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Full-Text Articles in Medicine and Health Sciences

Key Factors For Improving Rigor And Reproducibility: Guidelines, Peer Reviews, And Journal Technical Reviews, Hong S. Lu, Alan Daugherty Mar 2022

Key Factors For Improving Rigor And Reproducibility: Guidelines, Peer Reviews, And Journal Technical Reviews, Hong S. Lu, Alan Daugherty

Saha Cardiovascular Research Center Faculty Publications

To respond to the NIH's policy for rigor and reproducibility in preclinical research, many journals have implemented guidelines and checklists to guide authors in improving the rigor and reproducibility of their research. Transparency in developing detailed prospective experimental designs and providing raw data are essential premises of rigor and reproducibility. Standard peer reviews and journal-specific technical and statistical reviews are critical factors for enhancing rigor and reproducibility. This brief review also shares some experience from Arteriosclerosis, Thrombosis, and Vascular Biology, an American Heart Association journal, that has implemented several mechanisms to enhance rigor and reproducibility for preclinical research.


Imaging Techniques For Aortic Aneurysms And Dissections In Mice: Comparisons Of Ex Vivo, In Situ, And Ultrasound Approaches, Sohei Ito, Hong S. Lu, Alan Daugherty, Hisashi Sawada Feb 2022

Imaging Techniques For Aortic Aneurysms And Dissections In Mice: Comparisons Of Ex Vivo, In Situ, And Ultrasound Approaches, Sohei Ito, Hong S. Lu, Alan Daugherty, Hisashi Sawada

Saha Cardiovascular Research Center Faculty Publications

Aortic aneurysms and dissections are life-threatening conditions that have a high risk for lethal bleeding and organ malperfusion. Many studies have investigated the molecular basis of these diseases using mouse models. In mice, ex vivo, in situ, and ultrasound imaging are major approaches to evaluate aortic diameters, a common parameter to determine the severity of aortic aneurysms. However, accurate evaluations of aortic dimensions by these imaging approaches could be challenging due to pathological features of aortic aneurysms. Currently, there is no standardized mode to assess aortic dissections in mice. It is important to understand the characteristics of each approach for …


Β-Aminopropionitrile-Induced Aortic Aneurysm And Dissection In Mice, Hisashi Sawada, Zachary A. Beckner, Sohei Ito, Alan Daugherty, Hong S. Lu Feb 2022

Β-Aminopropionitrile-Induced Aortic Aneurysm And Dissection In Mice, Hisashi Sawada, Zachary A. Beckner, Sohei Ito, Alan Daugherty, Hong S. Lu

Saha Cardiovascular Research Center Faculty Publications

The mechanistic basis for the formation of aortic aneurysms and dissection needs to be elucidated to facilitate the development of effective medications. β-Aminopropionitrile administration in mice has been used frequently to study the pathologic features and mechanisms of aortic aneurysm and dissection. This mouse model mimics several facets of the pathology of human aortic aneurysms and dissection, although many variables exist in the experimental design and protocols that must be resolved to determine its application to the human disease. In the present brief review, we have introduced the development of this mouse model and provided insights into understanding its pathologic …