故事 / 12 分钟图谱如何为深时变化定年
Follow nine anchors from dated minerals and measured strata to biological interpretation, with each uncertainty kept attached to its evidence.
每一步标明所依据的主张,引用列于下方。交互探索状态可在完整应用中打开;故事本身仍是编辑综合。
故事步骤
01 · 2426 Ma · 证据Bracket oxygenation, do not invent an instant
Dated igneous units and sulfur-isotope change bracket the onset of the Great Oxidation interval, while ocean basins followed different redox histories.
The bracket dates a proxy transition, not one global oxygen switch.
claim:event:great-oxidation02 · 571 Ma · 地图Place Avalon fossils above dated ice
Zircon ages order the Gaskiers glaciation and the younger Avalon assemblages; they do not directly date the origin of animals.
Funcusvermis 骨床支持无足类总群;孤立骨骼不设定冠群或全球首现。
claim:event:ediacaran-biota03 · 520 Ma · 证据Separate fossil pattern from explanatory model
Cambrian body fossils, traces and disparity document a radiation, but ecological and developmental explanations remain competing syntheses.
claim:event:cambrian-radiation04 · 470 Ma · 多样性Compare regional diversification curves
Ordovician richness and ecological expansion emerge at different rates among regions and groups rather than at one global timestamp.
claim:event:ordovician-biodiversification05 · 251.9 Ma · 证据Read the Meishan extinction interval
Dated ash beds constrain the principal extinction pulse in one reference section to roughly sixty thousand years, with stated analytical uncertainty.
A calibrated reference section is not every ecosystem worldwide.
claim:event:end-permian-extinction06 · 245 Ma · 多样性Recovery unfolds in stages
Triassic recovery differs among ecosystems, guilds and regions; a review synthesis organizes those records without turning them into a single measured event.
claim:event:triassic-recovery07 · 66.043 Ma · 证据Test impact–extinction synchrony
Boundary geochemistry identifies impact ejecta and radioisotopic comparison resolves impact and extinction as synchronous within the published precision.
Synchrony at this resolution does not make every last fossil simultaneous.
claim:event:k-pg-extinction08 · 56 Ma · 证据Track warming with coupled proxies
Carbon-isotope, temperature and biotic records describe the PETM perturbation, while magnitude and duration remain proxy- and age-model-sensitive.
claim:event:petm09 · 0.04 Ma · 地图Compare extinction hypotheses without one cause
Late-Quaternary megafaunal losses vary across continents; comparative models test climate and human influence without observing one universal mechanism.
claim:event:quaternary-megafauna-extinction参考文献
- Timing and tempo of the Great Oxidation EventGumsley, A.P.; Chamberlain, K.R.; Bleeker, W.; Söderlund, U.; de Kock, M.O.; Larsson, E.R.; Bekker, A. · 2017 · DOI 10.1073/pnas.1608824114
- The rise of oxygen in Earth's early ocean and atmosphereLyons, T.W.; Reinhard, C.T.; Planavsky, N.J. · 2014 · DOI 10.1038/nature13068
- Dodging snowballs: Geochronology of the Gaskiers glaciation and the first appearance of the Ediacaran biotaPu, J.P.; Bowring, S.A.; Ramezani, J.; Myrow, P.; Raub, T.D.; Landing, E.; Mills, A.; Hodgin, E.; Macdonald, F.A. · 2016 · DOI 10.1130/G38284.1
- The Ediacara biota: Neoproterozoic origin of animals and their ecosystemsNarbonne, G.M. · 2005 · DOI 10.1146/annurev.earth.33.092203.122519
- The Cambrian conundrum: early divergence and later ecological success in the early history of animalsErwin, D.H.; Laflamme, M.; Tweedt, S.M.; et al. · 2011 · DOI 10.1126/science.1206375
- The Great Ordovician Biodiversification Event (GOBE): the palaeoecological dimensionServais, T.; Owen, A.W.; Harper, D.A.T.; et al. · 2010 · DOI 10.1111/j.1502-3931.2009.00184.x
- High-precision timeline for Earth's most severe extinctionBurgess, S.D.; Bowring, S.; Shen, S.-Z. · 2014 · DOI 10.1073/pnas.1317692111
- The timing and pattern of biotic recovery following the end-Permian mass extinctionChen, Z.-Q.; Benton, M.J. · 2012 · DOI 10.1038/ngeo1475
- Extraterrestrial cause for the Cretaceous–Tertiary extinctionAlvarez, L.W.; Alvarez, W.; Asaro, F.; Michel, H.V. · 1980 · DOI 10.1126/science.208.4448.1095
- Time scales of critical events around the Cretaceous-Paleogene boundaryRenne, P.R.; Deino, A.L.; Hilgen, F.J.; Kuiper, K.F.; Mark, D.F.; Mitchell, W.S.; Morgan, L.E.; Mundil, R.; Smit, J. · 2013 · DOI 10.1126/science.1230492
- The Paleocene–Eocene Thermal Maximum: a perturbation of carbon cycle, climate, and biosphere with implications for the futureMcInerney, F.A.; Wing, S.L. · 2011 · DOI 10.1146/annurev-earth-040610-133431
- Global late Quaternary megafauna extinctions linked to humans, not climate changeSandom, C.; Faurby, S.; Sandel, B.; Svenning, J.-C. · 2014 · DOI 10.1098/rspb.2013.3254