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Featured researches published by E. Stüssi.


Three-Dimensional and Multidimensional Microscopy: Image Acquisition and Processing VIII | 2001

One-step calibration of specimen-induced focal shifts and spherical aberration for quantitative 3D microscopy: approach and first results

Dominik Thomann; E. Stüssi; Gaudenz Danuser

With the advent of laser scanning confocal and multiphoton microscopy, 3D life tissue characterization has been rendered possible. This involves the restoration of thick section images (in the depth range of 100 microns) of biological samples. In contrast to thin samples new effects become important when imaging thick samples: Because of changes of the refractive index across the specimen or the embedding medium, strong (>1 micron) focal shifts and spherical aberration occur and scattering effects get more prominent. For tissue mapping it is essential to correct for such aberrations and distortion effects. In this paper, we propose a calibration framework, which allows us to determine thick section focal shifts and spherical aberrations in a one-step-procedure. Gradients in the focal shift induce a scaling in the Z-direction of the observed sample. A second effect arises with depth-dependent spherical aberration. We model our microscope as a linear-shift-NON-invariant system (LSNI) where multiple depth classes are assigned distinct point spread functions (PSFs). We measure these two effects in a 3D sample of randomly distributed fluorescent focal check beads. The beads are embedded in gelatine, a medium with high resemblance to real biological tissue. The PSF is approximated by a mathematical parametric model. While estimating the parameters of the PSF with object-constrained deconvolution, we track depth dependent changes of the observed bead diameter. This allows us to determine the gradient of the focal shift across a thick section. By numerical integration along the optical axis we obtain the focal shift values as a function of sample depth. In the end, these values will be applied as a correction to compensate depth distortions in the tissue images.


Clinical Biomechanics | 2005

Biomechanical background and clinical observations of rotational malalignment in TKA:: Literature review and consequences

Monika Silvia Zihlmann; Alex Stacoff; José Romero; Inès Kramers-de Quervain; E. Stüssi


Journal of Theoretical Biology | 2002

Single muscle fiber contraction is dictated by inter-sarcomere dynamics

Jachen Denoth; E. Stüssi; Gabor Csucs; Gaudenz Danuser


Sportverletzung-sportschaden | 1993

Dämpfung versus Stabilität

E. Stüssi; Alex Stacoff; E. Lucchinetti


Journal of Biomechanics | 1998

Walking pattern with missing-heel shoes

D.Attinger Benz; A. Stacoff; E. Balmer; A. Durrer; E. Stüssi


Gait & Posture | 1996

Trunk and pelvic postural adaptation during high heeled gait

I.Kramers de Quervain; D. Attinger Benz; Roland Müller; E. Stüssi


Journal of Biomechanics | 1998

Protective function of different indoor sport surfaces

Ralph Müller; Jachen Denoth; E. Stüssi


Gait & Posture | 1997

Gait analysis in patients with scoliosis

Ia Kramers-de Quervain; Roland Müller; Dieter Grob; E. Stüssi


Gait & Posture | 1996

Comparison of level and up-hill gait after gastrocnemius/soleus muscle flap

I.Kramers de Quervain; J. Läuffer; K. Käch; E. Stüssi; O. Trentz


Gait & Posture | 1995

Quantitative gait analysis after bilateral total knee joint replacement with a different prosthesis design on each side

Ia Kramers-de Quervain; E. Stüssi; Tomas Drobny; U. Munzinger

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Dominik Thomann

École Polytechnique Fédérale de Lausanne

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Gabor Csucs

École Polytechnique Fédérale de Lausanne

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Inès Kramers-de Quervain

École Polytechnique Fédérale de Lausanne

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Monika Silvia Zihlmann

École Polytechnique Fédérale de Lausanne

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