Results 181 to 190 of about 313,323 (302)
Mitochondrial protein import [PDF]
, 1989 Ades, Ades, Adrian, Ainger, Allison, Alt, Aquila, Aquila, Arakawa, Arends, Argan, Argan, Baker, Banroques, Basile, Beckmann, Bedwell, Behra, Bellion, Beltzer, Beltzer, Berkhout, Bhasker, Bhat, Blobel, Borst, Bouillaud, Boutry, Brandriss, Braun, Burns, Böhni, Böhni, Cerletti, Chatton, Chen, Chen, Chen, Chen, Chen, Cheng, Chien, Chien, Chirico, Chu, Conboy, Conboy, Coruzzi, Craig, Dahl, Daum, Daum, De Haan, De Jong, De Lange, De Lange, Deshaies, Dickerson, Dieckmann, Dieckmann, Douglas, Duffaud, Dumont, Eilers, Eilers, Eilers, Ellis, Ellis, Emr, Epand, Evans, Farrell, Farrell, Faye, Firgaira, Fisher, Flügge, Foury, Fox, Freeman, Freitag, Fujiki, Fujiki, Gabellini, Gabellini, Gasser, Gasser, Gasser, Gay, Gearing, Geller, Gillespie, Gilmore, Gilmore, Grant, Grossmann, Guiard, Hackenbrock, Hallemayer, Hallermayer, Hallewell, Hampsey, Hansen, Harmey, Harmey, Harmey, Harmey, Harnisch, Hartl, Hartl, Hartl, Hartl, Hase, Hase, Hase, Hatalova, Hauska, Hawlitschek, Hay, Heinrich, Hemmingsen, Hennig, Hennig, Hennig, Henning, Hensgen, Ho, Ho, Horwich, Horwich, Horwich, Horwich, Horwich, Horwich, Hunter, Hurt, Hurt, Hurt, Hurt, Hurt, Hurt, Hurt, Hurt, Imanaka, Ito, Jaussi, Jaussi, Joh, Just, Kanazawa, Kaput, Kellems, Kellems, Kellens, Keng, Kirwin, Kleene, Koerner, Koerner, Koike, Kolansky, Kolarov, Korb, Kraus, Kraus, Kraus, Kraus, Krebs, Kruse, Kryzwicki, Kun, Labouesse, Lazarow, Lederer, Lennart-Nilsson, Lewin, Lewin, Lindquist, Lingelbach, Lomax, Lubben, Lustig, Lustig, Maarse, Maarse, Maccecchini, Maccecchini, Macino, Maher, Marres, Marzuki, Matsubara, Matsuura, McAda, McGraw, McIntyre, Meyer, Meyer, Meyer, Michel, Mihara, Mihara, Mihara, Mihara, Miura, Miura, Mori, Mori, Morita, Morohashi, Morohashi, Morohashi, Mueckler, Mueckler, Mueckler, Myers, Myers, Müller, Müller, Nagata, Nakagawa, Nargang, Natsoulis, Nelson, Nelson, Ness, Neupert, Neupert, Nguyen, Nguyen, Nguyen, Nguyen, Nicholson, Nicholson, Nicholson, Nicholson, Nishikimi, Nyunoya, Oda, Oda, Ohashi, Ohba, Ohba, Ohta, Ohta, Okamura, Okamura, Ono, Ono, Ono, Ono, Ou, Ou, Oudshoorn, Pain, Pain, Pape, Pape, Park, Patterson, Pelham, Perara, Pfaller, Pfaller, Pfaller, Pfaller, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pillar, Pollock, Pratje, Pratje, Randall, Randall, Raymond, Reid, Reid, Richter, Ricquier, Ridley, Rietveld, Riezman, Riezman, Riezman, Robinson, Roise, Roise, Rothblatt, Rothman, Runswick, Rödel, Römisch, Sabatini, Sachs, Sadler, Saraste, Schatz, Schlenstedt, Schleyer, Schleyer, Schleyer, Schmeizer, Schmidt, Schmidt, Schmidt, Schmidt, Schmidt, Schneller, Schwaiger, Schägger, Sebald, Shore, Sidhu, Sierra, Simmaco, Skerjank, Smagula, Stellwagen, Stuart, Suissa, Suissa, Surguchov, Suske, Sztul, Söllner, Takeda, Takeda, Takiguchi, Tamm, Taniuchi, Teintze, Tropschug, Tzagoloff, Tzagoloff, Ueda, Urban-Grimal, Van Loon, Van Loon, Van Loon, Van Loon, Van Loon, Van Loon, Van Loon, Van Loon, Van Steeg, Vasarotti, Vasarotti, Veloso, Velours, Verner, Vestweber, Viebrock, Von Heijne, Walter, Walter, Walter, Watanabe, Waters, Watts, Weiss, Werner, Wickner, Wiech, Wielburski, Wierenga, Witte, Wold, Woodrow, Wright, Wright, Wu, Yaffe, Yaffe, Yamane, Yoshida, Yoshida, Young, Zimmermann, Zimmermann, Zimmermann, Zimmermann, Zimmermann, Zimmermann, Zwizinski, Zwizinski, Zwizinski, Zwizinski +395 morecore +1 more sourceNeuromorphic Electronics for Intelligence Everywhere: Emerging Devices, Flexible Platforms, and Scalable System Architectures
Advanced Materials, EarlyView.The perspective presents an integrated view of neuromorphic technologies, from device physics to real‐time applicability, while highlighting the necessity of full‐stack co‐optimization. By outlining practical hardware‐level strategies to exploit device behavior and mitigate non‐idealities, it shows pathways for building efficient, scalable, and ...Kapil Bhardwaj, Roshni Satheesh Babu, Yuxin Xia, Eva Bestelink, Radu Sporea, Nikos Hastas, Ioannis Zeimpekis, Dimitra G. Georgiadou, Sayani Majumdar +8 morewiley +1 more sourceAI–Guided 4D Printing of Carnivorous Plants–Inspired Microneedles for Accelerated Wound Healing
Advanced Materials, EarlyView.This work presents an artificial intelligence (AI)‐guided 4D‐printed microneedle platform inspired by carnivorous plants for wound healing. A thermo‐responsive shape memory polymer enables body temperature–triggered self‐coiling for autonomous wound closure.Hyun Lee, Moon‐Jo Kim, DongEung Kim, Chan Ho Moon, Seojoon Bang, Hyeong Seok Kang, Ju Yeong Gwon, Jong Hwa Seo, Junhyub Jeon, Junhyuk Son, Munwon Lim, Minho Kang, Dong Yun Lee, Donghyun Lim, Jung‐Hoon Park, Gi Doo Cha, Soo‐Hong Lee, Tae‐Sik Jang, Kisuk Yang, Yunho Jeong, Youngho Eom, Hyun‐Do Jung +21 morewiley +1 more sourceResonant Domain Wall Dynamics in a Three‐Dimensional Magnetic Nano Double Helix
Advanced Materials, EarlyView.3D magnetic nanostructures promise exciting possibilities for magnetization dynamics. However, experimental realizations remain scarce. In nanoprinted cobalt double helices, time‐resolved X‐ray microscopy reveals harmonic domain wall dynamics. Simulations identify the mode and additional higher‐frequency resonances, revealing a rich dynamic landscape ...Pamela Morales‐Fernández, Iason Konstantinos‐Douveas, Claas Abert, Elina Zhakina, Sandra Ruiz‐Gómez, Claudia Fernández‐González, Luke Alexander Turnbull, Sebastian Wintz, Markus König, Simone Finizio, Markus Weigand, Naëmi Leo, Dieter Suess, Aurelio Hierro‐Rodríguez, Amalio Fernández‐Pacheco, Claire Donnelly +15 morewiley +1 more source