Our Work

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 4 from: Wei G-Y, Li J-Y, Chen R, Nong Y, Hu Q-M, Li Y-J, Ji X-Y, Xu C-G, Nong Y-K (2026) Ophiorrhiza xinchengensis (Rubiaceae), a new species from Guangxi, China. PhytoKeys 278: 1-14. https://doi.org/10.3897/phytokeys.278.194094

July, 2026 • Figure
Wei, Gui-Yuan, Li, Jin-Yue, Chen, Rong, Nong, You, Hu, Qi-Min et al.

Figure 4 Type specimen of Ophiorrhiza xinchengensis Y.Nong & G.Y.Wei.

Karstnew speciesOphiorrhizaSpiradiclistaxonomy

Figure 3 from: Wei G-Y, Li J-Y, Chen R, Nong Y, Hu Q-M, Li Y-J, Ji X-Y, Xu C-G, Nong Y-K (2026) Ophiorrhiza xinchengensis (Rubiaceae), a new species from Guangxi, China. PhytoKeys 278: 1-14. https://doi.org/10.3897/phytokeys.278.194094

July, 2026 • Figure
Wei, Gui-Yuan, Li, Jin-Yue, Chen, Rong, Nong, You, Hu, Qi-Min et al.

Figure 3 Ophiorrhiza xinchengensis Y.Nong & G.Y.Wei. A. Habitat; B, C. Flowering plant; D. Stem, showing the linear stipules; E. Inflorescences; F. Fruiting plant; G. Dissected brevistylous flower…

Karstnew speciesOphiorrhizaSpiradiclistaxonomy

Figure 2 from: Wei G-Y, Li J-Y, Chen R, Nong Y, Hu Q-M, Li Y-J, Ji X-Y, Xu C-G, Nong Y-K (2026) Ophiorrhiza xinchengensis (Rubiaceae), a new species from Guangxi, China. PhytoKeys 278: 1-14. https://doi.org/10.3897/phytokeys.278.194094

July, 2026 • Figure
Wei, Gui-Yuan, Li, Jin-Yue, Chen, Rong, Nong, You, Hu, Qi-Min et al.

Figure 2 Line drawing of Ophiorrhiza xinchengensis Y.Nong & G.Y.Wei. A. Flowering branch; B. Longistylous flower (lateral view); C. Capsules (lateral view); D. Dissected longistylous flower (showi…

Karstnew speciesOphiorrhizaSpiradiclistaxonomy

Figure 1 from: Wei G-Y, Li J-Y, Chen R, Nong Y, Hu Q-M, Li Y-J, Ji X-Y, Xu C-G, Nong Y-K (2026) Ophiorrhiza xinchengensis (Rubiaceae), a new species from Guangxi, China. PhytoKeys 278: 1-14. https://doi.org/10.3897/phytokeys.278.194094

July, 2026 • Figure
Wei, Gui-Yuan, Li, Jin-Yue, Chen, Rong, Nong, You, Hu, Qi-Min et al.

Figure 1 Maximum Likelihood tree (ML) and Bayesian phylogenetic trees (BI) from analysis of the ITS sequence. The posterior probabilities (PP) of BI and bootstrap percentages (BS) of ML are listed at …

Karstnew speciesOphiorrhizaSpiradiclistaxonomy

Figure 5 from: Li G-L, An M-T, Wu X, Yu J-H, Qiu J, Liu S-F, Tan C-j (2026) Ophiorrhiza saxatilis (Rubiaceae), a new species from Guizhou, China. PhytoKeys 278: 27-37. https://doi.org/10.3897/phytokeys.278.197480

July, 2026 • Figure
Li, Guang-Lin, An, Ming-Tai, Wu, Xu, Yu, Jiang-Hong, Qiu, Jian et al.

Figure 5 Variation in 9 morphological characters (A–I) and principal coordinate analysis (J) of Ophiorrhiza saxatilis and O. lignosa. Specimens information for O lignosa: F. Kingdon-Ward 252 Holotype …

KarstMorphologyNew TaxonOphiorrhizaRubiaceae

Figure 4 from: Li G-L, An M-T, Wu X, Yu J-H, Qiu J, Liu S-F, Tan C-j (2026) Ophiorrhiza saxatilis (Rubiaceae), a new species from Guizhou, China. PhytoKeys 278: 27-37. https://doi.org/10.3897/phytokeys.278.197480

July, 2026 • Figure
Li, Guang-Lin, An, Ming-Tai, Wu, Xu, Yu, Jiang-Hong, Qiu, Jian et al.

Figure 4 Distribution of Ophiorrhiza saxatilis.

KarstMorphologyNew TaxonOphiorrhizaRubiaceae

Figure 3 from: Li G-L, An M-T, Wu X, Yu J-H, Qiu J, Liu S-F, Tan C-j (2026) Ophiorrhiza saxatilis (Rubiaceae), a new species from Guizhou, China. PhytoKeys 278: 27-37. https://doi.org/10.3897/phytokeys.278.197480

July, 2026 • Figure
Li, Guang-Lin, An, Ming-Tai, Wu, Xu, Yu, Jiang-Hong, Qiu, Jian et al.

Figure 3 Ophiorrhiza saxatilis. A, B. Habitat; C. Plant; D. Flowering branch; E. Dissected flowers: long-styled flower (above) and short-styled flower (below); F. Style of long-styled flower; G. Style…

KarstMorphologyNew TaxonOphiorrhizaRubiaceae

Figure 2 from: Li G-L, An M-T, Wu X, Yu J-H, Qiu J, Liu S-F, Tan C-j (2026) Ophiorrhiza saxatilis (Rubiaceae), a new species from Guizhou, China. PhytoKeys 278: 27-37. https://doi.org/10.3897/phytokeys.278.197480

July, 2026 • Figure
Li, Guang-Lin, An, Ming-Tai, Wu, Xu, Yu, Jiang-Hong, Qiu, Jian et al.

Figure 2 Ophiorrhiza saxatilis. A. Flowering branch; B. Infructescence; C. Fruit; D. Bracteoles; E. Adaxial (left) and abaxial (right) leaf surface; F. Lateral view of flower; G. Longitudinally dissec…

KarstMorphologyNew TaxonOphiorrhizaRubiaceae

Figure 1 from: Li G-L, An M-T, Wu X, Yu J-H, Qiu J, Liu S-F, Tan C-j (2026) Ophiorrhiza saxatilis (Rubiaceae), a new species from Guizhou, China. PhytoKeys 278: 27-37. https://doi.org/10.3897/phytokeys.278.197480

July, 2026 • Figure
Li, Guang-Lin, An, Ming-Tai, Wu, Xu, Yu, Jiang-Hong, Qiu, Jian et al.

Figure 1 Holotype of Ophiorrhiza saxatilis.

KarstMorphologyNew TaxonOphiorrhizaRubiaceae

Figure 4 from: Zhang J-S, Du M-H, Zhang L-B, Xu K-W (2026) Phylogenetic placement of two taxonomically controversial South American spleenworts with unusual morphology: Asplenium brasiliense Sw. and Asplenium douglasii Hook. & Grev. (Aspleniaceae). PhytoKeys 278: 15-26. https://doi.org/10.3897/phytokeys.278.198424

July, 2026 • Figure
Zhang, Jing-Shuai, Du, Ming-Hui, Zhang, Li-Bing, Xu, Ke-Wang

Figure 4 Geographic distributions of Asplenium brasiliense and A. douglasii based on examined herbarium specimens from F, FCQ, HOXA, K, LI, MA, MARY, MO, MU, NY, PI, PY, SI, UNILA, USM, UT, and Z+ZT. …

Antigrammafern phylogenyHemidictyumPhyllitisScolopendrium

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

 

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