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Author |
Title |
Year |
Publication |
Volume |
Times cited |
Additional Links |
Links |
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Adamovich, I.; Agarwal, S.; Ahedo, E.; Alves, L.L.; Baalrud, S.; Babaeva, N.; Bogaerts, A.; Bourdon, A.; Bruggeman, P.J.; Canal, C.; Choi, E.H.; Coulombe, S.; Donkó, Z.; Graves, D.B.; Hamaguchi, S.; Hegemann, D.; Hori, M.; Kim, H.-h; Kroesen, G.M.W.; Kushner, M.J.; Laricchiuta, A.; Li, X.; Magin, T.E.; Mededovic Thagard, S.; Miller, V.; Murphy, A.B.; Oehrlein, G.S.; Puac, N.; Sankaran, R.M.; Samukawa, S.; Shiratani, M.; Šimek, M.; Tarasenko, N.; Terashima, K.; Thomas Jr, E.; Trieschmann, J.; Tsikata, S.; Turner, M.M.; van der Walt, I.J.; van de Sanden, M.C.M.; von Woedtke, T. |
The 2022 Plasma Roadmap: low temperature plasma science and technology |
2022 |
Journal Of Physics D-Applied Physics |
55 |
|
UA library record; WoS full record; WoS citing articles |
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Laroussi, M.; Bekeschus, S.; Keidar, M.; Bogaerts, A.; Fridman, A.; Lu, X.; Ostrikov, K.; Hori, M.; Stapelmann, K.; Miller, V.; Reuter, S.; Laux, C.; Mesbah, A.; Walsh, J.; Jiang, C.; Thagard, S.M.; Tanaka, H.; Liu, D.; Yan, D.; Yusupov, M. |
Low-Temperature Plasma for Biology, Hygiene, and Medicine: Perspective and Roadmap |
2022 |
IEEE transactions on radiation and plasma medical sciences |
6 |
|
UA library record; WoS full record; WoS citing articles |
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Katiyar, K.S.; Lin, A.; Fridman, A.; Keating, C.E.; Cullen, D.K.; Miller, V. |
Non-thermal plasma accelerates astrocyte regrowth and neurite regeneration following physical trauma in vitro |
2019 |
Applied Sciences |
9 |
2 |
UA library record; WoS full record; WoS citing articles |
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Khalili, M.; Daniels, L.; Lin, A.; Krebs, F.C.; Snook, A.E.; Bekeschus, S.; Bownel, W.B.; Miller, V. |
Non-thermal plasma-induced immunogenic cell death in cancer |
2019 |
Journal of physics: D: applied physics |
52 |
6 |
UA library record; WoS full record; WoS citing articles |
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Brandenburg, R.; Bogaerts, A.; Bongers, W.; Fridman, A.; Fridman, G.; Locke, B.R.; Miller, V.; Reuter, S.; Schiorlin, M.; Verreycken, T.; Ostrikov, K.K. |
White paper on the future of plasma science in environment, for gas conversion and agriculture |
2019 |
Plasma processes and polymers |
16 |
19 |
UA library record; WoS full record; WoS citing articles |
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Fridman, A.; Lin, A.; Miller, V.; Bekeschus, S.; Wende, K.; Weltmann, K.-D. |
The plasma treatment unit : an attempt to standardize cold plasma treatment for defined biological effects |
2018 |
Plasma medicine |
8 |
|
UA library record |
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Lin, A.G.; Xiang, B.; Merlino, D.J.; Baybutt, T.R.; Sahu, J.; Fridman, A.; Snook, A.E.; Miller, V. |
Non-thermal plasma induces immunogenic cell death in vivo in murine CT26 colorectal tumors |
2018 |
Oncoimmunology |
7 |
28 |
UA library record; WoS full record; WoS citing articles |
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Bekeschus, S.; Lin, A.; Fridman, A.; Wende, K.; Weltmann, K.-D.; Miller, V. |
A comparison of floating-electrode DBD and kINPen jet : plasma parameters to achieve similar growth reduction in colon cancer cells under standardized conditions |
2018 |
Plasma chemistry and plasma processing |
38 |
12 |
UA library record; WoS full record; WoS citing articles |
|
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Ranieri, P.; Shrivastav, R.; Wang, M.; Lin, A.; Fridman, G.; Fridman, A.A.; Han, L.-H.; Miller, V. |
Nanosecond-pulsed dielectric barrier dischargeinduced antitumor effects propagate through depth of tissue via intracellular signaling |
2017 |
Plasma medicine |
7 |
|
UA library record |
|
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Lin, A.; Truong, B.; Fridman, G.; Friedman, A.A.; Miller, V. |
Immune cells enhance selectivity of nanosecond-pulsed DBD plasma against tumor cells |
2017 |
Plasma medicine |
7 |
|
UA library record |
|
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Lin, A.; Truong, B.; Patel, S.; Kaushik, N.; Choi, E.H.; Fridman, G.; Fridman, A.; Miller, V. |
Nanosecond-pulsed DBD plasma-generated reactive oxygen species trigger immunogenic cell death in A549 lung carcinoma cells through intracellular oxidative stress |
2017 |
International journal of molecular sciences |
18 |
|
UA library record; WoS full record; WoS citing articles |
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Truong, B.; Siegert, K.; Lin, A.; Miller, V.; Krebs, F.C. |
Apical application of nanosecond-pulsed dielectric barrier discharge plasma causes the basolateral release of adenosine triphosphate as a damage-associated molecular pattern from polarized HaCaT cells |
2017 |
Plasma medicine |
7 |
|
UA library record |
|
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Friedman, P.C.; Miller, V.; Fridman, G.; Lin, A.; Fridman, A. |
Successful treatment of actinic keratoses using nonthermal atmospheric pressure plasma : a case series |
2017 |
Journal of the American Academy of Dermatology |
76 |
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UA library record; WoS full record; WoS citing articles |
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