
Multispectral infrared imaging improves guidance of cancer surgery
Combining multispectral infrared fluorescence imaging with machine learning enhances tumour delineation during cancer surgery
Thank you for registering with Physics World
If you'd like to change your details at any time, please visit My account
I am an online editor for Physics World. I write and commission articles for the medical physics, and biophysics and bioengineering sections of the website. I did a PhD in molecular physics at Leeds University, followed by a postdoc in the medical physics department. I joined IOP Publishing in 1999, and in 2008 I became editor of the website medicalphysicsweb. Outside of work, I enjoy travelling, as well as singing and dancing in musical theatre productions.
Combining multispectral infrared fluorescence imaging with machine learning enhances tumour delineation during cancer surgery
A decoder that translates functional MRI data into a continuous stream of text could restore communication to people who have lost the ability to speak
Spectacular MR images of the entire mouse brain could improve our understanding of brain disorders
A novel machine-learning model could help radiologists rapidly and reliably diagnose pneumonia
In a new take on targeted radionuclide therapy, engineered bacteria injected into tumours attract beta-emitting radiopharmaceuticals to kill the cancer cells
Optimization framework designs ridge filters and spot maps to meet the unique demands of ultrahigh-dose-rate radiation therapy
Researchers are developing a compact and economical FLASH radiotherapy machine suitable for hospital treatment rooms
A novel hydrogel combined with transplanted neural stem cells could provide therapeutic brain tissue reconstruction
An injectable gel uses the body’s metabolites to induce in vivo fabrication of organic bioelectronics
The virtual epileptic patient uses MR images and brain activity recordings to map seizure-inducing zones in the brain