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Qili Zhao

8 accepted papers

2025

Robotic In Situ Measurement of Multiple Intracellular Physical Parameters Based on Three-micropipettes System

IROS 2025

Physical parameters of the intracellular environment such as mass density, intracellular pressure and elasticity have significant effects on the physiological activities of the cell and intracellular operation results. However, the significantly different measurement principles of the above paramete

Cited by 0SourceScholar
2025

Robotic Inside-Out Patch Clamp System for Adherent Cells Based on Vesicle Rupture Control

RA-L 2025

The inside-out patch clamp technique has been widely applied in brain science and neuroscience research due to its ability to detect extremely weak currents flowing through a single ion channel. The current manual inside-out patch clamp operations are highly expertise-requisite and low efficient. Me

Cited by 0SourceScholar
2023

Automatic Cell Rotation Method Based on Deep Reinforcement Learning

ICRA 2023poster

Cell rotation is widely used to adjust cell posture in sub-cellular micromanipulations. The trajectory planning of the injection micropipette is needed, so that the cells can be rotated with the minimum deformation to reduce cell damage and keep cell viability. Due to the uncertainty of cell propert…

Cited by 2SourceScholar
2021

Automatic Cell Rotation Based on Real-Time Detection and Tracking

RA-L 2021

Cell rotation has great significance for cell manipulation, which is applied to intracytoplasmic sperm injection, preimplantation genetic screening and diagnosis, somatic cell nuclear transfer, etc. In this letter, an automatic cell rotation method is proposed based on real-time detection and tracki

Cited by 19SourceScholar
2019

Robotic Orientation Control of Deformable Cells

ICRA 2019poster

Robotic manipulation of deformable objects (vs. rigid objects) has been a classic topic in robotics. Compared to deformable synthetic objects such as rubber balls and clothes, biological cells are highly deformable and more prone to damage. This paper presents robotic manipulation of deformable cell…

Cited by 8SourceScholar
2018

Robotic Intracellular Manipulation: 3D Navigation and Measurement Inside a Single Cell

ICRA 2018poster

Magnetic micromanipulation is an untethered technique and has enabled numerous applications in the scale of millimeters to micrometers from the tissue level to cell level. However, existing systems are not capable of maneuvering a sub-micrometer object for precise force control, preventing the reali…

Cited by 8SourceScholar
2017

Robotic Pick-And-Place of Multiple Embryos for Vitrification

RA-L 2017

Embryo vitrification is an essential cryopreservation technique in IVF (in vitro fertilization) clinics. Vitrification involves pick-and-place of an embryo in multiple types of cryoprotectant solutions for processing before placing the embryo on a vitrification straw for cryopreservation in liquid n

Cited by 37SourceScholar