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Lint: electron-paramagnetic-resonance-imaging

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"Electron paramagnetic resonance imaging is similar to nuclear magnetic resonance (NMR), the key difference is that during electron paramagnetic resonance imaging the electron spins are excited by a magnetic assembly, instead of the spins of atomic nuclei.Most biologically-relevant free radicals, such as superoxide, hydroxyl and nitric oxide free radicals contain unpaired electrons which may undergo excitation 1. Since the concentration and half-life of these substances is very low, their direct detection has proved to be challenging. Therefore, efforts have been made to facilitate their detection by using redox-sensitive paramagnetic "spin trap" imaging probes 2,3."

Line 3:264 · 'i.M' should have one space.

"Electron paramagnetic resonance imaging is similar to nuclear magnetic resonance (NMR), the key difference is that during electron paramagnetic resonance imaging the electron spins are excited by a magnetic assembly, instead of the spins of atomic nuclei.Most biologically-relevant free radicals, such as superoxide, hydroxyl and nitric oxide free radicals contain unpaired electrons which may undergo excitation 1. Since the concentration and half-life of these substances is very low, their direct detection has proved to be challenging. Therefore, efforts have been made to facilitate their detection by using redox-sensitive paramagnetic "spin trap" imaging probes 2,3."

Line 3:559 · 'g. T' should have one space.
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  • H1 Terminology
  • H1 Usage
  • H1 Epidemiology
  • H2 Risk factors
  • H2 Associations
  • H1 Clinical presentation
  • H2 Complications
  • H1 Diagnosis
  • H2 Diagnostic criteria
  • H2 Diagnostic clues
  • H1 Pathology
  • H2 Aetiology
  • H2 Location
  • H2 Classification
  • H2 Macroscopic appearance
  • H2 Microscopic appearance
  • H2 Immunophenotype
  • H2 Markers
  • H2 Genetics
  • H1 Radiographic features
  • H2 Plain radiograph
  • H2 Mammography
  • H2 Antenatal ultrasound
  • H2 Transoesophageal echocardiography
  • H2 Ultrasound
  • H2 CT
  • H3 Dual-energy CT
  • H2 Angiography (DSA)
  • H2 MRI
  • H2 CT/MRI
  • H2 Nuclear medicine
  • H3 PET-CT
  • H3 PET-MRI
  • H1 Radiology report
  • H1 Treatment and prognosis
  • H2 Complications
  • H1 History and etymology
  • H1 Differential diagnosis
  • H2 Clinical differential diagnosis
  • H1 Practical points
  • H1 See also

"Physics"

Line 2:1 · "Physics" is not a recognised heading for this article type.
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"Electron paramagnetic resonance imaging is similar to nuclear magnetic resonance (NMR), the key difference is that during electron paramagnetic resonance imaging the electron spins are excited by a magnetic assembly, instead of the spins of atomic nuclei.Most biologically-relevant free radicals, such as superoxide, hydroxyl and nitric oxide free radicals contain unpaired electrons which may undergo excitation 1. Since the concentration and half-life of these substances is very low, their direct detection has proved to be challenging. Therefore, efforts have been made to facilitate their detection by using redox-sensitive paramagnetic "spin trap" imaging probes 2,3."

Line 3:316 · Use the Oxford comma in 'superoxide, hydroxyl and nitric'.