Physical models of infant mortality: implications for defects in biological systems
暂无分享,去创建一个
Peter Richmond | Alex Bois | Eduardo M García-Roger | Elim Hong | Stefan Hutzler | Ali Irannezhad | Abdelkrim Mannioui | Bertrand M Roehner | Stéphane Tronche | B. Roehner | P. Richmond | S. Hutzler | E. M. García-Roger | A. Mannioui | Alex Bois | Elim Hong | A. Irannezhad | Stéphane Tronche
[1] S. Frank. Dynamics of Cancer: Incidence, Inheritance, and Evolution , 2007 .
[2] D. Langevin. On the rupture of thin films made from aqueous surfactant solutions. , 2019, Advances in colloid and interface science.
[3] A. Biance,et al. Thermodynamic and mechanical timescales involved in foam film rupture and liquid foam coalescence. , 2014, Chemphyschem : a European journal of chemical physics and physical chemistry.
[4] C. Scully. 5 – Cardiovascular medicine , 2014 .
[5] B. Roehner,et al. Congenital anomalies from a physics perspective. The key role of “manufacturing” volatility , 2019, Physica A: Statistical Mechanics and its Applications.
[6] D. Horstkotte,et al. The natural history of aortic valve stenosis. , 1988, European heart journal.
[7] Murat Tuğberk Bakar,et al. Echocardiographic Follow-Up of Congenital Aortic Valvular Stenosis II , 2006, Pediatric Cardiology.
[8] Markus Krajewski,et al. The great lightbulb conspiracy , 2014, IEEE Spectrum.
[9] M. Möbius,et al. A public study of the lifetime distribution of soap films , 2011 .
[10] B. Roehner,et al. Deciphering infant mortality , 2016 .
[11] B. I. Shklovskii,et al. A simple derivation of the Gompertz law for human mortality , 2004, Theory in Biosciences.
[12] F. Restagno,et al. Influence of Evaporation on Soap Film Rupture. , 2018, Langmuir : the ACS journal of surfaces and colloids.
[13] L. Gavrilov,et al. The reliability theory of aging and longevity. , 2001, Journal of theoretical biology.
[14] S. Nee. Survival and weak chaos , 2018, Royal Society Open Science.
[15] C. Isenberg,et al. The Science of Soap Films and Soap Bubbles , 1978 .
[16] M. Livi-bacci,et al. A Concise History of World Population , 1994 .
[17] B. Roehner,et al. Infant mortality across species. A global probe of congenital abnormalities , 2019, Physica A: Statistical Mechanics and its Applications.
[18] Yunfen Ji,et al. Compatibility testing of fluorescent lamp and ballast systems , 1997, IAS '97. Conference Record of the 1997 IEEE Industry Applications Conference Thirty-Second IAS Annual Meeting.
[19] F. Rouyer,et al. Stability of big surface bubbles: impact of evaporation and bubble size. , 2019, Soft matter.
[20] Murat Tuğberk Bakar,et al. Comparison of Balloon Dilatation and Surgical Valvuloplasty in Non-critical Congenital Aortic Valvular Stenosis at Long-Term Follow-Up , 2018, Pediatric Cardiology.
[21] R. Pugh. Bubble and Foam Chemistry , 2016 .
[22] Z. Di,et al. Magnitude and significance of the peak of early embryonic mortality , 2020, Journal of Biological Physics.
[23] Kyungmee O. Kim,et al. A relation model of gate oxide yield and reliability , 2004, Microelectron. Reliab..
[24] P. Richmond,et al. Can soap films be used as models for mortality studies? , 2018, Physica A: Statistical Mechanics and its Applications.
[25] J. F. Keane,et al. Second natural history study of congenital heart defects. Results of treatment of patients with aortic valvar stenosis. , 1993, Circulation.
[26] Bengt Klefsjö,et al. Proportional hazards model: a review , 1994 .
[27] Predictive implications of Gompertz’s law , 2015, 1509.07271.