From 79afc120246f66a9d9317b603d270b0c0641b1c8 Mon Sep 17 00:00:00 2001 From: xzhan139 <33207648+xzhan139@users.noreply.github.com> Date: Thu, 2 Nov 2023 03:31:23 -0500 Subject: [PATCH] Update research.html --- research.html | 12 ++++++------ 1 file changed, 6 insertions(+), 6 deletions(-) diff --git a/research.html b/research.html index 0bfef496deab..673791cc09cf 100644 --- a/research.html +++ b/research.html @@ -11,19 +11,19 @@
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I combine computational and experimental approaches to investigate +

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I combine computational and experimental approaches to investigate dynamics and control problems in soft biological systems. I particularly focus on revealing mechanisms, through which soft slender-bodied animals can combine embodied control principles and neural sensory and feedback to achieve complex motion behaviors.

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Modeling Musculoskeletal Systems

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To obtain a mechanistic understanding of soft biological systems, +

To obtain a mechanistic understanding of soft biological systems, I started by establishing a computational framework for the modeling and simulation of complex musculoskeletal architectures. This framework pioneers the use of one-dimensional, elastic slender body assemblies (via Cosserat rods theory) - to construct active, heterogeneous, and three-dimensional biological layouts, striking a balance between computational efficiency, - modeling accuracy and scalability. I have demonstrated the utility of this approach across biophysical scenarios, scales, and + to construct active, heterogeneous, and three-dimensional biological layouts. I have demonstrated the utility of this approach across biophysical scenarios, scales, and environment, from human joints to full-scale aquatic, terrestrial and aerial creatures.

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