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Online automatic phytoplankton monitoring at several locations performed by flowcytometry (CytoSense-CytoSub)
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LL_ZI_sws15flr6_3ulIMG_600s 2016-06-14 19u03.cyz

----- Processed at : 17-Jun-2016 12:12:53 -----

1. The cytometric analysis is performed on machine LelystadII
2. The CytoUSB software used is CytoUSB Version: 5.7.5.5
3. The filename is LL_ZI_sws15flr6_3ulIMG_600s 2016-06-14 19u03.cyz
4. The analysis is performed on 14-06-2016 time 19:03:54
5. The number of measured particles is 15336
6. The total concentration found (e.g. only SWS trigg.) is 56 particles/microliter
7. The concentration found (all used triggers) is 15 particles/microliter
8. The preconcentration (before analysis) found (all used triggers) is 14 particles/microliter
9. The flush time found (between samples) is 90 seconds
10. The effective analysis volume is 1038.1247 microliter
11. The pumped volume is 1150.62 microliter
12. The particle-rate is 168 particles passing the laser beam/second
13. The used sample flow rate is 3.0184 microliter/second
14. The used block size memory is 64 kB
15. Trigger 1: SWS HS at threshold level 15 mV
16. Trigger 2: Maximum FL Red HS at threshold level 6 mV
17. Temperature sensor PMT is : 32 C
18. Temperature sensor Sheath is : 26 C
19. Temperature sensor Sheath is : 32 C
20. Pressure sensor difference is : -267 mBar
21. Pressure sensor absolute is : 225 mBar
22. Sample pump 1: Last calibration of the sample pump was : 18-Apr-2016
23. Alignment check 1 by curvature detector is 0.89543 (1=perfect)
24. Alignment check 2 by curvature detector is 80% (100%=perfect)
25. Saturated signals (flattened peaks) occur when the dynamic range of the (HS)detector is reached
26. FWS: Nr of saturated signals is 1 (0% of 15336 measured particles)
27. FWS: Maximum signal height found is 9650 mV
28. FWS: Nr of particles with signal height <10 mV is high (57 part. (0 %))
29. SWS HS: Nr of saturated signals is 10 (0% of 15336 measured particles)
30. SWS HS: Maximum signal height found is 5000 mV
31. SWS HS: Nr of particles with signal height <10 mV is high (2 part. (0 %))
32. FL Yellow HS: Nr of saturated signals is 10 (0% of 15336 measured particles)
33. FL Yellow HS: Maximum signal height found is 5000 mV
34. FL Yellow HS: Nr of particles with signal height <10 mV is high (14969 part. (98 %))
35. FL Orange HS: Nr of saturated signals is 3 (0% of 15336 measured particles)
36. FL Orange HS: Maximum signal height found is 5000 mV
37. FL Orange HS: Nr of particles with signal height <10 mV is high (14907 part. (97 %))
38. FL Red HS: Nr of saturated signals is 1 (0% of 15336 measured particles)
39. FL Red HS: Maximum signal height found is 5000 mV
40. FL Red HS: Nr of particles with signal height <10 mV is high (4229 part. (28 %))
41. FL Yellow HS: Nr of block shaped signals is 22 (0.14345%)
42. SWS HS: Nr of block shaped signals is 4 (0.026082%)
43. FWS: Nr of block shaped signals is 2 (0.013041%)
44. SWS HS: PMT level is 50
45. SWS LS: PMT level is 32
46. FL Yellow LS: PMT level is 61
47. FL Red LS: PMT level is 63
48. FL Yellow HS: PMT level is 83
49. FL Orange HS: PMT level is 80
50. FL Red HS: PMT level is 93
51. IIF: Imaging in Flow pictures available. Nr of images is 159

-------------------------- Warnings info --------------------------
1.20 Warning: FL Yellow LS: HS-LS ratio is 65 and too low.
1.20.1 Solution - Put LS PMT lower. Ratio HS/LS should be around 100.
1.20 Warning: FL Red LS: HS-LS ratio is 234 and too high.
1.20.1 Solution - Put LS PMT higher. Ratio HS/LS should be around 100.
1.23 Warning: FL Yellow HS : Nr of particles with signal height <10 mV is high (98 %)
1.23.1 Solution - Increase, set higher trigger threshold (to prevent measuring noise)
1.23.2 Solution - Decrease, set lower particle sample rate. Maybe caused by an overload of particles/ noise in your sample
1.23.3 Solution - Clean sheath, clean cuvette, clean tubing? (noise can be introduced by dirty walls)
1.23 Warning: FL Orange HS : Nr of particles with signal height <10 mV is high (97 %)
1.23.1 Solution - Increase, set higher trigger threshold (to prevent measuring noise)
1.23.2 Solution - Decrease, set lower particle sample rate. Maybe caused by an overload of particles/ noise in your sample
1.23.3 Solution - Clean sheath, clean cuvette, clean tubing? (noise can be introduced by dirty walls)
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