Quantifying unquantifiable: The outcome of a clinical case must be quantified to make it Successful
Main Article Content
Downloads
Article Details
Copyright (c) 2020 Suhir E.
This work is licensed under a Creative Commons Attribution 4.0 International License.
Licensing and protecting the author rights is the central aim and core of the publishing business. Peertechz dedicates itself in making it easier for people to share and build upon the work of others while maintaining consistency with the rules of copyright. Peertechz licensing terms are formulated to facilitate reuse of the manuscripts published in journals to take maximum advantage of Open Access publication and for the purpose of disseminating knowledge.
We support 'libre' open access, which defines Open Access in true terms as free of charge online access along with usage rights. The usage rights are granted through the use of specific Creative Commons license.
Peertechz accomplice with- [CC BY 4.0]
Explanation
'CC' stands for Creative Commons license. 'BY' symbolizes that users have provided attribution to the creator that the published manuscripts can be used or shared. This license allows for redistribution, commercial and non-commercial, as long as it is passed along unchanged and in whole, with credit to the author.
Please take in notification that Creative Commons user licenses are non-revocable. We recommend authors to check if their funding body requires a specific license.
With this license, the authors are allowed that after publishing with Peertechz, they can share their research by posting a free draft copy of their article to any repository or website.
'CC BY' license observance:
License Name |
Permission to read and download |
Permission to display in a repository |
Permission to translate |
Commercial uses of manuscript |
CC BY 4.0 |
Yes |
Yes |
Yes |
Yes |
The authors please note that Creative Commons license is focused on making creative works available for discovery and reuse. Creative Commons licenses provide an alternative to standard copyrights, allowing authors to specify ways that their works can be used without having to grant permission for each individual request. Others who want to reserve all of their rights under copyright law should not use CC licenses.
Suhir E (2018) Human-in-the-Loop: Probabilistic Modeling of an Aerospace Mission Outcome, CRC Press. Link: https://bit.ly/3mWezmD
Suhir E (1997) Applied Probability for Engineers and Scientists, McGraw-Hill, New York.
Suhir E (2005) Reliability and Accelerated Life Testing, Semiconductor International.
Suhir E (2019) Making a Viable Medical Electron Device Package into a Reliable Product, IMAPS Advancing Microelectronics 46.
Suhir E (2019) To Burn-in, or not to Burn-in: That’s the Question, Aerospace 6: 29. Link: https://bit.ly/2MhtjA3
Suhir E, Mahajan R (2011) Are Current Qualification Practices Adequate?, Circuit Assembly.
Suhir E (2018) What Could and Should Be Done Differently: Failure-Oriented-Accelerated-Testing (FOAT) and Its Role in Making an Aerospace Electronics Device into a Product. Journal of Materials Science: Materials in Electronics 29: 2939-2948. Link: https://bit.ly/3mVOpQY
Suhir E (2020) The Outcome of an Engineering Undertaking of Importance Must Be Quantified to Assure its Success and Safety: Review. Journal of Aerospace Engineering and Mechanics 4. Link: https://bit.ly/3o2W55y
Suhir E, Yi S (2016) Probabilistic Design for Reliability of Medical Electronic Devices: Role, Significance, Attributes, Challenges, IEEE Medical Electronics Symp., Portland.
Suhir E, Yi S (2017) Probabilistic Design for Reliability (PDfR) of Medical Electronic Devices (MEDs): When Reliability is Imperative, Ability to Quantify it is a Must. Journal of Surface Mount Technology (SMT) 30.
Suhir E, Mahajan R, Lucero A, Bechou L (2012) Probabilistic Design for Reliability (PDfR) and a Novel Approach to Qualification Testing (QT). 2012 IEEE/AIAA Aerospace Conf Big Sky, Montana. Link: https://bit.ly/3mXUOeo
Suhir E (2013) Could Electronics Reliability Be Predicted, Quantified and Assured? Microelectronics Reliability 53: 925-936. Link: https://bit.ly/2JvwC5E
Suhir E (2014) Electronics Reliability Cannot Be Assured, if it is not Quantified. Chip Scale Reviews.
Suhir E (1998) The Future of Microelectronics and Photonics and the Role of Mechanics and Materials. ASME J Electr Packaging (JEP) 120: 1-11. Link: https://bit.ly/37TEW8r
Suhir E (2008) How to Make a Device into a Product: Accelerated Life Testing It’s Role, Attributes, Challenges, Pitfalls, and Interaction with Qualification Testing. in E.Suhir, C.-P. Wong, Y.-C. Lee, eds., Micro- and Opto-Electronic Materials and Structures: Physics, Mechanics, Design, Packaging, Reliability 2.
Suhir E, Yi S (2017) Accelerated Testing and Predicted Useful Lifetime of Medical Electronics. Handlery Hotel, San-Diego, IMAPS Conf. on Advanced Packaging for Medical Electronics.
Suhir E (2013) Failure-Oriented-Accelerated Testing (FOAT), and Its Role in Making a Viable IC Package into a Reliable Product. Circuit Assembly.
Suhir E, Bensoussan A, Nicolics J, Bechou L (2014) Highly Accelerated Life Testing (HALT), Failure Oriented Accelerated Testing (FOAT), and Their Role in Making a Viable Device into a Reliable Product, 2014 IEEE Aerospace Conference, Big Sky, Montana.
Suhir E (2014) Failure-Oriented-Accelerated-Testing (FOAT) and Its Role in Making a Viable Package into a Reliable Product, SEMI-TERM 2014, San Jose, CA.
Suhir E (2010) Probabilistic Design for Reliability. Chip Scale Reviews. Link: https://bit.ly/3aM3r9H
Suhir E (2017) Probabilistic Design for Reliability of Electronic Materials, Assemblies, Packages and Systems: Attributes, Challenges, Pitfalls, Plenary Lecture, MMCTSE 2017, Cambridge, UK.
Suhir E (2019) Design for Reliability of Electronic Materials and Systems, in Holm Altenbach and Andreas Oechsner, eds., Encyclopedia of Continuum Mechanics.
Zhurkov SN (1965) Kinetic Concept of the Strength of Solids. Int J Fracture Mechanics 1: 311-323. Link: https://bit.ly/3aOgzuX
Suhir E, Kang S (2013) Boltzmann-Arrhenius-Zhurkov (BAZ) Model in Physics-of-Materials Problems. Modern Physics Letters B (MPLB) 27. Link: https://bit.ly/3pIRA0r
Suhir E, Bensoussan A (2014) Application of Multi-Parametric BAZ Model in Aerospace Optoelectronics, 2014 IEEE Aerospace Conference, Big Sky, Montana.
Suhir E, Bechou L, Bensoussan A (2012) Technical Diagnostics in Electronics: Application of Bayes Formula and Boltzmann-Arrhenius-Zhurkov Model. Circuit Assembly. Link: https://bit.ly/37VCUVC
Suhir E (2014) Three-Step Concept in Modeling Reliability: Boltzmann-Arrhenius-Zhurkov Physics-of-Failure-Based Equation Sandwiched Between Two Statistical Models. Microelectronics Reliability 54: 2594-2603. Link: https://bit.ly/2WUpcM9
Suhir E (2019) Failure-Oriented-Accelerated-Testing (FOAT), Boltzmann-Arrhenius-Zhurkov Equation (BAZ) and Their Application in Microelectronics and Photonics Reliability Engineering. Int J Aeronautical Sci Aerospace Research (IJASAR) 6. Link: https://bit.ly/38AZphq
Suhir E (2020) Boltzmann-Arrhenius-Zhurkov Equation and Its Applications In Electronic-and-Photonic Aerospace Materials Reliability-Physics Problems. International Journal of Aeronautical Science and Aerospace Research (IJASAR). Link: https://bit.ly/3mU3u5t
Suhir E, Bechou L (2013) Availability Index and Minimized Reliability Cost, Circuit Assemblies.
Suhir E (2015) Analytical Bathtub Curve with Application to Electron Device Reliability. Journal of Materials Science Materials in Electronics 26. Link: https://bit.ly/2L6Biz2
Suhir E (2014) Statistics- and Reliability-Physics-Related Failure Processes, Modern Physics Letters B (MPLB) 28.
Suhir E (2018) Probabilistic Design for Reliability (PDfR) of Aerospace Instrumentation: Role, Significance, Attributes, Challenges , 5th IEEE Int. Workshop on Metrology for Aerospace (MetroAeroSpace), Rome, Italy, Plenary Lecture.
Suhir E (2015) Analytical Modeling Enables Explanation of Paradoxical Situations in the Behavior and Performance of Electronic Materials and Products: Review. Journal of Physical Mathematics 07.
Suhir E (2016) Analytical Modeling Occupies a Special Place in the Modeling Effort, Short Comm. Journal of Physical Mathematics 7. Link: https://bit.ly/2L2bgNw
Suhir E (2020) Landing on Mars: Probabilistic Modeling Enables Quantifying the Last Six Minutes of Terror. Acta Astronautica 177. Link: https://bit.ly/3nWuaEj
Suhir E (2021) Astronaut's Performance vs. His/Hers Human-Capacity-Factor and State-of-Health: Application of Double-Exponential-Probability-Distribution Function. Acta Astronautica 178: 250-256. Link: https://bit.ly/3nYogSS
Reason JT (1990) Human Error, Cambridge University Press, Cambridge, UK. Link: https://bit.ly/3mU3Qcj
Bogner MS (1994) Human Error in Medicine, CRC Press, Boca Raton. Link: https://bit.ly/38G4wwY
Hancock PA, Mihaly T, Rahimi M, Meshkati N (1988) A Bibliographic Listing of Mental Workload Research. Advances in Psychology 52: 329-333. Link: https://bit.ly/3aXtNp0
Hamilton D, Bierbaum C (1990) Task Analysis/Workload (TAWL)-A Methodology for Predicting Operator Workload, Proc. of the Human Factors and Ergonomics Society 34-th Annual Meeting, Santa Monica, CA. Link: https://bit.ly/3hrVpUQ
Hancock PA, Caird JK (1993) Experimental Evaluation of a Model of Mental Workload, Human Factors: The Journal of the Human Factors and Ergonomics Society 35. Link: https://bit.ly/2MjBADH
Hollnagel E (1993) Human Reliability Analysis: Context and Control, Academic Press, London and San Diego. Link: https://bit.ly/37WdY0g
Endsley MR (1995) Toward a Theory of Situation Awareness in Dynamic Systems. Human Factors 37: 32-64. Link: https://bit.ly/3aQ0yok
Ericsson KA, Kintsch W (1995) Long Term Working Memory. Psychol Rev 102: 211-245. Link: https://bit.ly/3hq6fub
Reason JT (1997) Managing the Risks of Organizational Accidents, Ashgate Publishing Company. Link: https://bit.ly/3pxdHqg
Endsley MR, Garland DJ (2000) Situation Awareness Analysis and Measurement. Lawrence Erlbaum Associates, Mahwah, NJ. Link: https://bit.ly/3aOKYcp
Lebiere C (2001) A Theory Based Model of Cognitive Workload and its Applications, Proc. of the Interservice/Industry Training, Simulation and Education Conf., Arlington, VA INDIA.
Kirlik A (2003) Human Factors Distributes Its Workload. In E.Salas, ed., Advances in Human Performance and Cognitive Engineering Research 1.
Diller DE, Gluck KA, Tenney YJ, Godfrey R (2005) Comparison, Convergence, and Divergence in Models of Multitasking and Category Learning, and in Architectures Used to Create Them, In Gluck, K.A. and Pew, R.W. (eds.), Modeling human behavior with integrated cognitive architectures, Mahwah, NJ, Lawrence Erlbaum Associates. Link: https://bit.ly/3mZLRRQ
Suhir E (2009) Helicopter-Landing-Ship: Undercarriage Strength and the Role of the Human Factor, ASME Offshore Mechanics and Arctic Engineering (OMAE) Journal 132. Link: https://bit.ly/37SX3eT
Suhir E, Mogford RH (2011) Two Men in a Cockpit: Probabilistic Assessment of the Likelihood of a Casualty if One of the Two Navigators Becomes Incapacitated. J Aircraft 48. Link: https://bit.ly/37Vb6Aq
Suhir E (2011) Human-in-the-Loop: Likelihood of a Vehicular Mission-Success-and-Safety, and the Role of the Human Factor, Paper ID 1168, 2011 IEEE/AIAA Aerospace Conference, Big Sky, Montana.
Suhir E (2012) Likelihood of Vehicular Mission-Success-and-Safety. Journal of Aircraft 49.
Suhir E (2014) Human-in-the-loop (HITL): Probabilistic Predictive Modeling of an Aerospace Mission/Situation Outcome. Aerospace 1: 101-136. Link: https://bit.ly/2WTAEYs
Suhir E, Bey C, Lini S, Salotti JM, Hourlier S, Claverie B (2014) Anticipation in Aeronautics: Probabilistic Assessments, Theoretical Issues in Ergonomics Science.
Suhir E (2014) Human-in-the-loop: Probabilistic Predictive Modeling, its Role, Attributes, Challenges and Applications. Theoretical Issues in Ergonomics Science (TIES). Link: https://bit.ly/3mXXrwM
Suhir E (2014) Human-in-the-loop (HITL): Probabilistic Predictive Modeling (PPM) of an Aerospace Mission/Situation Outcome. Aerospace. Link: https://bit.ly/34Tv9gP
Suhir E (2014) Human-in-the-loop: Probabilistic Predictive Modeling, Its Role, Attributes, Challenges and Applications. Theoretical Issues in Ergonomics Science (TIES). Link: https://bit.ly/3rym1YF
Suhir E (2015) Human-in-the-Loop and Aerospace Navigation Success and Safety: Application of Probabilistic Predictive Modeling. SAE Conf. Seattle, WA.
Suhir E (2015) Human-in-the-Loop: Could Predictive Modeling Improve Human Performance? J Phys Math.
Suhir E (2017) Human-in-the-Loop: Application of the Double Exponential Probability Distribution Function Enables Quantifying the Role of the Human Factor. Int J Human Factor Modeling and Simulation 5. Link: https://bit.ly/3aRpyeO
Rosenfeld A, Kraus S, Brachman R, Stone P (2018) Predicting Human Decision-Making: from Prediction to Action. Morgan & Claypool. Link: https://bit.ly/3aQbi63
Suhir E (2018) Editorial, Quantifying Human Factors: Towards Analytical Human-in-the-Loop. Special Issue of the Int J Human Factor Modeling and Simulation 6.
Suhir E (2018) Human-in-the-Loop: Probabilistic Modeling of an Aerospace Mission Outcome. CRC Press. Link: https://bit.ly/3mX1tW8
Suhir E (2018) Aerospace Mission Outcome: Predictive Modeling, editorial, Special Issue Challenges in Reliability Analysis of Aerospace Electronics. Aerospace 5. Link: https://bit.ly/3aRi4sq
Suhir E (2019) Assessment of the Required Human Capacity Factor (HCF) Using Flight Simulator as an Appropriate Accelerated Test Vehicle. Int J Human Factor Model Simul 7. Link: https://bit.ly/2WS5fWl
Suhir E (2019) Failure-Oriented-Accelerated-Testing and Its Possible Application in Ergonomics. Ergonomics Int J 1-3. Link: https://bit.ly/3aOMdZ7
Suhir E (2019) Mental Workload (MWL) vs. Human Capacity Factor (HCF): A Way to Quantify Human Performance. in Gregory and Inna Bedny, eds., Applied and Systemic-Structural Activity Theory, CRC Press. Link: https://bit.ly/2MjDmol
Suhir E (2019) Assessment of the Required Human Capacity Factor (HCF) Using Flight Simulator as an Appropriate Accelerated Test Vehicle. Int J Human Factor Model Simul 7. Link: https://bit.ly/3aM7mmV
Suhir E (2021) Astronaut's Performance vs. His/Hers Human-Capacity-Factor and State-of-Health: Application of Double-Exponential-Probability-Distribution Function. Acta Astronautica 178. Link: https://bit.ly/3mXcLtM
Suhir E (2013) Miracle-on-the-Hudson: Quantified Aftermath. Int J Human Factors Modeling and Simulation 4: 35-62. Link: https://bit.ly/3hqGESb
Madhavan P, Wiegmann DA, ‘Similarities DA (2007) Differences Between Human-Human and Human-Automation Trust: an Integrative Review, Theoretical Issues in Ergonomic Science 8.
Hoff KA, Bashir M (2015) ‘Trust in Automation: Integrating Empirical Evidence on Factors that Influence Trust. Hum Factors 57: 407-434. Link: https://bit.ly/38MkV2U
Kaindl H, Svetinovic D (2019) Avoiding Undertrust and Overtrust’, in Joint Proceedings of REFSQ-2019 Workshops, Doctoral Symp., Live Studies Track and Poster Track, co-located with the 25th Int. Conf. on Requirements Engineering: Foundation for Software Quality (REFSQ 2019). Essen, Germany.
Suhir E (2019) Adequate Trust, Human-Capacity-Factor, Probability-Distribution-Function of Human Non-Failure and its Entropy. Int J Human Factor Modeling and Simulation 7. Link: https://bit.ly/37TjzEu
Suhir E, Paul G (2021) When Instrumentation and Human Performance Contribute Jointly to the Outcome of a Human-System-Interaction (HIS) Mission, 21st Triennial Congress of International Ergonomics Association - IEA, Vancouver, Canada.
Suhir E (2020) Risk-Analysis in Aerospace Human-Factor-Related Tasks: Review and Extension. Journal of Aerospace Engineering and Mechanics (JAEM) 4. Link: https://bit.ly/3aQ2z3S
Suhir E, Paul G (2020) Avoiding Collision in an Automated Driving Situation, Theoretical Issues in Ergonomics Science. Link: https://bit.ly/3nXhH34
Suhir E, Scaraglini S, Paul G (2020) Extraordinary Automated Driving Situations: Probabilistic Analytical Modeling of Human-Systems-Integration(HSI) and the Role of Trust. AHFE, San-Diego, CA. Link: https://bit.ly/2L3Y6iY
Suhir E (2020) Head-on Railway Obstruction: Probabilistic Model. Theoretical Issues in Ergonomic Science. Link: https://bit.ly/3nSaDVk
Suhir E, Karwowski W, Bedny I, Paul G (2021) Some Major Human Issues in Aerospace Engineering: Review and Extension, 21st Triennial Congress of International Ergonomics Association - IEA Vancouver, Canada.
Salotti JM, Hedmann R, Suhir E (2014) Crew Size Impact on the Design, Risks and Cost of a Human Mission to Mars. 2014 IEEE Aerospace Conference, Big Sky, Montana. Link: https://bit.ly/2KAMWmh
Salotti JM, Suhir E (2014) Some Major Guiding Principles for Making Future Manned Missions to Mars Safe and Reliable, 2014 IEEE Aerospace Conference, Big Sky, Montana. Link: https://bit.ly/38M4Z0u
Salotti JM, Suhir E (2014) Manned Missions to Mars: Minimizing Risks of Failure. Acta Astronautica 93: 148-161. Link: https://bit.ly/3nWdtsl