delta 13C value.


    I lack the informational base to understand what you are saying
    above.
    A ratio of two positive counts can't be negative, so I'm going to
    assume that's the log of the ratio. I'm going to try to put what you
    said above in different terms, so you can see where I'm likely lost.

    Let's suppose there are 10,000,000,000,000 carbon 12 atoms
    observed
    (1*10^13).

    If we observed 5617 carbon 13 atoms, this would be a ratio of 5617/
    10,000,000,000,000, which is a tiny number. The natural log of this
    ratio would be -21.3.

    If we observed 253 carbon 13 atoms, this would be a ratio of 253/
    10,000,000,000,000, which is a tiny number. The natural log of this
    ratio would be -24.4.

    In the typical drug case, there is a ratio of -27.43 which would be
    12
    carbon13 atoms out of 10,000,000,000,000.

    If we go down 3 standard deviations on this ratio (-27.43 +3*.76 =
    -25.15), this would be 119 atoms.

    Since I didn't make use of the "/1000" above I think I've
    misunderstood
    something. Also, this sounds like a lot of carbon atoms for a urine
    sample that's mostly water, but I'm again ignorant.

    A delta 13C/1000 value is used which I take as converting to a range
    of 975.6/1000 to 978.7/1000 for a normal 13C/12C ratio [-21.3
    to -24.4/1000 (delta 13C/1000 range)]
    A "user" ratio would be 972.57/1000 +/- 0.76 which means that approx
    2/3rds of the subjects tested fell within the range of 971.81/1000 to
    973.33/1000.

    Well, not exactly. The delta value is correctly explained in this
    article.

    http://www.brookscole.com/chemistry_d/templates/student_resources/0534166962_brown/hottopics/ch01-01.html

    dx sample(per thousand) = [(Rsample - Rstandard) / Rstandard] x 1000

    Phil H

  5. Phil Holman wrote:

    <in response to questions I had about how to interpret the numbers he
    posted>

    Quoted message said:


    Well, not exactly. The delta value is correctly explained in this
    article.

    http://www.brookscole.com/chemistry_d/templates/student_resources/0534166962_brown/hottopics/ch01-01.html

    dx sample(per thousand) = [(Rsample - Rstandard) / Rstandard] x 1000

    Thanks. I see where I went off-track now.

  6. "Bob Dole" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:

    Phil Holman wrote:

    <in response to questions I had about how to interpret the numbers he
    posted>

    Quoted message said:


    Well, not exactly. The delta value is correctly explained in this
    article.

    http://www.brookscole.com/chemistry_d/templates/student_resources/0534166962_brown/hottopics/ch01-01.html

    dx sample(per thousand) = [(Rsample - Rstandard) / Rstandard] x 1000

    Thanks. I see where I went off-track now.

    Having probably confused the issue I'll summarize:
    Given a standard ratio of a 13C:12C isotopic composition, natural
    testosterone has approx 23 less parts per thousand of 13C. Synthetically
    enhanced testosterone has approx 27.5 less parts per thousand of 13C.
    Taking into account normal distributions around these values, a 10%
    error in measurement could produce a bogus result.

    I'll throw some numbers in to test the outcome.
    Say our reference standard has a 13C/12C ratio of 1.11/98.89
    and our testosterone sample has a ratio of 1.08/98.92
    This will result in a delta 13C/1000 of [(1.08/98.92 - 1.11/98.89) /
    1.11/98.89] x 1000
    = -27.3

    Phil H

  7. Phil Holman said:

    We know what Floyd's T/E ratio is; I've seen all the reports and it
    ranges from 5:1 to 11:1 (LOL). I do hope we get a reliable report on his
    delta 13C value.

    Quoted message said:

    From a NYTImes article posted to ST... his ratio was 3.99 units higher,


    with 3 or greater indicating a positive result.

    "The test starts with an isolation of testosterone from the athlete's
    urine. Then chemists determine the makeup of the carbon atoms that form
    the backbone of testosterone.

    Ordinarily, carbon atoms are made up of six protons and six neutrons,
    giving them an atomic weight of 12. But occasionally, they have an
    extra neutron, giving them an atomic weight of 13.

    By chance, soy plants are the source of most pharmaceutical
    testosterone. They tend to have slightly less carbon-13 than other
    plants that are more abundant in the human diet. Humans make
    testosterone from the food they eat, so their testosterone typically
    has more carbon-13 than the testosterone that drug companies synthesize
    from soy.

    But these differences are tiny.

    The test determines whether the testosterone in the athlete's urine
    has less carbon-13 than another naturally occurring hormone in the
    urine, like cholesterol. The test is considered positive when the
    carbon isotope ratio - the amount of carbon-13 compared to carbon-12
    - is three or more units higher in the athlete's testosterone than
    it is in the comparison hormone. It is evidence that the testosterone
    in the urine was not made by the athlete's body. Landis's
    difference was 3.99, according to his own doctor."

  8. "Ron Ruff" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:


    Phil Holman said:

    We know what Floyd's T/E ratio is; I've seen all the reports and it
    ranges from 5:1 to 11:1 (LOL). I do hope we get a reliable report on
    his
    delta 13C value.

    Quoted message said:

    From a NYTImes article posted to ST... his ratio was 3.99 units
    higher,


    with 3 or greater indicating a positive result.

    "The test starts with an isolation of testosterone from the athlete's
    urine. Then chemists determine the makeup of the carbon atoms that
    form
    the backbone of testosterone.

    Ordinarily, carbon atoms are made up of six protons and six neutrons,
    giving them an atomic weight of 12. But occasionally, they have an
    extra neutron, giving them an atomic weight of 13.

    By chance, soy plants are the source of most pharmaceutical
    testosterone. They tend to have slightly less carbon-13 than other
    plants that are more abundant in the human diet. Humans make
    testosterone from the food they eat, so their testosterone typically
    has more carbon-13 than the testosterone that drug companies
    synthesize
    from soy.

    But these differences are tiny.

    The test determines whether the testosterone in the athlete's urine
    has less carbon-13 than another naturally occurring hormone in the
    urine, like cholesterol. The test is considered positive when the
    carbon isotope ratio - the amount of carbon-13 compared to carbon-12
    - is three or more units higher in the athlete's testosterone than
    it is in the comparison hormone. It is evidence that the testosterone
    in the urine was not made by the athlete's body. Landis's
    difference was 3.99, according to his own doctor."


    Thanks Ron. A negative for the delta 13C value tends to be confusing.
    You reported the NYT info and went on to say "the amount of carbon-13
    compared to carbon-12
    is three or more units higher" Shouldn't this be 3 or more units lower.

    Phil H

  9. Phil Holman said:

    Thanks Ron. A negative for the delta 13C value tends to be confusing.
    You reported the NYT info and went on to say "the amount of carbon-13
    compared to carbon-12
    is three or more units higher" Shouldn't this be 3 or more units lower.

    I don't know... I was hope you (or someone else) would know what it
    meant.

  10. "Ron Ruff" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:


    Phil Holman said:

    Thanks Ron. A negative for the delta 13C value tends to be confusing.
    You reported the NYT info and went on to say "the amount of carbon-13
    compared to carbon-12
    is three or more units higher" Shouldn't this be 3 or more units
    lower.

    I don't know... I was hope you (or someone else) would know what it
    meant.


    Like I said, this can be confusing. Synthetically based testosterone has
    a deficiency of approx 27.5 parts per 1000 of 13C and natural
    testosterone a deficiency of approx 23 parts when compared to a standard
    reference ratio of 13C/12C. I haven't read the actual NYT article but
    it's the deficiency which is higher; the actual amount of 13C is lower.

    Phil H

  11. Ron Ruff said:

    By chance, soy plants are the source of most pharmaceutical
    testosterone. They tend to have slightly less carbon-13 than other
    plants that are more abundant in the human diet. Humans make
    testosterone from the food they eat, so their testosterone typically
    has more carbon-13 than the testosterone that drug companies synthesize
    from soy.

    You mean if I drink lots of Soy milk I would test positive ? Perhaps
    flandis should say he drank soy milk for recovery.

  12. On Thu, 03 Aug 2006 10:47:08 +0200, Donald Munro <[email hidden]>

    Quoted message said:
    Ron Ruff said:

    By chance, soy plants are the source of most pharmaceutical
    testosterone. They tend to have slightly less carbon-13 than other
    plants that are more abundant in the human diet. Humans make
    testosterone from the food they eat, so their testosterone typically
    has more carbon-13 than the testosterone that drug companies synthesize
    from soy.

    You mean if I drink lots of Soy milk I would test positive ? Perhaps
    flandis should say he drank soy milk for recovery.

    With RUM in it. Yeah, that's the ticket. Soy milk with rum an old Pennsylvania
    Dutch recipe.

    Ron

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