Michael Latz • UCSD Profiles (original) (raw)

  1. Ultrasensitive and robust mechanoluminescent living composites. Sci Adv. 2023 10 20; 9(42):eadi8643. Li C, Schramma N, Wang Z, Qari NF, Jalaal M, Latz MI, Cai S. PMID: 37862415; PMCID: PMC10588950.
    View in: PubMed Mentions: 10 Fields:
    Translation:Animals
  2. Highly robust and soft biohybrid mechanoluminescence for optical signaling and illumination. Nat Commun. 2022 07 07; 13(1):3914. Li C, He Q, Wang Y, Wang Z, Wang Z, Annapooranan R, Latz MI, Cai S. PMID: 35798737; PMCID: PMC9263131.
    View in: PubMed Mentions: 22 Fields:
  3. Molecular and biochemical basis for the loss of bioluminescence in the dinoflagellate Noctiluca scintillans along the west coast of the USA. Limnol Oceanogr. 2019 Nov; 64(6):2709-2724. Valiadi M, de Rond T, Amorim A, Gittins JR, Gubili C, Moore BS, Iglesias-Rodriguez MD, Latz MI. PMID: 32655189; PMCID: PMC7351363.
    View in: PubMed Mentions: 2
  4. Bubble stimulation efficiency of dinoflagellate bioluminescence. Luminescence. 2016 Feb; 31(1):270-80. Deane GB, Stokes MD, Latz MI. PMID: 26061152.
    View in: PubMed Mentions: 3 Fields:
    Translation:Animals
  5. Mechanosensitivity of a rapid bioluminescence reporter system assessed by atomic force microscopy. Biophys J. 2015 Mar 24; 108(6):1341-1351. Tesson B, Latz MI. PMID: 25809248; PMCID: PMC4375627.
    View in: PubMed Mentions: 8 Fields:
    Translation:AnimalsCells
  6. Pharmacological investigation of the bioluminescence signaling pathway of the dinoflagellate Lingulodinium polyedrum: evidence for the role of stretch-activated ion channels. J Phycol. 2013 Aug; 49(4):733-45. Jin K, Klima JC, Deane G, Dale Stokes M, Latz MI. PMID: 27007206.
    View in: PubMed Mentions: 9 Fields:
  7. Green fluorescent protein regulation in the coral Acropora yongei during photoacclimation. J Exp Biol. 2010 Nov 01; 213(Pt 21):3644-55. Roth MS, Latz MI, Goericke R, Deheyn DD. PMID: 20952612.
    View in: PubMed Mentions: 30 Fields:
    Translation:AnimalsCells
  8. Bioluminescent response of individual dinoflagellate cells to hydrodynamic stress measured with millisecond resolution in a microfluidic device. J Exp Biol. 2008 Sep; 211(Pt 17):2865-75. Latz MI, Bovard M, VanDelinder V, Segre E, Rohr J, Groisman A. PMID: 18723546.
    View in: PubMed Mentions: 14 Fields:
    Translation:Animals
  9. Bioluminescence characteristics of a tropical terrestrial fungus (Basidiomycetes). Luminescence. 2007 Sep-Oct; 22(5):462-7. Deheyn DD, Latz MI. PMID: 17610297.
    View in: PubMed Mentions: 1 Fields:
    Translation:Animals
  10. Shear-stress dependence of dinoflagellate bioluminescence. Biol Bull. 2007 Jun; 212(3):242-9. Maldonado EM, Latz MI. PMID: 17565113.
    View in: PubMed Mentions: 17 Fields:
    Translation:Animals
  11. Evidence for the role of G-proteins in flow stimulation of dinoflagellate bioluminescence. Am J Physiol Regul Integr Comp Physiol. 2007 May; 292(5):R2020-7. Chen AK, Latz MI, Sobolewski P, Frangos JA. PMID: 17322118.
    View in: PubMed Mentions: 9 Fields:
    Translation:Animals
  12. Bioavailability of metals along a contamination gradient in San Diego Bay (California, USA). Chemosphere. 2006 May; 63(5):818-34. Deheyn DD, Latz MI. PMID: 16169051.
    View in: PubMed Mentions: 7 Fields:
    Translation:Animals
  13. Evidence for enhanced bioavailability of trace elements in the marine ecosystem of Deception Island, a volcano in Antarctica. Mar Environ Res. 2005 Jul; 60(1):1-33. Deheyn DD, Gendreau P, Baldwin RJ, Latz MI. PMID: 15649525.
    View in: PubMed Mentions: 16 Fields:
    Translation:AnimalsPHPublic Health
  14. Chemical speciation and toxicity of metals assessed by three bioluminescence-based assays using marine organisms. Environ Toxicol. 2004 Jun; 19(3):161-78. Deheyn DD, Bencheikh-Latmani R, Latz MI. PMID: 15101032.
    View in: PubMed Mentions: 3 Fields:
    Translation:AnimalsCells
  15. Hydrodynamic stimulation of dinoflagellate bioluminescence: a computational and experimental study. J Exp Biol. 2004 May; 207(Pt 11):1941-51. Latz MI, Juhl AR, Ahmed AM, Elghobashi SE, Rohr J. PMID: 15107447.
    View in: PubMed Mentions: 4 Fields:
    Translation:Animals
  16. The use of dinoflagellate bioluminescence to characterize cell stimulation in bioreactors. Biotechnol Bioeng. 2003 Jul 05; 83(1):93-103. Chen AK, Latz MI, Frangos JA. PMID: 12740936.
    View in: PubMed Mentions: 4 Fields:
    Translation:AnimalsCells
  17. The role of Ca(2+) in stimulated bioluminescence of the dinoflagellate Lingulodinium polyedrum. J Exp Biol. 2002 Oct; 205(Pt 19):2971-86. von Dassow P, Latz MI. PMID: 12200401.
    View in: PubMed Mentions: 12 Fields:
    Translation:Animals
  18. VARIABILITY IN FLASH CHARACTERISTICS OF A BIOLUMINESCENT COPEPOD. Biol Bull. 1987 Dec; 173(3):489-503. Latz MI, Frank TM, Bowlby MR, Widder EA, Case JF. PMID: 29320222.
    View in: PubMed Mentions: 2 Fields:
  19. MARINE BIOLUMINESCENCE SPECTRA MEASURED WITH AN OPTICAL MULTICHANNEL DETECTION SYSTEM. Biol Bull. 1983 Dec; 165(3):791-810. Widder EA, Latz MI, Case JF. PMID: 29324013.
    View in: PubMed Mentions: 14 Fields:

This graph shows the number and percent of publications by field. Fields are based on how the National Library of Medicine (NLM) classifies the publications' journals and might not represent the specific topics of the publications. Note that an individual publication can be assigned to more than one field. As a result, the publication counts in this graph might add up to more than the number of publications the person has written. To see the data as text, click here.

This graph shows the number and percent of publications by field. Fields are based on how the National Library of Medicine (NLM) classifies the publications' journals and might not represent the specific topics of the publications. Note that an individual publication can be assigned to more than one field. As a result, the publication counts in this graph might add up to more than the number of publications the person has written. To see the data as text, click here.

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