Publications by authors named "A Parra Llorca"

Article Synopsis
  • Liver cirrhosis is a significant global health issue that often goes undiagnosed until severe complications arise, highlighting the need for tools to identify at-risk individuals earlier.
  • Researchers developed the LiverRisk score, utilizing demographic and lab data from a large international cohort to categorize individuals into different risk groups for future liver-related issues.
  • The LiverRisk score demonstrated superior predictive accuracy for liver stiffness and related outcomes compared to existing serum biomarkers, effectively aiding in the identification of those at heightened risk for liver disease complications.
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Background: The development of liver cirrhosis is usually an asymptomatic process until late stages when complications occur. The potential reversibility of the disease is dependent on early diagnosis of liver fibrosis and timely targeted treatment. Recently, the use of non-invasive tools has been suggested for screening of liver fibrosis, especially in subjects with risk factors for chronic liver disease.

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The mammalian cerebral cortex represents one of the most recent and astonishing inventions of nature, responsible of a large diversity of functions that range from sensory processing to high-order cognitive abilities, such as logical reasoning or language. Decades of dedicated study have contributed to our current understanding of this structure, both at structural and functional levels. A key feature of the neocortex is its outstanding richness in cell diversity, composed by multiple types of long-range projecting neurons and locally connecting interneurons.

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In mammals, the construction of the cerebral cortex involves the coordinated output of large populations of apical progenitor cells. Cortical progenitor cells use intrinsic molecular programs and complex regulatory mechanisms to generate a large diversity of excitatory projection neurons in appropriate numbers. In this review, we summarize recent findings regarding the neurogenic behavior of cortical progenitors during neurogenesis.

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