BACKGROUND: Intracranial hemorrhage (ICH) requires emergent medical treatment for positive outcomes. While previous artificial intelligence (AI) solutions achieved rapid diagnostics, none were shown to improve the performance of radiologists in detecting ICHs. Here, we show that the Caire ICH artificial intelligence system enhances a radiologist\u27s ICH diagnosis performance. METHODS: A dataset of non-contrast-enhanced axial cranial computed tomography (CT) scans (n=532) were labeled for the presence or absence of an ICH. If an ICH was detected, its ICH subtype was identified. After a washout period, the three radiologists reviewed the same dataset with the assistance of the Caire ICH system. Performance was measured with respect to reader...
Background and ObjectivesIn medical imaging, a limited number of trained deep learning algorithms ha...
Due to the fast development of medical imaging technologies, medical image analysis has entered the ...
Abstract The study aims to measure the effectiveness of an AI-based traumatic intracranial hemorrhag...
BACKGROUND: Intracranial hemorrhage (ICH) requires emergent medical treatment for positive outcomes....
BACKGROUND: Artificial intelligence applications have gained traction in the field of cerebrovascula...
Purpose:To elucidate the effect of deep learning-based computer-assisted detection (CAD) on the perf...
Background: Highly accurate detection of intracranial hemorrhages (ICH) on head computed tomography ...
Computed tomography (CT) of the head is used worldwide to diagnose neurologic emergencies. However, ...
IntroductionIntracranial hemorrhage (ICH) is a potentially life-threatening medical event that requi...
Purpose: Recently developed machine-learning algorithms have demonstrated strong performance in the ...
Background and Purpose- Volumes of hemorrhage and perihematomal edema (PHE) are well-established bio...
Intracranial hemorrhage (ICH) can lead to death or disability, which requires immediate action from ...
Background and purposeMultiple attempts at intracranial hemorrhage (ICH) detection using deep-learni...
Purpose To evaluate whether a deep learning model (DLM) could increase the detection sensitivity of ...
Background and purpose: The detection of cerebral aneurysms on MRA is a challenging task. Recent stu...
Background and ObjectivesIn medical imaging, a limited number of trained deep learning algorithms ha...
Due to the fast development of medical imaging technologies, medical image analysis has entered the ...
Abstract The study aims to measure the effectiveness of an AI-based traumatic intracranial hemorrhag...
BACKGROUND: Intracranial hemorrhage (ICH) requires emergent medical treatment for positive outcomes....
BACKGROUND: Artificial intelligence applications have gained traction in the field of cerebrovascula...
Purpose:To elucidate the effect of deep learning-based computer-assisted detection (CAD) on the perf...
Background: Highly accurate detection of intracranial hemorrhages (ICH) on head computed tomography ...
Computed tomography (CT) of the head is used worldwide to diagnose neurologic emergencies. However, ...
IntroductionIntracranial hemorrhage (ICH) is a potentially life-threatening medical event that requi...
Purpose: Recently developed machine-learning algorithms have demonstrated strong performance in the ...
Background and Purpose- Volumes of hemorrhage and perihematomal edema (PHE) are well-established bio...
Intracranial hemorrhage (ICH) can lead to death or disability, which requires immediate action from ...
Background and purposeMultiple attempts at intracranial hemorrhage (ICH) detection using deep-learni...
Purpose To evaluate whether a deep learning model (DLM) could increase the detection sensitivity of ...
Background and purpose: The detection of cerebral aneurysms on MRA is a challenging task. Recent stu...
Background and ObjectivesIn medical imaging, a limited number of trained deep learning algorithms ha...
Due to the fast development of medical imaging technologies, medical image analysis has entered the ...
Abstract The study aims to measure the effectiveness of an AI-based traumatic intracranial hemorrhag...