Most of our work has resulted in scholarly publications. On this page you can review our publications to get an idea about our work.
Figure 2 ML analysis of Peniophorella, based on dataset of ITS + nLSU. ML bootstrap values equal to or higher than 60% and Bayesian posterior probabilities values equal to or higher than 0.90 are show… Figure 1 ML analysis of Botryobasidium, based on dataset of ITS + nLSU. ML bootstrap values equal to or higher than 60% and Bayesian posterior probabilities values equal to or higher than 0.90 are sho… Figures 55-61 Syntomopus turanicus Dzhanokmen, 2000, not type male (55–61) 55 body, lateral view 56 fore wing 57 body, dorsal view 58 head, frontal view 59 antenna 60 mesoscutellum, propodeum and peti… Figures 45-54 Syntomopus oviceps Thomson, 1878, not type female (45–50), not type male (51–54) 45, 53 body, lateral view 46, 51 head, frontal view 47 fore wing 48, 52 head, dorsal view 49 antenna 50, … Figures 36-44 Syntomopus incurvus Walker, 1833, not type female (36–39), lectotype female (40, 41), not type male (42–44) 36, 43 body, lateral view 37 head, frontal view 38 head, dorsal view 39 body, … Figures 26-35 Syntomopus thoracicus Walker, 1833, lectotype female (Syntomopus incisus Thomson, 1878, syn. nov.) (26), not type female (27–31), not type male (32), lectotype male (Syntomopus thoracicu… Figures 20-25 Syntomopus fuscipes Huang, 1991, holotype male (20), paratype male (21–25) 20 body, dorsolateral view 21 mesosoma, dorsal view 22 head, frontal view 23 head, dorsal view 24 antenna 25 he… Figures 11-19 Syntomopus dzhanokmenia, sp. nov., holotype female (11–16), paratype male (17–19) 11, 18 body, lateral view 12 head, frontal view 13, 17 fore wing 14 head, dorsal view 15 antenna 16, 19 … Figures 1-10 Syntomopus agromyzae Hedqvist, 1973, paratype female (1–5), paratype male (6–10) 1, 8 body, dorsal view 2, 6 fore wing 3, 7 head, dorsal view 4, 10 metasoma, dorsal view 5 mesosoma, dorsa… Figure 5 Aspilota chanka Belokobylskij, 2007, ♀. A. Habitus, lateral view; B. Antennae; C. Wings; D. Head, dorsal view; E. Head, frontal view; F. Mesosoma, lateral view; G. Mesosoma, dorsal view; H. F…Figure 2 from: Luo K-Y, Dai Y-C, Yuan Y, Wu Y-D (2026) Three new species of Cantharellales and Hymenochaetales from Pinus massoniana in China. MycoKeys 137: 273-297. https://doi.org/10.3897/mycokeys.137.203862
Figure 1 from: Luo K-Y, Dai Y-C, Yuan Y, Wu Y-D (2026) Three new species of Cantharellales and Hymenochaetales from Pinus massoniana in China. MycoKeys 137: 273-297. https://doi.org/10.3897/mycokeys.137.203862
Figures 55-61 from: Li Q, Li X, Yin H, Xiao H, Tselikh EV (2026) Review of the Palearctic Syntomopus Walker, 1833 (Hymenoptera, Pteromalidae), with description of new species. Journal of Hymenoptera Research 99: 833-855. https://doi.org/10.3897/jhr.99.186997
Figures 45-54 from: Li Q, Li X, Yin H, Xiao H, Tselikh EV (2026) Review of the Palearctic Syntomopus Walker, 1833 (Hymenoptera, Pteromalidae), with description of new species. Journal of Hymenoptera Research 99: 833-855. https://doi.org/10.3897/jhr.99.186997
Figures 36-44 from: Li Q, Li X, Yin H, Xiao H, Tselikh EV (2026) Review of the Palearctic Syntomopus Walker, 1833 (Hymenoptera, Pteromalidae), with description of new species. Journal of Hymenoptera Research 99: 833-855. https://doi.org/10.3897/jhr.99.186997
Figures 26-35 from: Li Q, Li X, Yin H, Xiao H, Tselikh EV (2026) Review of the Palearctic Syntomopus Walker, 1833 (Hymenoptera, Pteromalidae), with description of new species. Journal of Hymenoptera Research 99: 833-855. https://doi.org/10.3897/jhr.99.186997
Figures 20-25 from: Li Q, Li X, Yin H, Xiao H, Tselikh EV (2026) Review of the Palearctic Syntomopus Walker, 1833 (Hymenoptera, Pteromalidae), with description of new species. Journal of Hymenoptera Research 99: 833-855. https://doi.org/10.3897/jhr.99.186997
Figures 11-19 from: Li Q, Li X, Yin H, Xiao H, Tselikh EV (2026) Review of the Palearctic Syntomopus Walker, 1833 (Hymenoptera, Pteromalidae), with description of new species. Journal of Hymenoptera Research 99: 833-855. https://doi.org/10.3897/jhr.99.186997
Figures 1-10 from: Li Q, Li X, Yin H, Xiao H, Tselikh EV (2026) Review of the Palearctic Syntomopus Walker, 1833 (Hymenoptera, Pteromalidae), with description of new species. Journal of Hymenoptera Research 99: 833-855. https://doi.org/10.3897/jhr.99.186997
Figure 5 from: Sohn J-H, van Achterberg C, Kim S, Kim Y, Kim H (2026) Three new species and two new records of the genus Aspilota Foerster (Hymenoptera, Braconidae, Alysiinae) from South Korea. Journal of Hymenoptera Research 99: 857-875. https://doi.org/10.3897/jhr.99.199506
On Losses, Pauses, Jumps and the Wideband E-Model – IEEE Xplore Document
There is an increasing interest in upgrading the EModel, a parametric tool for speech quality estimation, to the wideband and super-wideband contexts. The
NUAV – a testbed for developing autonomous Unmanned Aerial Vehicles – IEEE Xplore Document
Contemporary models of Unmanned Aerial Vehicles (UAVs) are largely developed using simulators. In a typical scheme, a flight simulator is dovetailed with a
NUAV – a testbed for developing autonomous Unmanned Aerial Vehicles
Simulators as Drivers of Cutting Edge Research – IEEE Xplore Document
Undertaking engineering research can be compounding for beginning graduate students and thwarting even for seasoned researchers. With a wealth of academic
Simulators as Drivers of Cutting Edge Research
Evolutionary speech quality estimation in VoIP
A Methodology for Deriving VoIP Equipment Impairment Factors for a Mixed NB/WB Context
Real-Time, Non-intrusive Speech Quality Estimation: A Signal-Based Mod
Real-Time, Non-intrusive Evaluation of VoIP
VoIP speech quality estimation in a mixed context with genetic programming
An Evolutionary Approach to Speech Quality Estimation
Real-Time Non-Intrusive VoIP Evaluation Using Second Generation Network Processor
Non-intrusive quality evaluation of VoIP using genetic programming
