2024
1) Rahman MM, Kotturi H, Nikfarjam S, Bhargava K, Ahsan N, Khandaker M.
Antimicrobial Activity of Polycaprolactone Nanofiber Coated with
Lavender and Neem Oil Nanoemulsions against Airborne Bacteria.
Membranes. 2024; 14(2):36. https://doi.org/10.3390/membranes14020036.
2023
1) Nikfarjam S, Aldubaisi Y, Swami V, Swami V, Xu G, Vaughan MB, Wolf
RF, Khandaker M. Polycaprolactone Electrospun Nanofiber Membrane with
Skin Graft Containing Collagen and Bandage Containing MgO Nanoparticles
for Wound Healing Applications. Polymers. 2023 Apr 24;15(9):2014. PMID:
37177160; PMCID: PMC10180917.
2) Khandaker M, Lane R, Yeakley S, Alizereej H, Nikfarjam S, Ait Moussa
A, Vaughan MB, Haleem AM. Evaluation of a Bioabsorbable Scaffold and
Interlocked Nail System for Segmental Bone Defect. J Funct Biomater.
2023 Mar 27;14(4):183. doi: 10.3390/jfb14040183. PMID: 37103273; PMCID:
PMC10141685.
2022
1) Khandaker M, Nomhwange H, Progri H, Nikfarjam S, Vaughan MB.
Evaluation of Polycaprolactone Electrospun Nanofiber-Composites for
Artificial Skin Based on Dermal Fibroblast Culture. Bioengineering
(Basel). 2022 Jan 6;9(1):19. doi: 10.3390/bioengineering9010019. PMID:
35049727; PMCID: PMC8773077.
2) Kotturi, H.; Lopez-Davis, C.; Nikfarjam, S.; Kedy, C.; Byrne, M.;
Barot, V.; Khandaker, M. Incorporation of Mycobacteriophage Fulbright
into Polycaprolactone Electrospun Nanofiber Wound Dressing. Polymers
2022, 14, 1948. https://doi.org/10.3390/polym14101948, PMCID:
PMC9143337, PMID: 35631831
2021
1) Khandaker, M, Nikfarjam, S, Kari, K, Kalay, OC, Karpat, F, Progri, H,
Bhuiyan, A, Clary, E, & Haleem, A. "Laser Microgrooving and Nanofiber
Membrane Application for Total Knee Replacement Implants Using a Caprine
Model." Proceedings of the ASME 2021 International Mechanical
Engineering Congress and Exposition. Volume 5: Biomedical and
Biotechnology. November 1–5, 2021. V005T05A022. ASME.
https://doi.org/10.1115/IMECE2021-73597
2) Konari, P.R.; Clayton, Y.-D.; Vaughan, M.B.; Khandaker, M.; Hossan,
M.R. Experimental Analysis of Laser Micromachining of Microchannels in
Common Microfluidic Substrates. Micromachines 2021, 12, 138.
https://doi.org/10.3390/mi12020138, PMID: 33525394
3) Khandaker M, Kotturi H, Progri H, Tummala S, Nikfarjam S, Rao P,
Hosna
A, Arasu DT, Williams W, Haleem AM. In vitro and in vivo effect of
polycaprolactone nanofiber coating on polyethylene glycol diacrylate
scaffolds for intervertebral disc repair. Biomed Mater. 2021 May
24;16(4). doi: 10.1088/1748-605X/abfd12. PMID: 33915528.
4) Khandaker M, Progri H, Arasu DT, Nikfarjam S, Shamim N. Use of
Polycaprolactone Electrospun Nanofiber Mesh in a Face Mask. Materials
(Basel). 2021;14(15):4272. Published 2021 Jul 30.
doi:10.3390/ma14154272, PMID: 34361466
2020
1) M. Khandaker, A. Ait Moussa, D. Sama, F.
Safavinia, S. Hazra, O. C.Kalay, F. Karpat, E. Clary and A. Haleem
“Laser-induced microgrooves improve the mechanical responses of a
total knee replacement implant,” Micromachines, 2020, 11,
466.
2019
1)
N.B.
Alp, O. Doğan, T. G. Yılmaz, O. C. Kalay, A. A.
Moussa, F.
Karpat, M. Khandaker, and G. Akdag,
“UNDERSTANDING THE CAUSES BEHIND CORACOID GRAFT OSTEOLYSIS
IN
LATARJET PROCEDURE (Finite Element Analysis and Comparison of
Three
Fixation Methods)” Orthopaedics & Traumatology:
Surgery
& Research, 2020;106 (1):53-59. PMID:31843510.
2) Kallol, K.M.Z.; Motalab, M.; Parvej, M.S.;
Konari, P.R.; Barghouthi, H.; Khandaker, M.
“Differences of Curing Effects between a Human and
Veterinary
Bone Cement,” Materials 2019, 12, 470.
PMID: 30717484 PMCID: PMC6384745
2017
1) M Khandaker,
S.
Riahinezhad, J. Jamadagni, T. Morris, A. Coles, M. Vaughan "
Use of
Polycaprolactone Electrospun Nanofibers as a Coating for Poly(methyl
methacrylate) Bone Cement ." Nanomaterials 2017 , 7 (7), 145;
doi:10.3390/nano7070175.
2) M Khandaker, S. Riahinezhad,
W.
Williams, R. Wolf, " Microgroove and
Collagen-poly(e-caprolactone)
Nanofiber Mesh Coating Improves the Mechanical Stability and
Osseointegration of Titanium Implants." Nanomaterials 2017 , 7 (6),
145;
doi: 10.3390/nano7060145.
3) Ait Moussa A, Fischer J, Yadav R, Khandaker M.
Minimizing Cement Damage and Stress Shielding of the Bone in Cemented
Femoral Hip Prostheses through Computational Design Optimization.
Advanced
in Orthopedics, Vol 2017.
doi:
10.1155/2017/8437956 .
4) Khandaker M, Riahinezhad S, Sultana F, Morris T,
Wolf R,
Vaughan M. Effect of collagen- polycaprolactone extracellular matrix on
the
in vitro cytocompatibility and in vivo bone responses of titanium.
Journal
of medical and biological engineering., 38, 1-14,
DOI
10.1007/s40846-017-0312-7, NIHMSID 895164.
5)
Kotturi H, Abuabed A, Zafar H*, Sawyer E**, Pallipparambil B*, Jamadagni
H*,
and Khandaker M.
“Evaluation of Polyethylene Glycol Diacrylate-Polycaprolactone
Scaffolds for Tissue Engineering
Applications,”J. of Functional Biomaterials. 2017 Sep 5; 8(3).
doi:
10.3390/jfb8030039. PMCID: PMC5618290.
6) Khandaker M and S. Riahinezhad* “Evaluation of
Electrospun Nanofiber-Anchored Silicone for the
Degenerative Intervertebral Disc." Journal of Healthcare
Engineering,
Vol 2017.
https://doi.org/10.1155/2017/5283846.
2016
1) Morshed Khandaker, Shahram
Riahinezhad, Fariha Sultana, Melville Vaughan, Joshua Knight and Tracy
Morris.“Peen treatment on a titanium implant: Effect of roughness,
osteoblast cell functions, and bonding with bone cement.” Published in
International Journal of Nanomedicine, Vol. 2016, Iss. June, pp.
585-595.
(PubMed Central ID 4745826)
2) M Khandaker, M, Riahinezhad S, Li Y, Vaughan M,
Sultana
F, Morris T, Phinney L, Hossain K.“Plasma nitriding of titanium alloy:
Effect of roughness, hardness, biocompatibility, and bonding with bone
cement,” published online in in Bio-Medical Materials and Engineering.
Vol
28.
2015
1. M. Khandaker and Z. Meng“The
Effect of
Nanoparticles and Alternative Monomer on the Exothermic Temperature of
PMMA
Bone Cement,” published in Procedia Engineering, Vol. 105, June 2015,
pp.
946-952 (PubMed Central ID 726558).
2. M. Khandaker, S. Tarantini, A. Orock, J. White, O.
Yasar, “Biomechanical performances of networked Polyethylene Glycol
Diacrylate: Effect of photo initiator concentration, temperature, and
incubation time,” published online in Int. Journal of Biomaterial. Vol
2015
(PubMed Central ID 3872155)
2014.
1) Khandaker M, Vaughan M,
Morris
T, White J, Meng Z, " Effect of additives particles on mechanical,
thermal and cell functions properties of poly (methyl methacrylate)
cement," International Journal of Nanomedicine, 2014:9
2699–2712.
(PubMed
download
link)
2)
Khandaker M, Utsaha KC, Morris T, “Fracture
toughness
of titanium–cement interfaces: effects of fibers and loading
angles,” International Journal of Nanomedicine, 2014:9: 1689 -
1697.
(PubMed
download
link)
3) Khandaker M, Melville B. Vaughan and Binil Starly,
“The influence of MgO nanoparticles on the osseointegration of
polycaprolactone - sodium alginate hydrogel interfaces,” British
Journal of Applied Science & Technology, Vol 4, Issue 1, 2014.
4) Jeremiah White , Melville B. VaughanMorshed Khandaker, “Tissue
Engineered
PEDGA Hydrogel Cell Viability Analysis: Effects of Networked Structure,
Photoinitiator Concentration, and Incubation Time,” published in Journal
for
Undergraduate Research, Vol. 2014, pp. 34-40.
5) Khandaker M, Utasha K.C and Khadaka A.“Effect of fiber patterns on
the
fracture of implant/cement interfaces,” published online in Procedia
Engineering. Vol 90, pp. 32-38. (PubMed Central ID 4582443)
2013
1) Morshed Khandaker and
Stephen
Ekwaro Osire, "Weibull Analysis of Fracture Test Data on Bovine
Cortical Bone: Influence of Orientation," International Journal of
Biomaterial. 2013;(PubMed
download
link)
2) M. Khandaker, “Poly(vinyl alcohol)/Poly(acrylic
acid)
hydrogel in a dc electric field: swelling, shape change, and actuation
characteristics,” International Journal of Material Science, Vol 3,
issue 4,
December 2013.
3) Morshed Khandaker, Yanling Li, Tracy Morris, “Micro
and
nano MgO particles for the improvement of fracture toughness of the
bone-cement interfaces,” 46(5), Journal of Biomechanics,
2013.(PubMed
download
link)
2012
1) M.P.H Khandaker and S.
Tarantini, “Effects of material mismatch on the failure characteristics
of
bone-composite cement specimens,” Advances in Materials Science and
Applications, vol. 1, pp. 1-8,
2012.(PubMed
download
link)
2010
1)
N.W. Smith , S. Ekwaro-Osire , M. Khandaker , J.
Hashemi,
“Influence of Storage Duration on Retaining Original Fracture
Toughness,”
Experimental Mechanics, DOI 10.1007/s11340-010-9372-0, Jun 2010 .
2008
1) M.P.H Khandaker, S.
Ekwaro-Osire, K. Gautam, ”Applying Modified Weibull Failure Theory to
Bimaterial Specimen under Thermal Loading,” `Fatigue & Fracture of
Engineering Materials & Structures, Vol. 31,pp. 281-294, Jun 2008.
2) F. Karpat, S. Ekwaro-Osire, M.P.H Khandaker,
”Probabilistic analysis of MEMS asymmetric gear tooth,”Journal of
mechanical
design,
Vol. 130, No. 4, pp. 042306-1–042306-6, Apr 2008.
3) S. Ekwaro-Osire, M.P.H Khandaker, K. Gautam,
”Accounting
for high stress gradient by a modified Weibull failure theory,” Journal
of
Engineering Materials and Technology - Transactions of the ASME,Vol.
130,
No. 1, pp.
011004-1–011004-8, January 2008.
2006
1) S. Ekwaro-Osire, C. Ozerdim, and
M.P.H.
Khandaker, “Effect of Attachment Configuration on Impact
Vibration Absorbers,” Experimental Mechanics,
Vol. 46, No. 6, pp. 669-681, Dec 2006.
2) S. Ekwaro-Osire, M.P.H. Khandaker, K. Gautam, and G.
Lolge, “Effect of Reference Loading and Crack Configuration on the
Stress Intensity Factors in Weight Function Method,” International
Journal of Fracture, Vol. 139, No. 3-4, pp. 553-560, June
2006.