throbber
                                   
`
`CURRICULUM  VITAE  
`  
`PROF.  GAMAL  BAROUD,  PHD  
`____________________________________________________________________
`
`21  DECEMBER  2014      
`
`Confidential  (CV)  
`
`1  
`
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`________________________________________________________________
`Prof.  Dr.  Gamal  Baroud  
`  
`Canada  Research  Chair  in  Biomedical  Engineering,  2005  –  2015  
`Born  on  January  10,  1971  
`Canadian  citizen  
`
`
`
`PRIVATE  ADDRESS  –  620  Belmont  str.,  Sherbrooke,  Qc,  Canada  J1H5P3  
`  
`PROFESSIONAL  ADDRESS  –  Biomechanics  Research  Laboratory,  Mechanical  Engineering  
`Department,  Universite  de  Sherbrooke,  2500  boul.  Universite,  Sherbrooke,  QC,  Canada  J1K  2R1.  
`Phone:  +1  819  821-­‐8000  ext.  61344;  Fax  +  1  819  821-­‐7163;  e-­‐mail:  GamalBaroud@gmail.com  
`_______________________________________________________________________
`
`APPOINTMENTS  /  POSITIONS  
`
`  
`
`Mechanical  Eng.,  U  Sherbrooke  
`Professor  
`Rank.  Full  since  2008  
`  
`2003-­‐now  
`  
`Biomechanics  Laboratory,  U  Sherbrooke  
`  
`Head  
`2000-­‐2003  
`  
`Researcher/Asst  adj.  Prof.   McGill  U,  Orthopaedic  Surgery  
`  
`1998-­‐2000  
`Post-­‐doctoral  fellow  
`  
`U  Calgary,  Human  Performance  Laboratory    
`______________________________________________________________________________
`
`   2003-­‐now  
`
`EDUCATION    
`
`PhD  
`
`MSc    
`
`BEng  
`
`  
`
`  
`
`  
`
`Mechanical  Engineering,  Biomechanics  
`  
`University  of  Technology  Chemnitz,  DE  
`Mechanical  Engineering,  Applied  Mechanics  
`University  of  Technology  Chemnitz,  DE  
`  
`Biomedical  Engineering,    
`1990-­‐1993  
`University  of  Applied  Sciences  of  Aachen,  DE    
`______________________________________________________________________________
`
`1995-­‐1997  
`
`1994-­‐1995  
`
`RECOGNITIONS,  AWARDS,  ACHIEVEMENTS  
`
`• Canada  Research  Chair  Award  in  Skeletal  Reconstruction  and  Biomedical  Engineering  (Tier  II).    
`Mandate  1.  March  2005  –  Feb  2010  
`
`- The  Canada  Research  Chairs  program  stands  at  the  centre  of  the  Canada  national  
`strategy  to  become  one  of  the  world's  top  countries  in  research  and  development.      
`- The  Canada  Research  Chairs  program  is  to  retain  some  of  the  world's  most  accomplish
`ed  and    promising  minds  in  Canada  
`
`  
`
`Confidential  (CV)  
`
`  
`
`2  
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`• Canada  Research  Chair  Award  in  Skeletal  Reconstruction  and  Biomedical  Engineering  (Tier  II)    
`Mandate  2.  March  2010  –  Feb  2015  
`• Recipient  of  most  prestigious  provincial  and  federal  grants  (NSERC,  CIHR,  FQRNT,  MDEIE)  
`• Recipient  of  the  NSERC  Discovery  Accelerator  Supplement  (2009).  This  Research  Acceleration  
`Supplement,  valued  at  $120,000,  is  awarded  to  the  top  3%  of  all  NSERC  Discovery  applicants.  
`• One  of  the  5  highest  funded  professors  of  the  Engineering  Faculty,  University  of  Sherbrooke  
`• Secured,  alone,  over  $5MM  in  peer-­‐reviewed  funding    
`• Secured,  together  with  team,  additional  $6MM  in  peer-­‐reviewed  funding  
`• An  article  selected  by  the  Editor  among  the  top  12  articles  published  in  Biomaterials  in  2011  
`•
`Invited  “key-­‐opinion”  paper  in  Biomaterials  by  the  Editor,  2010  
`• An  article  listed  as  no  16  on  the  list  of  the  25  hottest  articles  in  Biomaterials,  in  2006  
`• Finalist  for  the  New  Investigator  Recognition  Award  at  the  5th  Combined  Meeting  of  the  
`Orthopaedic  Research  Societies  of  Canada,  U.S.A,  Japan  and  Europe  (2004)  
`• Recipient  of  Swiss  Raetia  Post-­‐Doctoral  Fellowship  (2001),  AO  Research  Institute,  Davos,  
`Switzerland  ($60,000/year).  The  nominee  declined  this  fellowship  for  a  position  at  McGill  
`University  
`• The  da  Vinci  Fellowship  Post-­‐Doctoral  Fellowship  ($35,000/year,  1999  –  2000),  Human  
`Performance  Laboratory,  University  of  Calgary,  Canada  
`• Recipient  of  a  prestigious  scholarship  in  Germany  –  The  Federation  President  Konrad  
`Adenauer  Scholarship  for  Gifted  People.  Received  during  doctoral  studies  
`Inception  of  Biomechanics  Laboratory  at  U  Sherbrooke  in  2003  to:  
`• conduct   multidisciplinary   research   at   the   interface   of   engineering   and   medicine   in   the  
`novel  bone  repair  and  augmentation  field    
`• develop  clinically  efficacious  solutions  in  the  form  of  techniques,  biomaterials,  tools  and/or  
`devices  
`• 244  scientific  communications.  Articles  (58),  Book  chapters  (12),  Conference  abstracts  (112),  
`Invited  lectures  (36),  Patent  projects  (26)  
`• Reviewer  for  >12  international  journals  
`• Training  of  58  Highly  qualified  personnel  (HQP)  
`• Completing  University  studies  (Bsc,  MSc,  PhD)  in  Germany  in  a  record  time  of  7  years.  1990-­‐97  
`• Secretary  of  GRIBOI  society  (2008-­‐2012).  GRIBOI  is  a  multidisciplinary  group  of  professionals  
`interested  in  injectable  biomaterials  for  bone  augmentation  and  repair.  
`• VP  Annual  Meetings  of  GRIBOI,  2012  —  ongoing  
`• Excellent   teaching   record.   Since   2003,   undergraduate   and   graduate   courses   in   Applied  
`Mechanics,   Experimental   methods,   and   Biomechanics.   Average   students’   evaluation   is   3.78  
`out  of  4.  
`
`•
`
`
`
`Confidential  (CV)  
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`3  
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`LANGUAGES
`• Arabic   Mother  tongue  
`• English  
`Very  good  
`• German   Very  good  
`• French  
`Good  
`______________________________________________________________________________
`
`CONFERENCE  ORGANIZATION  
`
`• GRIBOI  2013,  President  and  organizer  (240  participants,  3  days),  key  interdisciplinary  research  
`conference  focused  on  the  injectable  biomaterials  and  bone  augmentation  procedures.  
`Boston,  USA.  8-­‐10  APRIL  2013  
`
`• GRIBOI  2011,  President  and  organizer  (210  participants,  3  days),  key  interdisciplinary  research  
`conference  focused  on  the  injectable  biomaterials  and  bone  augmentation  procedures.  
`Boston,  USA.  5-­‐7  APRIL  2011  
`
`• GRIBOI  2008,  President  and  organizer  (170  participants,  2  days),  key  interdisciplinary  research  
`conference  focused  on  the  injectable  biomaterials  and  bone  augmentation  procedures.  
`Montreal,  Canada.  5-­‐6  MAY  2008  
`
`• GRIBOI  2015,  co-­‐chair  (140  participants,  3  days),  key  interdisciplinary  research  conference  
`focused  on  the  injectable  biomaterials  and  bone  augmentation  procedures.  Toronto,  Canada.  
`18-­‐20  May  2015  
`
`• GRIBOI  2014,  co-­‐chair  (160  participants,  3  days),  key  interdisciplinary  research  conference  
`focused  on  the  injectable  biomaterials  and  bone  augmentation  procedures.  Nantes,  France.  5-­‐
`27  May  2014  
`
`•
`
`
`
`
`
`In  the  scientific  committee  or  chairmanship  of  12  congresses  
`
`  
`
`Confidential  (CV)  
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`PATENTS  AND  APPLICATIONS  
`
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`No  
`1  
`2  
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`3  
`6  
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`7  
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`8  
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`9  
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`10  
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`DE1998134277  
`CN  99810909  
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`US  6679890  
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`US  0185496  A1  
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`CA  2648283  
`
`EP  2010266  
`
`11   US  8409211  B2  
`
`12   US  13/790,378  
`CIB  
`13   US  13/790,378  
`CIB  
`
`14  
`
`15   US  14/016,734  
`
`20   US  12/453,261  
`Confidential  (CV)  
`
`Filing  date  
`Jun  16,  1997  
`Jul  30,  1998  
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`Mar  20,  2001  
`Jul  28,  1999  
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`Jul  22,  2002  
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`Aug  18,  2006  
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`April  5,  2007  
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`April  5,  2007  
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`Oct.  5,  2008    
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`Mar  8,  2013  
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`Mar  8,  2013  
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`Mar  31,  2008  
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`Sept  3,  2008  
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`Mar  31,  2008  
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`Mar  31,  2008  
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`Sept  30,  2008  
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`Mar  31,  2008  
`
`5  
`
`File  
`DE1997125269  
`DE  19834277  
`
`Title    
`  
`Prosthesis  for  human  hip  
`Schenkelhals  endoprothese  für  ein  künstliches  
`Hüftgelenk  
`Femoral  neck  for  a  hip  replacement  
`Femoral  neck  endoprosthesis  for  an  artificial  hip  
`joint  
`Method  and  apparatus  for  augmentation  of  the  
`femoral  neck  
`Device  for  injecting  a  viscous  material  into  a  hard  
`tissue  
`Integrated  cement  delivery  system  for  bone  
`augmentation  procedures  and  methods  
`Integrated  cement  delivery  system  for  bone  
`augmentation  procedures  and  methods  
`Integrated  cement  delivery  system  for  bone  
`augmentation  procedures  and  methods  
`Integrated  cement  delivery  system  for  bone  
`augmentation  procedures  and  methods  
`Integrated  cement  delivery  system  for  bone  
`augmentation  procedures  and  methods  
`CN  200880010734   Method  and  apparatus  for  monitoring  and/or  
`controlling  the  curing  of  cements  used  in  medical  
`procedures  
`Method  and  apparatus  for  monitoring  and/or  
`controlling  the  curing  of  cements  used  in  medical  
`procedures  
`Method  and  apparatus  for  monitoring  and/or  
`controlling  the  curing  of  cements  used  in  medical  
`procedures  
`Method  and  apparatus  for  monitoring  and/or  
`controlling  the  curing  of  cements  used  in  medical  
`procedures  
`Method  and  apparatus  for  monitoring  and/or  
`controlling  the  curing  of  cements  used  in  medical  
`procedures  
`IND  0093818  A1   Method  and  apparatus  for  monitoring  the  curing  of  
`cements  
`Cannula  assembly  with  detachable  inner  and  outer   May  5,  2009  
`
`EP  6679890  
`
`CA  2682367  
`
`18   US  12/570,515  
`  
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`16  
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`17  
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`19  
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`21  
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`CA  2665254  
`
`CA  2779742  
`22  
`23   US  13/463,349  
`EP  20100827774  
`24  
`25   US  13/261,391  
`CA  2790388  
`26  
`
`
`
`cannulas  
`Cannula  assembly  with  detachable  inner  and  outer  
`cannulas  
`Bone  cement  delivery  system  
`Bone  cement  delivery  system  
`Bone  cement  delivery  system  
`Orthopedic  device  and  method  
`Orthopedic  device  and  method  
`
`May  5,  2009  
`
`Nov  5,  2010  
`May  3,  2012  
`Nov  5,  2010  
`Jan  20,  2011  
`Jan  20,  2011  
`
`Confidential  (CV)  
`
`6  
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`ARTICLES  IN  REFERRED  JOURNALS    
`Trainees’  names  are  underlined.  
`
`  
`
`Referee
`d  Papers  
`
`Book  
`Chapters  
`
`Abstracts  
`
`Patent  
`Projects  
`
`Invited  
`Presentations    
`
`TOTALS  
`
`Published    
`
`58  
`
`12  
`
`112  
`
`26  
`
`36  
`
`244  
`
`  
`
`1. Tadier  S,  L.  Galea,  B.  Charbonnier,  G.  Baroud,  M.  Bohner  M.  (2014)  Phase  and  size  
`separations  occurring  during  the  injection  of  model  pastes  composed  of  β-­‐tricalcium  
`phosphate  powder,  glass  beads  and  aqueous  solutions.  Acta  Biomater,  10(5):2259-­‐68.  
`
`2. Lapczyna  H,  L.  Galea,  S.  Wüst,  M.  Bohner,  S.  Jerban,  A.  Sweedy,  N.  Doebelin,  N.  van  
`Garderen,  S.  Hofmann,  G.  Baroud,  R.  Müller,  B.  von  Rechenberg  (2014)  Effect  of  grain  size  
`and  microporosity  on  the  in  vivo  behaviour  of  β-­‐tricalcium  phosphate  scaffolds.  Eur  Cell  
`Mater,  28:299-­‐319.  
`
`3. Jerban  S.,  G.  Baroud,  M.  Bohner  (2014)  Significance  of  accessibility  microstructural  
`parameters  in  βTCP  bone  substitutes  to  control  the  resorption  rate  in  sheep  model.  Acta  
`Biomater,  submitted.    
`
`4. Habib  M.,  G.  Baroud,  M.  Bohner  (2014)  Relationship  between  permeability  and  injectability  
`of  a  calciumphosphate  hydraulic  paste.  Acta  Biomater,  submitted.  
`  
`5. Jerban  S.,  G.  Baroud,  M.  Bohner  (2014)  Improving  pore  space  microstructural  
`characterization  in  βTCP.  Acta  Biomater,  submitted.  
`
`6. Krüger  A.,  G.  Baroud,  D.  Noriega,  J.  Figiel,  C.  Dorschel,  S.  Ruchholtz,  L.  Oberkircher  (2013)  
`Height  restoration  and  maintenance  after  treating  unstable  osteoporotic  vertebral  
`compression  fractures  by  cement  augmentation  is  dependent  on  the  cement  volume  used.  
`Clinical  biomechanics,  28(7):725–30.    
`7. Bohner  M.,  S.  Tadier,  N.  van  Garderen,  A.  de  Gasparo,  N.  Döbelin,  and  G.  Baroud  (2013)  
`Synthesis  of  spherical  calcium  phosphate  particles  for  dental  and  orthopedic  applications.  
`Biomatter,  3(2):1–15.    
`8. Anselmetti  G.  C.,  A.  Manca,  S.  Marcia,  G.  Chiara,  S.  Marini,  G.  Baroud,  D.  Regge,  and  F.  
`Montemurro,    (2013)  Vertebral  Augmentation  with  Nitinol  Endoprosthesis:  Clinical  
`Experience  in  40  Patients  with  1-­‐Year  Follow-­‐up.,  Cardiovasc.  Intervent.  Radiol.,  142.  
`9. Krüger  A.,  L.  Oberkircher,  M.  Kratz,  G.  Baroud,  S.  Becker,  and  S.  Ruchholtz  (2012  )  Cement  
`interdigitation  and  bone-­‐cement  interface  after  augmenting  fractured  vertebrae:  A  
`cadaveric  study,    Int  J  Spine  Surg,  6(1):115–123.  
`10. Habib  M.,  G.  Baroud,  L  Galea,  M.  Bohner  (2012)  Evaluation  of  the  ultrasonication  process  
`for  injectability  of  hydraulic  calcium  phosphate  pastes.  Acta  Biomater,  8(3):1164-­‐8.  
`11. Bashoor-­‐Zadeh  M.,  G.  Baroud,  M.  Bohner  (2011)  Effect  of  subvoxel  processes  on  non-­‐
`destructive  characterization  of  β-­‐tricalcium  phosphate  bone  graft  substitutes.  Acta  
`Biomater,  7(11):4045-­‐56.  
`12. Bashoor-­‐Zadeh  M.,  G.  Baroud,  M.  Bohner  (2011)  Simulation  of  the  in  vivo  resorption  rate  
`Confidential  (CV)  
`
`7  
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`of  β-­‐tricalcium  phosphate  bone  graft  substitutes  implanted  in  a  sheep  model.  Biomaterials,  
`32(27):6362-­‐73.  Selected  by  the  editor  as  one  of  the  12  top  articles  published  in  2011  in  
`Biomaterials”  for  best  images.  
`
`13. Bohner  M,  Y.  Loosli,  G.  Baroud,  D.  Lacroix  (2011)  Deciphering  the  link  between  architecture  
`and  biological  response  of  a  bone  graft  substitute.  Acta  Biomater,  7(2):478-­‐84.  
`
`14. Bohner  M.,  G.  Baroud,  B.  Gasser  (2010)  Critical  aspects  in  the  use  of  injectable  calcium  
`phosphates  in  spinal  surgery.  Biomaterials,  31(16):4609-­‐11.  Invited  “key-­‐opinion  paper”  
`for  “Biomaterials”.  
`
`15. Stähli  C.,  M.  Bohner,  M.  Bashoor-­‐Zadeh,  N.  Doebelin,  G.  Baroud  (2010)  Aqueous  
`impregnation  of  porous  β-­‐tricalcium  phosphate  scaffolds.  Acta  Biomater,  6(7):2760–72.  
`
`16. Bashoor-­‐Zadeh  M.,  G.  Baroud,  M.  Bohner  (2009)  Geometric  analysis  of  porous  bone  
`substitutes  using  x-­‐ray  tomography  and  fuzzy  distance  transform.  Acta  Biomater,  6(3):864-­‐
`75.  
`
`17. Bohner  M.,  R.  Luginbühl,  C.  Reber,  N.  Doebelin,  G.  Baroud,  E.  Conforto  (2009)  A  physical  
`approach  to  modify  the  hydraulic  reactivity  of  α-­‐tricalcium  phosphate  powder.  Acta  
`Biomater,  5(9):3524–35.  
`
`18. Mohamed  R.,  C.  Silbermann,  A.  Ahmari,  S.  Bohner,  S.  Becker,  G.  Baroud  (2009)  Cement  
`filling  control  and  bone  marrow  removal  in  vertebral  body  augmentation  by  unipedicular  
`aspiration  technique:  an  experimental  study  using  leakage  model.  Spine,  1;35(3):353-­‐60.  
`
`19. Darabi  A.,  F.  Chandelier,  G.  Baroud  (2009)  Thickness  analysis  and  reconstruction  of  
`trabecular  bone  and  bone  substitute  microstructure  based  on  fuzzy  distance  map  using  
`both  ridge  and  thinning  skeletonization.  Can  J  Elect  Compt  Eng,  34  (1-­‐2):57–62.  
`
`20. Habib  M.,  G.  Baroud,  F.  Gitzhofer,  M.  Bohner  (2010)  Mechanisms  underlying  the  limited  
`injectability  of  hydraulic  calcium  phosphate  paste.  Part  II:  particle  separation  study.  Acta  
`Biomater,  6(1):250-­‐6.  
`
`21. Siegmann  S.,  M.  Habib,  G.  Baroud,  F.  Gitzhofer  et  al  (2008)  Nano  powder  synthesis  by  
`plasmas:  Report  of  the  session  held  at  the  international  round  table  on  thermal  plasma  
`fundamentals  and  applications.  High  Temp.  Mater  Proc,  12(4):205-­‐54.  
`
`22. Habib  M.,  G.  Baroud,  F.  Gitzhofer,  M.  Bohner  (2008)  Mechanisms  underlying  the  limited  
`injection  of  hydraulic  calcium  phosphate  paste.  Acta  Biomater,  4(5):1465-­‐71.    
`
`23. Zeiser  T.,  M.  Bashoor-­‐Zadeh,  A.  Darabi,  G.  Baroud  (2007)  Pore-­‐scale  analysis  of  Newtonian  
`flow  in  the  explicit  geometry  of  vertebral  trabecular  bones  using  lattice  Boltzmann  
`simulation.  Proc  Inst  Mech  Eng  Part  H  J  Eng  Med,  222(2):185-­‐94.  
`
`24. Lion  A.,  B.  Yagimli,  G.  Baroud,  U.  Görke  (2008)  Constitutive  modelling  of  PMMA-­‐based  
`bone  cement:  a  functional  model  of  viscoelasticity  and  its  approximation  for  time  domain  
`investigations.  Arch  Mech,  60(3):221-­‐42.  
`
`25. Darabi  A.,  F.  Chandelier,  G.  Baroud  (2007)  Assessments  and  reconstruction  of  bone  
`microstructure  based  on  FDT  map  and  on  different  skeletonization  methods.  Can  J  Elect  
`Confidential  (CV)  
`
`8  
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`Compt  Eng,  32(3):157-­‐63.  
`
`26. Chandelier  F.,  A.  Darabi,  L.  Tremblay,  M.  Lepage,  G.  Baroud  (2007)  3D  geometrical  analysis  
`and  reconstruction  of  heterogeneous  porous  media  with  application  to  trabecular  bone  
`microarchitecture.  J  Magn  Reson  Imaging,  25(4):553-­‐4.  
`
`27. Baroud  G.,  M.  Crookshank,  M.  Bohner  (2006)  High-­‐viscosity  cement  significantly  enhances  
`uniformity  of  cement  filling  in  vertebroplasty:  an  experimental  model  and  study  on  cement  
`leakage.  Spine,  31(22):2562-­‐8.  
`
`28. Baroud  G.,  P.-­‐L.  Martin,  F.  Cabana  (2006)  Ex  vivo  experiments  of  a  new  injection  cannula  
`for  vertebroplasty.  Spine,  31(1):  115-­‐9.  
`
`29. Bohner  M.,  N.  Doebelin,  G.  Baroud  (2006)  Theoretical  and  experimental  approach  to  test  
`the  cohesion  of  calcium  phosphate  cement  pastes.  Eur  Cell  Mater,  29(12):26-­‐35.  
`
`30. von  Doernberg  M.  C.,  M.  Bohner,  B.  Gasser,  R.  Mathys,  S.  Grünenfelder,  G.  H.  van  Lenthe,  
`R.  Müller,  G.  Baroud,  J.  Auer,  B.  von  Rechenberg  (2006)  In  vivo  behaviour  of  ß-­‐TCP  
`cylinders  with  four  different  macropore  diameters.  Biomaterials,  27(30):5186-­‐98.  No  17  on  
`the  “Top  25  Hottest  Articles”.  
`
`31. Baroud  G.,  T.  Swanson,  T.  Steffen  (2006)  Setting  properties  of  four  acrylic  and  two  Ca-­‐P  
`cements  for  vertebroplasty.  J  Long-­‐term  Eff  Med,  1(16):51-­‐9.  
`
`32. Baroud  G.,  M.  Bohner  (2006)  Biomechanical  impact  of  vertebroplasty.  Postoperative  
`biomechanics  of  vertebroplasty.  Joint  Bone  Spine.  74(2):155-­‐40.    
`
`33. Baroud  G.,  M.  Bohner  (2006)  Conséquences  biomécaniques  de  la  vertébroplastie.  Revue  
`du  rhumatisme,  73(3):248-­‐55.  
`
`34. Baroud  G.,  C.  Vant,  R.  Wilcox  (2006)  Long-­‐term  effects  of  vertebroplasty:  adjacent  
`vertebral  fractures.  J  Long-­‐term  Eff  Med,  15(5):499-­‐514.  
`
`35. Baroud  G.,  T.  Zeiser  (2006)  Microscale  flow  analysis  in  trabecular  vertebral  bone.  J  Magn  
`Reson  Imaging,  25(4):549-­‐50.  
`
`36. Baroud  G.,  C.  Vant,  D.  Giannitsios,  M.  Bohner,  T.  Steffen  (2005)  Effect  of  the  vertebral  shell  
`on  injection  pressure  and  intra-­‐vertebral  pressure  in  vertebroplasty.  Spine,  30(1):68-­‐74.  
`
`37. Baroud  G.,  E.  Cayer,  M.  Bohner  (2005)  Rheological  characterization  of  concentrated  
`aqueous  beta-­‐tricalcium  phosphate  suspensions.  Acta  Biomater,  1(3):357-­‐63.  
`
`38. Baroud  G.,  (2005)  A  brief  update  on  the  biomechanisms  underlying  cement  injection  and  
`leakage  in  vertebroplasty:  Commentary  and  Review.  Supportive  Cancer  therapy,  2(2):105-­‐
`8  
`
`39. Krebs  J.,  S.J.  Ferguson,  M.  Bohner,  G.  Baroud,  T.  Steffen,  P.F.  Heini  (2005)  Clinical  
`measurements  of  cement  injection  pressure  during  vertebroplasty.  Spine.  30(5):E118-­‐
`E122.  
`
`40. Bohner  M.,  G.  Baroud  (2005)  Injectability  of  calcium  phosphate  hydraulic  pastes.  
`
`Confidential  (CV)  
`
`9  
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`Biomaterials,  26(13):1553-­‐63.  
`
`41. Baroud  G.,  T.  Steffen  (2005)  A  new  cannula  reduces  the  cement  delivery  pressure  in  
`vertebroplasty.  Eur  Spine  J,  14(5):474-­‐9.  
`
`42. Baroud  G.,  M.  Bohner,  P.  Heini,  T.  Steffen  (2004)  Injection  biomechanics  of  bone  cements  
`used  in  vertebroplasty.  Bio-­‐Med  Mater  Eng,  14(4):487-­‐504.  
`
`43. Baroud  G.,  F.  Ben  Yehia  (2004)  A  finite-­‐element  rheological  model  for  PMMA  flow:  analysis  
`of  cement  delivery  pressure  in  vertebroplasty.  Proc  Inst  Mech  Eng  Part  H  J  Eng  Med,  
`218(5):331-­‐8.  
`
`44. Baroud  G.,  R.  Falk,  M.  Crookshank,  T.  Steffen  (2004)  Experimental  and  theoretical  
`investigation  of  the  directional  permeability  of  cancellous  bone  for  cement  infiltration.  J  
`Biomech,  37(2):189-­‐96.  
`
`45. Baroud  G.,  C.  Matsushita,  L.  Beckman,  M.  Samara,  T.  Steffen  (2004)  Influence  of  oscillatory  
`mixing  on  the  injectability  of  acrylic  and  Ca-­‐P  bone  cements.  Bio-­‐Med  Mater  Eng,  
`68B(1):105-­‐11.  
`
`46. Baroud  G.,  M.  Samara,  T.  Steffen  (2004)  Influence  of  mixing  method  on  cement  
`temperature-­‐mixing  time  history  and  doughing  time  of  three  acrylic  cements  for  
`vertebroplasty.  Bio-­‐Med  Mater  Eng,  68B(1):112-­‐6.  
`
`47. Baroud  G.,  J.  Wu,  M.  Bohner,  S.  Sponagel,  T.  Steffen  (2003)  How  to  determine  the  
`permeability  for  cement  infiltration  in  osteoporotic  cancellous  bone.  Med  Eng  Phys,  
`25(4):283-­‐8.  
`
`48. Bohner  M.,  B.  Gasser,  G.  Baroud,  P.  Heini  (2003)  Theoretical  and  experimental  model  to  
`describe  the  injection  of  a  PMMA  cement  into  a  porous  structure.  Biomaterials,  
`24(16):2721-­‐30.  
`
`49. Baroud  G.,  J.  Nemes,  S.  Ferguson,  T.  Steffen  (2003)  Material  changes  in  osteoporotic  
`human  cancellous  bone  following  infiltration  with  acrylic  bone  cement  for  a  vertebral  
`cement  augmentation.  Comput  Meth  Biomech  Biomed  Eng,  6(2):133-­‐9.  
`
`50. Baroud  G.,  J.  Nemes,  P.  Heini,  T.  Steffen  (2003)  Load  shift  of  the  intervertebral  disc  after  a  
`vertebroplasty:  a  finite-­‐element  study.  Eur  Spine  J,  12:421-­‐6.  
`
`51. Baroud  G.,  P.  Heini,  J.  Nemes,  M.  Bohner,  S.  Ferguson,  T.  Steffen  (2003)  Biomechanical  
`explanation  of  adjacent  fractures  after  vertebroplasty.  Radiology,  229(2):  606-­‐8.  
`
`52. Miller  J.,  N.  Duncan,  G.  Baroud  (2002)  Viscoelastic  properties  of  the  human  calcaneal  fat  
`pad:  experiment  and  theory.  J  Biomech,  35(12):1523-­‐31.  
`
`53. Baroud  G.  and  T.  Steffen  (2001)  Load  shift  after  augmenting  osteoporotic  vertebrae.  J  
`Biomech,  34:  S57–S90.  
`
`54. Miller  J,  G.  Baroud,  B.M.  Nigg  (2000)  Elastic  behaviour  of  sport  surface  materials.  Sports  
`Eng,  3:177-­‐84.    
`
`Confidential  (CV)  
`
`10  
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`

`55. Baroud  G.,  B.M.  Nigg,  D.J.  Stefanyshyn  (1999)  Energy  storage  and  return  in  sport  
`surfaces.  Sports  Eng,  2:173-­‐80.  
`
`56. Baroud  G.,  G.  Willmann,  R.  Kreissig  (1998)  The  effect  of  stem  coating  on  the  
`postoperative  stress  state  of  the  femur.  Biomed  Tech,  43:25-­‐8.  
`
`57. Baroud,  G.,  G.  Willmann,  R.  Kreissig  (1998)  The  effect  of  hip  prosthesis  coating  on  the  
`postoperative  biomechanical  state  of  the  femur.  Bioceramics,  11:  611-­‐15.  
`
`58. Baroud  G.,  G.  Willmann,  R.  Kreissig  (1997)  Biomechanics  of  the  prosthetically  managed  
`femur.  Biomed  Tech,  42:17-­‐8.  
`
`Confidential  (CV)  
`
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`

`INVITED  BOOK  CHAPTERS  AND  EXTEDNED  CONFERENCE  PROCEEDINGS  
`Trainees’  names  are  underlined.  
`
`1. Bohner  M.,  G.  Baroud  (2008)  New  directions  in  bone  materials.  In:  MA.  Mauro,  K.  Murphy,  
`K.  Thomson,  and  A.  Venbrux  (eds),  Image-­‐Guided  Interventions.  Saunders.  Elsevier.  1701-­‐
`08.  ISBN:  9781416029649.  Chapter  159:  1701-­‐1707.  
`
`2. Staat  M.,  G.  Baroud,  M.  Topcu,  S.  Sponagel  (2008)  Soft  Materials  in  Technology  and  Biology  
`–  Characteristics,  Properties,  and  Parameter  Identification.  In:  G.  Artman,  S.  Chein  (eds)  
`Bioengineering  in  Cell  and  Tissue  Research.  Springer.  253-­‐313.  ISBN-­‐13:  9783540754084,  
`Chapter  22,  253-­‐315  
`
`3. Vant  C.,  M.  Staat,  G.  Baroud  (2008)  Vertebroplasty:  two  intraoperative  Complications.  In:  
`G.  Artman,  S.  Chein  (eds)  Bioengineering  in  Cell  and  Tissue  Research.  Springer.  ISBN  13:  
`9783540754084.  Chapter  22:527-­‐539  
`
`4. Baroud  G.,  S.  Wolf  (2008)  Biomechanics  of  vertebral  cement  augmentation:  risk  of  adjacent  
`fractures  following  vertebroplasty.  In:  S.  Becker,  M.  Ogon  (eds)  Balloon  Kyphoplasty.  
`Springer.  31-­‐36.  ISBN  978-­‐3-­‐211-­‐74220-­‐4.  Chapter  4:31-­‐37.  
`
`5. Baroud  G.,  F.  Schmidt  (2005)  Zur  Biomechanik  der  Zementinjektion  in  der  Vertebroplastik.  
`In:  S.  Becker  (ed),  Balloon  Kyphoplastie.  Springer  Verlag.  23-­‐30.  ISBN  3-­‐211-­‐23592-­‐2.  
`Chapter  4:23-­‐30.  
`
`6. Baroud  G.  (2005)  Zur  Biomechanik  der  Anschlussfractur  nach  einer  Zementaugmentation.  
`In:  S.  Becker  (ed),  Balloon  Kyphoplastie.  Springer  Verlag.  31-­‐39.  ISBN  3-­‐211-­‐23592-­‐2.  
`Chapter  4:31-­‐39.  
`
`7. Baroud  G.,  C.  Vant  (2005)  The  biomechanics  of  the  vertebral  cement  augmentation.  In:  Y.  
`Payan  (ed),  Biomechanics  Applied  to  Computer  Assisted  Surgery.  Kerala.  Research  
`Signpost.  1-­‐13.  ISBN  81-­‐308-­‐0031-­‐4.    
`
`8. Baroud  G.  (2004)  Biomechanical  forces  underlying  the  cement  injection  process  during  
`vertebroplasty.  CD-­‐ROM  Proceedings  of  17th  ASCE  Engineering  Mechanics.  Newark,  USA.    
`
`9. Baroud  G.  (2002)  Biomechanisms  underlying  cement  extraosseous  leakage  and  delivery  in  
`vertebroplasty.  In:  Y.N.  Abousleiman  et  al  (eds),  Poromechanics  III:  155-­‐60.  Taylor  &  
`Francis  Group,  Lisse,  ISBN  0415380413.    
`
`10. Baroud  G.,  T.  Steffen,  J.  Wu,  S.  Sponagel  (2002)  Parameter  identification  for  cement  
`infiltration  of  osteoporotic  bone.  In:  J.-­‐L.  Auriault  et  al  (eds),  Poromechanics  II:  55-­‐58.  A.A.  
`Balkema.  Swets  &  Zeitlinger,

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