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omation mbers - Society for Laboratory Automation and Screening

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WP062<br />

Norbert Stoll<br />

University of Rostock<br />

Institute of Aut<strong>omation</strong><br />

R.-Wagner-Strasse 31<br />

Rostock18119 Germany<br />

norbert.stoll@uni-rostock.de<br />

Automated Sampling System <strong>for</strong> Parallel Autoclaves in High Throughput Chemistry<br />

222<br />

Co-Author(s)<br />

Wof-Dieter Heinitz<br />

Hans-Joachim Stiller<br />

KerstinThurow<br />

The paper describes a parallel sampling system <strong>for</strong> autoclaves <strong>for</strong> application in combinatorial chemistry. For<br />

kinetic investigations a sampling <strong>for</strong> analytical reasons has to be per<strong>for</strong>med. The system is able to take samples<br />

from 5 / 10 autoclaves under pressures up to 60 bars. Up to 10 samples <strong>for</strong> every reactin system will be filled into<br />

a gc-vial placed on a base plate in microplate <strong>for</strong>mat. The system is fully automated <strong>and</strong> can be included into<br />

integrated systems.<br />

WP063<br />

Regina Stoll<br />

University of Rostock<br />

Institute of Occupational Medicine<br />

St. Georg Strasse 108<br />

Rostock18055 Germany<br />

regina.stoll@med.uni-rostock.de<br />

Real-time Physical Fitness Validation by Automated Respiratory Analysis<br />

Co-Author(s)<br />

Norbert Stoll<br />

Physical fitness is one of the most important status in<strong>for</strong>mation about a patient in internal medicine as well as<br />

in occupational <strong>and</strong> sports medicine. Un<strong>for</strong>tunately, the most significant parameter VO2max (maximal oxygen<br />

uptake) has to be determined under vita-maxima conditions. To decrease the risk <strong>for</strong> the patient <strong>and</strong> to save time<br />

a determinmation of VO2max at submaximum level has to be per<strong>for</strong>med. The paper describes an automated<br />

real-time method on a basis of analytical liearizable functions with regression equations <strong>for</strong> VO2-P- <strong>and</strong> VCO2-Pfunctions<br />

<strong>for</strong> tests under increasing load P conditions. The system has been included into <strong>and</strong> tested with the data<br />

of an ergospirometry measurement system. The results are shown in relation to other post-run off-line heart rate<br />

based estimation methods <strong>and</strong> show the advantage of the approach.

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