64
R. W. Taylor and V. Sandoghdar
160. F.V. Ignatovich, L. Novotny, Real-time and background-free detection of nanoscale particles.
Phys. Rev. Lett. 96(1), 013901 (2006)
161. A. Mitra et al., Nano-optofluidic detection of single viruses and nanoparticles. ACS Nano
4(3), 1305–1312 (2010)
162. A.M. Goldfain et al., Dynamic measurements of the position, orientation, and DNA content
of individual unlabeled bacteriophages. J. Phys. Chem. B 120(26), 6130–6138 (2016)
163. S. Faez et al., Fast, label-free tracking of single viruses and weakly scattering nanoparticles
in a nanofluidic optical fiber. ACS Nano 9(12), 12349–12357 (2015)
164. M.P. McDonald et al., Visualizing single-cell secretion dynamics with single-protein sensitivity. Nano Lett. 18(1), 513–519 (2018)
165. P. Zijlstra, P.M.R. Paulo, M. Orrit, Optical detection of single non-absorbing molecules using
the surface plasmon resonance of a gold nanorod. Nat. Nanotechnol. 7(6), 379–382 (2012)
166. F. Vollmer, S. Arnold, Whispering-gallery-mode biosensing: label-free detection down to
single molecules. Nat. Methods 5(7), 591–596 (2008)
167. K.J. Mickolajczyk et al., Direct observation of individual tubulin dimers binding to growing
microtubules. Proc. Natl. Acad. Sci. U.S.A. 116(15), 7314–7322 (2019)
168. J. Andrecka et al., Label-free imaging of microtubules with sub-nm precision using interferometric scattering microscopy. Biophys. J. 110(1), 214–217 (2016)
169. R.F. Garmann, A.M. Goldfain, V.N. Manoharan, Measurements of the self-assembly kinetics
of individual viral capsids around their RNA genome. bioRxiv 265330 (2018)
170. L. Talà et al., Pseudomonas aeruginosa orchestrates twitching motility by sequential control
of type IV pili movements. Nat. Microbiol. 4, 774–780 (2019)
171. J.R. Heath, A. Ribas, P.S. Mischel, Single-cell analysis tools for drug discovery and development. Nat. Rev. Drug Discov. 15(3), 204–216 (2016)
172. J. Andrecka et al., Structural dynamics of myosin 5 during processive motion revealed by
interferometric scattering microscopy. eLife 4, e05413 (2015)
173. K.M. Spillane et al., High-speed single-particle tracking of GM1 in model membranes reveals
anomalous diffusion due to interleaflet coupling and molecular pinning. Nano Lett. 14(9),
5390–5397 (2014)
174. H.-M. Wu, Y.-H. Lin, T.-C. Yen, C.-L. Hsieh, Nanoscopic substructures of raft-mimetic liquidordered membrane domains revealed by high-speed single-particle tracking. Sci. Rep. 6(1),
20542 (2016)
175. P.J. Slator, N.J. Burroughs, A hidden Markov model for detecting confinement in singleparticle tracking trajectories. Biophys. J. 115(9), 1741–1754 (2018)
176. F. Reina et al., Complementary studies of lipid membrane dynamics using iSCAT and superresolved fluorescence correlation spectroscopy. J. Phys. D: Appl. Phys. 51(23), 235401 (2018)
177. Y.-H. Lin, W.-L. Chang, C.-L. Hsieh, Shot-noise limited localization of single 20 nm gold
particles with nanometer spatial precision within microseconds. Opt. Express 22(8), 9159–
9170 (2014)
178. S. Spindler et al., High-speed microscopy of diffusion in pore-spanning lipid membranes.
Nano Lett. 18(8), 5262–5271 (2018)
179. H. Stein et al., Production of isolated giant unilamellar vesicles under high salt concentrations.
Front. Physiol. 8, 1–16 (2017)
180. P.L. Luisi, P. Walde, Giant Vesicles (Wiley, 2000)
181. J. Bernardino de la Serna et al., There is no simple model of the plasma membrane organization.
Front. Cell Dev. Biol. 4(106), 1–17 (2016)
182. E. Sezgin et al., The mystery of membrane organization: composition, regulation and roles
of lipid rafts. Nat. Rev. Mol. Cell Biol. 18(6), 361–374 (2017)
183. G. de Wit et al., Revealing compartmentalized diffusion in living cells with interferometric
scattering microscopy. Biophys. J. 114(12), 2945–2950 (2018)
184. B. Gutiérrez-Medina, S. M. Block, Visualizing individual microtubules by bright field
microscopy. Am. J. Phys. 78(11), 1152–1159 (2010)
185. D. Köster et al., Visualizing acto-myosin dynamics and vortices at a membrane surface using
interferometric scattering microscopy. bioRxiv 199778v3 (2018)
R. W. Taylor and V. Sandoghdar
160. F.V. Ignatovich, L. Novotny, Real-time and background-free detection of nanoscale particles.
Phys. Rev. Lett. 96(1), 013901 (2006)
161. A. Mitra et al., Nano-optofluidic detection of single viruses and nanoparticles. ACS Nano
4(3), 1305–1312 (2010)
162. A.M. Goldfain et al., Dynamic measurements of the position, orientation, and DNA content
of individual unlabeled bacteriophages. J. Phys. Chem. B 120(26), 6130–6138 (2016)
163. S. Faez et al., Fast, label-free tracking of single viruses and weakly scattering nanoparticles
in a nanofluidic optical fiber. ACS Nano 9(12), 12349–12357 (2015)
164. M.P. McDonald et al., Visualizing single-cell secretion dynamics with single-protein sensitivity. Nano Lett. 18(1), 513–519 (2018)
165. P. Zijlstra, P.M.R. Paulo, M. Orrit, Optical detection of single non-absorbing molecules using
the surface plasmon resonance of a gold nanorod. Nat. Nanotechnol. 7(6), 379–382 (2012)
166. F. Vollmer, S. Arnold, Whispering-gallery-mode biosensing: label-free detection down to
single molecules. Nat. Methods 5(7), 591–596 (2008)
167. K.J. Mickolajczyk et al., Direct observation of individual tubulin dimers binding to growing
microtubules. Proc. Natl. Acad. Sci. U.S.A. 116(15), 7314–7322 (2019)
168. J. Andrecka et al., Label-free imaging of microtubules with sub-nm precision using interferometric scattering microscopy. Biophys. J. 110(1), 214–217 (2016)
169. R.F. Garmann, A.M. Goldfain, V.N. Manoharan, Measurements of the self-assembly kinetics
of individual viral capsids around their RNA genome. bioRxiv 265330 (2018)
170. L. Talà et al., Pseudomonas aeruginosa orchestrates twitching motility by sequential control
of type IV pili movements. Nat. Microbiol. 4, 774–780 (2019)
171. J.R. Heath, A. Ribas, P.S. Mischel, Single-cell analysis tools for drug discovery and development. Nat. Rev. Drug Discov. 15(3), 204–216 (2016)
172. J. Andrecka et al., Structural dynamics of myosin 5 during processive motion revealed by
interferometric scattering microscopy. eLife 4, e05413 (2015)
173. K.M. Spillane et al., High-speed single-particle tracking of GM1 in model membranes reveals
anomalous diffusion due to interleaflet coupling and molecular pinning. Nano Lett. 14(9),
5390–5397 (2014)
174. H.-M. Wu, Y.-H. Lin, T.-C. Yen, C.-L. Hsieh, Nanoscopic substructures of raft-mimetic liquidordered membrane domains revealed by high-speed single-particle tracking. Sci. Rep. 6(1),
20542 (2016)
175. P.J. Slator, N.J. Burroughs, A hidden Markov model for detecting confinement in singleparticle tracking trajectories. Biophys. J. 115(9), 1741–1754 (2018)
176. F. Reina et al., Complementary studies of lipid membrane dynamics using iSCAT and superresolved fluorescence correlation spectroscopy. J. Phys. D: Appl. Phys. 51(23), 235401 (2018)
177. Y.-H. Lin, W.-L. Chang, C.-L. Hsieh, Shot-noise limited localization of single 20 nm gold
particles with nanometer spatial precision within microseconds. Opt. Express 22(8), 9159–
9170 (2014)
178. S. Spindler et al., High-speed microscopy of diffusion in pore-spanning lipid membranes.
Nano Lett. 18(8), 5262–5271 (2018)
179. H. Stein et al., Production of isolated giant unilamellar vesicles under high salt concentrations.
Front. Physiol. 8, 1–16 (2017)
180. P.L. Luisi, P. Walde, Giant Vesicles (Wiley, 2000)
181. J. Bernardino de la Serna et al., There is no simple model of the plasma membrane organization.
Front. Cell Dev. Biol. 4(106), 1–17 (2016)
182. E. Sezgin et al., The mystery of membrane organization: composition, regulation and roles
of lipid rafts. Nat. Rev. Mol. Cell Biol. 18(6), 361–374 (2017)
183. G. de Wit et al., Revealing compartmentalized diffusion in living cells with interferometric
scattering microscopy. Biophys. J. 114(12), 2945–2950 (2018)
184. B. Gutiérrez-Medina, S. M. Block, Visualizing individual microtubules by bright field
microscopy. Am. J. Phys. 78(11), 1152–1159 (2010)
185. D. Köster et al., Visualizing acto-myosin dynamics and vortices at a membrane surface using
interferometric scattering microscopy. bioRxiv 199778v3 (2018)
