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10.1021
nature
<citation-number>41.</citation-number> <author>Dallongeville, S. et al.</author> <title>Identification of Animal Glue Species in Artworks Using Proteomics: Application to a 18th Century Gilt Sample.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>9431–9437</page> <year>(2011).</year>
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<citation-number>42.</citation-number> <author>Kuehnbaum, N. L. & Britz-McKibbin, P.</author> <title>Comprehensive Profiling of Free and Conjugated Estrogens by Capillary Electrophoresis–Time of Flight/Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8063–8068</page> <year>(2011).</year>
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<citation-number>43.</citation-number> <author>Pagnotti, V. S., Inutan, E. D., Marshall, D. D., McEwen, C. N. & Trimpin, S.</author> <title>Inlet Ionization: A New Highly Sensitive Approach for Liquid Chromatography/Mass Spectrometry of Small and Large Molecules.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>7591–7594</page> <year>(2011).</year>
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<citation-number>44.</citation-number> <author>Furukawa, J. et al.</author> <title>A Versatile Method for Analysis of Serine/Threonine Posttranslational Modifications by $\upbeta$-Elimination in the Presence of Pyrazolone Analogues.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>9060–9067</page> <year>(2011).</year>
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<citation-number>45.</citation-number> <author>Yan, H. & Wang, H.-F.</author> <title>Turn-on Room Temperature Phosphorescence Assay of Heparin with Tunable Sensitivity and Detection Window Based on Target-Induced Self-Assembly of Polyethyleneimine Capped Mn-Doped ZnS Quantum Dots.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8589–8595</page> <year>(2011).</year>
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<citation-number>50.</citation-number> <author>Kaiser, K. & Benner, R.</author> <title>Characterization of Lignin by Gas Chromatography and Mass Spectrometry Using a Simplified CuO Oxidation Method.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>459–464</page> <year>(2011).</year>
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<citation-number>51.</citation-number> <author>Ren, H.-B., Wu, B.-Y., Chen, J.-T. & Yan, X.-P.</author> <title>Silica-Coated S2{\textendash}-Enriched Manganese-Doped {ZnS} Quantum Dots as a Photoluminescence Probe for Imaging Intracellular Zn2$\mathplus$Ions.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8239–8244</page> <year>(2011).</year>
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<citation-number>52.</citation-number> <title>Innovation in Analytical Chemistry.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>6431</page> <year>(2011).</year>
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<citation-number>57.</citation-number> <author>Blanco, G. A. et al.</author> <title>Identification of Inorganic Improvised Explosive Devices Using Sequential Injection Capillary Electrophoresis and Contactless Conductivity Detection.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>9068–9075</page> <year>(2011).</year>
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<citation-number>58.</citation-number> <author>Lubbers, B. & Baudenbacher, F.</author> <title>Isothermal Titration Calorimetry in Nanoliter Droplets with Subsecond Time Constants.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>7955–7961</page> <year>(2011).</year>
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<citation-number>59.</citation-number> <author>Hindson, B. J. et al.</author> <title>High-Throughput Droplet Digital PCR System for Absolute Quantitation of DNA Copy Number.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8604–8610</page> <year>(2011).</year>
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<citation-number>60.</citation-number> <author>Orozco, J. et al.</author> <title>Dynamic Isolation and Unloading of Target Proteins by Aptamer-Modified Microtransporters.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>7962–7969</page> <year>(2011).</year>
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<citation-number>61.</citation-number> <author>Hsu, J.-F., Peng, L.-W., Li, Y.-J., Lin, L.-C. & Liao, P.-C.</author> <title>Identification of Di-isononyl Phthalate Metabolites for Exposure Marker Discovery Using In Vitro/In Vivo Metabolism and Signal Mining Strategy with LC-MS Data.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8725–8731</page> <year>(2011).</year>
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<citation-number>62.</citation-number> <author>Ashton, L., Johannessen, C. & Goodacre, R.</author> <title>The Importance of Protonation in the Investigation of Protein Phosphorylation Using Raman Spectroscopy and Raman Optical Activity.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>7978–7983</page> <year>(2011).</year>
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<citation-number>63.</citation-number> <author>Carrasquilla, C., Xiao, Y., Xu, C. Q., Li, Y. & Brennan, J. D.</author> <title>Enhancing Sensitivity and Selectivity of Long-Period Grating Sensors using Structure-Switching Aptamers Bound to Gold-Doped Macroporous Silica Coatings.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>7984–7991</page> <year>(2011).</year>
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<citation-number>64.</citation-number> <author>Beach, D. G. & Gabryelski, W.</author> <title>Nontarget Analysis of Urine by Electrospray Ionization-High Field Asymmetric Waveform Ion Mobility-Tandem Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>9107–9113</page> <year>(2011).</year>
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<citation-number>65.</citation-number> <author>Mazur, A. I., Marcsisin, E. J., Bird, B., Miljkovic, M. & Diem, M.</author> <title>Evaluating Different Fixation Protocols for Spectral Cytopathology, Part 1.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>1259–1266</page> <year>(2012).</year>
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<citation-number>66.</citation-number> <author>Phinney, K. W. et al.</author> <title>Development and Certification of a Standard Reference Material for Vitamin D Metabolites in Human Serum.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>956–962</page> <year>(2011).</year>
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<citation-number>67.</citation-number> <author>Kanoatov, M. & Krylov, S. N.</author> <title>DNA Adsorption to the Reservoir Walls Causing Irreproducibility in Studies of Protein–DNA Interactions by Methods of Kinetic Capillary Electrophoresis.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8041–8045</page> <year>(2011).</year>
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<citation-number>68.</citation-number> <author>Takasaki, Y. et al.</author> <title>Estimation of the Distribution of Intravenously Injected Adipose Tissue-Derived Stem Cells Labeled with Quantum Dots in Mice Organs through the Determination of their Metallic Components by ICPMS.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8252–8258</page> <year>(2011).</year>
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<citation-number>69.</citation-number> <author>Todinova, S., Krumova, S., Gartcheva, L., Robeerst, C. & Taneva, S. G.</author> <title>Microcalorimetry of Blood Serum Proteome: A Modified Interaction Network in the Multiple Myeloma Case.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>7992–7998</page> <year>(2011).</year>
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<citation-number>70.</citation-number> <author>Karns, K. & Herr, A. E.</author> <title>Human Tear Protein Analysis Enabled by an Alkaline Microfluidic Homogeneous Immunoassay.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8115–8122</page> <year>(2011).</year>
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<citation-number>71.</citation-number> <author>Kitano, A. et al.</author> <title>Highly Sensitive Elemental Analysis for Cd and Pb by Liquid Electrode Plasma Atomic Emission Spectrometry with Quartz Glass Chip and Sample Flow.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>9424–9430</page> <year>(2011).</year>
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<citation-number>72.</citation-number> <author>Rius-Ruiz, F. X. et al.</author> <title>Potentiometric Strip Cell Based on Carbon Nanotubes as Transducer Layer: Toward Low-Cost Decentralized Measurements.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8810–8815</page> <year>(2011).</year>
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<citation-number>73.</citation-number> <author>Mi, X., He, F., Xiang, M., Lian, Y. & Yi, S.</author> <title>Novel Phage Amplified Multichannel Series Piezoelectric Quartz Crystal Sensor for Rapid and Sensitive Detection of Mycobacterium tuberculosis.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>939–946</page> <year>(2011).</year>
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<citation-number>74.</citation-number> <author>Unterumsberger, R., Pollakowski, B., Müller, M. & Beckhoff, B.</author> <title>Complementary Characterization of Buried Nanolayers by Quantitative X-ray Fluorescence Spectrometry under Conventional and Grazing Incidence Conditions.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8623–8628</page> <year>(2011).</year>
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<citation-number>75.</citation-number> <author>Torres, A. L., Barrientos, E. Y., Wrobel, K. & Wrobel, K.</author> <title>Selective Derivatization of Cytosine and Methylcytosine Moieties with 2-Bromoacetophenone for Submicrogram DNA Methylation Analysis by Reversed Phase HPLC with Spectrofluorimetric Detection.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>7999–8005</page> <year>(2011).</year>
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<citation-number>76.</citation-number> <author>Lu, I.-C., Lin, J. L., Lai, S.-H. & Chen, C.-H.</author> <title>Frequency-Scanning MALDI Linear Ion Trap Mass Spectrometer for Large Biomolecular Ion Detection.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8273–8277</page> <year>(2011).</year>
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<citation-number>77.</citation-number> <author>Plumeré, N., Henig, J. & Campbell, W. H.</author> <title>Enzyme-Catalyzed O2Removal System for Electrochemical Analysis under Ambient Air: Application in an Amperometric Nitrate Biosensor.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2141–2146</page> <year>(2012).</year>
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<citation-number>79.</citation-number> <author>Anderson, D. S. et al.</author> <title>Design and Validation of a High-Throughput Matrix-Assisted Laser Desorption Ionization Time-of-Flight Mass Spectrometry Method for Quantification of Hepcidin in Human Plasma.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8357–8362</page> <year>(2011).</year>
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<citation-number>80.</citation-number> <author>Gago-Martinez, A. & Hungerford, J. M.</author> <title>Comment on “The Effect of Uncontrolled Factors in a Validated Liquid Chromatography–Tandem Mass Spectrometry Method Question Its Use As Reference Method for Marine Toxins: Major Causes for Concern”.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>475</page> <year>(2011).</year>
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<citation-number>81.</citation-number> <author>Mora, M. F., Greer, F., Stockton, A. M., Bryant, S. & Willis, P. A.</author> <title>Toward Total Automation of Microfluidics for Extraterrestial In Situ Analysis.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8636–8641</page> <year>(2011).</year>
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<citation-number>82.</citation-number> <author>Seo, M.-H. et al.</author> <title>Efficient Single-Molecule Fluorescence Resonance Energy Transfer Analysis by Site-Specific Dual-Labeling of Protein Using an Unnatural Amino Acid.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8849–8854</page> <year>(2011).</year>
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<citation-number>83.</citation-number> <author>Kim, K. H. & Moon, M. H.</author> <title>Chip-Type Asymmetrical Flow Field-Flow Fractionation Channel Coupled with Mass Spectrometry for Top-Down Protein Identification.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8652–8658</page> <year>(2011).</year>
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<citation-number>84.</citation-number> <author>Chenau, J. et al.</author> <title>Sensitive Detection of Bacillus anthracis Spores by Immunocapture and Liquid Chromatography–Tandem Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8675–8682</page> <year>(2011).</year>
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<citation-number>85.</citation-number> <author>Zachhuber, B., Gasser, C., t.H. Chrysostom, E. & Lendl, B.</author> <title>Stand-Off Spatial Offset Raman Spectroscopy for the Detection of Concealed Content in Distant Objects.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>9438–9442</page> <year>(2011).</year>
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<citation-number>86.</citation-number> <author>Zhu, D. et al.</author> <title>Manganese-Doped ZnSe Quantum Dots as a Probe for Time-Resolved Fluorescence Detection of 5-Fluorouracil.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>9076–9081</page> <year>(2011).</year>
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<citation-number>87.</citation-number> <author>Potts, L. W. & Carr, P. W.</author> <title>Approximate and Exact Equations for Peak Capacity in Isocratic High-Pressure Liquid Chromatography.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>7614–7615</page> <year>(2011).</year>
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<citation-number>88.</citation-number> <author>Daub, C. D. & Cann, N. M.</author> <title>How Are Completely Desolvated Ions Produced in Electrospray Ionization: Insights from Molecular Dynamics Simulations.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8372–8376</page> <year>(2011).</year>
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<citation-number>1.</citation-number> <author>Ray, S. & Shard, A. G.</author> <title>Quantitative Analysis of Adsorbed Proteins by X-ray Photoelectron Spectroscopy.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8659–8666</page> <year>(2011).</year>
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<citation-number>2.</citation-number> <author>Ballihaut, G., Kilpatrick, L. E. & Davis, W. C.</author> <title>Detection, Identification, and Quantification of Selenoproteins in a Candidate Human Plasma Standard Reference Material.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8667–8674</page> <year>(2011).</year>
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<citation-number>3.</citation-number> <author>Kim, D., Lin, Y.-S. & Haynes, C. L.</author> <title>On-Chip Evaluation of Shear Stress Effect on Cytotoxicity of Mesoporous Silica Nanoparticles.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8377–8382</page> <year>(2011).</year>
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<citation-number>4.</citation-number> <author>Liu, Y., Yan, J., Howland, M. C., Kwa, T. & Revzin, A.</author> <title>Micropatterned Aptasensors for Continuous Monitoring of Cytokine Release from Human Leukocytes.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8286–8292</page> <year>(2011).</year>
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<citation-number>5.</citation-number> <author>Bennett, W. W., Teasdale, P. R., Panther, J. G., Welsh, D. T. & Jolley, D. F.</author> <title>Speciation of Dissolved Inorganic Arsenic by Diffusive Gradients in Thin Films: Selective Binding of AsIIIby 3-Mercaptopropyl-Functionalized Silica Gel.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8293–8299</page> <year>(2011).</year>
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<citation-number>6.</citation-number> <author>Tredwell, G. D., Behrends, V., Geier, F. M., Liebeke, M. & Bundy, J. G.</author> <title>Between-Person Comparison of Metabolite Fitting for NMR-Based Quantitative Metabolomics.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8683–8687</page> <year>(2011).</year>
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<citation-number>8.</citation-number> <author>Shen, M., Arroyo-Currás, N. & Bard, A. J.</author> <title>Achieving Nanometer Scale Tip-to-Substrate Gaps with Micrometer-Size Ultramicroelectrodes in Scanning Electrochemical Microscopy.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>9082–9085</page> <year>(2011).</year>
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<citation-number>9.</citation-number> <author>Zhong, X., Maxwell, E. J., Ratnayake, C., Mack, S. & Chen, D. D. Y.</author> <title>Flow-Through Microvial Facilitating Interface of Capillary Isoelectric Focusing and Electrospray Ionization Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>83,</volume> <page>8748–8755</page> <year>(2011).</year>
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<citation-number>11.</citation-number> <author>Noworyta, K., Kutner, W., Wijesinghe, C. A., Srour, S. G. & D’Souza, F.</author> <title>Nicotine, Cotinine, and Myosmine Determination Using Polymer Films of Tailor-Designed Zinc Porphyrins as Recognition Units for Piezoelectric Microgravimetry Chemosensors.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2154–2163</page> <year>(2012).</year>
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