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  1. Article ; Online: Constraining the p-Mode-g-Mode Tidal Instability with GW170817.

    Abbott, B P / Abbott, R / Abbott, T D / Acernese, F / Ackley, K / Adams, C / Adams, T / Addesso, P / Adhikari, R X / Adya, V B / Affeldt, C / Agarwal, B / Agathos, M / Agatsuma, K / Aggarwal, N / Aguiar, O D / Aiello, L / Ain, A / Ajith, P /
    Allen, B / Allen, G / Allocca, A / Aloy, M A / Altin, P A / Amato, A / Ananyeva, A / Anderson, S B / Anderson, W G / Angelova, S V / Antier, S / Appert, S / Arai, K / Araya, M C / Areeda, J S / Arène, M / Arnaud, N / Arun, K G / Ascenzi, S / Ashton, G / Ast, M / Aston, S M / Astone, P / Atallah, D V / Aubin, F / Aufmuth, P / Aulbert, C / AultONeal, K / Austin, C / Avila-Alvarez, A / Babak, S / Bacon, P / Badaracco, F / Bader, M K M / Bae, S / Baker, P T / Baldaccini, F / Ballardin, G / Ballmer, S W / Banagiri, S / Barayoga, J C / Barclay, S E / Barish, B C / Barker, D / Barkett, K / Barnum, S / Barone, F / Barr, B / Barsotti, L / Barsuglia, M / Barta, D / Bartlett, J / Bartos, I / Bassiri, R / Basti, A / Batch, J C / Bawaj, M / Bayley, J C / Bazzan, M / Bécsy, B / Beer, C / Bejger, M / Belahcene, I / Bell, A S / Beniwal, D / Bensch, M / Berger, B K / Bergmann, G / Bernuzzi, S / Bero, J J / Berry, C P L / Bersanetti, D / Bertolini, A / Betzwieser, J / Bhandare, R / Bilenko, I A / Bilgili, S A / Billingsley, G / Billman, C R / Birch, J / Birney, R / Birnholtz, O / Biscans, S / Biscoveanu, S / Bisht, A / Bitossi, M / Bizouard, M A / Blackburn, J K / Blackman, J / Blair, C D / Blair, D G / Blair, R M / Bloemen, S / Bock, O / Bode, N / Boer, M / Boetzel, Y / Bogaert, G / Bohe, A / Bondu, F / Bonilla, E / Bonnand, R / Booker, P / Boom, B A / Booth, C D / Bork, R / Boschi, V / Bose, S / Bossie, K / Bossilkov, V / Bosveld, J / Bouffanais, Y / Bozzi, A / Bradaschia, C / Brady, P R / Bramley, A / Branchesi, M / Brau, J E / Briant, T / Brighenti, F / Brillet, A / Brinkmann, M / Brisson, V / Brockill, P / Brooks, A F / Brown, D D / Brunett, S / Buchanan, C C / Buikema, A / Bulik, T / Bulten, H J / Buonanno, A / Buskulic, D / Buy, C / Byer, R L / Cabero, M / Cadonati, L / Cagnoli, G / Cahillane, C / Calderón Bustillo, J / Callister, T A / Calloni, E / Camp, J B / Canepa, M / Canizares, P / Cannon, K C / Cao, H / Cao, J / Capano, C D / Capocasa, E / Carbognani, F / Caride, S / Carney, M F / Casanueva Diaz, J / Casentini, C / Caudill, S / Cavaglià, M / Cavalier, F / Cavalieri, R / Cella, G / Cepeda, C B / Cerdá-Durán, P / Cerretani, G / Cesarini, E / Chaibi, O / Chamberlin, S J / Chan, M / Chao, S / Charlton, P / Chase, E / Chassande-Mottin, E / Chatterjee, D / Chatziioannou, Katerina / Cheeseboro, B D / Chen, H Y / Chen, X / Chen, Y / Cheng, H-P / Chia, H Y / Chincarini, A / Chiummo, A / Chmiel, T / Cho, H S / Cho, M / Chow, J H / Christensen, N / Chu, Q / Chua, A J K / Chua, S / Chung, K W / Chung, S / Ciani, G / Ciobanu, A A / Ciolfi, R / Cipriano, F / Cirelli, C E / Cirone, A / Clara, F / Clark, J A / Clearwater, P / Cleva, F / Cocchieri, C / Coccia, E / Cohadon, P-F / Cohen, D / Colla, A / Collette, C G / Collins, C / Cominsky, L R / Constancio, M / Conti, L / Cooper, S J / Corban, P / Corbitt, T R / Cordero-Carrión, I / Corley, K R / Cornish, N / Corsi, A / Cortese, S / Costa, C A / Cotesta, R / Coughlin, M W / Coughlin, S B / Coulon, J-P / Countryman, S T / Couvares, P / Covas, P B / Cowan, E E / Coward, D M / Cowart, M J / Coyne, D C / Coyne, R / Creighton, J D E / Creighton, T D / Cripe, J / Crowder, S G / Cullen, T J / Cumming, A / Cunningham, L / Cuoco, E / Canton, T Dal / Dálya, G / Danilishin, S L / D'Antonio, S / Danzmann, K / Dasgupta, A / Costa, C F Da Silva / Dattilo, V / Dave, I / Davier, M / Davis, D / Daw, E J / Day, B / DeBra, D / Deenadayalan, M / Degallaix, J / De Laurentis, M / Deléglise, S / Del Pozzo, W / Demos, N / Denker, T / Dent, T / De Pietri, R / Derby, J / Dergachev, V / De Rosa, R / De Rossi, C / DeSalvo, R / de Varona, O / Dhurandhar, S / Díaz, M C / Di Fiore, L / Di Giovanni, M / Di Girolamo, T / Di Lieto, A / Ding, B / Di Pace, S / Di Palma, I / Di Renzo, F / Dmitriev, A / Doctor, Z / Dolique, V / Donovan, F / Dooley, K L / Doravari, S / Dorrington, I / Dovale Álvarez, M / Downes, T P / Drago, M / Dreissigacker, C / Driggers, J C / Du, Z / Dupej, P / Dwyer, S E / Easter, P J / Edo, T B / Edwards, M C / Effler, A / Eggenstein, H-B / Ehrens, P / Eichholz, J / Eikenberry, S S / Eisenmann, M / Eisenstein, R A / Essick, R C / Estelles, H / Estevez, D / Etienne, Z B / Etzel, T / Evans, M / Evans, T M / Fafone, V / Fair, H / Fairhurst, S / Fan, X / Farinon, S / Farr, B / Farr, W M / Fauchon-Jones, E J / Favata, M / Fays, M / Fee, C / Fehrmann, H / Feicht, J / Fejer, M M / Feng, F / Fernandez-Galiana, A / Ferrante, I / Ferreira, E C / Ferrini, F / Fidecaro, F / Fiori, I / Fiorucci, D / Fishbach, M / Fisher, R P / Fishner, J M / Fitz-Axen, M / Flaminio, R / Fletcher, M / Fong, H / Font, J A / Forsyth, P W F / Forsyth, S S / Fournier, J-D / Frasca, S / Frasconi, F / Frei, Z / Freise, A / Frey, R / Frey, V / Fritschel, P / Frolov, V V / Fulda, P / Fyffe, M / Gabbard, H A / Gadre, B U / Gaebel, S M / Gair, J R / Gammaitoni, L / Ganija, M R / Gaonkar, S G / Garcia, A / García-Quirós, C / Garufi, F / Gateley, B / Gaudio, S / Gaur, G / Gayathri, V / Gemme, G / Genin, E / Gennai, A / George, D / George, J / Gergely, L / Germain, V / Ghonge, S / Ghosh, Abhirup / Ghosh, Archisman / Ghosh, S / Giacomazzo, B / Giaime, J A / Giardina, K D / Giazotto, A / Gill, K / Giordano, G / Glover, L / Goetz, E / Goetz, R / Goncharov, B / González, G / Gonzalez Castro, J M / Gopakumar, A / Gorodetsky, M L / Gossan, S E / Gosselin, M / Gouaty, R / Grado, A / Graef, C / Granata, M / Grant, A / Gras, S / Gray, C / Greco, G / Green, A C / Green, R / Gretarsson, E M / Groot, P / Grote, H / Grunewald, S / Gruning, P / Guidi, G M / Gulati, H K / Guo, X / Gupta, A / Gupta, M K / Gushwa, K E / Gustafson, E K / Gustafson, R / Halim, O / Hall, B R / Hall, E D / Hamilton, E Z / Hamilton, H F / Hammond, G / Haney, M / Hanke, M M / Hanks, J / Hanna, C / Hannam, M D / Hannuksela, O A / Hanson, J / Hardwick, T / Harms, J / Harry, G M / Harry, I W / Hart, M J / Haster, C-J / Haughian, K / Healy, J / Heidmann, A / Heintze, M C / Heitmann, H / Hello, P / Hemming, G / Hendry, M / Heng, I S / Hennig, J / Heptonstall, A W / Hernandez, F J / Heurs, M / Hild, S / Hinderer, T / Hoak, D / Hochheim, S / Hofman, D / Holland, N A / Holt, K / Holz, D E / Hopkins, P / Horst, C / Hough, J / Houston, E A / Howell, E J / Hreibi, A / Huerta, E A / Huet, D / Hughey, B / Hulko, M / Husa, S / Huttner, S H / Huynh-Dinh, T / Iess, A / Indik, N / Ingram, C / Inta, R / Intini, G / Isa, H N / Isac, J-M / Isi, M / Iyer, B R / Izumi, K / Jacqmin, T / Jani, K / Jaranowski, P / Johnson, D S / Johnson, W W / Jones, D I / Jones, R / Jonker, R J G / Ju, L / Junker, J / Kalaghatgi, C V / Kalogera, V / Kamai, B / Kandhasamy, S / Kang, G / Kanner, J B / Kapadia, S J / Karki, S / Karvinen, K S / Kasprzack, M / Katolik, M / Katsanevas, S / Katsavounidis, E / Katzman, W / Kaufer, S / Kawabe, K / Keerthana, N V / Kéfélian, F / Keitel, D / Kemball, A J / Kennedy, R / Key, J S / Khalili, F Y / Khamesra, B / Khan, H / Khan, I / Khan, S / Khan, Z / Khazanov, E A / Kijbunchoo, N / Kim, Chunglee / Kim, J C / Kim, K / Kim, W / Kim, W S / Kim, Y-M / King, E J / King, P J / Kinley-Hanlon, M / Kirchhoff, R / Kissel, J S / Kleybolte, L / Klimenko, S / Knowles, T D / Koch, P / Koehlenbeck, S M / Koley, S / Kondrashov, V / Kontos, A / Korobko, M / Korth, W Z / Kowalska, I / Kozak, D B / Krämer, C / Kringel, V / Krishnan, B / Królak, A / Kuehn, G / Kumar, P / Kumar, R / Kumar, S / Kuo, L / Kutynia, A / Kwang, S / Lackey, B D / Lai, K H / Landry, M / Lang, R N / Lange, J / Lantz, B / Lanza, R K / Lartaux-Vollard, A / Lasky, P D / Laxen, M / Lazzarini, A / Lazzaro, C / Leaci, P / Leavey, S / Lee, C H / Lee, H K / Lee, H M / Lee, H W / Lee, K / Lehmann, J / Lenon, A / Leonardi, M / Leroy, N / Letendre, N / Levin, Y / Li, J / Li, T G F / Li, X / Linker, S D / Littenberg, T B / Liu, J / Liu, X / Lo, R K L / Lockerbie, N A / London, L T / Longo, A / Lorenzini, M / Loriette, V / Lormand, M / Losurdo, G / Lough, J D / Lovelace, G / Lück, H / Lumaca, D / Lundgren, A P / Lynch, R / Ma, Y / Macas, R / Macfoy, S / Machenschalk, B / MacInnis, M / Macleod, D M / Magaña Hernandez, I / Magaña-Sandoval, F / Magaña Zertuche, L / Magee, R M / Majorana, E / Maksimovic, I / Man, N / Mandic, V / Mangano, V / Mansell, G L / Manske, M / Mantovani, M / Marchesoni, F / Marion, F / Márka, S / Márka, Z / Markakis, C / Markosyan, A S / Markowitz, A / Maros, E / Marquina, A / Martelli, F / Martellini, L / Martin, I W / Martin, R M / Martynov, D V / Mason, K / Massera, E / Masserot, A / Massinger, T J / Masso-Reid, M / Mastrogiovanni, S / Matas, A / Matichard, F / Matone, L / Mavalvala, N / Mazumder, N / McCann, J J / McCarthy, R / McClelland, D E / McCormick, S / McCuller, L / McGuire, S C / McIver, J / McManus, D J / McRae, T / McWilliams, S T / Meacher, D / Meadors, G D / Mehmet, M / Meidam, J / Mejuto-Villa, E / Melatos, A / Mendell, G / Mendoza-Gandara, D / Mercer, R A / Mereni, L / Merilh, E L / Merzougui, M / Meshkov, S / Messenger, C / Messick, C / Metzdorff, R / Meyers, P M / Miao, H / Michel, C / Middleton, H / Mikhailov, E E / Milano, L / Miller, A L / Miller, A / Miller, B B / Miller, J / Millhouse, M / Mills, J / Milovich-Goff, M C / Minazzoli, O / Minenkov, Y / Ming, J / Mishra, C / Mitra, S / Mitrofanov, V P / Mitselmakher, G / Mittleman, R / Moffa, D / Mogushi, K / Mohan, M / Mohapatra, S R P / Montani, M / Moore, C J / Moraru, D / Moreno, G / Morisaki, S / Mours, B / Mow-Lowry, C M / Mueller, G / Muir, A W / Mukherjee, Arunava / Mukherjee, D / Mukherjee, S / Mukund, N / Mullavey, A / Munch, J / Muñiz, E A / Muratore, M / Murray, P G / Nagar, A / Napier, K / Nardecchia, I / Naticchioni, L / Nayak, R K / Neilson, J / Nelemans, G / Nelson, T J N / Nery, M / Neunzert, A / Nevin, L / Newport, J M / Ng, K Y / Ng, S / Nguyen, P / Nguyen, T T / Nichols, D / Nielsen, A B / Nissanke, S / Nitz, A / Nocera, F / Nolting, D / North, C / Nuttall, L K / Obergaulinger, M / Oberling, J / O'Brien, B D / O'Dea, G D / Ogin, G H / Oh, J J / Oh, S H / Ohme, F / Ohta, H / Okada, M A / Oliver, M / Oppermann, P / Oram, Richard J / O'Reilly, B / Ormiston, R / Ortega, L F / O'Shaughnessy, R / Ossokine, S / Ottaway, D J / Overmier, H / Owen, B J / Pace, A E / Pagano, G / Page, J / Page, M A / Pai, A / Pai, S A / Palamos, J R / Palashov, O / Palomba, C / Pal-Singh, A / Pan, Howard / Pan, Huang-Wei / Pang, B / Pang, P T H / Pankow, C / Pannarale, F / Pant, B C / Paoletti, F / Paoli, A / Papa, M A / Parida, A / Parker, W / Pascucci, D / Pasqualetti, A / Passaquieti, R / Passuello, D / Patil, M / Patricelli, B / Pearlstone, B L / Pedersen, C / Pedraza, M / Pedurand, R / Pekowsky, L / Pele, A / Penn, S / Perez, C J / Perreca, A / Perri, L M / Pfeiffer, H P / Phelps, M / Phukon, K S / Piccinni, O J / Pichot, M / Piergiovanni, F / Pierro, V / Pillant, G / Pinard, L / Pinto, I M / Pirello, M / Pitkin, M / Poggiani, R / Popolizio, P / Porter, E K / Possenti, L / Post, A / Powell, J / Prasad, J / Pratt, J W W / Pratten, G / Predoi, V / Prestegard, T / Principe, M / Privitera, S / Prodi, G A / Prokhorov, L G / Puncken, O / Punturo, M / Puppo, P / Pürrer, M / Qi, H / Quetschke, V / Quintero, E A / Quitzow-James, R / Rabeling, D S / Radkins, H / Raffai, P / Raja, S / Rajan, C / Rajbhandari, B / Rakhmanov, M / Ramirez, K E / Ramos-Buades, A / Rana, Javed / Rapagnani, P / Raymond, V / Razzano, M / Read, J / Regimbau, T / Rei, L / Reid, S / Reitze, D H / Ren, W / Ricci, F / Ricker, P M / Riles, K / Rizzo, M / Robertson, N A / Robie, R / Robinet, F / Robson, T / Rocchi, A / Rolland, L / Rollins, J G / Roma, V J / Romano, R / Romel, C L / Romie, J H / Rosińska, D / Ross, M P / Rowan, S / Rüdiger, A / Ruggi, P / Rutins, G / Ryan, K / Sachdev, S / Sadecki, T / Sakellariadou, M / Salconi, L / Saleem, M / Salemi, F / Samajdar, A / Sammut, L / Sampson, L M / Sanchez, E J / Sanchez, L E / Sanchis-Gual, N / Sandberg, V / Sanders, J R / Sarin, N / Sassolas, B / Saulson, P R / Sauter, O / Savage, R L / Sawadsky, A / Schale, P / Scheel, M / Scheuer, J / Schmidt, P / Schnabel, R / Schofield, R M S / Schönbeck, A / Schreiber, E / Schuette, D / Schulte, B W / Schutz, B F / Schwalbe, S G / Scott, J / Scott, S M / Seidel, E / Sellers, D / Sengupta, A S / Sentenac, D / Sequino, V / Sergeev, A / Setyawati, Y / Shaddock, D A / Shaffer, T J / Shah, A A / Shahriar, M S / Shaner, M B / Shao, L / Shapiro, B / Shawhan, P / Shen, H / Shoemaker, D H / Shoemaker, D M / Siellez, K / Siemens, X / Sieniawska, M / Sigg, D / Silva, A D / Singer, L P / Singh, A / Singhal, A / Sintes, A M / Slagmolen, B J J / Slaven-Blair, T J / Smith, B / Smith, J R / Smith, R J E / Somala, S / Son, E J / Sorazu, B / Sorrentino, F / Souradeep, T / Spencer, A P / Srivastava, A K / Staats, K / Steinke, M / Steinlechner, J / Steinlechner, S / Steinmeyer, D / Steltner, B / Stevenson, S P / Stocks, D / Stone, R / Stops, D J / Strain, K A / Stratta, G / Strigin, S E / Strunk, A / Sturani, R / Stuver, A L / Summerscales, T Z / Sun, L / Sunil, S / Suresh, J / Sutton, P J / Swinkels, B L / Szczepańczyk, M J / Tacca, M / Tait, S C / Talbot, C / Talukder, D / Tanner, D B / Tápai, M / Taracchini, A / Tasson, J D / Taylor, J A / Taylor, R / Tewari, S V / Theeg, T / Thies, F / Thomas, E G / Thomas, M / Thomas, P / Thorne, K A / Thrane, E / Tiwari, S / Tiwari, V / Tokmakov, K V / Toland, K / Tonelli, M / Tornasi, Z / Torres-Forné, A / Torrie, C I / Töyrä, D / Travasso, F / Traylor, G / Trinastic, J / Tringali, M C / Trozzo, L / Tsang, K W / Tse, M / Tso, R / Tsuna, D / Tsukada, L / Tuyenbayev, D / Ueno, K / Ugolini, D / Urban, A L / Usman, S A / Vahlbruch, H / Vajente, G / Valdes, G / van Bakel, N / van Beuzekom, M / van den Brand, J F J / Van Den Broeck, C / Vander-Hyde, D C / van der Schaaf, L / van Heijningen, J V / van Veggel, A A / Vardaro, M / Varma, V / Vass, S / Vasúth, M / Vecchio, A / Vedovato, G / Veitch, J / Veitch, P J / Venkateswara, K / Venugopalan, G / Verkindt, D / Vetrano, F / Viceré, A / Viets, A D / Vinciguerra, S / Vine, D J / Vinet, J-Y / Vitale, S / Vo, T / Vocca, H / Vorvick, C / Vyatchanin, S P / Wade, A R / Wade, L E / Wade, M / Walet, R / Walker, M / Wallace, L / Walsh, S / Wang, G / Wang, H / Wang, J Z / Wang, W H / Wang, Y F / Ward, R L / Warner, J / Was, M / Watchi, J / Weaver, B / Wei, L-W / Weinert, M / Weinstein, A J / Weiss, R / Wellmann, F / Wen, L / Wessel, E K / Weßels, P / Westerweck, J / Wette, K / Whelan, J T / Whiting, B F / Whittle, C / Wilken, D / Williams, D / Williams, R D / Williamson, A R / Willis, J L / Willke, B / Wimmer, M H / Winkler, W / Wipf, C C / Wittel, H / Woan, G / Woehler, J / Wofford, J K / Wong, W K / Worden, J / Wright, J L / Wu, D S / Wysocki, D M / Xiao, S / Yam, W / Yamamoto, H / Yancey, C C / Yang, L / Yap, M J / Yazback, M / Yu, Hang / Yu, Haocun / Yvert, M / Zadrożny, A / Zanolin, M / Zelenova, T / Zendri, J-P / Zevin, M / Zhang, J / Zhang, L / Zhang, M / Zhang, T / Zhang, Y-H / Zhao, C / Zhou, M / Zhou, Z / Zhu, S J / Zhu, X J / Zimmerman, A B / Zucker, M E / Zweizig, J / Weinberg, N N

    Physical review letters

    2019  Volume 122, Issue 6, Page(s) 61104

    Abstract: We analyze the impact of a proposed tidal instability coupling p modes and g modes within neutron ... we compute the Bayes factor (lnB_{!pg}^{pg}) comparing our p-g model to a standard one. We find ... that the observed signal is consistent with waveform models that neglect p-g effects, with lnB_{!pg}^{pg}=0.03_{-0 ...

    Abstract We analyze the impact of a proposed tidal instability coupling p modes and g modes within neutron stars on GW170817. This nonresonant instability transfers energy from the orbit of the binary to internal modes of the stars, accelerating the gravitational-wave driven inspiral. We model the impact of this instability on the phasing of the gravitational wave signal using three parameters per star: an overall amplitude, a saturation frequency, and a spectral index. Incorporating these additional parameters, we compute the Bayes factor (lnB_{!pg}^{pg}) comparing our p-g model to a standard one. We find that the observed signal is consistent with waveform models that neglect p-g effects, with lnB_{!pg}^{pg}=0.03_{-0.58}^{+0.70} (maximum a posteriori and 90% credible region). By injecting simulated signals that do not include p-g effects and recovering them with the p-g model, we show that there is a ≃50% probability of obtaining similar lnB_{!pg}^{pg} even when p-g effects are absent. We find that the p-g amplitude for 1.4  M_{⊙} neutron stars is constrained to less than a few tenths of the theoretical maximum, with maxima a posteriori near one-tenth this maximum and p-g saturation frequency ∼70  Hz. This suggests that there are less than a few hundred excited modes, assuming they all saturate by wave breaking. For comparison, theoretical upper bounds suggest ≲10^{3} modes saturate by wave breaking. Thus, the measured constraints only rule out extreme values of the p-g parameters. They also imply that the instability dissipates ≲10^{51}  erg over the entire inspiral, i.e., less than a few percent of the energy radiated as gravitational waves.
    Language English
    Publishing date 2019-03-01
    Publishing country United States
    Document type Journal Article
    ZDB-ID 208853-8
    ISSN 1079-7114 ; 0031-9007
    ISSN (online) 1079-7114
    ISSN 0031-9007
    DOI 10.1103/PhysRevLett.122.061104
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  2. Article ; Online: 10 kHz stimulation as rescue therapy for spinal cord stimulation trial failure or loss of efficacy: A retrospective study.

    Buonanno, Pasquale / Servillo, Giuseppe / Visser-Vandewalle, Veerle / Matis, Georgios

    Pain practice : the official journal of World Institute of Pain

    2024  

    Abstract: Introduction: Spinal cord stimulation (SCS) is currently used for the management of pain of different origin, and since its inception, many waveforms have been developed. Some patients experience no pain relief already during SCS trial, while other ... ...

    Abstract Introduction: Spinal cord stimulation (SCS) is currently used for the management of pain of different origin, and since its inception, many waveforms have been developed. Some patients experience no pain relief already during SCS trial, while other patients go through a loss of efficacy due to habituation after a variable period of satisfying pain control. Our retrospective study represents the first report exploring the potential role of 10 kHz stimulation as rescue therapy for patients who did not benefit not only from conventional stimulation but even from other waveforms during SCS trial or follow-up.
    Methods: This study was conducted in Germany; we retrospectively enrolled patients with no pain relief during SCS trial or with loss of efficacy of other waveforms over time; and we recorded visual analogic scale (VAS), Oswestry Disability Index (ODI), and daily opioid consumption expressed as morphine milligram equivalents (MME), right before and 12 months after the switching to 10 kHz simulation.
    Results: The rate of successful switching to 10 kHz stimulation was comparable in patients enrolled during the SCS trial and during the follow-up (43% vs. 40%, respectively); notably, the highest rate of failed rescue was recorded in case of persistent spinal pain syndrome (PSPS) II. Patients who responded to the switching showed a significant improvement in VAS and ODI after 12 months of treatment compared to baseline (3.6 ± 1.0 vs. 8.2 ± 0.9, p < 0.00001 and 34.0 ± 7.8 vs. 64.3 ± 8.7, p < 0.0001, respectively), whereas there was no reduction in the consumption of opioids in terms of MME (3 (0-16) vs. 5 (0-8.75), p = 0.1003).
    Conclusions: Rescue therapy with 10 kHz stimulation could be an important strategy to avoid SCS explant in both patients non-responsive during trial or experiencing a loss of efficacy during the years with other waveforms.
    Language English
    Publishing date 2024-04-01
    Publishing country United States
    Document type Journal Article
    ZDB-ID 2151272-3
    ISSN 1533-2500 ; 1530-7085
    ISSN (online) 1533-2500
    ISSN 1530-7085
    DOI 10.1111/papr.13369
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  3. Article ; Online: The physics of particle formation and deposition during breathing.

    Morawska, Lidia / Buonanno, Giorgio

    Nature reviews. Physics

    2021  Volume 3, Issue 5, Page(s) 300–301

    Abstract: ... particles that may contain pathogens. Lidia Morawska and Giorgio Buonanno explain how physics advances are ...

    Abstract In every breath, humans take in particles that may be deposited on the respiratory tract and exhale particles that may contain pathogens. Lidia Morawska and Giorgio Buonanno explain how physics advances are needed to understand these processes.
    Language English
    Publishing date 2021-03-23
    Publishing country England
    Document type Journal Article
    ISSN 2522-5820
    ISSN (online) 2522-5820
    DOI 10.1038/s42254-021-00307-4
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  4. Article: Spectral Methods for Response Enhancement of Microwave Resonant Sensors in Continuous Non-Invasive Blood Glucose Monitoring.

    Buonanno, Giovanni / Brancaccio, Adriana / Costanzo, Sandra / Solimene, Raffaele

    Bioengineering (Basel, Switzerland)

    2022  Volume 9, Issue 4

    Abstract: In this paper, the performance of three recent algorithms for the frequency-response enhancement of microwave resonant sensors are compared. The first one, a single-step algorithm, is based on a couple of direct-inverse Fourier transforms, giving a ... ...

    Abstract In this paper, the performance of three recent algorithms for the frequency-response enhancement of microwave resonant sensors are compared. The first one, a single-step algorithm, is based on a couple of direct-inverse Fourier transforms, giving a densely sampled response as a result. The second algorithm exploits an iterative procedure to progressively restricts the frequency response. The final one is based on the super-resolution MUSIC algorithm. The comparison is carried out through a Monte Carlo analysis. In particular, synthetic signals are firstly exploited to mimic the frequency response of a resonant microwave sensor. Then, experimental data collected from water-glucose solutions are adopted as validation test for potential applications in noninvasive blood-glucose monitoring.
    Language English
    Publishing date 2022-04-04
    Publishing country Switzerland
    Document type Journal Article
    ZDB-ID 2746191-9
    ISSN 2306-5354
    ISSN 2306-5354
    DOI 10.3390/bioengineering9040156
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  5. Article ; Online: Increasing ventilation reduces SARS-CoV-2 airborne transmission in schools: A retrospective cohort study in Italy's Marche region.

    Buonanno, Giorgio / Ricolfi, Luca / Morawska, Lidia / Stabile, Luca

    Frontiers in public health

    2022  Volume 10, Page(s) 1087087

    Abstract: Introduction: While increasing the ventilation rate is an important measure to remove inhalable virus-laden respiratory particles and lower the risk of infection, direct validation in schools with population-based studies is far from definitive.: ... ...

    Abstract Introduction: While increasing the ventilation rate is an important measure to remove inhalable virus-laden respiratory particles and lower the risk of infection, direct validation in schools with population-based studies is far from definitive.
    Methods: We investigated the strength of association between ventilation and SARS-CoV-2 transmission reported among the students of Italy's Marche region in more than 10,000 classrooms, of which 316 were equipped with mechanical ventilation. We used ordinary and logistic regression models to explore the relative risk associated with the exposure of students in classrooms.
    Results and discussion: For classrooms equipped with mechanical ventilation systems, the relative risk of infection of students decreased at least by 74% compared with a classroom with only natural ventilation, reaching values of at least 80% for ventilation rates >10 L s
    MeSH term(s) Humans ; SARS-CoV-2 ; COVID-19/epidemiology ; Retrospective Studies ; Respiratory Aerosols and Droplets ; Schools ; Italy/epidemiology
    Language English
    Publishing date 2022-12-09
    Publishing country Switzerland
    Document type Journal Article
    ZDB-ID 2711781-9
    ISSN 2296-2565 ; 2296-2565
    ISSN (online) 2296-2565
    ISSN 2296-2565
    DOI 10.3389/fpubh.2022.1087087
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  6. Article ; Online: The physics of respiratory particle generation, fate in the air, and inhalation.

    Morawska, Lidia / Buonanno, Giorgio / Mikszewski, Alex / Stabile, Luca

    Nature reviews. Physics

    2022  Volume 4, Issue 11, Page(s) 723–734

    Abstract: Given that breathing is one of the most fundamental physiological functions, there is an urgent need to broaden our understanding of the fluid dynamics that governs it. There would be many benefits from doing so, including a better assessment of ... ...

    Abstract Given that breathing is one of the most fundamental physiological functions, there is an urgent need to broaden our understanding of the fluid dynamics that governs it. There would be many benefits from doing so, including a better assessment of respiratory health, a basis for more precise delivery of pharmaceutical drugs for treatment, and the understanding and potential minimization of respiratory infection transmission. We review the physics of particle generation in the respiratory tract, the fate of these particles in the air on exhalation and the physics of particle inhalation. The main focus is on evidence from experimental studies. We conclude that although there is qualitative understanding of the generation of particles in the respiratory tract, a basic quantitative knowledge of the characteristics of the particles emitted during respiratory activities and their fate after emission, and a theoretical understanding of particle deposition during inhalation, nevertheless the general understanding of the entire process is rudimentary, and many open questions remain.
    Language English
    Publishing date 2022-08-31
    Publishing country England
    Document type Journal Article ; Review
    ISSN 2522-5820
    ISSN (online) 2522-5820
    DOI 10.1038/s42254-022-00506-7
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  7. Article ; Online: Machine Learning Approach to Quadratic Programming-Based Microwave Imaging for Breast Cancer Detection.

    Costanzo, Sandra / Flores, Alexandra / Buonanno, Giovanni

    Sensors (Basel, Switzerland)

    2022  Volume 22, Issue 11

    Abstract: In this work, a novel technique is proposed that combines the Born iterative method, based on a quadratic programming approach, with convolutional neural networks to solve the ill-framed inverse problem coming from microwave imaging formulation in breast ...

    Abstract In this work, a novel technique is proposed that combines the Born iterative method, based on a quadratic programming approach, with convolutional neural networks to solve the ill-framed inverse problem coming from microwave imaging formulation in breast cancer detection. The aim is to accurately recover the permittivity of breast phantoms, these typically being strong dielectric scatterers, from the measured scattering data. Several tests were carried out, using a circular imaging configuration and breast models, to evaluate the performance of the proposed scheme, showing that the application of convolutional neural networks allows clinicians to considerably reduce the reconstruction time with an accuracy that exceeds 90% in all the performed validations.
    MeSH term(s) Algorithms ; Breast Neoplasms/diagnostic imaging ; Female ; Humans ; Machine Learning ; Microwave Imaging ; Phantoms, Imaging
    Language English
    Publishing date 2022-05-29
    Publishing country Switzerland
    Document type Journal Article
    ZDB-ID 2052857-7
    ISSN 1424-8220 ; 1424-8220
    ISSN (online) 1424-8220
    ISSN 1424-8220
    DOI 10.3390/s22114122
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  8. Article ; Online: Escalation to high-flow nasal cannula oxygen in hematological malignancy: the right choice at the right moment?

    Buonanno, Pasquale / Servillo, Giuseppe / Esquinas, Antonio Matias

    Annals of hematology

    2022  Volume 102, Issue 1, Page(s) 221–222

    MeSH term(s) Humans ; Oxygen ; Cannula ; Intensive Care Units ; Hematologic Neoplasms/therapy ; Respiratory Insufficiency
    Chemical Substances Oxygen (S88TT14065)
    Language English
    Publishing date 2022-11-09
    Publishing country Germany
    Document type Letter ; Comment
    ZDB-ID 1064950-5
    ISSN 1432-0584 ; 0939-5555 ; 0945-8077
    ISSN (online) 1432-0584
    ISSN 0939-5555 ; 0945-8077
    DOI 10.1007/s00277-022-05020-5
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  9. Article ; Online: Sub-micron particle number emission from residential heating systems: A comparison between conventional and condensing boilers fueled by natural gas and liquid petroleum gas, and pellet stoves.

    Caracci, Elisa / Canale, Laura / Buonanno, Giorgio / Stabile, Luca

    The Science of the total environment

    2022  Volume 827, Page(s) 154288

    Abstract: Pollutant emissions from residential heating systems represent a main concern in terms of outdoor air quality. Differently from other pollutants, sub-micron particle emission from heating systems has not yet been exhaustively characterized by the ... ...

    Abstract Pollutant emissions from residential heating systems represent a main concern in terms of outdoor air quality. Differently from other pollutants, sub-micron particle emission from heating systems has not yet been exhaustively characterized by the scientific literature, with limited data available, in particular, for gas-fueled boilers. In the present paper, an experimental campaign to measure the sub-micron particle number concentrations and distributions at the stack of different automatically-fed small-scale heating systems (conventional and condensing boilers fueled by natural gas and liquid petroleum gas, and pellet stoves) was performed. Based on the measured concentrations, corresponding emission rates and emission factors were also estimated. The results of the experimental campaign revealed that the highest concentrations were measured for pellet stoves (median value >10
    MeSH term(s) Air Pollutants/analysis ; Air Pollution/analysis ; Environmental Pollutants ; Heating ; Natural Gas ; Particulate Matter/analysis ; Petroleum
    Chemical Substances Air Pollutants ; Environmental Pollutants ; Natural Gas ; Particulate Matter ; Petroleum
    Language English
    Publishing date 2022-03-03
    Publishing country Netherlands
    Document type Journal Article
    ZDB-ID 121506-1
    ISSN 1879-1026 ; 0048-9697
    ISSN (online) 1879-1026
    ISSN 0048-9697
    DOI 10.1016/j.scitotenv.2022.154288
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  10. Article ; Online: The vaccination threshold for SARS-CoV-2 depends on the indoor setting and room ventilation.

    Mikszewski, A / Stabile, L / Buonanno, G / Morawska, L

    BMC infectious diseases

    2021  Volume 21, Issue 1, Page(s) 1193

    Abstract: Background: Effective vaccines are now available for SARS-CoV-2 in the 2nd year of the COVID-19 pandemic, but there remains significant uncertainty surrounding the necessary vaccination rate to safely lift occupancy controls in public buildings and ... ...

    Abstract Background: Effective vaccines are now available for SARS-CoV-2 in the 2nd year of the COVID-19 pandemic, but there remains significant uncertainty surrounding the necessary vaccination rate to safely lift occupancy controls in public buildings and return to pre-pandemic norms. The aim of this paper is to estimate setting-specific vaccination thresholds for SARS-CoV-2 to prevent sustained community transmission using classical principles of airborne contagion modeling. We calculated the airborne infection risk in three settings, a classroom, prison cell block, and restaurant, at typical ventilation rates, and then the expected number of infections resulting from this risk at varying percentages of occupant immunity.
    Results: We estimate the setting-specific immunity threshold for control of wild-type SARS-CoV-2 to range from a low of 40% for a mechanically ventilation classroom to a high of 85% for a naturally ventilated restaurant.
    Conclusions: If vaccination rates are limited to a theoretical minimum of approximately two-thirds of the population, enhanced ventilation above minimum standards for acceptable air quality is needed to reduce the frequency and severity of SARS-CoV-2 superspreading events in high-risk indoor environments.
    MeSH term(s) Air Pollution, Indoor ; COVID-19 ; Humans ; Pandemics ; SARS-CoV-2 ; Vaccination ; Ventilation
    Language English
    Publishing date 2021-11-26
    Publishing country England
    Document type Journal Article
    ZDB-ID 2041550-3
    ISSN 1471-2334 ; 1471-2334
    ISSN (online) 1471-2334
    ISSN 1471-2334
    DOI 10.1186/s12879-021-06884-0
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