Why I will not be marching for science

Virginia Schutte says the March for Science won’t meet her goals or those set out by the organizers. Here, she shares some alternatives.

When I was in graduate school, I learned to create classes using backward design. Backward design encourages setting goals and then planning a course of action to meet those goals. This strategy can be applied to almost anything in life. “What do I want for dinner?,” for example, can transform into “I need dinner to be quick” or “let’s get rid of what’s about to go bad in the fridge.”

crowd-1294991_1280 Continue reading

Join the March for Science in London (and other UK cities)

The most effective way to protect science is to encourage the public to value and invest in it. This is why we’re marching through London on 22 April 2017, says Story Sylwester.

London skyline. Credit: Tim Graham/Getty Images

London skyline. Credit: Tim Graham/Getty Images

As the nature of scientific inquiry developed over centuries from the “solitary genius” model of Sir Isaac Newton to the international collaboration modelled by the Rosetta space exploration mission, UK scientists have been leaders in the development of scientific thinking and methodology. Yet, in an age where science has resulted in new technologies, improved quality of life, and improved understanding of the world around us, it faces some of its toughest challenges. Continue reading

Development and debate about the March for Science

The March for Science’s date has been set for April 22nd. Nicole Forrester speaks to scientists planning to take part.

It’s fair to say the scientific community is spending a lot of time talking about the March for Science, due to take place on April 22, 2017. While organizers are preparing for events in Washington, D.C. and satellite locations around the world, scientists are evaluating their roles in politics and public outreach. I reached out to scientists and science supporters to discuss the march and the impact of recent political decisions on science, scientific policy, and our careers as scientists.

According to their website, the March for Science was founded as “a celebration of our passion for science and a call to support and safeguard the scientific community.” For many scientists, though, it’s about supporting the scientific process itself and advocating for its importance. Joel Sachs, an Associate Professor of Biology at the University of California, Riverside, says, “Science is just a way of learning about the world and is incredibly important to make predictions about what’s going to happen in the future — in terms of our climate, disease, and how to manage crops and livestock.

{credit} Bill McKibben/ Twitter: https://twitter.com/billmckibben/status/808791393569243140?lang=en{/credit}

Continue reading

Networking: a very short cheat sheet

We all know the value of networking. Here’s a very quick rundown of best practises, from Amali H. Thrimawithana

Networking plays a vital role in any scientist’s career development, being one of the main ingredients in building a professional profile. It feels especially essential in my own field of informatics and data science, where techniques and technology are rapidly evolving and cross-discipline collaborations are rampant.

Networking helps us stay up to date with developments, provides a space to learn, enhances communication skills, creates new opportunities, and helps to build a professional profile.

IMG_3286-smaller

Conferences provide you with a literal stage to gain connections

Continue reading

How travelling can help prepare you for a successful research career

Travelling has enhanced my scientific networks and social awareness, and prepared me to work in an international setting.

Guest contributor Andy Tay

As science becomes more inter-disciplinary, scientists increasingly need to travel to promote their work and build collaborations. Whilst it’s common for professors to travel frequently, graduate students or post-docs may not be aware of the importance of travelling in building a career. Here’s how travelling has helped me — and how it might help you.

11237194915_b26ca4ae4d_o

{credit}Flickr/British Library{/credit}

Continue reading

Do you think your career was harder as a woman in science?

Academic speakers at the Naturejobs Career Expo, London, 2016, discuss sexism in academia.

https://www.youtube.com/watch?v=rdfqXdibc0k

Continue reading

Keep the lights on

Energy entrepreneurs, take note – you have an opportunity to compete for a cash prize and the chance to network with investors. piggybank

The Deutsche Energie-Agentur (dena), or German Energy Agency, has launched ‘Start Up Energy Transition’, a global business competition open to start-ups and early-stage companies in the energy sector. Continue reading

#scidata16: Work reproducibly for the sake of your career

Making sure others can do your experiments doesn’t just help them — it’s good for you, too.

Publishing Better Science through Beter Data writing competition Jonathan Page

A core tenet of science is reproducibility: the results of one scientist must be able to be reproduced by another, lest the findings be dismissed as a fluke or even fraudulent. In today’s data-driven realms of research, ‘reproducibility’ doesn’t simply mean publishing methods, many journals now require that datasets, and the code used to analyse them, be published too. This requirement ensures that both data, and methods, can be scrutinised. If other researchers can’t reach the same results, the study will need to be treated with caution. In doing this, scientists avoid damaging their reputation by publishing flawed studies, and journals avoid publishing bad science. It’s a win-win situation.

So why don’t scientists always work reproducibly?

JPage_Profile-smaller

Jonathan Page

Continue reading

Recognising mentoring in science: A lifetime’s achievement

Guest blog by Julie Overbaugh, recipient of the Lifetime Achievement 2016 Nature Award for Mentoring in Science.

Dr Overbaugh was presented with the award in Seattle on 1 December by Sir Philip Campbell, Editor-in-Chief of Nature. These annual awards are hosted by Nature to champion the importance of mentoring and inspiring early-career scientists. You can read the full announcement here.

Julie-2

{credit}Stefanie Felix{/credit}

Balancing being a strong mentor and achieving the more standard measures of success in science – publications, grants, and so on – is increasingly challenging, especially as we stress more and more about tight funding.

At times, the goals of the mentor and mentee are well aligned, for example, when both are striving to publish a timely paper or generate data for an abstract. But at other times, the needs of trainees to take classes and exams, or learn other skills, may delay progress on a project that is central to the lab’s overall research portfolio. If the mentor takes the short-term view on this, they may be tempted to find ways to push the research forward and pay little attention to the needs of their trainee. This approach may result in publishing first, but most likely at the expense of the trainee.

The other option is to take the long view, and realize that while the time spent helping the mentee develop as a scientist may slow progress on this one project, the longer term benefit will be a well-trained and motivated lab member going forward. This person, in turn, will train others and promote the lab, and will be better positioned to produce thoughtful science, including if they go on to become independent investigators. Overall, I have drawn more satisfaction from seeing people I have worked with over the years achieve their goals and contribute in their own individual way to advancing science than from the papers we have published.

I am not sure I looked at this issue in this way when I started my lab almost 30 years ago, although I do recall early times in the lab when I made the decision that if a trainee was working on a project, then the pace of the project had to include time for training. I have always been interested in the ‘people’ part of science, as much as the science itself.

This approach comes in part from growing up in a working class family where we rarely talked about grades and future careers and I felt little pressure there. In my family, we mostly talked about friends and our social schedules and our sports activities. Playing sports helped me learn to work within a team, and understand healthy competition and fair play. The focus on friends and social life made me more in tune with the people I train and perhaps less focused on other benchmarks of success. So when someone comes in to my office, I mostly see them as individuals, rather than as someone who is leading project X.

{credit}Stefanie Felix{/credit}

I think effective mentoring requires that you see each person as unique, with different talents and perhaps different limitations. You tailor training to people’s goals and their strengths and weaknesses.  In some cases, for example, with the best students, this means just gentle nudges and encouragement along the way. For some, it is building on their strengths and also helping them see where they need effort to correct weaknesses. And for others – and this is the most difficult – it means helping encourage someone to better align their goals and talents. The point is that mentoring has to be tailored to the individual.

Thinking of the lab as a team, but also realizing each person is an individual, has shaped the culture of my lab. It is made up of people who support each other, and it often attracts people who value work-life balance.  My guess is that a healthy work-life balance is probably correlated with wanting to work in a supportive environment because the achievements of work are just one facet of their lives.  As I have argued previously (Nature, 2011) having outside interests has many benefits and does not necessarily lead to less productivity.  I think my lab is a great example of this, as we have contributed in significant ways to understanding HIV transmission and pathogenesis, while generally working well as a team and having some fun from time to time along the way.

I have also had the amazing opportunity to work with a larger collaborative group, the Kenya Research Program.  This team includes people who work in a range of disciplines, in Seattle and in Kenya, who all share a passion for fighting HIV in the most vulnerable populations. This is an amazing group that shares common values around mentoring. It is perhaps why we are one of the longest standing international interdisciplinary collaborations in the HIV field, and why the team continues to do remarkable science.

{credit}Robert Hood{/credit}

Over the course of my career, I have experienced a range of mentoring, from good to bad. The strong mentors in my career helped me to think critically, write papers, prepare grants and learn how to run a lab – all invaluable to my success in science. In the situations where mentoring was not a focus, it was easy to get discouraged. From all my experiences, I’ve found that good mentoring not only provides useful practical training, it can help build confidence and provide motivation.

I am lucky to work at an institution, the Fred Hutch Cancer Research Center, that values mentoring, and I am surrounded by many dedicated mentors.  I am particularly inspired by some of our junior faculty who are taking mentoring very seriously as they build their own research teams.

I realise that when there is not effective mentoring, bottlenecks are created in science. I’ve watched people who have left the FredHutch struggle in environments where mentoring isn’t as cherished, and I think we lose talented people from the science pipeline for this reason. To an extent, the people who are most sensitive to lack of encouragement and support are women and minorities – potentially already dealing with an imposter syndrome – and this could be part of the vexing pipeline issue that exists in science and limits our diversity at higher levels.

I am incredibly honored to receive the Lifetime Achievement Nature Award for Mentoring in Science. The fact that Nature, one of the most prominent and leading journals gives this award makes a very powerful statement that success is science is not just about publishing papers in top journals, it is also the legacy we leave through our trainees, wherever they go and whatever they do – traditional or not.  Maybe Nature will set a new standard making success in mentoring part of how academic institutions promote faculty, or even how funding agencies think about supporting science.

I am even more honored that my lab members, past and present, nominated me for this award because it means I am doing my job and finding that balance between supporting my trainees, but also leading a productive research team. Finding that balance is still not always easy and I am sure I have not always got it right.

But I am reminded by the great group of people who have trained in my lab – as well as by my many colleagues who value mentoring – that it is worth it! I can’t imagine another award or honor that comes close to this one.

Recognising mentoring in science: Reflections from southern California

Guest blog by Susan L. Forsburg, recipient of the mid-career 2016 Nature Award for Mentoring in Science.

Professor Forsburg was presented with the award in Los Angeles on 28 November by Sir Philip Campbell, Editor-in-Chief of Nature. These annual awards are hosted by Nature to champion the importance of mentoring and inspiring early-career scientists scientists. You can read the full announcement here.

In this blog, we talked to Susan about the importance of mentoring, her approach, and what this recognition means to her.

Susan Forsburg

{credit}Peter Zhou{/credit}

What does winning this award mean to you?

This is a tremendous honour for me personally!  It is also very heartening as it recognizes an unsung and often neglected part of our professional responsibilities, which is the obligation to reach out to peers and junior colleagues and facilitate their success.

Mentoring means different things to different people. How  would you describe your approach?

Mentoring is not about giving advice, or telling people what to do.  Rather, it is helping people gather information to make their own decisions. First, I use a “vertical strategy” to integrate young scientists into the research process, to connect them with those above and below, and to persuade them to become part of the mentoring process themselves. This is classic mentoring, and can be seen in my support for undergraduate and graduate students, postdoctoral fellows and junior faculty colleagues.

As a complementary strategy, I make extensive use of the internet for writing and networking, which I call “horizontal mentoring”. This approach evolved from my role as a prominent advocate for women in science, and I have become a long distance mentor to several younger scientists.  It is the combination of these two approaches, immediate and personal, and long distance and expansive, that define my contributions to promote an inclusive science work force.

How do you encourage or challenge those that you mentor so that they reach their full potential?

There is no one-size-fits-all to mentoring. Mentoring changes according to the level of the mentee and our relationship. For example, I include undergraduates in lab research, to experience research first hand, to strengthen their applications for future training and give them confidence to carry out independent research.  For graduate students, my goal is to give them independence, suggest realistic goals and thereby generate a sense of confidence along with expectations of success. For postdocs, I help equip them with the types of sophisticated scientific training and professional savvy to kick-start and then to sustain an independent career. For junior faculty – and especially for women – I have worked to develop career direction, and offer advice on achieving grant savvy and navigating the tenure transition.  Importantly, I’m not there to tell them what to do, but help them discover what’s right for them!

In your early career, did you have mentors yourself? What impact did they have on you?

My undergraduate advisor, Richard Calendar at UC Berkeley, was a foundational mentor in my career.  Young as I was, he treated me as a colleague, and showed me how much fun science could be!  Another important mentor was Thomas Kelly, at Sloan-Kettering.  Tom was a sabbatical visitor when I was a postdoc in the UK.  We spent lots of time in the pub talking science and drawing models on a napkin with a mechanical pencil, and he really challenged me to think strategically, not just tactically. Those conversations were hugely important for me to learn make the intellectual move to being a PI from experimentalist.  Finally, Tom Pollard, now at Yale, was an incredibly generous colleague and collaborator when I was a junior faculty member.  He gave me support at a very challenging time and continues to be an advisor…a useful reminder that we are never too old to need our own mentors.

As a woman, do you think it’s important to mentor and develop young female scientists? have you felt a responsibility to do this?

Yes, absolutely.  I have been a passionate advocate for women in science for many years, and much of my long-distance mentoring has been internet-based support for young women, dating back to the days of the old Bionet message boards in the early 90s.  This is important as women navigate the leaky pipeline, particularly in transitions, for example, from postdoc to PI.  Additionally, I have learned that just by being a successful woman PI, I am a role model to people I don’t even know! I love looking around my lab and seeing an incredibly diverse group of men and women from all over the world, who are only limited by their dreams.  I get to travel along with them for part of the journey.

Finally, what would you say to other scientists who are considering giving more of their time to mentoring others in labs?

As science becomes increasingly competitive, and jobs and money are tight, we can end up in a hyper-competitive mode.  But one of the best parts of science is community.  Honestly, most of us dream of making that major discovery—but with rare exceptions, most of those major discoveries will become forgotten as others build upon them. What will be remembered is the quality of person that we are, and the legacy of the people whose lives we affected.  Their success is the best part of it.

The writer Christopher Logue wrote a poem about Guillaume Apollinaire that sums up my approach to mentoring:

Come to the edge.

We might fall.

Come to the edge.

It’s too high!

COME TO THE EDGE!

And they came,

And he pushed,

And they flew.