By using this site, you agree to the Privacy Policy and Terms of Use.
Accept
Science Briefing
  • Medicine
  • Biology
  • Engineering
  • Environment
  • More
    • Dentistry
    • Chemistry
    • Physics
    • Agriculture
    • Business
    • Computer Science
    • Energy
    • Materials Science
    • Mathematics
    • Politics
    • Social Sciences
Notification
  • Home
  • My Feed
  • SubscribeNow
  • My Interests
  • My Saves
  • History
  • SurveysNew
Personalize
Science BriefingScience Briefing
Font ResizerAa
  • Home
  • My Feed
  • SubscribeNow
  • My Interests
  • My Saves
  • History
  • SurveysNew
Search
  • Quick Access
    • Home
    • Contact Us
    • Blog Index
    • History
    • My Saves
    • My Interests
    • My Feed
  • Categories
    • Business
    • Politics
    • Medicine
    • Biology

Top Stories

Explore the latest updated news!

Quantum SVM-driven framework for accurate brain stroke classification

Science Briefing

Science Briefing

Stay Connected

Find us on socials
248.1KFollowersLike
61.1KFollowersFollow
165KSubscribersSubscribe
Made by ThemeRuby using the Foxiz theme. Powered by WordPress

Home - Evolutionary Biology - A New Shape for the Past: Diffeomorphic Mapping Reconstructs Ancestral Forms

Evolutionary Biology

A New Shape for the Past: Diffeomorphic Mapping Reconstructs Ancestral Forms

Last updated: March 1, 2026 11:55 pm
By
Science Briefing
ByScience Briefing
Science Communicator
Instant, tailored science briefings — personalized and easy to understand. Try 30 days free.
Follow:
No Comments
Share
SHARE

A New Shape for the Past: Diffeomorphic Mapping Reconstructs Ancestral Forms

A novel computational method, Diffeomorphic Independent Contrasts for Ancestral Reconstruction of Shapes (DICAROS), offers a significant leap in ancestral state reconstruction for evolutionary biology. Moving beyond linear models that oversimplify morphological change, DICAROS combines Large Deformation Diffeomorphic Metric Mapping (LDDMM) with Felsenstein’s Independent Contrasts. This fusion allows it to model smooth, biologically plausible transformations between anatomical shapes while rigorously accounting for phylogenetic relationships. Validated against existing methods, DICAROS demonstrated superior accuracy, particularly for asymmetric phylogenetic trees. Applied to swallowtail butterfly wing shapes, it successfully reconstructed an ancestral form and visualized evolutionary trajectories, revealing a clear transition between untailed and tailed species within the Papilionidae family.

Why it might matter to you: This methodological advance directly addresses a core challenge in phylogenetics and macroevolution: accurately visualizing common ancestry and evolutionary pathways. For your work in evolutionary biology, DICAROS provides a more powerful tool for testing hypotheses about morphological adaptation, speciation events, and the tempo of evolutionary change. It enables a more nuanced analysis of comparative genomics data by offering a robust framework to link genetic divergence with tangible phenotypic outcomes across an evolutionary tree.

Source →

Stay curious. Stay informed — with Science Briefing.

Always double check the original article for accuracy.

- Advertisement -

Feedback

Share This Article
Facebook Flipboard Pinterest Whatsapp Whatsapp LinkedIn Tumblr Reddit Telegram Threads Bluesky Email Copy Link Print
Share
ByScience Briefing
Science Communicator
Follow:
Instant, tailored science briefings — personalized and easy to understand. Try 30 days free.
Previous Article Finding the Balance: Biennial Spraying Offers a Sustainable Path for Boreal Forest Management
Next Article The Global Surge in Youth Mental Health and Substance Use Disorders
Leave a Comment Leave a Comment

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Related Stories

Uncover the stories that related to the post!

A Dandelion in the Carboniferous: Ancient Seeds and the Evolution of Dispersal

Ancestral Roots Shape Modern Immunity to Cancer

Viral Spillover: A New Look at the Role of Natural Selection

A new metric to cut through the noise in evolutionary trees

A New Engine for Evolutionary Discovery: MitoNGS Supercharges Fish Biodiversity Analysis

Sexual Selection’s Hidden Genetic Toll on Mammalian Populations

Viral Simulations Expose a Hidden Bias in Evolutionary Reconstructions

The Fundamental Theorem of Natural Selection: A Persistent Puzzle for Population Genetics

Show More

Science Briefing delivers personalized, reliable summaries of new scientific papers—tailored to your field and interests—so you can stay informed without doing the heavy reading.

Science Briefing
  • Categories:
  • Medicine
  • Biology
  • Social Sciences
  • Energy
  • Gastroenterology
  • Surgery
  • Natural Language Processing
  • Chemistry
  • Engineering
  • Neurology

Quick Links

  • My Feed
  • My Interests
  • History
  • My Saves

About US

  • Adverts
  • Our Jobs
  • Term of Use

ScienceBriefing.com, All rights reserved.

Personalize you Briefings
To Receive Instant, personalized science updates—only on the discoveries that matter to you.
Please enable JavaScript in your browser to complete this form.
Loading
Zero Spam, Cancel, Upgrade or downgrade anytime!
Welcome Back!

Sign in to your account

Username or Email Address
Password

Lost your password?