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Year Citation  Score
2021 Fritzsch J, Korn A, Surendran D, Krueger M, Scheidt HA, Mote KR, Madhu PK, Maiti S, Huster D. Probing the Influence of Single-Site Mutations in the Central Cross-β Region of Amyloid β (1-40) Peptides. Biomolecules. 11. PMID 34944492 DOI: 10.3390/biom11121848  0.323
2020 Jain MG, Rajalakshmi G, Madhu PK, Agarwal V, Mote KR. Overcoming Prohibitively Large Radiofrequency Demands for the Measurement of Internuclear Distances with Solid-State NMR Under Fast Magic-Angle Spinning. The Journal of Physical Chemistry. B. PMID 32017558 DOI: 10.1021/acs.jpcb.9b11849  0.323
2019 Jain MG, Rajalakshmi G, Agarwal V, Madhu PK, Mote KR. On the direct relation between REDOR and DIPSHIFT experiments in solid-state NMR. Journal of Magnetic Resonance (San Diego, Calif. : 1997). PMID 31353014 DOI: 10.1016/j.jmr.2019.07.050  0.328
2019 Sharma K, Equbal A, Nielsen NC, Madhu PK. A unified heteronuclear decoupling picture in solid-state NMR under low radio-frequency amplitude and fast magic-angle-spinning frequency regime. The Journal of Chemical Physics. 150: 144201. PMID 30981235 DOI: 10.1063/1.5082352  0.327
2019 Jain MG, Mote KR, Hellwagner J, Rajalakshmi G, Ernst M, Madhu PK, Agarwal V. Measuring strong one-bond dipolar couplings using REDOR in magic-angle spinning solid-state NMR. The Journal of Chemical Physics. 150: 134201. PMID 30954060 DOI: 10.1063/1.5088100  0.312
2018 Bielytskyi P, Gräsing D, Mote KR, Sai Sankar Gupta KB, Vega S, Madhu PK, Alia A, Matysik J. C → H transfer of light-induced hyperpolarization allows for selective detection of protons in frozen photosynthetic reaction center. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 293: 82-91. PMID 29909081 DOI: 10.1016/J.Jmr.2018.06.003  0.515
2017 Chandra B, Bhowmik D, Maity BK, Mote KR, Dhara D, Venkatramani R, Maiti S, Madhu PK. Major Reaction Coordinates Linking Transient Amyloid-β Oligomers to Fibrils Measured at Atomic Level. Biophysical Journal. 113: 805-816. PMID 28834717 DOI: 10.1016/J.Bpj.2017.06.068  0.712
2017 Jain MG, Lalli D, Stanek J, GOwda CM, Prakash S, Schwarzer TS, Schubeis T, Castiglione K, Andreas LB, Madhu PK, Pintacuda G, Agarwal V. Selective (1)H-(1)H Distance Restraints in Fully Protonated Proteins by Very Fast Magic-Angle Spinning Solid-State NMR. The Journal of Physical Chemistry Letters. PMID 28492324 DOI: 10.1021/acs.jpclett.7b00983  0.314
2017 Chandra B, Mithu VS, Bhowmik D, Das AK, Sahoo B, Maiti S, Madhu PK. Curcumin Dictates Divergent Fates for the Central Salt Bridges in Amyloid-β40 and Amyloid-β42. Biophysical Journal. 112: 1597-1608. PMID 28445751 DOI: 10.1016/J.Bpj.2017.02.043  0.701
2017 Equbal A, Shankar R, Leskes M, Vega S, Nielsen NC, Madhu PK. Significance of symmetry in the nuclear spin Hamiltonian for efficient heteronuclear dipolar decoupling in solid-state NMR: A Floquet description of supercycled rCW schemes. The Journal of Chemical Physics. 146: 104202. PMID 28298092 DOI: 10.1063/1.4977738  0.559
2017 Chandra B, Bhowmik D, Kumar Maity B, Mote KR, Dhara D, Bera K, Das A, Venkatramani R, Maiti S, Madhu PK. Secondary Structure Flipping Connected to Salt-Bridge Formation Converts Toxic Amyloid-β 40 Oligomers to Fibrils Biophysical Journal. 112: 362a-363a. DOI: 10.1016/J.Bpj.2016.11.1966  0.695
2016 Mote KR, Agarwal V, Madhu PK. Five decades of homonuclear dipolar decoupling in solid-state NMR: Status and outlook. Progress in Nuclear Magnetic Resonance Spectroscopy. 97: 1-39. PMID 27888838 DOI: 10.1016/j.pnmrs.2016.08.001  0.31
2016 Adler J, Baumann M, Voigt B, Scheidt H, Bhowmik D, Häupl T, Abel B, Madhu PK, Balbach J, Maiti S, Huster D. A Detailed Analysis of the Morphology of Fibrils of Selectively Mutated Amyloid beta (1-40). Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry. PMID 27224205 DOI: 10.1002/Cphc.201600413  0.702
2016 Equbal A, Leskes M, Nielsen NC, Madhu PK, Vega S. Relative merits of rCW(A) and XiX heteronuclear spin decoupling in solid-state magic-angle-spinning NMR spectroscopy: A bimodal Floquet analysis. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 263: 55-64. PMID 26773527 DOI: 10.1016/J.Jmr.2015.12.019  0.563
2016 Chandra B, Bhowmik D, Maity BK, Dhara D, Mote K, Venkatramani R, Madhu PK, Maiti S. A Hidden Structural Transition Accompanies the Progression of Amyloid-Beta Oligomers to Mature Fibrils Biophysical Journal. 110: 357a. DOI: 10.1016/J.Bpj.2015.11.1928  0.687
2016 Adler J, Baumann M, Voigt B, Scheidt HA, Bhowmik D, Häupl T, Abel B, Madhu PK, Balbach J, Maiti S, Huster D. Inside Back Cover: A Detailed Analysis of the Morphology of Fibrils of Selectively Mutated Amyloid β (1–40) (ChemPhysChem 17/2016) Chemphyschem. 17: 2773. DOI: 10.1002/Cphc.201600880  0.663
2015 Mote KR, Madhu PK. Proton-detected solid-state NMR spectroscopy of fully protonated proteins at slow to moderate magic-angle spinning frequencies. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 261: 149-156. PMID 26580064 DOI: 10.1016/j.jmr.2015.10.016  0.347
2015 Chandrakesan M, Bhowmik D, Sarkar B, Abhyankar R, Singh H, Kallianpur M, Dandekar SP, Madhu PK, Maiti S, Mithu VS. Steric Crowding of the Turn Region Alters the Tertiary Fold of Amyloid-β18-35 and Makes it Soluble. The Journal of Biological Chemistry. PMID 26487720 DOI: 10.1074/Jbc.M115.674135  0.715
2015 Bhowmik D, Mote KR, MacLaughlin CM, Biswas N, Chandra B, Basu JK, Walker GC, Madhu PK, Maiti S. Cell-Membrane-Mimicking Lipid-Coated Nanoparticles Confer Raman Enhancement to Membrane Proteins and Reveal Membrane-Attached Amyloid-β Conformation. Acs Nano. 9: 9070-7. PMID 26391443 DOI: 10.1021/Acsnano.5B03175  0.684
2015 Equbal A, Bjerring M, Madhu PK, Nielsen NC. A unified heteronuclear decoupling strategy for magic-angle-spinning solid-state NMR spectroscopy. The Journal of Chemical Physics. 142: 184201. PMID 25978884 DOI: 10.1063/1.4919634  0.326
2015 Bhowmik D, Maiti S, Mote K, Chandra B, Madhu P. Amyloid-β Oligomers: Now for the Structure in the Membrane Biophysical Journal. 108: 65a. DOI: 10.1016/J.Bpj.2014.11.387  0.717
2014 Sarkar B, Mithu VS, Chandra B, Mandal A, Chandrakesan M, Bhowmik D, Madhu PK, Maiti S. Significant structural differences between transient amyloid-β oligomers and less-toxic fibrils in regions known to harbor familial Alzheimer's mutations. Angewandte Chemie (International Ed. in English). 53: 6888-92. PMID 24756858 DOI: 10.1002/Anie.201402636  0.707
2014 Mithu VS, Sarkar B, Bhowmik D, Das AK, Chandrakesan M, Maiti S, Madhu PK. Curcumin alters the salt bridge-containing turn region in amyloid β(1-42) aggregates. The Journal of Biological Chemistry. 289: 11122-31. PMID 24599958 DOI: 10.1074/Jbc.M113.519447  0.692
2014 Chandra B, Sarkar B, Singh V, Mandal A, Chandrakesan M, Madhu PK, Maiti S. Structure of the Transient, Membrane-Active Amyloid Beta Oligomers in Physiological Solutions Probed by a Combination of Fluorescence and Solid State NMR Biophysical Journal. 106: 269a. DOI: 10.1016/J.Bpj.2013.11.1577  0.312
2014 Sarkar B, Mithu VS, Chandra B, Mandal A, Chandrakesan M, Bhowmik D, Madhu PK, Maiti S. Inside Cover: Significant Structural Differences between Transient Amyloid-β Oligomers and Less-Toxic Fibrils in Regions Known To Harbor Familial Alzheimer′s Mutations (Angew. Chem. Int. Ed. 27/2014) Angewandte Chemie International Edition. 53: 6830-6830. DOI: 10.1002/Anie.201405438  0.674
2013 Mithu VS, Tan KO, Madhu PK. Selective inversion of 1H resonances in solid-state nuclear magnetic resonance: Use of double-DANTE pulse sequence. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 237: 11-6. PMID 24121475 DOI: 10.1016/j.jmr.2013.09.010  0.328
2013 Chandrakesan M, Sarkar B, Mithu VS, Abhyankar R, Bhowmik D, Nag S, Sahoo B, Shah R, Gurav S, Banerjee R, Dandekar S, Jose JC, Sengupta N, Madhu PK, Maiti S. The basic structural motif and major biophysical properties of Amyloid-β are encoded in the fragment 18-35 Chemical Physics. 422: 80-87. DOI: 10.1016/J.Chemphys.2013.01.010  0.708
2012 Mollica G, Madhu PK, Ziarelli F, Thévand A, Thureau P, Viel S. Towards measurement of homonuclear dipolar couplings in 1H solid-state NMR: recoupling with a rotor-synchronized decoupling scheme. Physical Chemistry Chemical Physics : Pccp. 14: 4359-64. PMID 22262259 DOI: 10.1039/c2cp23765b  0.314
2011 Mithu VS, Sarkar B, Bhowmik D, Chandrakesan M, Maiti S, Madhu PK. Zn(++) binding disrupts the Asp(23)-Lys(28) salt bridge without altering the hairpin-shaped cross-β Structure of Aβ(42) amyloid aggregates. Biophysical Journal. 101: 2825-32. PMID 22261072 DOI: 10.1016/J.Bpj.2011.10.023  0.677
2011 Mithu VS, Paul S, Kurur ND, Madhu PK. Heteronuclear dipolar decoupling in solid-state nuclear magnetic resonance under ultra-high magic-angle spinning. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 209: 359-63. PMID 21354839 DOI: 10.1016/j.jmr.2011.01.028  0.317
2010 Leskes M, Madhu PK, Vega S. Floquet theory in solid-state nuclear magnetic resonance. Progress in Nuclear Magnetic Resonance Spectroscopy. 57: 345-80. PMID 20920756 DOI: 10.1016/J.Pnmrs.2010.06.002  0.463
2010 Paul S, Thakur RS, Levitt MH, Madhu PK. 1H homonuclear dipolar decoupling using rotor-synchronised pulse sequences: towards pure absorption phase spectra. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 205: 269-75. PMID 20570540 DOI: 10.1016/J.Jmr.2010.05.009  0.552
2009 Goswami M, Nayak PK, Periasamy N, Madhu PK. Characterisation of different polymorphs of tris(8-hydroxyquinolinato)aluminium(III) using solid-state NMR and DFT calculations. Chemistry Central Journal. 3: 15. PMID 19900275 DOI: 10.1186/1752-153X-3-15  0.354
2009 Leskes M, Madhu PK, Vega S. Why does PMLG proton decoupling work at 65kHz MAS? Journal of Magnetic Resonance (San Diego, Calif. : 1997). 199: 208-13. PMID 19482494 DOI: 10.1016/J.Jmr.2009.05.003  0.501
2009 Madhu PK. High-resolution solid-state NMR spectroscopy of protons with homonuclear dipolar decoupling schemes under magic-angle spinning. Solid State Nuclear Magnetic Resonance. 35: 2-11. PMID 19110404 DOI: 10.1016/j.ssnmr.2008.11.001  0.307
2009 Paul S, Thakur RS, Goswami M, Sauerwein AC, Mamone S, Concistrè M, Förster H, Levitt MH, Madhu PK. Supercycled homonuclear dipolar decoupling sequences in solid-state NMR. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 197: 14-9. PMID 19091609 DOI: 10.1016/J.Jmr.2008.11.011  0.744
2008 Jayanthi S, Madhu PK, Ramanathan KV. Measurement of carbon-proton dipolar couplings in liquid crystals using DAPT. The Journal of Physical Chemistry. A. 112: 11159-64. PMID 18841947 DOI: 10.1021/Jp804764Q  0.408
2008 Goswami M, Madhu PK. Sensitivity enhancement of the central-transition signal of half-integer spin quadrupolar nuclei in solid-state NMR: features of multiple fast amplitude-modulated pulse transfer. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 192: 230-4. PMID 18362083 DOI: 10.1016/j.jmr.2008.02.020  0.306
2008 Leskes M, Madhu PK, Vega S. Supercycled homonuclear dipolar decoupling in solid-state NMR: toward cleaner 1H spectrum and higher spinning rates. The Journal of Chemical Physics. 128: 052309. PMID 18266426 DOI: 10.1063/1.2834730  0.569
2008 Thakur RS, Kurur ND, Madhu PK. An experimental study of decoupling sequences for multiple-quantum and high-resolution MAS experiments in solid-state NMR. Magnetic Resonance in Chemistry : Mrc. 46: 166-9. PMID 18098152 DOI: 10.1002/mrc.2153  0.317
2008 Mamone S, Dorsch A, Johannessen OG, Naik MV, Madhu PK, Levitt MH. A Hall effect angle detector for solid-state NMR. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 190: 135-41. PMID 17910927 DOI: 10.1016/J.Jmr.2007.07.012  0.495
2008 Leskes M, Steuernagel S, Schneider D, Madhu PK, Vega S. Homonuclear dipolar decoupling at magic-angle spinning frequencies up to 65 kHz in solid-state nuclear magnetic resonance Chemical Physics Letters. 466: 95-99. DOI: 10.1016/J.Cplett.2008.10.029  0.56
2007 Leskes M, Thakur RS, Madhu PK, Kurur ND, Vega S. Bimodal Floquet description of heteronuclear dipolar decoupling in solid-state nuclear magnetic resonance. The Journal of Chemical Physics. 127: 024501. PMID 17640131 DOI: 10.1063/1.2746039  0.534
2007 Thakur RS, Kurur ND, Madhu PK. Improved heteronuclear dipolar decoupling sequences for liquid-crystal NMR. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 185: 264-9. PMID 17257867 DOI: 10.1016/j.jmr.2007.01.003  0.305
2007 Leskes M, Madhu PK, Vega S. A broad-banded z-rotation windowed phase-modulated Lee-Goldburg pulse sequence for 1H spectroscopy in solid-state NMR Chemical Physics Letters. 447: 370-374. DOI: 10.1016/J.Cplett.2007.09.041  0.566
2006 Leskes M, Madhu PK, Vega S. Proton line narrowing in solid-state nuclear magnetic resonance: new insights from windowed phase-modulated Lee-Goldburg sequence. The Journal of Chemical Physics. 125: 124506. PMID 17014190 DOI: 10.1063/1.2352737  0.548
2005 Vinogradov E, Madhu PK, Vega S. Strategies for high-resolution proton spectroscopy in solid-state NMR. Topics in Current Chemistry. 246: 33-90. PMID 22160288 DOI: 10.1007/B98648  0.554
2004 Bosman L, Madhu PK, Vega S, Vinogradov E. Improvement of homonuclear dipolar decoupling sequences in solid-state nuclear magnetic resonance utilising radiofrequency imperfections. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 169: 39-48. PMID 15183355 DOI: 10.1016/J.Jmr.2004.04.001  0.548
2004 Madhu PK, Vinogradov E, Vega S. Multiple-pulse and magic-angle spinning aided double-quantum proton solid-state NMR spectroscopy Chemical Physics Letters. 394: 423-428. DOI: 10.1016/J.Cplett.2004.07.034  0.576
2003 Madhu PK, Johannessen OG, Pike KJ, Dupree R, Smith ME, Levitt MH. Application of amplitude-modulated radiofrequency fields to the magic-angle spinning NMR of spin-7/2 nuclei. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 163: 310-7. PMID 12914846 DOI: 10.1016/S1090-7807(03)00159-9  0.552
2003 Bräuniger T, Pike KJ, Harris RK, Madhu PK. Efficient 5QMAS NMR of spin-5/2 nuclei: use of fast amplitude-modulated radio-frequency pulses and cogwheel phase cycling. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 163: 64-72. PMID 12852908 DOI: 10.1016/S1090-7807(03)00124-1  0.319
2003 Madhu PK, Pike KJ, Dupree R, Levitt MH, Smith ME. Modulation-aided signal enhancement in the magic angle spinning NMR of spin-5/2 nuclei Chemical Physics Letters. 367: 150-156. DOI: 10.1016/S0009-2614(02)01691-3  0.538
2002 Levitt MH, Madhu PK, Hughes CE. Cogwheel phase cycling. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 155: 300-6. PMID 12036341 DOI: 10.1006/Jmre.2002.2520  0.445
2002 Madhu PK, Levitt MH. Signal enhancement in the triple-quantum magic-angle spinning NMR of spins-3/2 in solids: the FAM-RIACT-FAM sequence. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 155: 150-5. PMID 11945045 DOI: 10.1006/Jmre.2002.2508  0.535
2002 Madhu PK, Mandal PK, Müller N. Cross-correlation effects involving curie spin relaxation in methyl groups. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 155: 29-38. PMID 11945030 DOI: 10.1006/Jmre.2001.2496  0.493
2002 Vinogradov E, Madhu PK, Vega S. Proton spectroscopy in solid state nuclear magnetic resonance with windowed phase modulated Lee-Goldburg decoupling sequences Chemical Physics Letters. 354: 193-202. DOI: 10.1016/S0009-2614(02)00060-X  0.551
2002 Müller N, Madhu PK. Current developments in solid state NMR spectroscopy Monatshefte Fur Chemie. 133: v-vi. DOI: 10.1007/S007060200116  0.442
2001 Madhu PK, Grandori R, Hohenthanner K, Mandal PK, Müller N. Geometry dependent two-dimensional heteronuclear multiplet effects in paramagnetic proteins. Journal of Biomolecular Nmr. 20: 31-7. PMID 11430753 DOI: 10.1023/A:1011292410478  0.664
2001 Vinogradov E, Madhu PK, Vega S. Phase modulated Lee-Goldburg magic angle spinning proton nuclear magnetic resonance experiments in the solid state: A bimodal Floquet theoretical treatment Journal of Chemical Physics. 115: 8983-9000. DOI: 10.1063/1.1408287  0.558
2001 Madhu PK, Zhao X, Levitt MH. High-resolution 1H NMR in the solid state using symmetry-based pulse sequences Chemical Physics Letters. 346: 142-148. DOI: 10.1016/S0009-2614(01)00876-4  0.568
2000 Goldbourt A, Madhu PK, Kababya S, Vega S. The influence of the radiofrequency excitation and conversion pulses on the lineshapes and intensities of the triple-quantum MAS NMR spectra of I = 3/2 nuclei. Solid State Nuclear Magnetic Resonance. 18: 1-16. PMID 11270738 DOI: 10.1006/Snmr.2000.0007  0.54
2000 Madhu PK, Goldbourt A, Frydman L, Vega S. Fast radio-frequency amplitude modulation in multiple-quantum magic-angle-spinning nuclear magnetic resonance: Theory and experiments Journal of Chemical Physics. 112: 2377-2391. DOI: 10.1063/1.480804  0.532
2000 Kumar A, Christy Rani Grace R, Madhu PK. Cross-correlations in NMR Progress in Nuclear Magnetic Resonance Spectroscopy. 37: 191-319. DOI: 10.1016/S0079-6565(00)00023-6  0.345
2000 Vinogradov E, Madhu PK, Vega S. A bimodal Floquet analysis of phase modulated Lee-Goldburg high resolution proton magic angle spinning NMR experiments Chemical Physics Letters. 329: 207-214. DOI: 10.1016/S0009-2614(00)01006-X  0.561
2000 Goldbourt A, Madhu PK, Vega S. Enhanced conversion of triple to single-quantum coherence in the triple-quantum MAS NMR spectrosocopy of spin-5/2 nuclei Chemical Physics Letters. 320: 448-456. DOI: 10.1016/S0009-2614(00)00298-0  0.538
2000 Mandal PK, Madhu P, Müller N. Nuclear magnetic relaxation of methyl protons in a paramagnetic protein: cross-correlation effects Chemical Physics Letters. 320: 269-276. DOI: 10.1016/S0009-2614(00)00243-8  0.595
1999 Vinogradov E, Madhu PK, Vega S. High-resolution proton solid-state NMR spectroscopy by phase-modulated Lee-Goldburg experiment Chemical Physics Letters. 314: 443-450. DOI: 10.1016/S0009-2614(99)01174-4  0.543
1999 Madhu PK, Goldbourt A, Frydman L, Vega S. Sensitivity enhancement of the MQMAS NMR experiment by fast amplitude modulation of the pulses Chemical Physics Letters. 307: 41-47. DOI: 10.1016/S0009-2614(99)00446-7  0.539
1997 Madhu PK, Kumar A. Analysis of spin diffusion and cross correlation on the net nuclear Overhauser effect in NMR. Journal of Magnetic Resonance (San Diego, Calif. : 1997). 127: 168-72. PMID 9281480 DOI: 10.1006/Jmre.1997.1186  0.308
1996 Madhu PK, Pratima R, Kumar A. Suppression of sidebands by variable speed magic angle sample spinning in solid state NMR Chemical Physics Letters. 256: 87-89.  0.355
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