Tag Archives: University of Birmingham U.K.

‘Poetic meditation’ could enhance qualitative data analysis

Poetry can provide research inspiration. Courtesy: University of Birmingham

I like the opening line in this January 10, 2023 University of Birmingham press release for how it relates poetry to data analysis (Note: A link has been removed),

‘Poetic meditation’ can enhance qualitative data analysis by offering researchers improved sensory experience and an ability to approach data analysis from unexpected directions, a new study reveals.

(For some reason the first line/lede was rewritten for the January 10, 2023 news item on phys.org and for the copy found on EurekAlert.)

The rest of the press release (Note: A link has been removed),

The authors of the study explain that meditation allows researchers to train their body for data collection – improving their capacity to capture unexpected insights and deal with uncertainty and transformation as they incorporate novel interpretations into their research.

The skills enable researchers to understand novel cultural practices. Poetic meditations may prepare the researchers to see the world with different eyes.

Publishing their findings in Journal of Marketing Management, researchers at the University of Birmingham and Kedge Business School, Bordeaux, France, outline a radical new process to help researchers to enhance their work.

Pilar Rojas-Gaviria, from the University of Birmingham, commented: “Scientific wonder prompts us to ask questions about the purpose of consumption, the way markets are created and extended, and how life and human experience are attached to both.

“Academics have always developed theses to resolve questions and explain events, but mindfulness practice can make our bodies an instrument of research – gathering data from different environmental sources. Poetry offers qualitative researchers a useful tool to refigure their surroundings and shed new light on the data they work with.”

Poetic meditation allows researchers to reveal unexpected or previously unnoticed features of market and consumption environments – rather than simply reproducing existing categories and theories.

By recording and presenting poetic meditations through audio media, the researchers demonstrate poetry’s potential to stimulate new ideas that can influence how academics approach data collection or analysis.

The researchers demonstrate the technique with two poetic meditations focusing on the colours green and red. These audio presentations settle the listener into a relaxed state, before taking the listener on an intellectual journey into poetry and philosophy, and ending with a period of meditation.

Robin Canniford, from Kedge Business School, commented: “We believe this technique can inspire researchers to include sound recordings and data presentations in their publications – creating a different approach to communicating and understandingtheir findings.

“Creating a poetic meditation might be a first step in a researcher’s journey that uncovers new sensations, interpretations, and questions – reaching towards unconventional and impactful responses in our research, even when answers seem to be far in the future.”

Poetry in marketing is already proven to be an effective research method to challenge conventional thinking in areas such as branding. It has helped marketers understand markets and consumers – engaging in conversations that capture how people consume products and services.

Here’s a link to and a citation for the paper (where you’ll find an audio file of this paper and supplementary audio files of poetry),

Poetic meditation: (re)presenting the mystery of the field by Pilar Rojas-Gaviria & Robin Canniford. Journal Marketing Management Volume 38, 2022 – Issue 15-16: Presenting Marketing Differently Pages 1821-1831 DOI: 10.1080/0267257X.2022.2112611 Published online: 22 Nov 2022

This paper is open access and because I quite like it, here’s the,

ABSTRACT

How does one use one’s body in qualitative research? Poetic meditation is a technique that offers to enhance researchers’ sensory capacities and embodied practices in research. By using mindfulness practice as a means to relax and focus on sensations, scholars can prepare to embody data collection so as to encounter multiple environmental features including, but not limited to the visual and textual. So too is poetic meditation intended as a tool to help researchers to encounter mysterious moments and to refigure their surroundings in ways that explicitly reframe sensemaking and representation. This companion essay to recorded poetic meditations encourages researchers to embrace mystery as a pathway to knowledge-making, and to build confidence to creatively step outside of common linguistic and theoretical modes.

Enjoy!

In Brazil: Applications open for July 3 – 15, 2023 School of Advanced Science on Nanotechnology, Agriculture and Environment

According to the December 15, 2022 Fundação de Amparo à Pesquisa do Estado de São Paulo press release on EurekAlert applications will be received until February 5, 2023,

The São Paulo School of Advanced Science on Nanotechnology, Agriculture and Environment (SPSAS NanoAgri&Enviro) will be held on July 3-15 at the Brazilian Center for Research in Energy and Materials (CNPEM) in Campinas, São Paulo state, Brazil. 

Reporters are invited to reach the organizing committee through the email eventos@cnpem.br, for opportunities to visit the school and sessions.

Designed to meet an increasing level of content depth and complexity, the SPSAS NanoAgri&Enviro will cover the following topics: i) Nanotechnology, innovation, and sustainability; ii) Synthesis, functionalization, and characterization of nanomaterials; iii) Characterization of nanoparticles in complex matrices; iv) Synchrotron Light for nano-agri-environmental research; v) Biological and environmental applications of nanoparticles; vi) Nanofertilizers and Nanoagrochemicals; vii) Ecotoxicology, geochemistry and nanobiointerfaces; viii) Nanosafety and Nanoinformatics; ix) International harmonization and regulatory issues; x) Environmental implications of nanotechnology.

Discussions regarding those topics will benefit from the participation of internationally renowned scientists as speakers, including Mark V. Wiesner (Duke University), Iseult Lynch (University of Birmingham), Leonardo F. Fraceto (São Paulo State University – UNESP), Gregory V. Lowry (Carnegie Mellon University), Marisa N. Fernandes (Federal University of São Carlos – UFSCar), Caue Ribeiro (Brazilian Agricultural Research Corporation – EMBRAPA), and others.

The program also comprise didactic activities programmed among theoretical interactive classes, practical experiments (hands-on), and technical visits to world-class facilities and specialized laboratories from several institutions in São Paulo state.

The São Paulo Research Foundation (FAPESP) is supporting the event through its São Paulo School of Advanced Science Program (SPSAS http://espca.fapesp.br/home). Undergraduate students, postdoctoral fellows and researchers who are already working on subjects relating to the school can apply to receive financial support to cover the cost of air travel, accommodation and meals. Applications must be submitted by February 5, 2023.

More information: https://pages.cnpem.br/spsasnano/.

I looked up the criteria for eligible applicants and found this among the other criteria (from the Applications page),

Participating students must be enrolled in undergraduate or graduate courses in Brazil or abroad, being potential candidates for Master’s, Doctoral or Post-Doctoral internships in higher education and research institutions in the state of São Paulo. Doctors may also be accepted. [emphases mine]

If I read that correctly, it means that people who are considering or planning to further their studies in the state of São Paulo are being invited to apply.

I recognized two of the speakers’ names, Mark Wiesner and Iseult Lynch both of whom have been mentioned here a number of times as has Gregory V. Lowry. (Wiesner very kindly helped with an art/sci project I was involved with [Steep] a number of years ago.)

Good luck with your application!

Duke University’s (North Carolina, US) Center for Environmental Implications of NanoTechnology (CEINT) wins $15M grant

A Nov. 13, 2013 news item on Azonano announces that the Center for Environmental Implications of Nanotechnology (CEINT) at Duke University has been awarded $15M,

A pioneering, multi-institution research center headquartered at Duke’s Pratt School of Engineering has just won $15-million grant renewal from the National Science Foundation and the US Environmental Protection Agency to continue learning more about where nanoparticles accumulate, how they interact with other chemicals and how they affect the environment.

Founded in 2008, the Center for Environmental Implications of NanoTechnology (CEINT) has been evaluating the effect of long-term nanomaterial exposure on organisms and ecosystems.

“The previous focus has been on studying simple, uniform nanomaterials in simple environments,” said Mark Wiesner, James L. Meriam Professor of Civil & Environmental Engineering and director of CEINT. “As we look to the next five years, we envision a dramatically different landscape. We will be evaluating more complex nanomaterials in more realistic natural environments such as agricultural lands and water treatment systems where these materials are likely to be found.”

The Nov. 11, 2013 Duke University news release by Karyn Hede, which originated the news item, provides some history and context for CEINT (Note: Links have been removed),

When CEINT formed, little research had been done on how materials manufactured at the nanoscale—about 1/10,000th the diameter of a human hair—enter the environment and whether their size and unique properties render them a new category of environmental risk. For example, nanoparticles can be highly reactive with other chemicals in the environment and had been shown to disrupt activities in living organisms. Indeed, nanosilver is used in clothing precisely because it effectively kills odor-causing bacteria.

To tackle this expansive research agenda, CEINT leadership assembled a multi-institutional research team encompassing expertise in ecosystems biology, chemistry, geology, materials science, computational science, mathematical modeling and other specialties, to complement its engineering expertise. The Center has 29 faculty collaborators, as well as 76 graduate and undergraduate students participating in research. Over its first five years, CEINT has answered some of the most pressing questions about environmental risk and has learned where to focus future research.

The center also pioneered the use of a new test chamber, called a mesocosm, that replicates a small wetland environment. “Over the long term, we want to evaluate how nanoparticles bioaccumulate in complex food webs,” said Emily Bernhardt, an associate professor of biology at Duke and ecosystem ecologist who helped design the simulated ecosystems. “The additional funding will allow us to study the subtle effect of low-dose exposure on ecosystems over time, as well as complex interactions among nanoparticles and other environmental contaminants.”

Looking forward, the investigators at CEINT plan to expand the use of systems modeling and to create a “knowledge commons,” a place to store various kinds of data that can then be analyzed as a whole, said CEINT Executive Director Christine Hendren.

“Our investigators and collaborators are located across the globe,” Hendren added. “We are committed to disseminating information that can be translated into responsible regulatory frameworks and that will be available to compare with results of future research.”

Key findings from CEINT’s first five years include:

Naturally occurring nanomaterials far outnumber engineered particles. CEINT scientist Michael Hochella, a geoscientist at Virginia Tech, inventoried nanoparticles and concluded that natural nanoparticles are found everywhere, from dust in the atmosphere to sea spray to volcanoes. The environmental risks of these natural nanomaterials are difficult to separate from engineered nanomaterials.

Engineered nanoparticles change once they enter the environment. Gregory V. Lowry, deputy director of CEINT and professor at Carnegie Mellon University, Pittsburgh, along with colleagues from the University of Birmingham, U.K. and the University of South Carolina found that the relatively large surface area of nanoparticles makes them highly reactive once they enter the environment. These transformations will alter their movement and toxicity and must be considered when studying nanomaterials. Their review article on this topic was named the best feature article of 2012 by the journal Environmental Science and Technology.

Nanoparticles can be visualized, even in complex environmental samples. A research team led by CEINT investigators Jie Liu, associate professor of chemistry at Duke, and CEINT Director Mark Wiesner showed that more than a dozen types of engineered nanoparticles, including silver, gold, and titanium dioxide, along with carbon nanotubes, can be surveyed using a technique called hyperspectral imaging, which measures light scattering caused by different types of nanoparticles. The new technique, co-developed by postdoctoral researcher Appala Raju Badireddy, is sensitive enough to analyze nanoparticles found in water samples ranging from ultrapurified to wastewater. It will be used in future long-term studies of how nanoparticles move and accumulate in ecological systems.

It is possible to estimate current and future volume of engineered nanomaterials. Understanding the volume of nanomaterials being produced and released into the environment is a crucial factor in risk assessment. CEINT researchers led by Christine Hendren measured the upper- and lower-bound annual U.S. production of five classes of nanomaterials, totaling as much as a combined 40,000 metric tons annually as of 2011.

Silver nanoparticles caused environmental stress in a simulated wetland environment. CEINT has developed  “mesocosms,”  open-air terrarium-like structures that simulate wetland ecosystems that can be evaluated over time. Even low doses of silver nanoparticles used in many consumer products produced about a third less biomass in a mesocosm. The researchers will now  look at how nanomaterials are transferred between organisms in a mesocosm.

I have written about CEINT and its work, including the mesocosm, many times. My August 15, 2011 posting offers an introduction to the CEINT mesocosm.