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Connection

Corey Neu to Biomechanical Phenomena

This is a "connection" page, showing publications Corey Neu has written about Biomechanical Phenomena.

 
Connection Strength
 
 
 
2.337
 
  1. Xu X, Li Z, Cai L, Calve S, Neu CP. Mapping the Nonreciprocal Micromechanics of Individual Cells and the Surrounding Matrix Within Living Tissues. Sci Rep. 2016 Apr 12; 6:24272.
    View in: PubMed
    Score: 0.373
  2. Zhu H, Lee W, Lowe TW, Miller EY, Emery NC, Bravman JT, McCarty EC, Frank RM, Neu CP. T2 and T1? Mapping Reveals Time-Dependent Cartilage Response to In-Scanner Cyclic Compression After ACL Reconstruction. Osteoarthritis Cartilage. 2026 08; 34(8):1252-1262.
    View in: PubMed
    Score: 0.187
  3. Zhu H, Lee W, Miller EY, Seifert J, Clauw A, Moreland LW, Neu CP. Displacement-encoded MRI reveals biomechanical stiffening in rheumatoid arthritis wrists: a case control study. Sci Rep. 2025 Sep 02; 15(1):32351.
    View in: PubMed
    Score: 0.179
  4. Zhu H, Miller EY, Lee W, Wilson RL, Neu CP. In vivo human knee varus-valgus loading apparatus for analysis of MRI-based intratissue strain and relaxometry. J Biomech. 2024 06; 171:112171.
    View in: PubMed
    Score: 0.164
  5. Lee W, Miller EY, Zhu H, Schneider SE, Reiter DA, Neu CP. Multi-frame biomechanical and relaxometry analysis during in vivo loading of the human knee by spiral dualMRI and compressed sensing. Magn Reson Med. 2023 09; 90(3):995-1009.
    View in: PubMed
    Score: 0.153
  6. Lee W, Miller EY, Zhu H, Luetkemeyer CM, Schneider SE, Neu CP. High frame rate deformation analysis of knee cartilage by spiral dualMRI and relaxation mapping. Magn Reson Med. 2023 02; 89(2):694-709.
    View in: PubMed
    Score: 0.147
  7. Wilson RL, Bowen L, Kim W, Cai L, Schneider SE, Nauman EA, Neu CP. In vivo intervertebral disc deformation: intratissue strain patterns within adjacent discs during flexion-extension. Sci Rep. 2021 01 12; 11(1):729.
    View in: PubMed
    Score: 0.130
  8. Ghosh S, Seelbinder B, Henderson JT, Watts RD, Scott AK, Veress AI, Neu CP. Deformation Microscopy for Dynamic Intracellular and Intranuclear Mapping of Mechanics with High Spatiotemporal Resolution. Cell Rep. 2019 04 30; 27(5):1607-1620.e4.
    View in: PubMed
    Score: 0.115
  9. Unal M, Akkus O, Sun J, Cai L, Erol UL, Sabri L, Neu CP. Raman spectroscopy-based water content is a negative predictor of articular human cartilage mechanical function. Osteoarthritis Cartilage. 2019 02; 27(2):304-313.
    View in: PubMed
    Score: 0.111
  10. Neu CP. Functional imaging in OA: role of imaging in the evaluation of tissue biomechanics. Osteoarthritis Cartilage. 2014 Oct; 22(10):1349-59.
    View in: PubMed
    Score: 0.084
  11. Chan DD, Gossett PC, Butz KD, Nauman EA, Neu CP. Comparison of intervertebral disc displacements measured under applied loading with MRI at 3.0 T and 9.4 T. J Biomech. 2014 Aug 22; 47(11):2801-6.
    View in: PubMed
    Score: 0.082
  12. Griebel AJ, Trippel SB, Neu CP. Noninvasive dualMRI-based strains vary by depth and region in human osteoarthritic articular cartilage. Osteoarthritis Cartilage. 2013 Feb; 21(2):394-400.
    View in: PubMed
    Score: 0.074
  13. Butz KD, Griebel AJ, Novak T, Harris K, Kornokovich A, Chiappetta MF, Neu CP. Prestress as an optimal biomechanical parameter for needle penetration. J Biomech. 2012 Apr 30; 45(7):1176-9.
    View in: PubMed
    Score: 0.070
  14. Neu CP, Arastu HF, Curtiss S, Reddi AH. Characterization of engineered tissue construct mechanical function by magnetic resonance imaging. J Tissue Eng Regen Med. 2009 Aug; 3(6):477-85.
    View in: PubMed
    Score: 0.059
  15. Rahman MM, Watton PN, Neu CP, Pierce DM. Predicting the heterogeneous chemo-mechano-biological degeneration of cartilage using 3-D biphasic finite elements. Comput Methods Programs Biomed. 2025 Oct; 270:108902.
    View in: PubMed
    Score: 0.044
  16. Luetkemeyer CM, Neu CP, Calve S. A method for defining tissue injury criteria reveals that ligament deformation thresholds are multimodal. Acta Biomater. 2023 09 15; 168:252-263.
    View in: PubMed
    Score: 0.039
  17. Neu CP, Crisco JJ, Wolfe SW. In vivo kinematic behavior of the radio-capitate joint during wrist flexion-extension and radio-ulnar deviation. J Biomech. 2001 Nov; 34(11):1429-38.
    View in: PubMed
    Score: 0.034
  18. Neu CP, McGovern RD, Crisco JJ. Kinematic accuracy of three surface registration methods in a three-dimensional wrist bone study. J Biomech Eng. 2000 Oct; 122(5):528-33.
    View in: PubMed
    Score: 0.032
  19. Fischenich KM, Wahlquist JA, Wilmoth RL, Cai L, Neu CP, Ferguson VL. Human articular cartilage is orthotropic where microstructure, micromechanics, and chemistry vary with depth and split-line orientation. Osteoarthritis Cartilage. 2020 10; 28(10):1362-1372.
    View in: PubMed
    Score: 0.031
  20. Pastrama MI, Ortiz AC, Zevenbergen L, Famaey N, Gsell W, Neu CP, Himmelreich U, Jonkers I. Combined enzymatic degradation of proteoglycans and collagen significantly alters intratissue strains in articular cartilage during cyclic compression. J Mech Behav Biomed Mater. 2019 10; 98:383-394.
    View in: PubMed
    Score: 0.029
  21. Kaplan JT, Neu CP, Drissi H, Emery NC, Pierce DM. Cyclic loading of human articular cartilage: The transition from compaction to fatigue. J Mech Behav Biomed Mater. 2017 01; 65:734-742.
    View in: PubMed
    Score: 0.024
  22. Xu X, Li Z, Leng Y, Neu CP, Calve S. Knockdown of the pericellular matrix molecule perlecan lowers in situ cell and matrix stiffness in developing cartilage. Dev Biol. 2016 10 15; 418(2):242-7.
    View in: PubMed
    Score: 0.024
  23. Blum KM, Novak T, Watkins L, Neu CP, Wallace JM, Bart ZR, Voytik-Harbin SL. Acellular and cellular high-density, collagen-fibril constructs with suprafibrillar organization. Biomater Sci. 2016 Apr; 4(4):711-23.
    View in: PubMed
    Score: 0.023
  24. Patel R, Neu CP, Curtiss S, Fyhrie DP, Yoo B. Crutch weightbearing on comminuted humeral shaft fractures: a biomechanical comparison of large versus small fragment fixation for humeral shaft fractures. J Orthop Trauma. 2011 May; 25(5):300-5.
    View in: PubMed
    Score: 0.017
  25. Van den Bogaerde JM, Shin E, Neu CP, Marder RA. The superficial medial collateral ligament reconstruction of the knee: effect of altering graft length on knee kinematics and stability. Knee Surg Sports Traumatol Arthrosc. 2011 Dec; 19 Suppl 1:S60-8.
    View in: PubMed
    Score: 0.017
  26. Chan SM, Neu CP, Komvopoulos K, Reddi AH. Dependence of nanoscale friction and adhesion properties of articular cartilage on contact load. J Biomech. 2011 Apr 29; 44(7):1340-5.
    View in: PubMed
    Score: 0.016
  27. Roberto RF, McDonald T, Curtiss S, Neu CP, Kim K, Pennings F. Kinematics of progressive circumferential ligament resection (decompression) in conjunction with cervical disc arthroplasty in a spondylotic spine model. Spine (Phila Pa 1976). 2010 Aug 15; 35(18):1676-83.
    View in: PubMed
    Score: 0.016
  28. Calafi LA, Antkowiak T, Curtiss S, Neu CP, Moehring D. A biomechanical comparison of the Surgical Implant Generation Network (SIGN) tibial nail with the standard hollow nail. Injury. 2010 Jul; 41(7):753-7.
    View in: PubMed
    Score: 0.016
  29. Chan SM, Neu CP, Duraine G, Komvopoulos K, Reddi AH. Atomic force microscope investigation of the boundary-lubricant layer in articular cartilage. Osteoarthritis Cartilage. 2010 Jul; 18(7):956-63.
    View in: PubMed
    Score: 0.015
  30. DuRaine G, Neu CP, Chan SM, Komvopoulos K, June RK, Reddi AH. Regulation of the friction coefficient of articular cartilage by TGF-beta1 and IL-1beta. J Orthop Res. 2009 Feb; 27(2):249-56.
    View in: PubMed
    Score: 0.014
  31. Roos PJ, Neu CP, Hull ML, Howell SM. A new tibial coordinate system improves the precision of anterior-posterior knee laxity measurements: a cadaveric study using Roentgen stereophotogrammetric analysis. J Orthop Res. 2005 Mar; 23(2):327-33.
    View in: PubMed
    Score: 0.011
  32. Wolfe SW, Neu C, Crisco JJ. In vivo scaphoid, lunate, and capitate kinematics in flexion and in extension. J Hand Surg Am. 2000 Sep; 25(5):860-9.
    View in: PubMed
    Score: 0.008
Connection Strength

The connection strength for concepts is the sum of the scores for each matching publication.

Publication scores are based on many factors, including how long ago they were written and whether the person is a first or senior author.

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