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Exercise Training and Insulin

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General fitness, health and nutrition
Published
13 June 2004
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19 June 2004
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Jim Dumas
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  1. Just to say that I've settled into a summer bicycling
    routine in the hot Florida sun. I exercise in the morning
    for an hour then dose ultralente after I've cooled down. I
    have NPH waning from a bedtime dose during the training
    period. This usually keeps BG flat during training. But I've
    measured low BG after the training period when I took more
    bedtime NPH to move triglycerides into fat cells after a
    high fat dinner. So I have to be careful with the NPH bumper
    if I plan to exercise the next day.

    The rationale for dosing ultralente after the training is to
    prevent rapid absorption at the injection site during
    training. It's important to note that all insulin is
    absorbed faster during an endurance workout. This is caused
    by increased temperature and blood flow at the injection
    site during training. These effects will be minimized when
    exercising before breakfast.

    I also bump an insulin sensitivity multiplier by 1/3 for 24
    hours post exercise period. This lowers insulin requirements
    for the current day.

    I have a heart rate monitor on the road racer as well. The
    target range I've set is 130-160 Beats per minute (50 yo
    male so max is 220-50=170 BPM). A bar graph shows me where
    I'm at in real-time so I can optimize the training effects.
    I plan to eventually calculate calories burned per hour and
    use this to estimate the drop in insulin requirements for
    the next 24 hours.

    In any case, I'd be interested to know if anybody has used
    the level of stress in a workout to modify insulin dosing
    requirements. I'm currently thinking of using miles
    travelled, time duration, elevation climbed (sum of upward
    movement in feet) and average BPM. All this info is in the
    bicycle computer and is downloaded to the PC (Specialized
    PeaBrain computer on the bike). As an example, let's say I
    use distance travelled and average heart rate to estimate
    increased insulin sensitivity. This would give:

    S is proportional to D*(H - 72 BPM)

    where S is insulin sensitivity, D is distance and H is
    average heart rate.

    So I think I could use the total distance times the average
    heart rate as a proxy for the stress level of the workout.
    Then set up some curve fit for this data. As I get stronger,
    my heart rate will lower and my insulin sensitivity will
    lower as well. If the workout is light, the heart rate will
    be low and insulin sensitivity will be low as well. If my
    average heart rate falls below a baseline of 72 BPM, then
    the workout is trivial and there is no increase in insulin
    sensitivity. This baseline will lower with training as well.

    Any ideas or suggestions?
    --
    Jim Dumas T1 4/86, background retinopathy, rarely
    hypoglycemic: <1/mo. lispro+R+U+NPH daily, moderate
    exercise, typically <6% HbA1c

  2. Jim Dumas said:

    Just to say that I've settled into a summer bicycling
    routine in the hot Florida sun. I exercise in the morning
    for an hour then dose ultralente after I've cooled down. I
    have NPH waning from a bedtime dose during the training
    period. This usually keeps BG flat during training. But
    I've measured low BG after the training period when I took
    more bedtime NPH to move triglycerides into fat cells
    after a high fat dinner. So I have to be careful with the
    NPH bumper if I plan to exercise the next day.

    The rationale for dosing ultralente after the training is
    to prevent rapid absorption at the injection site during
    training. It's important to note that all insulin is
    absorbed faster during an endurance workout. This is
    caused by increased temperature and blood flow at the
    injection site during training. These effects will be
    minimized when exercising before breakfast.

    I also bump an insulin sensitivity multiplier by 1/3 for
    24 hours post exercise period. This lowers insulin
    requirements for the current day.

    I have a heart rate monitor on the road racer as well. The
    target range I've set is 130-160 Beats per minute (50 yo
    male so max is 220-50=170 BPM). A bar graph shows me where
    I'm at in real-time so I can optimize the training
    effects. I plan to eventually calculate calories burned
    per hour and use this to estimate the drop in insulin
    requirements for the next 24 hours.

    In any case, I'd be interested to know if anybody has used
    the level of stress in a workout to modify insulin dosing
    requirements. I'm currently thinking of using miles
    travelled, time duration, elevation climbed (sum of upward
    movement in feet) and average BPM. All this info is in the
    bicycle computer and is downloaded to the PC (Specialized
    PeaBrain computer on the bike). As an example, let's say I
    use distance travelled and average heart rate to estimate
    increased insulin sensitivity. This would give:

    S is proportional to D*(H - 72 BPM)

    where S is insulin sensitivity, D is distance and H is
    average heart rate.

    So I think I could use the total distance times the
    average heart rate as a proxy for the stress level of the
    workout. Then set up some curve fit for this data. As I
    get stronger, my heart rate will lower and my insulin
    sensitivity will lower as well. If the workout is light,
    the heart rate will be low and insulin sensitivity will be
    low as well. If my average heart rate falls below a
    baseline of 72 BPM, then the workout is trivial and there
    is no increase in insulin sensitivity. This baseline will
    lower with training as well.

    Any ideas or suggestions?

    I think yer trying to measure insulin/glucose utilization to
    a level of accuracy that is impossible with the human body
    and the Florida weather.

    But it's an interesting exercise.

  3. I hope it works for you. I've found that in my case insulin
    sensitivity is affected by exercise at a variety of time
    scales (hours, days, weeks) and is noticeably nonlinear.
    Sensitivity increases that express as required basal rate
    changes seem to occur as threshold or step function events
    rather than smooth proportional changes. This was one of the
    major reasons I went to the pump with which basal
    alterations are fully functional in order 4 hours rather
    than order 24 or 48. My exercise is variable and given the
    various lag times I alter dosages fairly often.

    There is a converter from % heart rate to % VO2 max at
    brianmac.demon.co.ukmaxhr.htm

    I would imagine everyone doing any kind of serious exercise
    factors the intensity level and length into their short term
    bg management strategy be it insulin modification, carb
    increase, or a combination.

    In addition to any increase in insulin absorption with
    exercise, non insulin mediated glucose transport pathways
    are opened up with exercise. These and total insulin storage
    within the cell are affected by fitness levels and throw
    another non linear effect into the equation.

    Charly Coughran ccoughran@UCSD-DELETE-TO-RESPOND-EDU

    Jim Dumas <[email protected]!mindspring.com> wrote in
    :"]news:[email hidden]:

    Quoted message said:

    Just to say that I've settled into a summer bicycling
    routine in the hot Florida sun. I exercise in the morning
    for an hour then dose ultralente after I've cooled down. I
    have NPH waning from a bedtime dose during the training
    period. This usually keeps BG flat during training. But
    I've measured low BG after the training period when I took
    more bedtime NPH to move triglycerides into fat cells
    after a high fat dinner. So I have to be careful with the
    NPH bumper if I plan to exercise the next day.

    The rationale for dosing ultralente after the training is
    to prevent rapid absorption at the injection site during
    training. It's important to note that all insulin is
    absorbed faster during an endurance workout. This is
    caused by increased temperature and blood flow at the
    injection site during training. These effects will be
    minimized when exercising before breakfast.

    I also bump an insulin sensitivity multiplier by 1/3 for
    24 hours post exercise period. This lowers insulin
    requirements for the current day.

    I have a heart rate monitor on the road racer as well. The
    target range I've set is 130-160 Beats per minute (50 yo
    male so max is 220-50=170 BPM). A bar graph shows me where
    I'm at in real-time so I can optimize the training
    effects. I plan to eventually calculate calories burned
    per hour and use this to estimate the drop in insulin
    requirements for the next 24 hours.

    In any case, I'd be interested to know if anybody has used
    the level of stress in a workout to modify insulin dosing
    requirements. I'm currently thinking of using miles
    travelled, time duration, elevation climbed (sum of upward
    movement in feet) and average BPM. All this info is in the
    bicycle computer and is downloaded to the PC (Specialized
    PeaBrain computer on the bike). As an example, let's say I
    use distance travelled and average heart rate to estimate
    increased insulin sensitivity. This would give:

    S is proportional to D*(H - 72 BPM)

    where S is insulin sensitivity, D is distance and H is
    average heart rate.

    So I think I could use the total distance times the
    average heart rate as a proxy for the stress level of the
    workout. Then set up some curve fit for this data. As I
    get stronger, my heart rate will lower and my insulin
    sensitivity will lower as well. If the workout is light,
    the heart rate will be low and insulin sensitivity will be
    low as well. If my average heart rate falls below a
    baseline of 72 BPM, then the workout is trivial and there
    is no increase in insulin sensitivity. This baseline will
    lower with training as well.

    Any ideas or suggestions?

  4. yeah. get an insulin pump.

    dave

    Jim Dumas wrote: snip

    Quoted message said:


    Any ideas or suggestions?

  5. "Jim Dumas" <[email protected]!mindspring.com> wrote in message
    "]news:[email hidden]...

    Quoted message said:

    Just to say that I've settled into a summer bicycling
    routine in the hot Florida sun. I exercise in the morning
    for an hour then dose ultralente after I've cooled down. I
    have NPH waning from a bedtime dose during the training
    period. This usually keeps BG flat during training. But
    I've measured low BG after the training period when I took
    more bedtime NPH to move triglycerides into fat cells
    after a high fat dinner. So I have to


    be

    Quoted message said:

    careful with the NPH bumper if I plan to exercise the
    next day.

    The rationale for dosing ultralente after the training is
    to prevent rapid absorption at the injection site during
    training. It's important to note that all insulin is
    absorbed faster during an endurance workout. This is
    caused by increased temperature and blood flow at the
    injection site


    during

    Quoted message said:

    training. These effects will be minimized when exercising
    before breakfast.

    I also bump an insulin sensitivity multiplier by 1/3 for
    24 hours post exercise period. This lowers insulin
    requirements for the current day.

    I have a heart rate monitor on the road racer as well. The
    target range I've set is 130-160 Beats per minute (50 yo
    male so max is 220-50=170


    BPM).

    Quoted message said:

    A bar graph shows me where I'm at in real-time so I can
    optimize the training effects. I plan to eventually
    calculate calories burned per hour and use this to
    estimate the drop in insulin requirements for the next
    24 hours.

    In any case, I'd be interested to know if anybody has used
    the level of stress in a workout to modify insulin dosing
    requirements. I'm currently thinking of using miles
    travelled, time duration, elevation climbed (sum


    of

    Quoted message said:

    upward movement in feet) and average BPM. All this info is
    in the bicycle computer and is downloaded to the PC
    (Specialized PeaBrain computer on the bike). As an
    example, let's say I use distance travelled and average


    heart

    Quoted message said:

    rate to estimate increased insulin sensitivity. This
    would give:

    S is proportional to D*(H - 72 BPM)

    where S is insulin sensitivity, D is distance and H is
    average heart rate.

    So I think I could use the total distance times the
    average heart rate as


    a

    Quoted message said:

    proxy for the stress level of the workout. Then set up
    some curve fit for this data. As I get stronger, my heart
    rate will lower and my insulin sensitivity will lower as
    well. If the workout is light, the heart rate will be low
    and insulin sensitivity will be low as well. If my
    average heart rate falls below a baseline of 72 BPM, then
    the workout is trivial and there is no increase in
    insulin sensitivity. This baseline will lower with
    training as well.

    Any ideas or suggestions?

    Just the one Jim. Get real man!!!! Do your bike riding and
    ENJOY it rather than turn it into an exercise in maths,
    logic, extrapolation and guesswork.

    (Sorry Jim, but sometimes you REALLY overcomplicate thing to
    the extreme.)

    Beav

  6. Interesting. I think one problem you will continually
    encounter is your digestive system. That's a variable that
    is impossible to control despite your best efforts.
    Absortion continues to occurr down through your
    intestines, such that a meal you ate yesterday may still
    be obsorbing and releasing glucose into your body. Also,
    your activity level on a particular occasion may be
    similar but never the same. Metabolism isn't that
    predicatable and is influenced by many things such as
    temperature and stress level. Don't forget as well the
    activity of the liver in releasing glucose.

    I have tried all the insulins, and recommend that for best
    overall result, use Lantus or a pump.

    The absorbtion rates of long-acting insulins such as NPH,
    Lente, etc., are also variable and dependent on many factors
    such as the injection site, scar tissue, amount of fat in
    the injection location, body temperature, and activitity
    level. This unpredicability has led to the popularity of
    pumps and Lantus insulin, which has a more predictable
    release curve.

    In short, you're trying to solve a problem with too many
    variables which change due to factors you cann never control
    with the accuracy you're striving for. The math and
    equatations are interesting but ultimately probably a waste
    of time, given the inherent uncontrollable variables. You're
    efforts at control are nonetheless admirable.

    "Jim Dumas" <[email protected]!mindspring.com> wrote in
    message
    "]news:[email hidden]...

    Quoted message said:

    Just to say that I've settled into a summer bicycling
    routine in the hot Florida sun. I exercise in the morning
    for an hour then dose ultralente after I've cooled down. I
    have NPH waning from a bedtime dose during the training
    period. This usually keeps BG flat during training. But
    I've measured low BG after the training period when I took
    more bedtime NPH to move triglycerides into fat cells
    after a high fat dinner. So I have to


    be

    Quoted message said:

    careful with the NPH bumper if I plan to exercise the
    next day.

    The rationale for dosing ultralente after the training is
    to prevent rapid absorption at the injection site during
    training. It's important to note that all insulin is
    absorbed faster during an endurance workout. This is
    caused by increased temperature and blood flow at the
    injection site


    during

    Quoted message said:

    training. These effects will be minimized when exercising
    before breakfast.

    I also bump an insulin sensitivity multiplier by 1/3 for
    24 hours post exercise period. This lowers insulin
    requirements for the current day.

    I have a heart rate monitor on the road racer as well. The
    target range I've set is 130-160 Beats per minute (50 yo
    male so max is 220-50=170


    BPM).

    Quoted message said:

    A bar graph shows me where I'm at in real-time so I can
    optimize the training effects. I plan to eventually
    calculate calories burned per hour and use this to
    estimate the drop in insulin requirements for the next
    24 hours.

    In any case, I'd be interested to know if anybody has used
    the level of stress in a workout to modify insulin dosing
    requirements. I'm currently thinking of using miles
    travelled, time duration, elevation climbed (sum


    of

    Quoted message said:

    upward movement in feet) and average BPM. All this info is
    in the bicycle computer and is downloaded to the PC
    (Specialized PeaBrain computer on the bike). As an
    example, let's say I use distance travelled and average


    heart

    Quoted message said:

    rate to estimate increased insulin sensitivity. This
    would give:

    S is proportional to D*(H - 72 BPM)

    where S is insulin sensitivity, D is distance and H is
    average heart rate.

    So I think I could use the total distance times the
    average heart rate as


    a

    Quoted message said:

    proxy for the stress level of the workout. Then set up
    some curve fit for this data. As I get stronger, my heart
    rate will lower and my insulin sensitivity will lower as
    well. If the workout is light, the heart rate will be low
    and insulin sensitivity will be low as well. If my
    average heart rate falls below a baseline of 72 BPM, then
    the workout is trivial and there is no increase in
    insulin sensitivity. This baseline will lower with
    training as well.

    Any ideas or suggestions?
    --
    Jim Dumas T1 4/86, background retinopathy, rarely
    hypoglycemic: <1/mo. lispro+R+U+NPH daily, moderate
    exercise, typically <6% HbA1c

  7. mike gray said:

    I think yer trying to measure insulin/glucose utilization
    to a level of accuracy that is impossible with the human
    body and the Florida weather.

    Hi Mike,

    You use insulin. So how do you handle this variable workout
    issue now?

    I hope you have some method,
    --
    Jim Dumas T1 4/86, background retinopathy, rarely
    hypoglycemic: <1/mo. lispro+R+U+NPH daily, moderate
    exercise, typically <6% HbA1c

  8. It took approximately 10 minutes for somebody to point out
    that I wrote "insulin" where I clearly meant "glucose". It
    is corrected below. Charly

    Charly Coughran <[email hidden]> wrote
    in :"]news:[email hidden]:

    Quoted message said:

    I hope it works for you. I've found that in my case
    insulin sensitivity is affected by exercise at a variety
    of time scales (hours, days, weeks) and is noticeably
    nonlinear. Sensitivity increases that express as
    required basal rate changes seem to occur as threshold
    or step function events rather than smooth proportional
    changes. This was one of the major reasons I went to the
    pump with which basal alterations are fully functional
    in order 4 hours rather than order 24 or 48. My exercise
    is variable and given the various lag times I alter
    dosages fairly often.

    There is a converter from % heart rate to % VO2 max at
    brianmac.demon.co.ukmaxhr.htm

    I would imagine everyone doing any kind of serious
    exercise factors the intensity level and length into their
    short term bg management strategy be it insulin
    modification, carb increase, or a combination.

    In addition to any increase in insulin absorption with
    exercise, non insulin mediated glucose transport pathways
    are opened up with exercise. These and total glucose
    storage within the cell are affected by fitness level and
    throw another non linear effect into the equation.

    Charly Coughran ccoughran@UCSD-DELETE-TO-RESPOND-EDU

    Jim Dumas <[email protected]!mindspring.com> wrote in
    :"]news:[email hidden]:

    Quoted message said:

    Just to say that I've settled into a summer bicycling
    routine in the hot Florida sun. I exercise in the morning
    for an hour then dose ultralente after I've cooled down.
    I have NPH waning from a bedtime dose during the training
    period. This usually keeps BG flat during training. But
    I've measured low BG after the training period when I
    took more bedtime NPH to move triglycerides into fat
    cells after a high fat dinner. So I have to be careful
    with the NPH bumper if I plan to exercise the next day.

    The rationale for dosing ultralente after the training is
    to prevent rapid absorption at the injection site during
    training. It's important to note that all insulin is
    absorbed faster during an endurance workout. This is
    caused by increased temperature and blood flow at the
    injection site during training. These effects will be
    minimized when exercising before breakfast.

    I also bump an insulin sensitivity multiplier by 1/3 for
    24 hours post exercise period. This lowers insulin
    requirements for the current day.

    I have a heart rate monitor on the road racer as well.
    The target range I've set is 130-160 Beats per minute (50
    yo male so max is 220-50=170 BPM). A bar graph shows me
    where I'm at in real-time so I can optimize the training
    effects. I plan to eventually calculate calories burned
    per hour and use this to estimate the drop in insulin
    requirements for the next 24 hours.

    In any case, I'd be interested to know if anybody has
    used the level of stress in a workout to modify insulin
    dosing requirements. I'm currently thinking of using
    miles travelled, time duration, elevation climbed (sum of
    upward movement in feet) and average BPM. All this info
    is in the bicycle computer and is downloaded to the PC
    (Specialized PeaBrain computer on the bike). As an
    example, let's say I use distance travelled and average
    heart rate to estimate increased insulin sensitivity.
    This would give:

    S is proportional to D*(H - 72 BPM)

    where S is insulin sensitivity, D is distance and H is
    average heart rate.

    So I think I could use the total distance times the
    average heart rate as a proxy for the stress level of the
    workout. Then set up some curve fit for this data. As I
    get stronger, my heart rate will lower and my insulin
    sensitivity will lower as well. If the workout is light,
    the heart rate will be low and insulin sensitivity will
    be low as well. If my average heart rate falls below a
    baseline of 72 BPM, then the workout is trivial and there
    is no increase in insulin sensitivity. This baseline will
    lower with training as well.

    Any ideas or suggestions?

  9. Bay Area Dave said:

    yeah. get an insulin pump.

    You still have the same problem with a pump.

    So how do you handle variable workouts with your
    insulin dosing?

    But you have to exercise more than just a jawbone to see
    this.
    --
    Jim Dumas T1 4/86, background retinopathy, rarely
    hypoglycemic: <1/mo. lispro+R+U+NPH daily, moderate
    exercise, typically <6% HbA1c

  10. Quoted message said:

    Just the one Jim. Get real man!!!! Do your bike riding and
    ENJOY it rather than turn it into an exercise in maths,
    logic, extrapolation and guesswork.

    Beav, you do realise don't you that some people enjoy all
    that complication - it's like model railroaders - some of
    them go through all kinds of complicated "realistic"
    running sessions, others do it for the realistic scenery
    that they build over many, many hours, and others simply
    "run trains" ....

    Thanks, but no thanks ..... you're not really my type ....
    :-))

    --

    ]- "I am a man of many parts, ]- unfortunately most of them
    are no longer in stock" ]-
    ------------------------------------------------------------
    ----------
    To reply by e-mail, move the Gnu from the address to the
    subject line.
    ------------------------------------------------------------
    ----------

  11. tee hee! you wrote "sort of" what I was thinking about all
    the complex scientific jargon he throws around. I wonder if
    he thinks that jazz impresses anyone? All it tells me is he
    is obsessed.

    dave

    Beav said:

    Just the one Jim. Get real man!!!! Do your bike riding and
    ENJOY it rather than turn it into an exercise in maths,
    logic, extrapolation and guesswork.

    [censored] ME!!!!

    (Sorry Jim, but sometimes you REALLY overcomplicate thing
    to the extreme.)

    Beav

  12. Beav wrote:

    No thank you, Beav. My wife an I are quite happy. But ask
    BAD.
    --
    Jim Dumas T1 4/86, background retinopathy, rarely
    hypoglycemic: <1/mo. lispro+R+U+NPH daily, moderate
    exercise, typically <6% HbA1c

  13. Tonya said:

    In short, you're trying to solve a problem with too many
    variables which change due to factors you cann never
    control with the accuracy you're striving for. The math
    and equatations are interesting but ultimately probably a
    waste of time, given the inherent uncontrollable
    variables.

    Hi Tonya,

    I agree that there are many unknown variables in SC dosing.
    But with short-acting insulins like Humalog and Novolog, the
    injection site issues or delays are almost nonexistant.
    Next, in my case, I've estimated the insulin action profiles
    for Humalog, Novolog and R for my metabolism, i.e., with
    antibody binding delays via the Glucose Transform. So I have
    eliminated much uncertainty, (in my case, antibody binding
    delays govern insulin action [this is the case with most long-
    term T1s, BTW, since antibody concentrations continue to
    rise for T1s on pumps or MDI]), by jumping directly to the
    glucose uptake stage in the cascade of insulin transport to
    target cells. What is interesting about my antibody binding
    to R, for example, is the peak insulin action of 5.7 hours
    post dose is extremely predictable, thanks to the antibodies
    in the bloodstream. This tends to eliminate other less
    important influences like injection site location or
    temperature of the injection site, for example.

    In any case, I beg to differ. My argument is: _Any_ math
    model is better than tossing darts for dosing post-exercise,
    as we T1s seem to do now.

    So let's refine the math to improve this "back-of-the-
    envelope" dosing approach many T1s are currently using.
    Moreover, by discussing this on MHD, we exchange ideas and
    move toward the best model for this effect.

    Finally, this is a good time to discuss exercise effects on
    insulin sensitivity with summer activities on the horizon.
    (There are certainly gender specific hormonal influences
    that I will not address. But the framework of the male model
    will still apply to the female as a starting point.)

    And thanks for input, of course.
    --
    Jim Dumas T1 4/86, background retinopathy, rarely
    hypoglycemic: <1/mo. lispro+R+U+NPH daily, moderate
    exercise, typically <6% HbA1c

  14. Jim Dumas wrote in message ...

    mike gray said:

    I think yer trying to measure insulin/glucose utilization
    to a level of accuracy that is impossible with the human
    body and the Florida weather.

    Hi Mike,

    You use insulin. So how do you handle this variable workout
    issue now?

    I hope you have some method,
    --
    Jim Dumas

    I'm a retired engineer. I use my wife's cast-off computers; I don't even
    use a digital watch.

    I don't "handle" the variable workout issue. Instead, I strive for
    constant workout at constant time-of-day with constant food in my belly and
    constant H + U in my fat layer.

    What did you say Doc?, Anal Retentive? Who, me?

    Regards
    Old Al (Happily watching 35 years in R & D recede in my rear view mirror)

  15. Charly Coughran said:
    Quoted message said:

    I hope it works for you. I've found that in my case
    insulin sensitivity is affected by exercise at a variety
    of time scales (hours, days, weeks) and is noticeably
    nonlinear. Sensitivity increases that express as
    required basal rate changes seem to occur as threshold
    or step function events rather than smooth proportional
    changes. This was one of the major reasons I went to the
    pump with which basal alterations are fully functional
    in order 4 hours rather than order 24 or 48. My exercise
    is variable and given the various lag times I alter
    dosages fairly often.

    Hi Charly,

    I've been thinking about using two exponential decays summed
    to simulate glycogen store rebuild (one for muscle and the
    other for liver) after a training session, as the basic
    insulin sensitivity modifier for exercise effects. One could
    have 5 tau (time constants) set for 12 hours and the other
    for 36 hours, as an example. Then adjust the ratio for the
    mass of glycogen in each type of tissue. Lastly, normalize
    the function using AUC to duplicate the "observed time
    averaged insulin sensitivity" we see in our dosing
    adjustments. But I haven't put pencil to paper on this yet.

    Quoted message said:
    Quoted message said:

    There is a converter from % heart rate to % VO2 max at
    brianmac.demon.co.ukmaxhr.htm

    This was helpful. Thanks.

    Quoted message said:
    Quoted message said:

    I would imagine everyone doing any kind of serious
    exercise factors the intensity level and length into
    their short term bg management strategy be it insulin
    modification, carb increase, or a combination.

    So what is your method to compensate for exercise effects?

    Quoted message said:
    Quoted message said:

    In addition to any increase in insulin absorption with
    exercise, non insulin mediated glucose transport pathways
    are opened up with exercise. These and total glucose
    storage within the cell are affected by fitness level and
    throw another non linear effect into the equation.

    Glycogen stores increase with training. But I don't think
    this will have much impact on the double exp model
    mentioned above.

    In any case, I still think the total distance * average BPM
    is a minimum measurement to capture the required stress
    level data. How do you quantify the stress level for your
    current exercise method? You must have some numerical
    approach if you're adjusting your dose for exercise.

    Thanks for the info,
    --
    Jim Dumas T1 4/86, background retinopathy, rarely
    hypoglycemic: <1/mo. lispro+R+U+NPH daily, moderate
    exercise, typically <6% HbA1c

  16. "Jim Dumas" <[email protected]!mindspring.com> wrote in message "]news:[email hidden]...

    Quoted message said:
    Bay Area Dave said:

    yeah. get an insulin pump.

    You still have the same problem with a pump.

    So how do you handle variable workouts with your
    insulin dosing?

    Simple, he does not excercise.

    I myself find this really hard. Every morning, I bike 24 km
    to the train, the train uses 35 mins into town, then I walk
    for about 25 mins to work. Same rutine on the way home.
    Often I have a low, which in turn brings a high when I am on
    my way to work.

    Share your finding and I will be happy!

    br

    Steinar

  17. using nothing but quick acting insulin, it is fairly easy to
    regulate active insulin for my activity levels. heavy
    exercise means cutting back on basals to approx 50-60% of
    normal for that time of day. If I'm going to exercise right
    after bolusing for food, the rule is that one take 1/2 of
    the usual bolus. I find that's pretty darn accurate!

    dave

    Jim Dumas said:
    Bay Area Dave said:

    yeah. get an insulin pump.

    You still have the same problem with a pump.

    So how do you handle variable workouts with your
    insulin dosing?

    But you have to exercise more than just a jawbone to
    see this.

  18. "Jim Dumas" <[email protected]!mindspring.com> wrote in message
    "]news:[email hidden]...

    Quoted message said:
    mike gray said:

    I think yer trying to measure insulin/glucose
    utilization to a level of accuracy that is impossible
    with the human body and the Florida weather.

    Hi Mike,

    You use insulin. So how do you handle this variable
    workout issue now?

    Hi Jim, I'm not Mike, but.. :-)

    I work out the variable workout issue REALLY simplistically.
    I work 'til I feel just a TINY bit "off", then I test. I'm
    ALWAYS going to be low, so I eat something which I normally
    wouldn't DREAM of eating. A cream and jello filled doughnut
    for example. WONDERFUL they are and if I work too hard at
    trying to STOP that low, I'm not going to have that
    wonderful doughnut am I?

    Does it make me fat? Not on your life, because I've burned,
    and will continue to burn all that lovely glucose:-)

    So... I enjoy the work that brought about the need for the
    doughnut and I enjoy the doughnut even more and not ONCE did
    I need to do even simple maths LOL. All in all, a MUCH more
    fun way to deal with BG's.

    Beav

  19. "Bay Area Dave" <[email hidden]> wrote in message
    "]news:[email hidden]...

    Quoted message said:

    tee hee! you wrote "sort of" what I was thinking about all
    the complex scientific jargon he throws around. I wonder
    if he thinks that jazz impresses anyone? All it tells me
    is he is obsessed.

    Jim's comfortable with his maths, but I doubt many others
    are as comfortable. I don't think he's trying to impress
    anyone, but I've been wrong before now :-)

    I think that obsessive behaviour IS something he should
    consider though.

    Beav

  20. Bay Area Dave said:

    All it tells me is he is obsessed.

    It tells me you don't have a training schedule for
    exercising. This variability in insulin sensitivity, post
    variable exercise period, is a major problem that you
    haven't a clue about. So take a seat.

    Some people just can't be quiet (i.e., don't know when
    to listen).
    --
    Jim Dumas T1 4/86, background retinopathy, rarely
    hypoglycemic: <1/mo. lispro+R+U+NPH daily, moderate
    exercise, typically <6% HbA1c

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