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13篇 您的检索式:作者名="Nettelblad"
    题名 作者 年代 出处 被引量
1Magnetic resonance imaging:a new diagnostic aid in the care of high-voltage electrical burns显示文摘Nettelblad H Thuomas K A Sjoberg F 1996Burns1996,22,2:1
2Non-debye dielectric re- laxation in binary dielectric mixtures ( 50-50 ) : Randomness and regularity in mixture topology 显示文摘Tuncer E Nettelblad B Gubanski S M 2002Journal of Applied Physics2002,92,8:1
3Dielectric relaxation in di- electric mixtures : Application of the finite element method and its comparison with dielectric mixture formulas 显示文摘Tuncer E Gubanski S M Nettelblad B 2001Journal of Ap- plied Physics2001,89,12:1
4Adverse effects of extensive avicular resections and a suggested method of reconstruction显示文摘Ldolfsson J Lysholm H Nettelblad 1999J loulder Elbow Surg1999,8,4:1
5Adverse effects of extensive clavicular resections and a suggested method of reconstruction 显示文摘Adolfsson J Lysholm H Nettelblad A 1999J Shoulder Elbow Surg1999,4,:1
6Dielectric relaxations in liquid-impregnated porous solids显示文摘Nettelblad B Niklasson G A 1997Journal of Materials Science1997,32,:1
7Vascularized bone allograft transplantation in a genetically defined rat model显示文摘Yaremchuk MJ Nettelblad H Randolph MA 0,,03:1
8Effects of microgeometry on the permittivity of impregnated porous media显示文摘Nettelblad B Niklasson G A 1996J Phys Cond Matter1996,,8:1
9Adverse effects of extensive clavicular resections and a suggested method of reconstruction显示文摘Adolfsson J Lysholm H Nettelblad 1999J Shoulder Elbow Surg1999,8,4:1
10Non-Debye dielectric relaxation in binary dielectric mixture (50-50):Randomness and regularity in mixture topology显示文摘ENIS TUNCER BO NETTELBLAD STANISTAW M 2002J Appl Phys2002,92,84:1
11Radial nerve entrapment in the upper arm as a cause of lateral arm pain: a report of four cases显示文摘Adolfsson LE Nettelblad H 2001Scand J Plast Reconstr Surg2001,35,2:1
12Magnetic resonance imgaging:a new diagnostic aid in the care of high-voltage electrical burns显示文摘Nettelblad H Thuoma KA Sjoberg F 0,,02:1
13Observation of a single protein by ultrafast X-ray diffraction显示文摘The idea of using ultrashort X-ray pulses to obtain images of single proteins frozen in time has fascinated and inspired many.It was one of the arguments for building X-ray free-electron lasers.According to theory,the extremely intense pulses provide sufficient signal to dispense with using crystals as an amplifier,and the ultrashort pulse duration permits capturing the diffraction data before the sample inevitably explodes.This was first demonstrated on biological samples a decade ago on the giant mimivirus.Since then,a large collaboration has been pushing the limit of the smallest sample that can be imaged.The ability to capture snapshots on the timescale of atomic vibrations,while keeping the sample at room temperature,may allow probing the entire conformational phase space of macromolecules.Here we show the first observation of an X-ray diffraction pattern from a single protein,that of Escherichia coli GroEL which at 14 nm in diameter is the smallest biological sample ever imaged by X-rays,and demonstrate that the concept of diffraction before destruction extends to single proteins.From the pattern,it is possible to determine the approximate orientation of the protein.Our experiment demonstrates the feasibility of ultrafast imaging of single proteins,opening the way to single-molecule time-resolved studies on the femtosecond timescale.Tomas Ekeberg Dameli Assalauova Johan Bielecki Rebecca Boll Benedikt J.Daurer Lutz A.Eichacker Linda E.Franken Davide E.Galli Luca Gelisio Lars Gumprecht Laura H.Gunn Janos Hajdu Robert Hartmann Dirk Hasse Alexandr Ignatenko Jayanath Koliyadu Olena Kulyk Ruslan Kurta Markus Kuster Wolfgang Lugmayr Jannik Lübke Adrian P.Mancuso Tommaso Mazza Carl Nettelblad Yevheniy Ovcharenko Daniel E.Rivas Max Rose Amit K.Samanta Philipp Schmidt Egor Sobolev Nicusor Timneanu Sergey Usenko Daniel Westphal Tamme Wollweber Lena Worbs Paul Lourdu Xavier Hazem Yousef Kartik Ayyer Henry N.Chapman Jonas A.Sellberg Carolin Seuring Ivan A.Vartanyants Jochen Küpper Michael Meyer Filipe R.N.C.Maia 2024Light(Science & Applications)2024,13,1:0
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