Precise motor map** with transcranial magnetic stimulation
We describe a routine to precisely localize cortical muscle representations within the primary
motor cortex with transcranial magnetic stimulation (TMS) based on the functional relation …
motor cortex with transcranial magnetic stimulation (TMS) based on the functional relation …
Auto‐segmentation of organs at risk for head and neck radiotherapy planning: from atlas‐based to deep learning methods
T Vrtovec, D Močnik, P Strojan, F Pernuš… - Medical …, 2020 - Wiley Online Library
Radiotherapy (RT) is one of the basic treatment modalities for cancer of the head and neck
(H&N), which requires a precise spatial description of the target volumes and organs at risk …
(H&N), which requires a precise spatial description of the target volumes and organs at risk …
AnatomyNet: deep learning for fast and fully automated whole‐volume segmentation of head and neck anatomy
Purpose Radiation therapy (RT) is a common treatment option for head and neck (HaN)
cancer. An important step involved in RT planning is the delineation of organs‐at‐risks …
cancer. An important step involved in RT planning is the delineation of organs‐at‐risks …
Segmentation of organs‐at‐risks in head and neck CT images using convolutional neural networks
B Ibragimov, L **ng - Medical physics, 2017 - Wiley Online Library
Purpose Accurate segmentation of organs‐at‐risks (OAR s) is the key step for efficient
planning of radiation therapy for head and neck (HaN) cancer treatment. In the work, we …
planning of radiation therapy for head and neck (HaN) cancer treatment. In the work, we …
Clinically applicable deep learning framework for organs at risk delineation in CT images
H Tang, X Chen, Y Liu, Z Lu, J You, M Yang… - Nature Machine …, 2019 - nature.com
Radiation therapy is one of the most widely used therapies for cancer treatment. A critical
step in radiation therapy planning is to accurately delineate all organs at risk (OARs) to …
step in radiation therapy planning is to accurately delineate all organs at risk (OARs) to …
A preliminary experience of implementing deep-learning based auto-segmentation in head and neck cancer: a study on real-world clinical cases
Y Zhong, Y Yang, Y Fang, J Wang, W Hu - Frontiers in oncology, 2021 - frontiersin.org
Purpose While artificial intelligence has shown great promise in organs-at-risk (OARs) auto
segmentation for head and neck cancer (HNC) radiotherapy, to reach the level of clinical …
segmentation for head and neck cancer (HNC) radiotherapy, to reach the level of clinical …
Status quo and directions in deep head and neck hyperthermia
MM Paulides, GM Verduijn, N Van Holthe - Radiation Oncology, 2016 - Springer
The benefit of hyperthermia as a potent modifier of radiotherapy has been well established
and more recently also the combination with chemotherapy was shown beneficial. Also for …
and more recently also the combination with chemotherapy was shown beneficial. Also for …
Spatial context-aware self-attention model for multi-organ segmentation
Multi-organ segmentation is one of most successful applications of deep learning in medical
image analysis. Deep convolutional neural nets (CNNs) have shown great promise in …
image analysis. Deep convolutional neural nets (CNNs) have shown great promise in …
Anatomynet: Deep 3d squeeze-and-excitation u-nets for fast and fully automated whole-volume anatomical segmentation
Purpose Radiation therapy (RT) is a common treatment for head and neck (HaN) cancer
where therapists are often required to manually delineate boundaries of the organs-at-risks …
where therapists are often required to manually delineate boundaries of the organs-at-risks …
Longitudinal brain atrophy rates in presymptomatic carriers of genetic frontotemporal dementia
JM Poos, LDM Grandpierre, EL van der Ende… - Neurology, 2022 - AAN Enterprises
Background and Objectives It is important to identify at what age brain atrophy rates in
genetic frontotemporal dementia (FTD) start to accelerate and deviate from normal aging …
genetic frontotemporal dementia (FTD) start to accelerate and deviate from normal aging …