Songyoung Park | Biology | Innovative Research Award

Innovative Research Award

Songyoung Park
Midwestern University

Songyoung Park
Affiliation Midwestern University
Country United States
Scopus Id 50961330200
Documents 83
Citation 2,635
h-index 33
Subject Area Biology
Event International Popular Scientist Awards

Songyoung Park is a researcher whose publication record encompasses biological and physiological investigations involving skeletal-muscle oxygenation, vascular function, exercise physiology, and tissue perfusion. The documented research record includes recent collaborative studies examining mitochondrial oxygen affinity, muscle oxygenation during exercise, microcirculatory and macrocirculatory responses, vascular reactivity, oxidative stress, and tissue healing. These publications provide a research profile centered on the measurement and interpretation of oxygen-related physiological processes in human and experimental systems. [1][2][3]

Abstract

The Innovative Research Award recognition profile presents Songyoung Park’s documented scholarly activity in Biology, with emphasis on physiological mechanisms associated with oxygen delivery, oxygen utilization, vascular regulation, and tissue responses. The available publication record includes research addressing mitochondrial oxygen affinity in human skeletal muscle using proton magnetic resonance spectroscopy, oxygenation during exercise in peripheral artery disease, foot-temperature responses to walking, endothelial antioxidant regulation, and the relationship between bone and muscle oxygenation in tissue healing. [1][2][3][4][5]

Keywords

Songyoung Park; Biology; skeletal muscle; mitochondrial oxygen affinity; muscle oxygenation; magnetic resonance spectroscopy; exercise physiology; vascular function; microcirculation; oxidative stress; tissue healing; physiological research.

Introduction

Research on oxygen transport and utilization provides a framework for understanding how biological tissues respond to exercise, vascular challenges, metabolic demand, and impaired perfusion. Skeletal muscle is particularly relevant because oxygen availability and mitochondrial utilization are closely connected to oxidative metabolism and functional performance. Recent work involving Park has investigated these processes through complementary experimental and analytical approaches, including magnetic resonance spectroscopy, near-infrared spectroscopy, measures of blood flow, tissue oxygenation, temperature, and vascular reactivity. [1][2][3]

Research Profile

The supplied bibliometric profile records 83 documents, 2,635 citations, and an h-index of 33 under Scopus identifier 50961330200. These indicators describe the quantitative dimensions of the supplied research record and should be interpreted in conjunction with publication type, field, collaboration patterns, citation age, and database coverage. The subject area supplied for this recognition profile is Biology.[1] A 2026 systematic review in Applied Sciences examined muscle oxygenation during exercise in patients with peripheral artery disease and identified near-infrared spectroscopy as a non-invasive method for evaluating muscle oxygenation dynamics. [2]

Research Contributions

The documented research contributions can be grouped into several related areas:

  • Mitochondrial oxygen physiology: The 2026 Journal of Physiology study applied 1H-magnetic resonance spectroscopy of deoxymyoglobin to quantify apparent mitochondrial oxygen affinity in human skeletal muscle in vivo. [1]
  • Exercise-related muscle oxygenation: A systematic review assessed the use of near-infrared spectroscopy for monitoring muscle oxygenation in peripheral artery disease during exercise. [2]
  • Microcirculatory and macrocirculatory physiology: Experimental work examined relationships among leg blood flow, tissue saturation, and foot-temperature changes during walking at different slopes. [3]
  • Vascular oxidative stress: Research published in Free Radical Biology and Medicine examined endothelial Nrf2 and Keap1 signaling in relation to vascular oxidative stress, blood pressure, and vascular reactivity. [4]
  • Tissue healing and oxygenation: Collaborative surgical research considered bone and muscle oxygenation as complementary components in understanding tissue healing in ischemic conditions. [5]

Publications

Selected publications associated with Songyoung Park include the following peer-reviewed works:

  1. Erol, M. E., Matias, A. A., Serviente, C. F., et al., including Park, S.-Y. (2026). In vivo quantification of mitochondrial O2 affinity in human skeletal muscle using 1H-magnetic resonance spectroscopy of deoxy-myoglobin.
  2. Salamifar, Z., Fallahtafti, F., Pipinos, I. I., Anderson, C. P., Park, S.-Y., & Myers, S. A. (2026). Muscle Oxygenation During Exercise in Patients with Peripheral Artery Disease.
  3. Anguiano-Hernandez, J. G., Burnett, J. K., Allen, M. F., et al., including Park, S.-Y. (2026). Macro- and microcirculatory factors affecting foot temperature change during walking. Experimental Physiology.
  4. Dhyani, N., Allen, M. F., Rudebush, T. L., et al., including Park, S.-Y. (2025). Tie2 Cre mediated changes in antioxidant activity modulates blood pressure and vascular reactivity: A role for Nrf2. Free Radical Biology and Medicine.
  5. Tian, Y., Hakim, A. H., Anderson, C. P., et al., including Park, S.-Y. (2025). Insights From Bone and Muscle Oxygenation Toward a More Comprehensive Model of Tissue Healing. Journal of Surgical Research.

Research Impact

The supplied Scopus profile reports 2,635 citations and an h-index of 33 across 83 documents. These bibliometric indicators provide one quantitative description of the visibility of the research record but do not independently measure methodological quality, clinical significance, societal impact, or the contribution of an individual author within multi-author publications.

The recent publications demonstrate several forms of research impact. The mitochondrial oxygen-affinity study contributes an in vivo measurement framework for examining oxygen utilization in human skeletal muscle. [1] The systematic review synthesizes evidence concerning muscle oxygenation assessment in peripheral artery disease, while the experimental walking study relates macro- and microcirculatory measures to changes in foot temperature. [2][3] Additional work examines vascular antioxidant regulation and the role of bone and muscle oxygenation in tissue healing. [4][5]

Award Suitability

The documented research profile provides evidence relevant to an academic recognition category focused on innovative research. In particular, the publication record includes work employing advanced measurement approaches, interdisciplinary collaboration, and physiological investigations spanning mitochondrial oxygen utilization, muscle oxygenation, vascular regulation, and tissue healing. [1][2][4]

Conclusion

Songyoung Park’s supplied research profile reflects sustained scholarly activity in Biology and related physiological disciplines, with a recent publication portfolio focused on oxygen transport and utilization, skeletal-muscle physiology, vascular function, exercise responses, oxidative stress, and tissue healing. The reported Scopus indicators of 83 documents, 2,635 citations, and an h-index of 33 provide quantitative context for the research record, while the cited publications illustrate the breadth of the underlying scientific work. [1][2][3][4][5]

References

  1. Erol, M. E., Matias, A. A., Serviente, C. F., Decker, S. T., Nagarajan, R., Ramadan, S., Le Fur, Y., Park, S.-Y., & Layec, G. (2026). In vivo quantification of mitochondrial O2 affinity in human skeletal muscle using 1H-magnetic resonance spectroscopy of deoxy-myoglobin. The Journal of Physiology, 604(12), 4876–4888.
    DOI: https://doi.org/10.1113/JP290548
  2. Salamifar, Z., Fallahtafti, F., Pipinos, I. I., Anderson, C. P., Park, S.-Y., & Myers, S. A. (2026). Muscle Oxygenation During Exercise in Patients with Peripheral Artery Disease: A Systematic Review. Applied Sciences, 16(9), 4348.
    DOI: https://doi.org/10.3390/app16094348
  3. Anguiano-Hernandez, J. G., Burnett, J. K., Allen, M. F., Anderson, C. P., Takahashi, K. Z., & Park, S.-Y. (2026). Macro- and microcirculatory factors affecting foot temperature change during walking. Experimental Physiology.
    DOI: https://doi.org/10.1113/EP093712
  4. Dhyani, N., Allen, M. F., Rudebush, T. L., Gao, L., Kanmogne, G., Bhargavan, B., Park, S.-Y., & Zucker, I. H. (2025). Tie2 Cre mediated changes in antioxidant activity modulates blood pressure and vascular reactivity: A role for Nrf2. Free Radical Biology and Medicine, 241, 42–52.
    DOI: https://doi.org/10.1016/j.freeradbiomed.2025.09.004
  5. Tian, Y., Hakim, A. H., Anderson, C. P., Sharma, P., Al-Gahmi, A.-M., Kim, K.-S., Park, S.-Y., Koutakis, P., Sachdev, U., Draghici, A. E., Bagher, P., Carlson, M. A., & Pipinos, I. I. (2025). Insights From Bone and Muscle Oxygenation Toward a More Comprehensive Model of Tissue Healing. Journal of Surgical Research, 315, 59–69.
    DOI: https://doi.org/10.1016/j.jss.2025.08.015

Boulais YOVOGAN | Biology and Life Sciences | Best Researcher Award

Dr. Boulais YOVOGAN | Biology and Life Sciences | Best Researcher Award

Medical entomologist and Geneticist Centre de Recherche Entomologique de Cotonou (CREC) Benin

Dr. Boulais Yovogan is a passionate medical entomologist and geneticist based at the Centre de Recherche Entomologique de Cotonou (CREC), Benin. With extensive field and academic experience, Dr. Yovogan has contributed significantly to vector surveillance, malaria control, and genetic resource management. His dynamic role includes research, field coordination, and mentoring students at the University of Abomey-Calavi (UAC). He is also actively involved in international collaborations with institutions like the London School of Hygiene & Tropical Medicine (LSHTM).

Profile

Google Scholar

🎓 Education

Dr. Yovogan earned his PhD in Life Sciences (2024) from the University of Abomey-Calavi (UAC), Benin, specializing in medical entomology and genetic resources. His academic journey blends biological sciences with practical research experience, making him a key contributor to tropical disease research in West Africa.

🧪 Experience

With hands-on expertise in entomological surveillance and vector control, Dr. Yovogan led the transmission component of the New Net Project (2019–2024), under UNITAID and LSHTM. At CREC, he contributes to national and international research initiatives. Simultaneously, he supports teaching at the Zoology Department of UAC, guiding students in technical laboratory handling and tool usage.

🔬 Research Interest

Dr. Yovogan’s core interests lie in vector-borne diseases, especially malaria transmission, insecticide resistance, and vector surveillance methods. He evaluates innovative vector control tools and contributes to improving entomological data collection techniques for enhanced disease control strategies.

🏆 Awards

Although early in his decorated career, Dr. Yovogan is a strong contender for recognition due to his impactful research. His nomination for the Best Researcher Award under the International Popular Scientist Awards underscores his scientific leadership and contributions to public health and vector control.

📚 Publications Top Notes: 

Dr. Boulais Yovogan has authored 33 peer-reviewed articles in reputed journals including Malaria Journal, Plos One, Parasites & Vectors, and BMC Public Health. His research has been cited 313 times, with an h-index of 8 and i10-index of 7. A recent publication includes:

“Evaluation of a dual-active ingredient LLIN against malaria vectors in Benin”
📖 Malaria Journal (2025) – Cited by 5 articles

Efficacy of pyriproxyfen-pyrethroid long-lasting insecticidal nets (LLINs) and chlorfenapyr-pyrethroid LLINs compared with pyrethroid-only LLINs for malaria control in Benin: a …

Assessing the efficacy of two dual-active ingredients long-lasting insecticidal nets for the control of malaria transmitted by pyrethroid-resistant vectors in Benin: study …

Pre-intervention characteristics of the mosquito species in Benin in preparation for a randomized controlled trial assessing the efficacy of dual active-ingredient long-lasting …

WHO cone bio-assays of classical and new-generation long-lasting insecticidal nets call for innovative insecticides targeting the knock-down resistance mechanism in Benin

Malaria burden and associated risk factors in an area of pyrethroid-resistant vectors in Southern Benin

Pyrethroid Resistance Intensity in Anopheles gambiae s.l. from Different Agricultural Production Zones in Benin, West Africa

Effectiveness of pyriproxyfen-pyrethroid and chlorfenapyr-pyrethroid long-lasting insecticidal nets (LLINs) compared with pyrethroid-only LLINs for malaria control in the third …

What can be learned from the residual efficacy of three formulations of insecticides (pirimiphos-methyl, clothianidin and deltamethrin mixture, and clothianidin alone) in large …