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Publications

3D imaging and mechanical modeling of helical buckling in Medicago truncatula plant roots

Cornell Affiliated Author(s)
Author
J.L. Silverberg
R.D. Noar
M.S. Packer
M.J. Harrison
C.L. Henley
Itai Cohen
S.J. Gerbode
Abstract

We study the primary root growth of wild-type Medicago truncatula plants in heterogeneous environments using 3D time-lapse imaging. The growth medium is a transparent hydrogel consisting of a stiff lower layer and a compliant upper layer. We find that the roots deform into a helical shape just above the gel layer interface before penetrating into the lower layer. This geometry is interpreted as a combination of growth-induced mechanical buckling modulated by the growth medium and a simultaneous twisting near the root tip.

Journal
Proceedings of the National Academy of Sciences of the United States of America
Date Published
Research Area
Group (Lab)
Itai Cohen Group

Implanted adipose progenitor cells as physicochemical regulators of breast cancer

Cornell Affiliated Author(s)
Author
E.M. Chandler
B.R. Seo
J.P. Califano
R.C. Eguiluz
J.S. Lee
C.J. Yoon
D.T. Tims
J.X. Wang
L. Cheng
S. Mohanan
M.R. Buckley
Itai Cohen
A.Y. Nikitin
R.M. Williams
D. Gourdon
C.A. Reinhart-King
C. Fischbach
Abstract

Multipotent adipose-derived stem cells (ASCs) are increasingly used for regenerative purposes such as soft tissue reconstruction following mastectomy; however, the ability of tumors to commandeer ASC functions to advance tumor progression is not well understood. Through the integration of physical sciences and oncology approaches we investigated the capability of tumor-derived chemical and mechanical cues to enhance ASC-mediated contributions to tumor stroma formation.

Journal
Proceedings of the National Academy of Sciences of the United States of America
Date Published
Funding Source
RC1CA146065
Research Area
Group (Lab)
Itai Cohen Group

Insights into interstitial flow, shear stress, and mass transport effects on ECM heterogeneity in bioreactor-cultivated engineered cartilage hydrogels

Cornell Affiliated Author(s)
Author
T. Chen
M. Buckley
Itai Cohen
L.J. Bonassar
H.A. Awad
Abstract

Interstitial flow in articular cartilage is secondary to compressive and shear deformations during joint motion and has been linked with the well-characterized heterogeneity in structure and composition of its extracellular matrix. In this study, we investigated the effects of introducing gradients of interstitial flow on the evolution of compositional heterogeneity in engineered cartilage.

Journal
Biomechanics and Modeling in Mechanobiology
Date Published
Funding Source
AR056696
P50AR054041
N08G-019
Group (Lab)
Itai Cohen Group

Temperature dependence of droplet breakup in 8CB and 5CB liquid crystals

Cornell Affiliated Author(s)
Author
D. Porter
J.R. Savage
Itai Cohen
P. Spicer
M. Caggioni
Abstract

Droplet breakup of many Newtonian fluids is well described by current experiments, theory, and simulations. Breakup in complex fluids where interactions between mesoscopic structural features can affect the flows remains poorly understood and a burgeoning area of research. Here, we report on our investigations of droplet breakup in thermotropic liquid crystals. We investigate breakup in the smectic, nematic, and isotropic phases of 4-cyano 4-octylbiphenyl (8CB) and the nematic and isotropic phases of 4-cyano 4-pentylbiphenyl (5CB).

Journal
Physical Review E - Statistical, Nonlinear, and Soft Matter Physics
Date Published
Group (Lab)
Itai Cohen Group

Assembly of vorticity-aligned hard-sphere colloidal strings in a simple shear flow

Cornell Affiliated Author(s)
Author
X. Cheng
X. Xu
S.A. Rice
A.R. Dinner
Itai Cohen
Abstract

Colloidal suspensions self-assemble into equilibrium structures ranging from face- and body-centered cubic crystals to binary ionic crystals, and even kagome lattices. When driven out of equilibrium by hydrodynamic interactions, even more diverse structures can be accessed. However, mechanisms underlying out-of-equilibrium assembly are much less understood, though such processes are clearly relevant in many natural and industrial systems.

Journal
Proceedings of the National Academy of Sciences of the United States of America
Date Published
Group (Lab)
Itai Cohen Group

Biomineralization: Micelles in a crystal

Cornell Affiliated Author(s)
Author
L.A. Estroff
Itai Cohen
Abstract

Synthetic efforts have identified a growing number of classes of organic macro-molecular impurities. Inclusion of an organic phase is believed to play a key role in enhancing the mechanical properties of the crystals, which are believed to share structural features with biogenic minerals and to have both increased hardness and fracture toughness relative to their pure, geological counterparts.

Journal
Nature Materials
Date Published
Research Area
Group (Lab)
Itai Cohen Group

Imaging the microscopic structure of shear thinning and thickening colloidal suspensions

Cornell Affiliated Author(s)
Author
X. Cheng
J.H. McCoy
J.N. Israelachvili
Itai Cohen
Abstract

The viscosity of colloidal suspensions varies with shear rate, an important effect encountered in many natural and industrial processes. Although this non-Newtonian behavior is believed to arise from the arrangement of suspended particles and their mutual interactions, microscopic particle dynamics are difficult to measure. By combining fast confocal microscopy with simultaneous force measurements, we systematically investigate a suspension's structure as it transitions through regimes of different flow signatures.

Journal
Science
Date Published
Group (Lab)
Itai Cohen Group

Paddling mode of forward flight in insects

Cornell Affiliated Author(s)
Author
L. Ristroph
A.J. Bergou
J. Guckenheimer
Z.J. Wang
Itai Cohen
Abstract

By analyzing high-speed video of the fruit fly, we discover a swimminglike mode of forward flight characterized by paddling wing motions. We develop a new aerodynamic analysis procedure to show that these insects generate drag-based thrust by slicing their wings forward at low angle of attack and pushing backwards at a higher angle. Reduced-order models and simulations reveal that the law for flight speed is determined by these wing motions but is insensitive to material properties of the fluid.

Journal
Physical Review Letters
Date Published
Research Area
Group (Lab)
Itai Cohen Group
Z. Jane Wang Group

The effects of needle puncture injury on microscale shear strain in the intervertebral disc annulus fibrosus

Cornell Affiliated Author(s)
Author
A.J. Michalek
M.R. Buckley
L.J. Bonassar
Itai Cohen
J.C. Iatridis
Abstract

Background context: Needle puncture of the intervertebral disc (IVD) is required for delivery of therapeutic agents to the nucleus pulposus and for some diagnostic procedures. Needle puncture has also been implicated as an initiator of disc degeneration. It is hypothesized that needle puncture may initiate IVD degeneration by altering microscale mechanical behavior in the annulus fibrosus (AF). Purpose: Quantify the changes in AF microscale strain behavior resulting from puncture with a hypodermic needle. Study design: Cadaveric IVD tissue explant study.

Journal
Spine Journal
Date Published
Funding Source
DMR-0606040
R21AR054867
R01AR051146
NNX07AK92A
Research Area
Group (Lab)
Itai Cohen Group

Dislocations and vacancies in two-dimensional mixed crystals of spheres and dimers

Cornell Affiliated Author(s)
Author
S.J. Gerbode
D.C. Ong
C.M. Liddell
Itai Cohen
Abstract

In colloidal crystals of spheres, dislocation motion is unrestricted. On the other hand, recent studies of relaxation in crystals of colloidal dimer particles have demonstrated that the dislocation dynamics in such crystals are reminiscent of glassy systems. The observed glassy dynamics arise as a result of dislocation cages formed by certain dimer orientations. In the current study, we use experiments and simulations to investigate the transition that arises when a pure sphere crystal is doped with an increasing concentration of dimers.

Journal
Physical Review E - Statistical, Nonlinear, and Soft Matter Physics
Date Published
Group (Lab)
Itai Cohen Group