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Biology subjects

Biswal, S. L.

Publications and source records attributed to Biswal, S. L..

2 recordsLinked to original sources

Gender, interdisciplinary graduate training, and confidence working in teams

Teamwork is recognized as critical to solving complex societal challenges related to energy, health, and sustainability. With graduate education, students often gain teamwork experience through a problem-focused approach where they are brought into existing collaborations to pursue research that is focused on studying questions that have already been identified. Here, we describe an interdisciplinary educational program where graduate students were tasked with leading team formation, problem identification, and research formulation. This "team-first" training approach used a two-year curriculum to bring together students enrolled in diverse engineering and science graduate programs and provided students with a pedagogical understanding of interdisciplinarity, nurtured the development of student communication skills across disciplines, fostered student-led team formation and idea development, and empowered students to forge new connections between research groups. Assessment of three cohorts immediately following curriculum completion (n = 36) revealed significant gains in confidence in teamwork (p < 0.001) when compared to a control group of academic peers (n = 74). These gains varied across demographic groups, with women in science, technology, engineering, and mathematics presenting the strongest gains. This finding illustrates the importance of exploring how interdisciplinary team curricula in graduate school could support overcoming the gender gap in confidence. SignificancePedagogical models for graduate education often neglect the importance of teamwork training. Here, we describe an interdisciplinary training program that was developed to bring together doctoral students from diverse science, technology, engineering, and mathematics disciplines for a two-year curriculum that focused on teamwork training through student-led team formation, problem identification, and research formulation. Following program participation, we measured participant confidence in teamwork relative to a peer group. Our findings reveal gains with confidence in teamwork, with women presenting the strongest increases without negative effects on other groups. This pedagogical approach represents a strategy to close gender gaps in professional role confidence while complementing the benefits of traditional disciplinary training approaches.

scientific communication and education↗

Single extracellular vesicle imaging and computational analysis identifiesinherent architectural heterogeneity

Evaluating the heterogeneity of extracellular vesicles (EVs) is crucial for unraveling their complex actions and biodistribution. Here, we identify consistent architectural heterogeneity of EVs using cryogenic transmission electron microscopy (cryo-TEM) which has an inherent ability to image biological samples without harsh labeling methods and while preserving their native conformation. Imaging EVs isolated using different methodologies from distinct sources such as cancer cells, normal cells, and body fluids, we identify a structural atlas of their dominantly consistent shapes. We identify EV architectural attributes by utilizing a segmentation neural network model. In total, 7,576 individual EVs were imaged and quantified by our computational pipeline. Across all 7,576 independent EVs, the average eccentricity was 0.5366, and the average equivalent diameter was 132.43 nm. The architectural heterogeneity was consistent across all sources of EVs, independent of purification techniques, and compromised of single spherical (S. Spherical), rod-like or tubular, and double shapes. This study will serve as a reference foundation for high-resolution EV images and offer insights into their potential biological impact.

bioengineering↗