Showing 901 - 920 results of 32,353 for search '(( 50 ((we decrease) OR (a decrease)) ) OR ( 10 ((nm decrease) OR (nn decrease)) ))', query time: 0.93s Refine Results
  1. 901
  2. 902
  3. 903

    Evaluation index results for the JS-10 phantom. by Masakazu Tsujimoto (22339504)

    Published 2025
    “…In conclusion, accurate SUV measurement with ¹²³I-MIBG requires an acquisition time of ≥50 s/view, an SI product of approximately 120, and a Gaussian filter of 10 − 12 mm. …”
  4. 904

    NEMA IEC body phantom. by Masakazu Tsujimoto (22339504)

    Published 2025
    “…In conclusion, accurate SUV measurement with ¹²³I-MIBG requires an acquisition time of ≥50 s/view, an SI product of approximately 120, and a Gaussian filter of 10 − 12 mm. …”
  5. 905

    Relationship between contrast, noise, and CNR. by Masakazu Tsujimoto (22339504)

    Published 2025
    “…In conclusion, accurate SUV measurement with ¹²³I-MIBG requires an acquisition time of ≥50 s/view, an SI product of approximately 120, and a Gaussian filter of 10 − 12 mm. …”
  6. 906

    JS-10 phantom. by Masakazu Tsujimoto (22339504)

    Published 2025
    “…In conclusion, accurate SUV measurement with ¹²³I-MIBG requires an acquisition time of ≥50 s/view, an SI product of approximately 120, and a Gaussian filter of 10 − 12 mm. …”
  7. 907

    The raw data used for the analyses in this study. by Masakazu Tsujimoto (22339504)

    Published 2025
    “…In conclusion, accurate SUV measurement with ¹²³I-MIBG requires an acquisition time of ≥50 s/view, an SI product of approximately 120, and a Gaussian filter of 10 − 12 mm. …”
  8. 908
  9. 909
  10. 910
  11. 911
  12. 912
  13. 913
  14. 914
  15. 915

    Cold-Burst Method for Nanoparticle Formation with Natural Triglyceride Oils by Diana Cholakova (2897222)

    Published 2021
    “…The preparation of nanoemulsions of triglyceride oils in water usually requires high mechanical energy and sophisticated equipment. Recently, we showed that α-to-β (viz., gel-to-crystal) phase transition, observed with most lipid substances (triglycerides, diglycerides, phospholipids, alkanes, etc.), may cause spontaneous disintegration of microparticles of these lipids, dispersed in aqueous solutions of appropriate surfactants, into nanometer particles/drops using a simple cooling/heating cycle of the lipid dispersion (Cholakova et al. …”
  16. 916

    Cold-Burst Method for Nanoparticle Formation with Natural Triglyceride Oils by Diana Cholakova (2897222)

    Published 2021
    “…The preparation of nanoemulsions of triglyceride oils in water usually requires high mechanical energy and sophisticated equipment. Recently, we showed that α-to-β (viz., gel-to-crystal) phase transition, observed with most lipid substances (triglycerides, diglycerides, phospholipids, alkanes, etc.), may cause spontaneous disintegration of microparticles of these lipids, dispersed in aqueous solutions of appropriate surfactants, into nanometer particles/drops using a simple cooling/heating cycle of the lipid dispersion (Cholakova et al. …”
  17. 917

    Cold-Burst Method for Nanoparticle Formation with Natural Triglyceride Oils by Diana Cholakova (2897222)

    Published 2021
    “…The preparation of nanoemulsions of triglyceride oils in water usually requires high mechanical energy and sophisticated equipment. Recently, we showed that α-to-β (viz., gel-to-crystal) phase transition, observed with most lipid substances (triglycerides, diglycerides, phospholipids, alkanes, etc.), may cause spontaneous disintegration of microparticles of these lipids, dispersed in aqueous solutions of appropriate surfactants, into nanometer particles/drops using a simple cooling/heating cycle of the lipid dispersion (Cholakova et al. …”
  18. 918
  19. 919
  20. 920