国产吃瓜黑料

GET MORE WITH OUTSIDE+

Enjoy 35% off GOES, your essential outdoor guide

UPGRADE TODAY

Reading the actual research paper should give you a precise and detailed account of a new discovery and help you put the results in the proper context.
Reading the actual research paper should give you a precise and detailed account of a new discovery and help you put the results in the proper context. (Photo: A330Pilot/iStock)

How to Avoid Being Duped by Sham Science

Say you see an article about how chocolate can prevent aging. You want to figure out what's actually going on, so you pull up the original study. Here's how you properly read it.

Published: 
Reading the actual research paper should give you a precise and detailed account of a new discovery and help you put the results in the proper context.
(Photo: A330Pilot/iStock)

New perk: Easily find new routes and hidden gems, upcoming running events, and more near you. Your weekly Local Running Newsletter has everything you need to lace up! .

So you want to read a study?

First of all, congratulations. Most people don鈥檛 make it past the media headlines,聽which are often , rather than precise聽truths,聽in mind. Reading the original research paper can聽give you a聽detailed account of a new discovery and put the results in the proper context. A news story from a major publication should, in theory, do the same thing鈥攁nd there are plenty of examples of聽great science journalism these days鈥攂ut even the best reporting likely won't go into the same detail as the scientists themselves.聽

Trouble is, peer-reviewed studies are dense, nuanced, and all-together tough to navigate. As a freelance science journalist for聽outlets like and , I鈥檝e had the chance to report on everything from the , to , to . There鈥檚 no one correct way to read a research paper, but along the way, I've developed an appropriately exhaustive聽guide to聽the most important things to pay attention to while reading a study. Here are some of the habits and techniques that have helped me.

Before You Begin

First, understand that science is an incremental process: every study is built on previous work, and most advance our knowledge of聽a subject by a very small amount. Landmark discoveries聽like the DNA double helix or the 聽are聽rare and usually receive coverage from major media outlets鈥攁nd maybe a Nobel Prize. Most science has an extremely narrow focus: one protein, one gene, one drug molecule in one group of test animals. The average study is only a single聽piece of聽a huge, incomplete puzzle. It can be an聽invaluable piece, but people, including journalists, get into trouble by over generalizing the results, taking them out of context, or extrapolating the findings to situations the scientists never meant to address.聽

Also, before you start reading, take a moment to Google the journal that the publication appears in. Academics love to talk about 鈥,鈥 or the relative prestige of various journals, but tons of great science is published in smaller, lesser known journals, and even giants like and are not immune from publishing聽junk occasionally. You want to make sure you鈥檙e not reading from a pay-to-publish journal that will take money from anyone and print anything, regardless of its quality and without peer review.聽Peer review is the backbone of the scientific process, and聽the process is聽vital, . Any journal that skimps on this should not be trusted.

To give you an idea of which publications to avoid, here's a聽list of 鈥.鈥澛

Finally, Google the authors. What are their qualifications? What have they done in the past? Where do they work?

Where to Start聽

Begin with the article鈥檚 abstract鈥攖he聽one-paragraph introductory CliffsNotes version of the study. A good one will be written in plain language and should roughly explain what the researchers wanted to know, the experiment they conducted, and the gist of their results. Because it鈥檚 supposed to be a short summary, the abstract probably won't聽make much of an attempt to put the results into context or explain the limits聽of the experiment鈥攊t prioritizes clarity and conciseness over nuance and the quantification of risk or uncertainty. So,聽while reading the abstract first is helpful, it is impossible to write a thorough and measured article based solely on the abstract of a paper, though lazy journalists will sometimes try.

Background

Following the abstract, many journals will have a 鈥渂ackground鈥 section, which helps contextualize the study within the existing body of research. This section is useful聽in figuring out how important聽the new finding聽is. For example, you might聽see a news article trumpeting a huge breakthrough in聽cancer treatment, but in reality聽scientists have merely refined an existing cancer treatment and made it marginally safer or more effective. The background will help temper the hype.聽

Materials and Methods

This section is usually pretty dense, and if you鈥檙e a non-expert, don't expect to understand every sentence. But it often contains vital information that will help you get an idea of the significance and particularities of the results.聽

You鈥檒l want to keep an eye out for particularly important information like sample size and the species of the animal model. Sample size in particular聽can help you decide how much trust to put in the results. Studies on a dozen test subjects (rats, ferrets, people, rocks, cell cultures, celestial events) can be interesting and help guide聽future research, but such a small sample increases the chances of both false positives and false negatives. A small sample size does not inherently mean a study is bad, but readers should be skeptical of any claims about what the results mean for the world at large. A study on how聽gut microbes influence weight gain in a population of 15 Americans, for instance, may be useful as a research tool, but a resulting article that claims your gut microbes are making you fat should be viewed聽as dubious at best and聽irresponsible at worst.

The average study is one piece in a huge, incomplete puzzle.

You鈥檒l also want to pay close attention to the models used in the research. It seems obvious that a lab mouse is not the perfect equivalent to a human, but it鈥檚 easy to get excited when a new drug, diet, or operation looks promising in mice. Animal聽models are testing grounds, not proving grounds; they inform researchers about what might work in humans. 聽

Looking at the type of experiment the scientists performed is also useful. Randomized control trials, which organize subjects into groups that either do or do not receive the treatment in question, are often considered聽the gold standard. However, these experiments are expensive and come with ethical challenges鈥攜ou can鈥檛 assign people to treatment groups when the treatment is starvation or limb loss, for instance. All study designs, however, have their own strengths and weaknesses: determining which design is right for the job is a complex task that researchers and critical readers must evaluate on a case-by-case basis.聽

Results

This is the part of the paper you鈥檒l聽want to pay the most attention to, as it lets you know what happened in the experiment. Look at what the scientists say they found, but also look at how they qualify and express their results via statistical expressions like聽confidence intervals and p-values, which tell you how likely it is that the observed result聽is actually caused by the factor being investigated. For example, a聽p-value of .05聽indicates that if the researchers repeated the experiment 100 times, they鈥檇 expect to see a result equal to or more extreme than what they observed at least 95 of those times. Generally speaking, p-values need to be less than or equal to .05 to be considered statistically significant鈥攖he lower, the better.

The confidence interval tells us what range of values we can expect the result to fall into with a given level of certainty. For instance, a study might say it found that a drug increased cycling performance by 10 meters-per-second (m/s)聽with a 95 percent confidence interval of +/-2, which means that while they鈥檙e not positive the improvement is exactly 10 m/s, the researchers are聽95 percent certain that it is聽between 8 m/s and 12 m/s.聽

While , they give us a measure of聽how sure聽we can be in a study's聽results and are relatively easy to understand. Sure things do not exist in science鈥攖here鈥檚 always a chance that an observation is the result of random chance. Good science quantifies that risk and minimizes it wherever possible.聽

Discussion and聽Conclusion

Most scientists will use the discussion and conclusion sections,聽often combined into one, to explain how they聽interpret聽the聽results. Pay close attention to this section, and be on the lookout for information on the limits of the study. Most scientists are terrified of sensationalism and are thus measured and cautious in presenting聽the ramifications聽of their results. Take聽a similar approach. If you鈥檝e already read the聽abstract and results, you should have a pretty good handle on what happened. Use these sections to confirm that you鈥檙e interpreting everything聽properly.聽

Figures, Graphs, and Charts

Don鈥檛 skip these. Often whole experiments or sections of experiments can be summed up visually. The graphics will give you another chance to wrap your brain around what the researchers discovered鈥攕ome people even look at them first, after reading the abstract. Confidence intervals can be represented graphically聽in the form of error bars.

These figures and charts聽will typically be聽sprinkled throughout the paper at relevant points, though some publications put them at the end. A helpful rule of thumb: if you can鈥檛 describe to a friend what is going on in the figures, there鈥檚 a good chance you don鈥檛 quite understand the study yet.聽

Conflicts of Interest

All reputable journals require scientists to disclose any potential conflicts of interest in their work. Check for this every time; you can usually find the disclosure statement at the end of a study, but the exact location can vary. If a researcher does admit to a potential conflict鈥攍ike receiving money or equipment from a stakeholder, for example鈥攊t does not immediately invalidate the study, but it is cause for a more critical examination of the work. Consider how the soda聽industry funneled聽lots of money into research of the health impacts of sugar: many of those studies have been found to聽, even though they were conducted by 鈥渋ndependent experts鈥 at reputable universities.

国产吃瓜黑料 Comment

There鈥檚 no section in a scientific paper that allows other researchers in the field to make comments, so this is an area where journalism can add real value. If you鈥檙e reading a news article聽about a new discovery, look for a comment from at least one outside expert. Many times, that person聽will simply confirm that they don't聽see any issues with the聽study. Other times, they'll point out a flaw or concern that would be invisible to the uninitiated, or help put the results in context. All of this聽is extremely valuable.

Lead Photo: A330Pilot/iStock

Popular on 国产吃瓜黑料 Online