Bermejo C, Haerizadeh F, Takanaga H, Chermak D, and Frommer WB .Optical sensors for measuring dynamic changes in steady state levels of cytosolic glucose in yeast.[J]., 2011a, 6
[2]
:1806-1817
[3]
Bermejo C, Ewald J, Lanquar V, Jones A, and Frommer WB.In vivo biochemistry: Quantifying ion and metabolite levels in individual cells or cultures of yeast. [J].Biochem J, 2011b, 438
[4]
:1-10
[5]
Campbell RE .Fluorescent-protein-based biosensors: Modulation of energy transfer as a design principle. [J]., 2009, 81
[6]
(15):5972-5979
[7]
Chaudhuri B, H?rmann F, Frommer WB .Dynamic imaging of glucose flux impedance using FRET sensors in wild-type Arabidopsis plants. [J]., 2011, 62
Dean KM, Qin Y, Palmer A .Visualizing metal ions in cells: An overview of analytical techniques, approaches, and probes.[J].BBA - Molecular Cell Res, 2012, 1823
[12]
(0):1406-1415
[13]
Denninger P, Bleckmann A, Lausser A, Vogler F, Ott T, Ehrhardt DW, Frommer WB, Sprunck S, Dresselhaus T, Grossmann G.Male-female communication triggers calcium signatures during fertilization in Arabidopsis. [J]., 2014, 5
[14]
(0):4645-
[15]
Ehrhardt DW, Frommer WB.New technologies for 21st century plant science.[J]., 2012, 24.
[16]
(2):374-394
[17]
Emmanouilidou E, Teschemacher AG, Pouli AE, Nicholls LI, Seward EP, Rutter GA .Imaging Ca2+ concentration changes at the secretory vesicle surface with a recombinant targeted cameleon. [J].Curr Bio l, 1999, 9
[18]
: 4290-
[19]
Haydon MJ .Getting a sense for zinc in plants.[J]., 2014, 202
[20]
:10-12
[21]
:113-152
[22]
Krebs M, Held K, Binder A, Hashimoto K, Den Herder G, Parniske M, Kudla J, Schumacher K.FRET-based genetically encoded sensors allow high-resolution live cell imaging of Ca2+ dynamics. [J]., 2012, 69
[23]
(1):181-192
[24]
Lanquar V, Grossmann G, Vinkenborg JL, Merkx M, Thomine S, Frommer WB.Dynamic imaging of cytosolic zinc in Arabidopsis roots combining FRET sensors and RootChip technology. [J]., 2014, 202
[25]
:198-208
[26]
Looger L,Lalonde S, Frommer WB.Genetically encoded FRET sensors for visualizing metabolites with subcellular resolution in living cells. [J].Plant Physiol, 2005, 138
[27]
:555-557
[28]
Mank M, Santos AF, Direnberger S, Mrsic-Flogel TD, Hofer SB, Stein V, Hendel T, Reiff DF, Levelt C, Borst A, Bonhoeffer T, Hübener M, Griesbeck O .A genetically encoded calcium indicator for chronic in vivo two-photon imaging. [J]., 2008, 5
[29]
:805-811
[30]
Mérola F, Fredj A, Betolngar DB, Ziegler C, Erard M, Pasquier H .Newly engineered cyan fluorescent proteins with enhanced performances for live cell FRET imaging.[J]., 2014, 9
[31]
:180 -191
[32]
Meyer AJ, Dick TP .Fluorescent protein-based redox probes.[J]., 2000, 13
[33]
:621-650
[34]
Okumoto S, Jones A, Frommer WB .Quantitative Imaging with Fluorescent Biosensors: Advanced Tools for Spatiotemporal Analysis of Biodynamics in Cells.[J].Annu Rev Plant Biol, 2012, 63
[35]
:26.1-.-26.43
[36]
Okumoto S.Quantitative imaging approaches for small-molecule measurements using FRET sensors in plants. [J]., 2014, 1083
[37]
:55-64
[38]
Park JG, Palmer AE. Quantitative measurement of Ca2+ and Zn2+ in mammalian cells using genetically encoded fluorescent biosensors[J]., 2014, 1071
[39]
:29 -47
[40]
Nezhad SA.Microfluidic platforms for plant cells studies.[J]., 2014, 14
[41]
:3262-3274
[42]
Nezhad SA, Naghavi M, Packirisamy M, Bhat R, Geitmann A .Quantification of cellular penetrative forces using lab-on-a-chip technology and finite element modeling.[J]., 2013, 110
[43]
:8093-8098
[44]
Nezhad SA, Packirisamy M, Bhat R, Geitmann A .In vitro study of oscillatory growth dynamics of Camellia pollen tubes in microfluidic environment.[J]., 2013,
[45]
( 60):3185-3193
[46]
Sozzani R Busch, Spalding EP, Benfey PN .Advanced imaging techniques for the study of plant growth and development.[J]., 2014, 19
[47]
:304-310
[48]
Unger MA, Chou HP, Thorsen T, Scherer A, and Quake SR.Monolithic microfabricated valves and pumps by multilayer soft lithography. [J].Science, 2000, 288
Yetisen AK, Jiang L, Cooper JR, Qin Y, Palanivelu R and Zohar Y.A microsystem-based assay for studying pollen tube guidance in plant reproduction.[J].Micromech Microeng, 2011, 21
[53]
:054018-
[54]
Bermejo C, Haerizadeh F, Takanaga H, Chermak D, and Frommer WB .Dynamic analysis of cytosolic glucose and ATP levels in yeast using optical sensors.[J].Biochem J, 2010, 432
[55]
(2):399-406
[56]
:915-918
[57]
Grossmann G, Meier M, Cartwright HN, Sosso D, Quake SR, Ehrhardt DW, Frommer WB.Time-lapse fluorescence imaging of Arabidopsis root growth with rapid manipulation of the root environment using the Root Chip[J]., 2012, 65
[58]
Horade M, Yanagisawa N, Mizuta Y, Higashiyama T, Arata H .Growth assay of individual pollen tubes arrayed by microchannel device.[J]., 2014, 118
[59]
:25-28
[60]
Jones AM, Danielson JA, Manojkumar SN, Lanquar V, Grossmann G, Frommer WB.Abscisic acid dynamics in roots detected with genetically encoded FRET sensors. [J]., 2014,
[61]
:3:e01741-
[62]
Jones AM, Grossmann G, Danielson J?, Sosso D, Chen LQ, Ho CH, Frommer WB.In vivo biochemistry: applications for small molecule biosensors in plant biology. [J]., 2013, 16
[63]
:389-395
[64]
Kao JPY, Li G, Auston DA .Chapter 5 - Practical Aspects of Measuring Intracellular Calcium Signals with Fluorescent Indicators.[J].Methods Cell Biol, 2010, 99
[65]
Whitesides GM.The origins and the future of microfluidics.[J].Nature, 2006,