<div><p>Remote magnetic manipulation is a powerful technique for controlling devices inside the human body. It enables actuation and locomotion of tethered and untethered objects without the need for a local power supply. In clinical applications, it is used for active steering of catheters in medical interventions such as cardiac ablation for arrhythmia treatment and for steering of camera pills in the gastro-intestinal tract for diagnostic video acquisition. For these applications, specialized clinical-scale field applicators have been developed, which are rather limited in terms of field strength and flexibility of field application. For a general-purpose field applicator, flexible field generation is required at high field strengths as ...
Magnetic robots show great potential for revolutionizing many aspects of medicine and clinical appli...
The use of magnetic fields and field gradients to move magnetic material and devices within the huma...
In recent years, the usage of radio frequency magnetic fields for biomedical applications has increa...
Remote magnetic manipulation is a powerful technique for controlling devices inside the human body. ...
Automation of flexible surgical instruments requires the development of robotic technologies capable...
Automation of flexible surgical instruments requires development of robotic technologies capable of ...
Automation of flexible surgical instruments requires the development of robotic technologies capable...
This paper presents a novel method to actively control magnetic field in a region-of-interest using ...
Surrounded by electromagnetic (EM) fields humans continuously interact and utilize EM fields for dom...
This paper presents a 2 degrees-of-freedom (DOF) remotely actuated needle driving device for Magneti...
The development of new techniques for control of magnetic objects by external magnetic fields has be...
Small-scale magnetic robots are remotely actuated and controlled by an externally applied magnetic f...
Background—To address some of the shortcomings of existing remote catheter navigation systems (RNS),...
Microrheology is a key technique to characterize soft materials at small scales. The microprobe is w...
Background and Purpose: In the current and rapidly evolving era of real-time MRI-guided radiotherapy...
Magnetic robots show great potential for revolutionizing many aspects of medicine and clinical appli...
The use of magnetic fields and field gradients to move magnetic material and devices within the huma...
In recent years, the usage of radio frequency magnetic fields for biomedical applications has increa...
Remote magnetic manipulation is a powerful technique for controlling devices inside the human body. ...
Automation of flexible surgical instruments requires the development of robotic technologies capable...
Automation of flexible surgical instruments requires development of robotic technologies capable of ...
Automation of flexible surgical instruments requires the development of robotic technologies capable...
This paper presents a novel method to actively control magnetic field in a region-of-interest using ...
Surrounded by electromagnetic (EM) fields humans continuously interact and utilize EM fields for dom...
This paper presents a 2 degrees-of-freedom (DOF) remotely actuated needle driving device for Magneti...
The development of new techniques for control of magnetic objects by external magnetic fields has be...
Small-scale magnetic robots are remotely actuated and controlled by an externally applied magnetic f...
Background—To address some of the shortcomings of existing remote catheter navigation systems (RNS),...
Microrheology is a key technique to characterize soft materials at small scales. The microprobe is w...
Background and Purpose: In the current and rapidly evolving era of real-time MRI-guided radiotherapy...
Magnetic robots show great potential for revolutionizing many aspects of medicine and clinical appli...
The use of magnetic fields and field gradients to move magnetic material and devices within the huma...
In recent years, the usage of radio frequency magnetic fields for biomedical applications has increa...