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1.
Proc Natl Acad Sci U S A ; 119(9)2022 03 01.
Article in English | MEDLINE | ID: mdl-35193977

ABSTRACT

Ocean warming and acidification driven by anthropogenic carbon emissions pose an existential threat to marine calcifying communities. A similar perturbation to global carbon cycling and ocean chemistry occurred ∼56 Ma during the Paleocene-Eocene thermal maximum (PETM), but microfossil records of the marine biotic response are distorted by sediment mixing. Here, we use the carbon isotope excursion marking the PETM to distinguish planktic foraminifer shells calcified during the PETM from those calcified prior to the event and then isotopically filter anachronous specimens from the PETM microfossil assemblages. We find that nearly one-half of foraminifer shells in a deep-sea PETM record from the central Pacific (Ocean Drilling Program Site 865) are reworked contaminants. Contrary to previous interpretations, corrected assemblages reveal a transient but significant decrease in tropical planktic foraminifer diversity at this open-ocean site during the PETM. The decrease in local diversity was caused by extirpation of shallow- and deep-dwelling taxa as they underwent extratropical migrations in response to heat stress, with one prominent lineage showing signs of impaired calcification possibly due to ocean acidification. An absence of subbotinids in the corrected assemblages suggests that ocean deoxygenation may have rendered thermocline depths uninhabitable for some deeper-dwelling taxa. Latitudinal range shifts provided a rapid-response survival mechanism for tropical planktic foraminifers during the PETM, but the rapidity of ocean warming and acidification projected for the coming centuries will likely strain the adaptability of these resilient calcifiers.


Subject(s)
Acids/chemistry , Global Warming , Plankton , Earth, Planet , Fossils , Isotopes
2.
Philos Trans A Math Phys Eng Sci ; 376(2130)2018 Oct 13.
Article in English | MEDLINE | ID: mdl-30177558

ABSTRACT

Geologically abrupt carbon perturbations such as the Palaeocene-Eocene Thermal Maximum (PETM, approx. 56 Ma) are the closest geological points of comparison to current anthropogenic carbon emissions. Associated with the rapid carbon release during this event are profound environmental changes in the oceans including warming, deoxygenation and acidification. To evaluate the global extent of surface ocean acidification during the PETM, we present a compilation of new and published surface ocean carbonate chemistry and pH reconstructions from various palaeoceanographic settings. We use boron to calcium ratios (B/Ca) and boron isotopes (δ11B) in surface- and thermocline-dwelling planktonic foraminifera to reconstruct ocean carbonate chemistry and pH. Our records exhibit a B/Ca reduction of 30-40% and a δ11B decline of 1.0-1.2‰ coeval with the carbon isotope excursion. The tight coupling between boron proxies and carbon isotope records is consistent with the interpretation that oceanic absorption of the carbon released at the onset of the PETM resulted in widespread surface ocean acidification. The remarkable similarity among records from different ocean regions suggests that the degree of ocean carbonate change was globally near uniform. We attribute the global extent of surface ocean acidification to elevated atmospheric carbon dioxide levels during the main phase of the PETM.This article is part of a discussion meeting issue 'Hyperthermals: rapid and extreme global warming in our geological past'.

3.
J Am Acad Psychiatry Law ; 36(3): 306-9, 2008.
Article in English | MEDLINE | ID: mdl-18802177

ABSTRACT

Forensic experts should be aware of the increasing importance of clinical practice guidelines (CPGs) in various legal settings. CPGs are a type of learned treatise and are accepted into court proceedings under hearsay exception provisions. The courts now use CPGs as shorthand for the standard of care in making malpractice determinations. However, medical guidelines can function as a sword or a shield in the courtroom arena. The Helling v. Carey medical malpractice case serves as a frightful reminder of the potential consequences of allowing courts to craft their own standards of medical care.


Subject(s)
Health Services/legislation & jurisprudence , Health Services/standards , Practice Guidelines as Topic , Practice Patterns, Physicians'/legislation & jurisprudence , Practice Patterns, Physicians'/standards , Expert Testimony , Glaucoma/diagnosis , Humans , Malpractice , Manometry , United States
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