IIEST, Shibpur

Indian Institute of Engineering Science and Technology, Shibpur

(Formerly Bengal Engineering and Science University, Shibpur)

Empowering the nation since 1856

आई आई ई एस टि, शिवपुर

भारतीय अभियांत्रिकी विज्ञान एवं प्रौद्योगिकी संस्थान, शिवपुर

(पूर्व में बंगाल इंजीनियरिंग एंड साइंस यूनिवर्सिटी)

१८५६ से देश को सशक्त बनाना

Recent Publications

  1. Correa TA, Pal B, van Arkel RJ, Vanacore F, and Amis A. (2018), Reduced tibial strain-shielding with extraosseous total knee arthroplasty revision system, Medical Engineering & Physics, 62, 22-28.
  2. Ridzwan MIZ, Chamaiporn S, Pal B, van Arkel R, Bell A, Khanna M, Baskaradas A, Abel R, Boughton O, Cobb J, Hansen U.(2018), Femoral Fracture Type can be Predicted from Femoral Structure: A Finite Element Study validated by Digital Volume Correlation Experiments, Journal of Orthopaedic Research, 36(3), 993-1001.
  3. Ghosh R, Pal B, Ghosh D, Gupta S. (2015), Finite Element Analysis of a Hemi-Pelvis: the Effect of Inclusion of Cartilage Layer on Acetabular Stresses and Strain, Computer Methods in Biomechanics and Biomedical Engineering, 18 (7), 697-710.
  4. Pal B, Puthumanapully P, Amis AA. (2013), Biomechanics of Implant Fixation, Orthopaedics and Trauma, 27 (2), 76-84.
  5. Pal B, Gupta S. (2011), The effect of primary stability on load transfer and bone remodelling within the uncemented resurfaced femur, Proc. Instn. Mech. Engrs, Part H, Journal of Engineering in Medicine, 225, 549-561.
  6. Pal B, Gupta S, New AMR. (2010a), Influence of the change in stem length on load transfer and bone remodelling for a cemented resurfaced femur, Journal of Biomechanics, 43, 2908-2914.
  7. Pal B, Gupta S, New AMR, Browne M. (2010b), Strain and micromotion in intact and resurfaced composite femurs: experimental and numerical investigations, Journal of Biomechanics, 43, 1923-1930.
  8. Gupta S, Pal B, New AMR. (2010), The Effects of Interfacial Conditions and Stem Length on Potential Failure Mechanisms in the Uncemented Resurfaced Femur, Annals of Biomedical Engineering, 38(6), 2107-2120.
  9. Pal B, Gupta S, New AMR. (2010c), Design considerations of ceramic resurfaced femoral head: effect of interface characteristics on failure mechanism, Computer Methods in Biomechanics and Biomedical Engineering, 13(2), 143-155.
  10. Pal B, Gupta S, New AM. (2009), A numerical study of failure mechanisms in the cemented resurfaced femur – effects of interface characteristics and bone remodelling, Proc. Instn. Mech. Engrs, Part H, Journal of Engineering in Medicine, 223 (H4), 471-484.

Patent Applications

  1. Amis AA, Pal B. (2015), Hip stem, United Kingdom patent application number 1500481.5, filed 13thJanuary 2015, International (PCT) application number PCT/GB2016/050078, filed 13th January 2016, patent pending, application published by the World Intellectual Property Organization (WO2016/113563 dated 21st July 2016), European Patent Office (EP3244836A1 dated 22nd November 2017), and United States Patent office (US2018/0000598 A1 dated 04th January 2018).
  2. Amis AA, Pal B, Correa TAO. (2015), Joint prosthesis supporting assembly, the United Kingdom patent application number1500479.9, filed 13thJanuary 2015, patent pending.

Book Chapter

  1. Van Arkel R, Pal B, Hannah D, Amis AA. (2015), Biomechanics of Joints, Chapter 13, page 92-101, In ‘Experimental Research Methods in Orthopedics and Trauma’, Hamish Simpson and Peter Augut (Eds), Thieme Publishers, Stuttgart, ISBN 978313173111.