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Circulation. Cardiovascular quality and outcomes
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Circulation. Cardiovascular quality and outcomes - DOI: 10.1161/CIRCOUTCOMES.118.005122
Privacy-Preserving Generative Deep Neural Networks Support Clinical Data Sharing

Brett K Beaulieu-Jones · Zhiwei Steven Wu · Chris Williams · Ran Lee · Sanjeev P Bhavnani · James Brian Byrd · Casey S Greene ·

Circulation. Cardiovascular quality and outcomes - DOI: 10.1161/CIRCOUTCOMES.119.005659
Cost-Effectiveness of Pharmacomechanical Catheter-Directed Thrombolysis Versus Standard Anticoagulation in Patients With Proximal Deep Vein Thrombosis: Results From the ATTRACT Trial.

Elizabeth A Magnuson · Khaja Chinnakondepalli · Katherine Vilain · Clive Kearon · Jim A Julian · Susan R Kahn · Samuel Z Goldhaber · Michael R Jaff · Andrei L Kindzelski · Kevin Herman · Paul S Brady · Karun Sharma · Carl M Black · Suresh Vedantham · David J Cohen ·


This relationship is supported by patterns during the last deglaciation, when a decrease in productivity at ∼16 kyr preceded improved deep water oxygenation by ∼14 kyr.

Productivity controls on the redox variation in the southeastern Arabian Sea sediments during the past 18 kyr [10.1016/J.QUAINT.2019.05.034]

Up to now, there is no report evaluating combining deep regional hyperthermia (DRHT) with modified-FOLFIRINOX for pancreatic cancer patients.

Modified-FOLFIRINOX combined with deep regional hyperthermia in pancreatic cancer: a retrospective study in Chinese patients [10.1080/02656736.2019.1579371]

To date however, deep characterization of the molecular heterogeneity of PDAC PDX and PDO models and comparison with matched human tumour remains largely unaddressed at the whole genome level.

Whole genomes define concordance of matched primary, xenograft, and organoid models of pancreas cancer [10.1371/journal.pcbi.1006596]

Laboratory measurements of the velocities and elastic properties of calcite are important for understanding the deep carbon cycle.

Sound velocities across calcite phase transitions by Brillouin scattering spectroscopy [10.2138/am-2019-6682]

The few-layer MXene Ti3C2Tx was fabricated and utilized as a saturable absorber (SA) to realize passive Q-switched visible bulk laser covering the spectral range of orange (607 nm), red (639 nm), and deep red (721 nm).

Few-layer MXene Ti 3 C 2 T x (T = F, O, or OH) saturable absorber for visible bulk laser [10.1364/OME.9.001795]

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