Sara Godena | Agricultural and Biological Sciences | Innovative Research Award

Innovative Research Award

Sara Godena
Institute of Agriculture and Tourism, Croatia

Sara Godena
Affiliation Institute of Agriculture and Tourism
Country Croatia
Scopus ID 36760599700
Documents 36
Citations 388
h-index 11
Subject Area Agricultural and Biological Sciences
Event International Soil Scientist Awards
ORCID 0000-0003-1937-4611

Sara Godena is a researcher affiliated with the Institute of Agriculture and Tourism in Croatia whose documented scholarly activity falls within Agricultural and Biological Sciences. Her research profile includes plant health, olive production, biological control, plant-derived antimicrobial agents, and sustainable approaches to agricultural disease management. Her reported research record comprises 36 documents, 388 citations, and an h-index of 11. [1]

Abstract

Sara Godena’s research portfolio demonstrates a focus on practical agricultural and plant-health challenges, particularly those affecting olive cultivation. Recent studies address olive-associated fungal and bacterial pathogens, essential oils, plant-based agents, olive mill wastewater, pathogen diversity, and varietal susceptibility. These themes connect biological research with environmentally conscious disease-management strategies and contribute to the development of alternatives to conventional chemical control. [2]

Keywords

Olive pathology; plant health; biological control; essential oils; plant-based agents; Botryosphaeriaceae; Pseudomonas savastanoi; olive mill wastewater; sustainable agriculture; agricultural microbiology.

Introduction

Olive production is affected by diverse fungal and bacterial organisms that can influence plant health and productivity. Godena’s recent publications investigate these challenges through pathogen characterization, antimicrobial evaluation, varietal assessment, and exploration of plant-derived or agricultural by-product-based interventions. Such research is relevant to integrated plant disease management and the broader objective of reducing reliance on conventional inputs. [3]

Research Profile

The research profile combines plant pathology, microbiology, agricultural biotechnology, and sustainable crop protection. Published work examines both pathogen biology and potential control measures, creating a research pathway from identification and characterization toward application-oriented disease management.

Research Contributions

  • Assessment of olive-associated Botryosphaeriaceae diversity and pathogenicity in Istria, Croatia. [5]
  • Investigation of plant-based agents and essential oils for antimicrobial and antifungal activity. [3]
  • Evaluation of olive mill wastewater as a potential source of bioactive compounds for plant disease management. [2]

Publications

Selected recent publications include studies in Horticulturae, Agronomy, Agriculture, Plants, and Microorganisms. The 2025 Horticulturae article examines physicochemical characteristics and antifungal activity of olive mill wastewaters against Botryosphaeriaceae, while related studies investigate plant-based growth promoters, green bactericides, essential oils, fungal pathogens, and bacterial disease susceptibility. [2] [3] [4] [5] [6]

Research Impact

The reported 388 citations and h-index of 11 indicate measurable scholarly visibility within the researcher’s indexed publication record. [1] The thematic continuity of the publications also demonstrates relevance to sustainable crop protection, especially where biological activity, plant-derived compounds, and agricultural residues can be evaluated as components of integrated management.

Award Suitability

The documented publication record, citation profile, and research emphasis provide a scholarly basis for consideration for the Innovative Research Award associated with the International Soil Scientist Awards. Particular relevance arises from research connecting agricultural production with plant protection and environmentally oriented approaches to pathogen management. Award consideration should be based on the complete nomination dossier and independent evaluation criteria.

Conclusion

Sara Godena’s research profile reflects sustained engagement with agricultural and biological sciences, with notable emphasis on olive health, plant pathogens, biological activity, and sustainable crop-protection approaches. Her indexed research output and recent publications provide a coherent foundation for academic recognition in innovative agricultural research.

References

  1. Elsevier. (n.d.). Scopus author details: Sara Godena, Author ID 36760599700. Scopus.
    https://www.scopus.com/pages/authors/36760599700
  2. MDPI. (2025). Integrated Analysis of Olive Mill Wastewaters: Physicochemical Profiling, Antifungal Activity, and Biocontrol Potential Against Botryosphaeriaceae. Horticulturae, 11(7), 819. DOI: 10.3390/horticulturae11070819
  3. MDPI. (2025). Potential of Plant-Based Agents as Next-Generation Plant Growth-Promotors and Green Bactericides Against Pseudomonas savastanoi pv. savastanoi. Agronomy, 15(4), 819. DOI: 10.3390/agronomy15040819
  4. MDPI. (2025). Antifungal Efficacy of Essential Oils and Their Predominant Components Against Olive Fungal Pathogens. Agriculture, 15(3), 340. DOI: 10.3390/agriculture15030340
  5. MDPI. (2024). Diversity and Pathogenicity of Botryosphaeriaceae Species Isolated from Olives in Istria, Croatia, and Evaluation of Varietal Resistance. Plants, 13(13), 1813. DOI: 10.3390/plants13131813
  6. MDPI. (2024). Varietal Susceptibility of Olive to Pseudomonas savastanoi pv. savastanoi and the Antibacterial Potential of Plant-Based Agents. Microorganisms, 12(7), 1301. DOI: 10.3390/microorganisms12071301

Melih Altay | Agricultural | Young Researcher Award

Mr. Melih Altay | Agricultural | Young Researcher Award

Hacettepe University | Turkey

Melih Altay is a researcher in geomatics engineering with a strong specialization in photogrammetry, artificial intelligence, and remote sensing. His research is centered on integrating deep learning and machine learning methods with multi-source Earth observation data to address complex geospatial problems. He has developed and applied advanced AI-based segmentation, object detection, and classification approaches for analyzing optical and SAR satellite imagery, with particular emphasis on forest fire assessment, water surface detection, and agricultural land monitoring. His work contributes to improving the accuracy and automation of geospatial data extraction from high-resolution satellite platforms such as PlanetScope and Sentinel series. His research demonstrates strong interdisciplinary integration of GIS, remote sensing, and artificial intelligence, offering scalable solutions for environmental monitoring, land-use analysis, and spatial decision support. Through peer-reviewed conference publications, he has contributed comparative evaluations of deep learning architectures and innovative workflows that enhance geospatial analysis efficiency and reliability. Overall, his work reflects a forward-looking approach to geomatics engineering, emphasizing intelligent automation, high-resolution spatial analytics, and the practical application of AI technologies in Earth observation and digital twin systems.

View Orcid Profile


Phenology aware agricultural boundary extraction using segment anything model and planet scope imagery (zero shot learning approach)– Advances in Space Research

Wei Dong | Agricultural | Research Excellence Award

Dr. Wei Dong | Agricultural | Research Excellence Award

Northwest Agriculture and Forestry University | China 

Dong Wei is an accomplished academic and researcher specializing in hydraulic machinery and hydrodynamics, with a strong record of scientific leadership and technical innovation. He serves as an Associate Professor and Doctoral Supervisor at Northwest A&F University and is actively engaged in national and professional service related to hydropower, pumping systems, and energy conversion equipment. His research contributions span fundamental theory, engineering applications, and standardization, reflecting both academic depth and practical relevance. He has led 20 competitive research and industry-supported projects at national, provincial, and enterprise levels, demonstrating sustained research capacity and management expertise. His scholarly output includes 53 research documents, with 60 published papers overall, of which 40 are indexed in SCI/EI databases and 10 are recognized as top-tier Q1 publications. His work has attracted significant academic attention, accumulating 443 citations across 364 citing documents, and he maintains an h-index of 12, indicating consistent research impact. In addition to publications, he holds 10 authorized patents, has edited or co-edited a specialized textbook, and has contributed to the formulation of two national technical standards, underscoring his role in advancing both scientific knowledge and engineering practice in the field of hydraulic and hydropower equipment.

Citation Metrics (Scopus)

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Citations
445

Documents
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12

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View Scopus Profile


Research on Cavitation Energy Characteristics of a Mixed-Flow Pump Based on Entropy Production Theory and Multi-Resolution Dynamic Mode Decomposition (MRDMD)


– International Journal of Heat and Mass Transfer, 2026


Analysis of Transient Entropy Generation Loss Mechanisms under Variable-Speed Operating Conditions of a Pump-Turbine


– Transactions of the Chinese Society for Agricultural Machinery (Nongye Jixie Xuebao), 2025


Multi-Objective Optimization of Control Strategies for Variable-Speed Regulation in Pump Mode of Pump-Turbines


– Sustainable Energy Technologies and Assessments, 2025


Multiscale Pressure Fluctuation Characteristics and Vortex–Enthalpy Interaction in a Cavitating Mixed-Flow Pump


– Physics of Fluids, 2025


Optimization of Centrifugal Pump Performance and Excitation Force Using Machine Learning and Enhanced NSGA-III


– Engineering Applications of Artificial Intelligence, 2025

Madan Sharma | Agricultural | Editorial Board Member

Prof. Dr. Madan Sharma | Agricultural | Editorial Board Member

Prof. Dr. Madan Sharma | Manipal University | India

Prof. Dr. Madan Sharma has established a significant scientific presence through impactful research spanning plant biotechnology, nanobiotechnology, medicinal plant conservation, and sustainable bioscience innovation. His scholarly influence is reflected in 757 citations from 717 citing documents, demonstrating broad recognition and applicability of his findings across diverse research communities. With a portfolio of 62 peer-reviewed documents, his work has advanced micropropagation techniques, optimized in vitro regeneration systems, explored endophytic fungal diversity, and contributed to the biosynthesis of eco-friendly nanoparticles with antimicrobial and therapeutic potential. His h-index of 14 underscores the consistent relevance and academic value of his contributions, which have shaped new directions in plant tissue culture, phytochemical enhancement, biogenic nanomaterial development, and bioresource conservation. Prof. Dr. Madan Sharma’s research further integrates molecular, biochemical and nanotechnological approaches to address challenges related to medicinal plant preservation, sustainable agricultural practices, and innovative biological solutions for health and environmental applications. His cumulative scientific output reflects a commitment to advancing knowledge that supports societal benefit, industry innovation, and the progressive development of biosciences through interdisciplinary and forward-looking research.

Profile: Scopus

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