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Online automatic phytoplankton monitoring at several locations performed by flowcytometry (CytoSense-CytoSub)
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Live Results Marel
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EasyClus check & Info of last file

----- Processed at : 03-Aug-2022 14:10:01 -----

1. The cytometric analysis is performed on machine ULCO II
2. The CytoUSB software used is CytoUSB Version: 5.11.1.6
3. The filename is Pico_MAREL 2022-08-03 13h59.cyz
4. The analysis is performed on 03-08-2022 time 14:01:58
5. The number of measured particles is 7313
6. The total concentration found (e.g. only SWS trigg.) is 2151 particles/microliter
7. The concentration found (all used triggers) is 18 particles/microliter
8. The preconcentration (before analysis) found (all used triggers) is 66 particles/microliter
9. The flush time found (between samples) is 131 seconds
10. The effective analysis volume is 399.7116 microliter
11. The pumped volume is 684.48 microliter
12. The particle-rate is 4004 particles passing the laser beam/second
13. The used sample flow rate is 1.8614 microliter/second
14. The used block size memory is 64 kB
15. Trigger 1: SWS at threshold level 35 mV
16. Trigger 2: Total FWS at threshold level 12
17. Trigger 3: Maximum FL Red at threshold level 8
18. Temperature sensor PMT is : 32.3 C
19. Temperature sensor Sheath is : 29.9 C
20. Temperature sensor Sheath is : 34.1 C
21. Temperature sensor System is : 33.4 C
22. Pressure sensor difference is : -268 mBar
23. Pressure sensor absolute is : 194 mBar
24. Sample pump 1: Last calibration of the sample pump was : 10-Janv-2022
25. Alignment check 1 by curvature detector is 0.8379 (1=perfect)
26. Alignment check 2 by curvature detector is 37% (100%=perfect)
27. Saturated signals (flattened peaks) occur when the dynamic range of the (HS)detector is reached
28. FWS: Nr of saturated signals is 1 (0% of 7313 measured particles)
29. FWS: Maximum signal height found is 6847 mV
30. FWS: Nr of particles with signal height <10 mV is high (550 part. (8 %))
31. SWS HS: Nr of saturated signals is 1560 (0% of 7313 measured particles)
32. SWS HS: Maximum signal height found is 5000 mV
33. SWS HS: Nr of particles with signal height <10 mV is high (4 part. (0 %))
34. FL Yellow HS: Nr of saturated signals is 0 (0% of 7313 measured particles)
35. FL Yellow HS: Maximum signal height found is 1267 mV
36. FL Yellow HS: Nr of particles with signal height <10 mV is high (7207 part. (99 %))
37. FL Orange HS: Nr of saturated signals is 5 (0% of 7313 measured particles)
38. FL Orange HS: Maximum signal height found is 5000 mV
39. FL Orange HS: Nr of particles with signal height <10 mV is high (6749 part. (92 %))
40. FL Red HS: Nr of saturated signals is 7 (0% of 7313 measured particles)
41. FL Red HS: Maximum signal height found is 5000 mV
42. FL Red HS: Nr of particles with signal height <10 mV is high (1566 part. (21 %))
43. FL Orange HS: Nr of block shaped signals is 2 (0.027349%)
44. Suspect nr: 0=low, 10=high
45. Maximum FWS: suspect = 0
46. Maximum SWS HS: suspect = 0
47. Maximum FL Yellow HS: suspect = 0
48. Maximum FL Orange HS: suspect = 0
49. Maximum FL Red HS: suspect = 2
50. SWS: PMT level is 65
51. FL Yellow: PMT level is 100
52. FL Orange: PMT level is 95
53. FL Red: PMT level is 95

-------------------------- Warnings info --------------------------
1.01 Warning: The number of saved particles in this analysis is quite low and
1.01 Warning: you might miss (statistically) bigger particles in your sample
1.01.1 Solution - Increase number of measured particles. Increase setted time OR after setted number of analyzed particles (in CytoUSB)
1.03 Warning: Your preconcentration differs more than 25% from the during analysis concentration
1.03.1 Solution - Carry over between samples? > Flush longer
1.03.2 Solution - Better homogenize samples during subsampling by a gentle stirrer
1.03.3 Solution - Colonies-filaments of cells break during analysis > stir slower
1.05 Warning: Your effective analysis volume is low compared to the pumped analysis volume
1.05.1 Solution - Set blocksize memory in CytoUSB higher, used=64k (default=4k) e.g. to 128k
1.07 Warning: Analysis with high particle rate (4004), meaning you have higher chance of coincidence
1.07.1 Solution - Decrease, use lower sample rate
1.07.2 Solution - Is threshold in noise level? Increase threshold and find out of particle rate is suddenly lower and quite stable
1.07.3 Solution - Is the sheath fluid clean enough?
1.11 Warning: This threshold level is quite high
1.11 Warning: Take care you don't miss smaller particles, because they will not be triggered at this level
1.11.1 Solution - Set lower threshold trigger level
1.11.2 Solution - If you need to put the level that high to measure something, it might be causeed by increased noise.
1.11.3 Solution - Increased noise is usually caused by dirty cuvette (inner) walls/tubing/sheath fluid - So, clean the cuvette carefully, change tubing, use new sheath
1.21 Warning: Last calibration of sample pump towards analysis date was more than 90 days. (10-Janv-2022)
1.21.1 Solution - Check if the pumped analysis volume is the real volume by weighing
1.23 Warning: FWS-L and -R might indicate an air bubble problem 37% (100%=perfect)
1.23.1 Solution - Pinch valve to get rid of the air bubble or blockage by something different
1.24 Warning: SWS HS: Quite a lot of particles (21% have signal heights of
1.24.1 Solution - 5000 mV or higher. Check if your PMT is not too high!
1.25 Warning: SWS HS: Relative large amount of particles is saturated in (0)
1.25.1 Solution - Decrease, set lower SWS HS PMT voltage in CytoUSB (make less sensitive)
1.27 Warning: FL Yellow HS : Nr of particles with signal height <10 mV is high (99 %)
1.27.1 Solution - Increase, set higher trigger threshold (to prevent measuring noise)
1.27.2 Solution - Decrease, set lower particle sample rate. Maybe caused by an overload of particles/ noise in your sample
1.27.3 Solution - Clean sheath, clean cuvette, clean tubing? (noise can be introduced by dirty walls)
1.27 Warning: FL Orange HS : Nr of particles with signal height <10 mV is high (92 %)
1.27.1 Solution - Increase, set higher trigger threshold (to prevent measuring noise)
1.27.2 Solution - Decrease, set lower particle sample rate. Maybe caused by an overload of particles/ noise in your sample
1.27.3 Solution - Clean sheath, clean cuvette, clean tubing? (noise can be introduced by dirty walls)
Disclaimer
Any use of the provided data and results or information provided by this website is on full own risk and responsibility. Those who gave access to this website or those who provided the results represented on the website cannot be held responsible for any damage or consequences that could arise from the use of this information. This LIVE system is empowered by the ULCO-CNRS, CytoBuoy BV and Thomas Rutten Projects. TRP Copyright 2023