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Wyszukujesz frazę "Fleming, P. D." wg kryterium: Autor


Wyświetlanie 1-8 z 8
Tytuł:
Design and testing 3D printed structures for bone replacements
Autorzy:
Ikonomov, P. G.
Yahamed, A.
Fleming, P. D.
Pekarovicova, A.
Tematy:
3D printing
bone structure
3D modelling
testing
mechanical properties
druk 3D
struktura kości
modelowanie 3D
badania
właściwości mechaniczne
Pokaż więcej
Wydawca:
Stowarzyszenie Komputerowej Nauki o Materiałach i Inżynierii Powierzchni w Gliwicach
Powiązania:
https://bibliotekanauki.pl/articles/367249.pdf  Link otwiera się w nowym oknie
Opis:
Purpose: 3D printing has shown enormous potential for building plastic products, including bone, organs, and body parts. The technology has progressed from visualization and preoperation training to the 3D printing of customized body parts and implants. This research aims to create 3D printed bone structure from plastics and test the mechanical properties of the cortical and trabecular bone structures if they match the real bone structure strength. Design/methodology/approach: We used Digital Imaging, and Communications in Medicine (DICOM) images from Computer Tomography (CT) scans to created external bone structures. These images' resolution did not allow the creation of fine trabecular bone structures, so we used 3D modeling software to engineer special 3D void honeycomb structures (with triangular, square, and hexagonal shapes). Another reason to design void structures is that the 3D printing of complex shapes without support materials is problematic. After designing and 3D printing of the 3D bone structures, their mechanical properties need to be tested. Findings: 3D bone models, solid (cortical), and void (trabecular) bone structures were designed, 3D printed, and then tested. Tensile, bending, and compression testing was performed. Testing the mechanical properties of the honeycomb structures (triangular, square, and hexagonal) shows that their strength and modulus are higher than those of the real trabecular bones. The results show that 3D printed honeycomb structures mechanical properties can match and some cases exceeding the properties of the actual bones trabecular structures, while the sold structures have lower mechanical properties than the bone cortical structures. Research limitations/implications: During the 3D printing experiments, we found that 3D printers, in general, have low resolution, not enough to print fine trabecular bone structures. To solve the existing 3D printing technology's insufficient resolution, we later designed and built an SLA (stereolithography) 3D printer with high printing resolution (10 micrometers). Another limitation we found is the lack of biocompatible materials for 3D printing of bone structures. Future research work is in progress formulating superior ink/resin for bone structures 3D printing. Further, clinical trials need to be performed to investigate 3D printed parts’ influence on the healing of bone structures. Practical implications: We found that the 3D void (honeycomb) structures will have an impact not only on building bone structures but also in engineering special structures for industrial applications that can reduce the weight, time, and the cost of the material, while still keep sufficient mechanical properties. Originality/value: Designing and testing 3D printed bone models, solid (cortical), and void (trabecular) bone structures could replace bones. Design and test special void honeycomb structures as a replacement for cortical bone structures.
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
The Light Harvesting Process in Purple Bacteria
Autorzy:
Krueger, B. P.
Scholes, G. D.
Yu, J.- Y.
Fleming, G. R.
Tematy:
87.15.Mi
82.20.Rp
42.50.Md
Pokaż więcej
Wydawca:
Polska Akademia Nauk. Instytut Fizyki PAN
Powiązania:
https://bibliotekanauki.pl/articles/1993667.pdf  Link otwiera się w nowym oknie
Opis:
We present and review the results of fluorescence upconversion and photon echo experiments, and $ab initio$ calculations performed in our group within the last few years with respect to the light harvesting process in purple bacteria. Carotenoids transfer energy to bacteriochlorophyll (BChl) mainly via the carotenoid S$\text{}_{2}$ → BChl Q$\text{}_{x}$ pathway on a ~100 fs timescale. This transfer is reasonably reproduced by considering the Coulombic coupling calculated using the transition density cube method which is valid at all molecular separations. Carotenoids may also serve a role in mediating B800 → B850 energy transfer in LH2 by perturbing the transition density of the B850 as shown by ab initio calculations on a supermolecule of two B850 BChls, one carotenoid and one B800 BChl. Further calculations on dimers of B850 BChl estimate the intra- and interpolypeptide coupling to be 315 and 245 cm$\text{}^{-1}$, respectively. These interactions are dominated by Coulombic coupling, while the orbital overlap dependent coupling is ~20% of the total. Photon echo peak shift experiments (3PEPS) on LH1 and the B820 subunit are quantitatively simulated with identical parameters aside from an energy transfer time of 90 fs in LH1 and ∞ in B820, suggesting that excitation is delocalized over roughly two pigments in LH1. 3PEPS data taken at room and low temperature (34 K) on the B800-B820 suggest that static disorder is the dominant mechanism localizing excitation in LH1 and LH2. We suggest that the competition between the delocalizing effects of strong electronic coupling and the localizing effects of disorder and nuclear motion results in excitation in the B850 and B875 rings being localized on 2-4 pigments within approximately 60 fs.
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Treatable traits in the European U-BIOPRED adult asthma cohorts
Autorzy:
Wagers, Scott S.
Manta, A.
Krug, N.
Chung, Kian Fan
Seibold, W.
Fleming, L.J.
Sousa, Ana R.
Mazein, A.
Vestbo, J.
Hedlin, G.
van Geest, M.
Frey, U.
Horvath, Ildiko
James, A.J.
Bates, S.
Boedigheimer, M.J.
Djukanovic, Ratko
Burg, D.
Bonnelykke, K.
Postle, A.
Ahmed, H.
Simpson, Andrew J.
Miralpeix, M.
Baribaud, F.
Fitch, N.
Haughney, J.
Corfield, J.
Gahlemann, M.
Higenbottam, T.
Loza, M.J.
Masefield, S.
Dahlen, Sven-Erik
Bigler, J.
Sterk, P.J.
Sun, K.
Bisgaard, H.
Erpenbeck, V.J.
Guo, Y.
Bansal, A.T.
Adock, Ian M.
Chaiboonchoe, A.
Hohlfeld, J.M.
Mores, N.
Erzen, D.
Caruso, M.
Howarth, P.
De Meulder, B.
Pandis, Ioannis
Lutter, R.
Sigmund, R.
Montuschi, P.
Weiszhart, Z.
Rowe, A.
Rao, N.
Powel, P.
Geiser, T.
Bush, A.
Skipp, P.J.
Wagers, S.S.
Roberts, Graham
Compton, C.H.
Shaw, Dominick E.
Shaw, D.E.
Singer, Florian
Formaggio, E.
Pahus, L.
Sandstrom, Thomas
Hashimoto, S.
Knowles, R.
Montuschi, Paolo
Dahlen, Barbro
Matthews, J.G.
Wagener, A.H.
Musiał, Jacek
Fowler, Stephen J.
Hekking, P.W.
Vissing, N.H.
Bakke, Per S.
Knox, A.J.
Krung, Norbert
van Aalderen, W.
Riley, John H.
D'Amico, A.
Hekking, Pieter-Paul
Meiser, A.
Puig Valls, M.
Middelveld, R.J.M.
Auffray, C.
Caruso, Massimo
Roberts, A.
Sun, Kai
Bansal, Aruna T.
Goss, V.
Chanez, P.
Murray, C.S.
Sterk, Peter J.
Schofield, J.P.R.
Wheelock, C.E.
Brinkman, P.
Wilson, S.J.
Bel, E.H.
Pavlidis, S.
Brandsma, J.
Bucchioni, E.
Bates, Stewart
Selby, A.
Fleming, Louise J.
Lefaudeux, D.
Fichtner, K.
Singer, F.
Myles, D.
Pratico, G.
Dostawca treści:
Repozytorium Uniwersytetu Jagiellońskiego
Artykuł
Tytuł:
Production, quality assurance and quality control of the SiPM Tiles for the DarkSide-20k Time Projection Chamber
Autorzy:
Hugues, T.
Frolov, E.
Raffaelli, F.
Mariani, C.
Busto, J.
D’Aniello, M.
Hackett, B. R.
Lychagina, O.
Spadoni, F.
Amaudruz, P.
Musico, P.
Skensved, P.
Di Stefano, P.
Bonivento, W.
Pallavicini, M.
Frandini Gatti, H.
Pavarani, R.
Pralavorio, P.
Yang, C.
Bloem, M.
Conde Vilda, E.
Martoff, C. J.
Coadou, Y.
Smirnova, T.
Sabia, M. A.
Braun, T.
Cocco, V.
Minutoli, S.
Mitra, A.
Oleynikov, V.
Erjavec, T.
Rescigno, M.
Ave, M.
Rossi, M.
Plante, G.
Stracka, S.
Taylor, A.
Leason, E.
Savarese, C.
Rivetti, A.
Thompson, A.
Hidalgo, C.
Pantic, E.
Price, D.
Scapparone, E.
Sharma Poudel, S.
Da Rocha Rolo, M. D.
Morrocchi, M.
Pelczar, Krzysztof
Sheshukov, A.
Sanfilippo, S.
Taborda, O.
Park, B.
Vyas, B.
Galiński, G.
Lidey, L.
Giovanetti, G. K.
Martinez, M.
Vogelaar, R. B.
Derbin, A. V.
Galbiati, C.
Adhikari, P.
Canci, N.
Garcia Abia, P.
Roberts, C.
Samoylov, O.
Cadoni, M.
Dias, L. K.
Kuźniak, M.
Gallina, G.
Bussino, S.
Ravinthiran, S.
Harrop, B.
Semenov, D. A.
Czubak, Milena
Tartaglia, R.
Zhang, Y.
Nania, R.
Ferro, L.
Franco, D.
Ramachers, Y.
Schuckman, F. G.
Smirnov, O.
Camillo, V.
Ahmad, I.
Agnes, P.
Castellani, A.
Cleveland, B.
Pocar, A.
Razeti, M.
Di Noto, L.
Santone, D.
Sestu, M.
Atzori Corona, M.
Davini, S.
Tullio, S.
Angiolilli, M.
Moretti, E.
Mróz, Tomasz
Pordes, S.
Cadeddu, M.
Elersich, A.
Grauso, G.
Nikulin, I.
Organtini, P.
Grandi, L.
Sunny, C.
Blua, S.
Colaiuda, D.
Nessi, M.
Torres-Lara, S.
Dionisi, C.
Van Uffelen, M.
Hamer, A.
Manthos, I.
Resconi, S.
Scioli, G.
Choudhary, S.
Murra, M.
Salomone, P.
Sung, A.
Preosti, E.
Dylon, F.
Steri, A.
Sargeant, I.
Díaz Mairena, D.
La Commara, M.
Maricic, J.
McDonald, A. B.
Rubbia, A.
Bhowmick, P.
Tricomi, A.
Pandola, L.
Perez, R.
Alexander, T.
Hollingham, J.
Dolganov, G.
Manecki, S.
Stornelli, V.
Balmforth, Z.
Grobov, A.
Calabrese, R.
Ritchie-Yates, A.
Runge, J.
Santos, E. M.
Bocci, V.
Dainty, A.
Ellingwood, E.
Ippolito, V.
Kuss, M.
Alton, A. K.
Nikolopoulos, K.
Thieme, K.
Barrado Olmedo, A.
Wójcik, Marcin
Skorokhvatov, M. D.
Walczak, M.
Marasciulli, A.
Cargioli, N.
Auty, D. J.
Piacentini, S.
Suvorov, Y.
Lai, M.
Messina, A.
Viant, T.
Zichichi, A.
Carlini, M.
Viel, S.
Consiglio, L.
Rogers, G.
Hubaut, F.
Zabihi, A.
Jillings, C.
Caminata, A.
Kubankin, A.
Darbo, G.
Kemp, A.
de Solórzano, A. Ortiz
Rudik, D.
Smith, B.
Retiere, F.
Wada, M.
Pino, N.
Koulosousas, S.
Cortez, A. F. V.
Machts, I.
Mari, S. M.
Padmanabhan, A.
Rignanese, L. P.
Vishneva, A.
Cárdenas-Montes, M.
Ficorella, A.
Nieradka, G.
Peck, A.
Wang, Y.
Yin, J.
Hu, J.
Leoni, A.
Hallin, A. L.
Le Guirriec, E.
Macfadyen, O.
Chashin, S.
Puglia, S.
Costa, B. S.
Ventura, P.
Kuzwa, M.
Monroe, J.
Grilli di Cortona, G.
Cavalcante, P.
Back, H. O.
Gulino, M.
Pastuszak, G.
Albergo, S.
Renshaw, A. L.
Romero, L.
Bottino, B.
Gabriele, F.
Taylor, J.
Huff, D.
Williams, L.
Zykova, M. P.
Goicoechea Casanueva, V.
Lipp, J.
Zakhary, P.
Vossebeld, J.
Cifarelli, L.
Kotsiopoulou, L.
D’Auria, S.
Milincic, R.
Ramirez, A.
Gola, A.
Machulin, I. N.
Gromov, M.
Korga, G.
Paoloni, E.
Unzhakov, E. V.
Repond, A.
Testera, G.
Dellacasa, G.
Gendotti, A.
Pronesti, M.
Gawdzik, A.
Papi, D.
Kemmerich, N.
Matteucci, G.
Fernandez Diaz, M.
Fleming, D.
Horikawa, S.
Nowak, J.
Keloth, R.
Roberts, A.
Mapelli, L.
Franchini, P.
Spangenberg, M.
Chepurnov, A.
Cebrian, S.
Mavrokoridis, K.
Hessel, T.
Shalamova, V.
Santorelli, R.
Szelc, A. M.
Luzzi, L.
Ianni, A.
Kondo, K.
Lissia, M.
Morsy, A.
Harańczyk, Małgorzata
Zuzel, Grzegorz
Paternoster, G.
Kunzé, P.
Nikoloudaki, E.
Oleinik, A.
Wojcik, M.
Aprile, E.
de Asmundis, R.
Pesudo, V.
Boulay, M. G.
Buchowicz, A.
Westerdale, S.
Muratova, V. N.
Simeone, M.
Zani, A.
Azzolini, O.
Kimura, M.
Fiorillo, G.
Devoto, A.
Hungerford, E. V.
Queiroga Bazetto, M.
Olchanski, K.
Gahan, D.
Klenin, A.
Ragusa, F.
De Cecco, S.
Dronik, V.
Acerbi, F.
Dordei, F.
Jamil, A.
Barrillon, P.
Caravati, M.
Albuquerque, I. F.
Merzi, S.
Zhu, T.
Avetisov, I. C.
Garbini, M.
Fearon, N.
Batignani, G.
Opis:
The DarkSide-20k dark matter direct detection experiment will employ a 21 m$^{2}$ silicon photomultiplier (SiPM) array, instrumenting a dual-phase 50 tonnes liquid argon Time Projection Chamber (TPC). SiPMs are arranged into modular photosensors called Tiles, each integrating 24 SiPMs onto a printed circuit board (PCB) that provides signal amplification, power distribution, and a single-ended output for simplified readout. Tiles are further grouped into Photo-Detector Units (PDUs). This paper details the production of the Tiles and the Quality Assurance and Quality Control (QA-QC) protocol established to ensure their performance and uniformity. The production and QA-QC of the Tiles are carried out at Nuova Officina Assergi (NOA), an ISO-6 clean room facility at LNGS. This process includes wafer-level cryogenic characterisation, precision die attaching, wire bonding, and extensive electrical and optical validation of each Tile. The overall production yield exceeds 83.5%, matching the requirements of the DarkSide-20k production plan. These results validate the robustness of the Tile design and its suitability for operation in a cryogenic environment.
Dostawca treści:
Repozytorium Uniwersytetu Jagiellońskiego
Artykuł
Tytuł:
What makes a theory of consciousness unscientific?
Autorzy:
Seitz, Aaron R.
Rademaker, Rosanne L.
Bengio, Yoshua
Kwok, Sze Chai
Garfinkel, Sarah
Wierzchoń, Michał
Solovey, Guillermo
Charest, Ian
Stein, Timo
Pereplyotchik, David
Schmitz, Michael
Heyes, Cecilia
Frith, Chris D.
Schiller, Daniela
Bisley, James W.
Spiers, Hugo
Kording, Konrad
Carruthers, Peter
Cherkaoui, Mouslim
Odegaard, Brian
Owen, Adrian M.
Carmel, David
Doerig, Adrien
Hassin, Ran R.
Mok, Robert M.
Hsieh, Po-Jang
Ringach, Dario L.
Martinez-Trujillo, Julio
Silvanto, Juha
Bekinschtein, Tristan A.
Or, Charles C.-F.
Shepherd, Joshua
Cheng, Tony
Sebastián, Miguel Ángel
Mobbs, Dean
Carrasco, Marisa
Dennett, Daniel C.
Taschereau-Dumouchel, Vincent
Herzog, Michael H.
Metcalfe, Janet
Tse, Peter U.
Pestilli, Franco
Browning, Jacob
Knapen, Tomas
Frankish, Keith
Slagter, Heleen A.
De Brigard, Felipe
Fleming, Stephen M.
Cumming, Sam
Lieberman, Matthew D.
Schwarzkopf, D. Samuel
Kvamme, Timo L.
Hanson, Jake R.
LeDoux, Joseph
Dijkstra, Nadine
Tong, Frank
Baxter, Mark G.
Buonomano, Dean
Smith, Barry C.
Phillips, Ian
Arnold, Derek H.
Mylopoulos, Myrto
Vibell, Jonas
Cushing, Cody A.
Goodale, Melvyn A.
Miller, Kenneth D.
de Gelder, Beatrice
Kentridge, Robert
Soto, David
Cohen, Michael A.
Carter, Olivia
Corlett, Philip R.
Liu, Ka-Yuet
Watzl, Sebastian
Schurger, Aaron
Weisberg, Josh
Rees, Geraint
Morales, Jorge
Libedinsky, Camilo
Christoff, Kalina
Gottlieb, Jacqueline
Lee, Alan L. F.
Lanfranco, Renzo C.
Webb, Taylor
Konstantinou, Nikos
Machizawa, Maro G.
Klincewicz, Michał
Snyder, Joel S.
Hung, Shao-Min
Scott, Ryan B.
Yan, Karen
Chang, Dorita H. F.
Rahnev, Dobromir
Dux, Paul E.
Roskies, Adina
Wheatley, Thalia
Mitra, Partha P.
Peters, Megan A. K.
Cleeremans, Axel
Lau, Hakwan
Michel, Matthias
Lin, Ying-Tung
Wokke, Martijn E.
Dostawca treści:
Repozytorium Uniwersytetu Jagiellońskiego
Artykuł
    Wyświetlanie 1-8 z 8

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