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Ohio State researchers filmed wild sooty mangabeys climbing thin trunks in Ivory Coast. The measurement removes ankle anatomy as a clean way to sort what the human-chimp ancestor did in trees.
The Scientist · Science desk

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Researchers from The Ohio State University filmed wild sooty mangabeys climbing thin tree trunks at the Tai Forest Monkey Project field station in Ivory Coast and measured 46 degrees of flexion at the monkeys' midfoot during the ascent, in a paper published this week in the Proceedings of the National Academy of Sciences [1][2][3]. The operational consequence is that foot bones stop working as a sorting key: the last common ancestor of humans and chimpanzees can no longer be assigned to trunk climbing or full-time treetop life on the strength of ankle morphology alone [4][5].
The setup for that inference was a contrast between two joints. A chimpanzee ankle can flex upward about 45 degrees during a climb, against roughly 20 degrees for most human ankles, and that flexion is why chimps are treated as the model trunk climber [6][7]. Monkeys, by contrast, have been assumed to move through trees mainly with their arms [8], which pushed the fossil question toward a binary: was the ancestor reaching high branches from the ground, or living among them, or both [9]?
Sooty mangabeys are known to lack the versatile chimp-like ankle, yet the videos show them using foot-bone flexibility to climb vertically up thin trunks to hide, forage or sleep [2][10]. "People are making behavioral inferences from fossils, and some say a monkey can't vertically climb as well as an ape can," said first author Luke Fannin, an assistant professor of anthropology at Ohio State. "We're saying there's a functional equivalence here" [11][12].
Note what kind of equivalence that is. The 45 degrees is chimpanzee ankle flexion and the 46 degrees is mangabey midfoot flexion, so the near-identical figures describe different joints doing comparable work rather than the same anatomy [6][3]. That is the paper's point, not a weakness in it, but it means the takeaway is about function, not a ranking of feet. Senior author W. Scott McGraw, professor and chair of anthropology at Ohio State and co-director of the Tai field station, framed the video as the source of the precision: "Before, we had hunches, but in this way, it's far more precise" [13][14][15]. He also called the result clarifying and blurring at once, since competent vertical climbers that are not extinct and can be filmed undercut the idea that an advanced ape foot is required for the behavior [16][17].
The phys.org account does not report how many individual mangabeys or how many climbing bouts were measured, which matters for anyone weighing 46 degrees as a species-level number [18]. The soft-tissue caveat runs the same direction: modern hunter-gatherers and foragers who climb vertically are thought to do it through flexibility in ligaments, tendons and muscles rather than through foot bones [19]. Ligaments do not fossilize, so a skeletal foot underdetermines behavior in both directions.
Humans and chimpanzees separated 6 million to 7 million years ago [20], and identifying the ancestor is treated as central to explaining habitual bipedalism, which only humans have [21]. What to watch is whether the kinematic method travels: whether other monkey taxa filmed in the wild show the same midfoot loading, whether the underlying joint-loading data are detailed enough for other labs to reproduce, and whether reconstructions built on ape-like versus monkey-like ancestral feet [22] are restated as claims about soft tissue and behavior instead of bone shape.
Ranked by verification strength, evidence, and original report placement.
Video evidence from West Africa suggests there may be no distinction between trunk climbers and full-time treetop dwellers, at least based on foot structure.
The study makes the point that even if the last common ancestor had a more monkey-like foot morphology, it could still climb like an ape.
Fannin said: "People are making behavioral inferences from fossils, and some say a monkey can't vertically climb as well as an ape can. We're saying there's a functional equivalence here. So you can't rule out vertical climbing just because something doesn't have a chimpanzee-like foot."
Researchers from The Ohio State University observed wild sooty mangabey monkeys and confirmed through measurements that the monkeys display foot-bone flexibility facilitating vertical climbing up thin tree trunks.
McGraw said the paper adds clarity but also makes the broader picture fuzzier, because the notion that you must have a foot like an advanced ape to vertically climb is not true.
First author Luke Fannin recorded videos of mangabeys in the wild at the Tai Forest Monkey Project field station in Ivory Coast.
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Evidence-backed comparisons of source perspectives and observed adoption signals. Read the methodology
Which Builder, Operator, and Investor concerns the observed source mix emphasized—not a truth score.
Evidence, demonstrated adoption, hype gap, incentives, and confidence are assessed independently, each on its own current evidence. How these are measured.
One peer-reviewed paper, reported by one outlet, with sampling undisclosed
The core measurement traces to a named, DOI-identified PNAS paper with direct field kinematics rather than to a preprint or a talk, which lifts the floor. But everything in the cluster comes from a single institution-sourced write-up quoting only the study's own authors, the number of animals and climbing bouts behind the 46-degree figure is not stated, and the headline comparison places a midfoot value next to an ankle value without flagging the difference. That is enough to establish that a measurement exists and roughly what it says, not enough to weigh how robust it is.
No uptake signal in the supplied material
The cluster contains no citations, replications, follow-on studies, adoptions of the kinematic method by other groups, or any other downstream use of the finding. A research publication on its own is not an adoption observation, and inferring uptake from a fresh paper would be guessing.
Framing outruns a single kinematic study
The claim as packaged — a last common ancestor could have been a vertical climber 'no matter its feet' — is broader than one kinematic dataset from one monkey species at one field site can carry, and the 46-versus-45-degree juxtaposition invites readers to see a like-for-like match between joints that are not the same joint. The overstatement is moderate rather than severe because the researchers voice their own limits (McGraw calls the picture fuzzier; Fannin says more fossils are needed) and because the narrow finding is genuinely novel documentation.
Institution-sourced write-up with only the authors speaking
The single item reads as research-institution communications: all quotes come from the study's first and senior author, the senior author co-directs the field station whose footage underpins the claim, and the 'first kinematic documentation' framing is the authors' own characterization of their contribution. Nothing here is concealed and no commercial interest is present, but there is no adversarial or independent voice to discount the promotional framing.
Narrow finding credible, wider inference unverified
Confidence is moderate-low: the specific measurement is anchored in a peer-reviewed publication and a described method, so the factual core is probably reliable, but the cluster has one publisher, one voice, no sampling detail, no adoption or replication signal, and an unremarked joint mismatch in its most quotable comparison. Confidence would rise on independent expert comment or on the paper's own methods being surfaced.
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