Showing 21 - 40 results of 58 for search '(elba OR (melbi OR (amell OR ((plla OR plga) OR (della OR dell)))))', query time: 0.15s Refine Results
  1. 21

    Inferno XVI: from the circling sodomites to Geryon’s cord by Gilson, S

    Published 2024
    “…Questa lectura analizza le principali sezioni del canto XVI dell’Inferno con particolare attenzione al dialogo fra Dante personaggio e i tre dannati fiorentini, al trattamento della sodomia nella cultura medievale e ai suoi contesti teologici, e al ruolo della profezia in tale canto. …”
    Journal article
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    Synthesis and characterization of novel biodegradable thermoplastic elastomers by Widjaja, Leonardus Kresna

    Published 2011
    “…The addition of PCL into PLLA block enhances the elongation of the triblock considerably. …”
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    Thesis
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    Selection of materials for biodegradable heart plug prototype by Anastasia Darwitan

    Published 2010
    “…From the four polymers, triblock copolymer of PLLA/PCL (75/25) – PCL/PLLA (75/25) – PLLA/PCL (75/25) (targeted molecular weight (kDa): 40-40-40) shows a potential to be used for PFO device application.…”
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    Final Year Project (FYP)
  6. 26

    Investigation into push-pull boundary in supply chains by Cheung, Siu Fung.

    Published 2010
    “…Through the use of simulation, a numerical study on Dell Computers is performed. By placing Dell Computers into different push-pull boundary system, the effects on fill rate and inventory level and hence the cost have been observed. …”
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    Final Year Project (FYP)
  7. 27

    Autoencoder-Based Anomaly Detection System for Online Data Quality Monitoring of the CMS Electromagnetic Calorimeter by Abadjiev, D., Adams, T., Adzic, P., Ahmad, M., Amendola, C., Andrews, M. B., Arcidiacono, R., Argiro, S., Askew, A., Auffray, E., Azzolini, V., Bailleux, D., Band, R., Barney, D., Barria, P., Bartosik, N., Basile, C., Bastos, D., Bell, K. W., Besancon, M., Bianco, R., Biino, C., Blinov, V., Borca, C., Bornheim, A., Brown, R. M., Campana, M., Castells, S., Cavallari, F., Cetorelli, F., Chatterjee, R. M., Chatterjee, S., Chaudhary, G., Chen, J. A., Chernyavskaya, N., Chung, H., Cipriani, M., Cokic, L., Cooke, C., Cossio, F., Couderc, F., Cristoforetti, D., Cucciati, G., Cunqueiro Mendez, L., Da Silva Di Calafiori, D., Dafinei, I., Cockerill, D. J. A., Dejardin, M., Re, D. Del, Ricca, G. Della, Depasse, P., Dervan, J., Marco, E. Di, Diemoz, M., Dimova, T., Dissertori, G., Dittmar, M., Dolgopolov, A., Donegà, M., Dordevic, M., Mamouni, H. El, Errico, F., Espinosa, F., Faure, J. L., Fay, J., Menendez, J. Fernandez, Ferri, F., Finco, L., Fiori, F., Frahm, E., Funk, W., Gadek, T., Gajownik, J., Galli, M., Ganjour, S., Gascon, S., Ghezzi, A., Ghose, P., Gninenko, S., Goadhouse, S., Godinovic, N., Golubev, N., Govoni, P., Gras, P., Hakala, J., de Monchenault, G. Hamel, Harilal, A., Härringer, N., Hashmi, R., Heath, H. F., Hirosky, R., Ho, K. W., Hou, X., Ingram, Q., Jain, Sh., Javaid, T., Jessop, C., Jimènez, R., Joshi, B. M., Jourd‘hui, E., Kaadze, K., Kao, Y.-W., Kardapoltsev, L., Khurana, R., King, J., Kirilovas, A., Konstantinov, D., Kovac, M., Krishna, A., Kuo, C. M., Lambrecht, L., Lavizzari, G., Lecoq, P., Ledovskoy, A., Legger, F., Lelas, D., Li, Y. y., Liang, Z., Lin, W., Longo, E., Loukas, N., Lu, R. -S., Lustermann, W., Lutton, L., Lyon, A. -M., Maeshima, K., Malcles, J., Mandrik, P., Manzoni, R. A., Marchese, L., Marinelli, N., Marini, A. C., Martin, L., Marzocchi, B., Mascellani, A., Massironi, A., Matveev, V., Mazza, G., Meridiani, P., Mijic, M., Mijuskovic, J., Milenovic, P., Milosevic, J., Monteno, M., Monti, F., Moortgat, F., Mousa, J., Mudholkar, T., Nessi-Tedaldi, F., Nicolaou, C., Nigamova, A., Obertino, M. M., Organtini, G., Orimoto, T., Orlandi, F., Ovtin, I., Paganis, E., Papagiannis, D., Pandolfi, F., Paramatti, R., Park, K., Pastrone, N., Paulini, M., Pauss, F., Petkovic, , A., Petraityte, E., Pettinacci, V., Petyt, D., Pigazzini, S., Pinolini, B. S., Prova, P. R., Quaranta, C., Ragazzi, S., Rahatlou, S., Rasteiro Da Silva, J. C., Razis, P. A., Teles, P. Rebello, Reis, T., Riti, F., Rogan, C., Romanteau, T., Rosowsky, A., Rovelli, C., Rovere, M., Rusack, R., Salvi, G., Sancar, O., Sanchez, A., Sandever, C., Santanastasio, F., Saradhy, R., Sarkar, U., Schneider, M., Schroeder, N., Sculac, A., Sculac, T., Shahzad, M. A., Shepherd-Themistocleous, C. H., Simkina, P., Singla, A., Singovsky, A., Skovpen, Y., Smith, V. J., Soffi, L., Stachon, K., Steen, A., Steggemann, J., Succar, M., Tao, J., Tishelman-Charny, A., Tiwari, P. C., Tornago, M., Tramontano, R., Tsai, L. -S., Usai, E., Valsecchi, D., Vagnerini, A., Varela, J., Venditti, R., Verma, P., Vlassov, E., Wachirapusitanand, V., Wamorkar, T., Wang, C., Wang, J., Wadud, M. A., Yu, S. S., Zabi, A., Zghiche, A., Zhang, L., Zhu, R. Y., Zygal, L.

    Published 2024
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    Article
  8. 28

    Synthesis of biodegradable thermoplastic elastomers based on polyurethane by Liow, Sing Shy.

    Published 2013
    “…In Chapter 4, BTPU based on PCL-co-PLLA with various CL:LLA molar ratio were examined. …”
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    Thesis
  9. 29

    Novel on-demand bioadhesion to soft tissue in wet environments by Steele, Terry W. J., Mogal, Vishal, Papper, Vladislav, Chaurasia, Alok, Feng, Gao, Marks, Robert

    Published 2014
    “…The diazirine-modified PLGA thin films could be added on top of previously developed technologies for minimally invasive surgeries. …”
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    Journal Article
  10. 30

    Effect of size on degradation and different fabrication methods for nano particles by Loh, Eugenia Mei Ting.

    Published 2009
    “…Poly (lactic-co-glycolic acid), also known as PLGA, is commonly used to encapsulate drugs for drug delivery purpose in the form of micro size particles as well as nano order particles. …”
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    Final Year Project (FYP)
  11. 31

    Antimicrobial efficacy testing of antibiotic-containing biodegradable nanopolymers against biofilm and planktonic cells. by Polimyr Caesar Dave Pelisco Dingal.

    Published 2009
    “…For both pathogens, minimum inhibitory concentrations (MIC) of 2.8 µg/mL and 16.5 µg/mL total LEV load were found for LEV-PLGA and LEV-PCL, respectively. Minimum biofilm eradication concentrations (MBECs) improved at least 2-fold with increase in exposure time (48 hours) achieving LEV-PLGA MBECs of 1.4 and 0.2 µg/mL and LEV-PCL MBECs of 16.5 and 8.2 µg/mL for E. coli and P. aeruginosa, respectively. …”
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    Final Year Project (FYP)
  12. 32

    Investigation on in vitro degradation of poly (L-lactide) for biomedical applications by Ting, Hie King.

    Published 2008
    “…A poly(L-lactide) (PLLA) was processed by injection moulding to produce amorphous samples. …”
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    Thesis
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    Instructive scaffolds for tissue engineering by Cham, Hui Ting

    Published 2017
    “…This is done by encapsulating the small molecules in poly(lactic-co-glycolic acid) (PLGA) microparticles and incubating them with THP-1 differentiated macrophages. …”
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    Final Year Project (FYP)
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    Biothermoplastic elastomer (BTPE), influence of architecture on mechanical properties by Tjin, Monica Suryana.

    Published 2010
    “…Random copolymer of PCL and PTMC serves as soft block and PLLA as hard block. The resulting star-shaped copolymers were characterized by 1H NMR, SEC, DSC, and INSTRON methods which provide structural, thermal, and mechanical properties of the copolymers. …”
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    Final Year Project (FYP)
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    Percutaneous Intratumoral Immunoadjuvant Gel Increases the Abscopal Effect of Cryoablation for Checkpoint Inhibitor Resistant Cancer by Som, Avik, Rosenboom, Jan‐Georg, Wehrenberg‐Klee, Eric, Chandler, Alana, Ndakwah, Gabrielle, Chen, Eric, Suggs, Jack, Morimoto, Joshua, Kim, Jonathan, Mustafa, Abdul Rehman, Marcos‐Vidal, Asier, Fintelmann, Florian J., Basu, Arijit, Langer, Robert, Traverso, Giovanni, Mahmood, Umar

    Published 2024
    “…The poly‐lactic‐<jats:italic>co</jats:italic>‐glycolic acid‐polyethylene glycol‐poly‐lactic‐<jats:italic>co</jats:italic>‐glycolic acid (PLGA‐PEG‐PLGA)‐based amphiphilic copolymer gel's underlying micellar nature enables high drug concentration and a logarithmic release profile that is additive with the neo‐antigen release from cryoablation, requiring only a single injection. …”
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    Article
  20. 40

    Release studies of naked DNA, polyplexes and lipoplexes from polymeric films by Ramgopal Yamini

    Published 2008
    “…The polymeric system studied includes PLGA (53/47), PCL and PEVAC .The release profile was determined by quantifying the amount of DNA released at specific time points over a period of 1 month, utilizing the fluorescence of ethidium bromide.The bioactivity of the released complexes were determined by in vitro cell transfection using COS 7 cells. …”
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    Thesis