mercoledì 12 agosto 2009

Diffusion Weighted Imaging


Diffusion imaging makes use of the variability of “Brownian motion” of water molecules in brain tissue. Brownian motion refers to the random movement of molecules. Water molecules are in constant motion, and the rate of movement or diffusion depends on the kinetic energy of the molecules and is temperature dependent. In biological tissues, diffusion is not truly random because tissue has structure. Cell membranes, vascular structures, and axon cylinders, for example, limit or restrict the amount of diffusion. Also, chemical interactions of water and macromolecules affect diffusion properties. Therefore, in the brain, water diffusion is referred to as “apparent diffusion.”
To obtain diffusion-weighted images, a pair of strong gradient pulses are added to the pulse sequence. The first pulse dephases the spins, and the second pulse rephases the spins if no net movement occurs. If net movement of spins occurs between the gradient pulses, signal attenuation occurs. The degree of attenuation depends on the magnitude of molecular translation and diffusion weighting. The amount of diffusion weighting is determined by the strength of the diffusion gradients, the duration of the gradients, and the time between the gradient pulses.
Diffusion imaging is performed optimally on a high-field (1.5 T) echo-planar system, but it can be accomplished with a turboSTEAM sequence on systems with conventional gradients.
The diffusion data can be presented as signal intensity or as an image map of the apparent diffusion coefficient (ADC). Calculation of the ADC requires 2 or more acquisitions with different diffusion weightings. A low ADC corresponds to high signal intensity (restricted diffusion), and a high ADC to low signal intensity on diffusion-weighted images.
In the setting of acute cerebral ischemia, if the cerebral blood flow is lowered to 10 ml/100gm/min, the cell membrane ion pump fails and excess sodium enters the cell, which is followed by a net movement of water from the extracellular to intracellular compartment and cytotoxic edema. Diffusion of the intracellular water molecules is restricted by the cell membranes. The restricted diffusion results in a decreased ADC and increased signal intensity on diffusion-weighted images. Severe ischemia can lower the ADC by as much as 56% of normal tissue at 6 hours.
In patients who present with symptoms of cerebral ischemia, diffusion-weighted images are very helpful to identify any area of acute ischemia and to separate the acute infarction from old strokes and other chronic changes in the brain. Only the acute infarcts appear hyperintense on the diffusion
images. Subacute and chronic infarcts, vasogenic edema, the punctate and confluent changes of deep white matter ischemia, and dilated VR spaces are not bright.
Bacterial abscesses may exhibit restricted diffusion due to thick cellular debri within the central cavity. Other diseases of the brain, such as non-bacterial infections, neoplasia, contusions, and demyelinating diseases, are not associated with cytotoxic edema, and therefore as a rule, they are not hyperintense on the diffusion images. One exception is epidermoid tumors, which have restricted diffusion due to the waxy consistency of their contents. Also, the central portions of some primary and secondary brain tumors may exhibit restriction diffusion as they outgrow their blood supply and become ischemic. Occasionally, an acute MS plaque may be mildly hyperintense with diffusion weighting.
Lesions with prolonged T2 relaxation times are commonly mildly hyperintense on diffusion-weighted images. This phenomenon of “T2 shine-through” can easily be distinguished from true restricted diffusion on the ADC map. Only true restricted diffusion is low signal on the ADC map.





OTHER CAUSES OF POSITIVE DWI:

-Bacterial abscess

-Epidermoid tumor

-Acute demyelination

-Tumors undergoing central necrosis

-Acute encephalitis

-Jacob Crutzfeld disease

-Elevate protein or acute blood

-T2 shine-through

Differential Diagnosis: Posterior Fossa Mass

CHILD
Cerebellum/IVth Ventricle
- Medulloblastoma - midline, vermian or roof - usually hyperdense on plain CT - often enhance homogeneously
- usually PILOCYTIC ASTROCYTOMA - 2/3 are cystic with mural nodule - cyst fluid denser than CSF due to protein
- Ependymoma - INTRA-ventricular - "cast" of lumen - 50% are calcified
Brainstem
- Brainstem glioma - expands brainstem (infiltration w/o destruction) - hydrocephalus (may be late)
Extraaxial fluid collection
- Large cisterna magna ("Mega Cisterna Magna")
- Epidermoid inclusion cyst
- Arachnoid cyst (may bevel inner table of skull)
- Dandy Walker cyst of 4th ventricle
- Vermian agenesis
- Chronic subdural hematoma

ADULT
Extraaxial:
- Vestibular Schwannoma (CPA)
- Meningioma
- Ependymoma

Intraaxial:
- Metastasis - most common intraaxial neoplastic post fossa mass in adult
-Hemangioblastoma - cystic or solid - angio shows hypervascularity & stain
-Astrocytoma - usually not vascular on angio
-Medulloblastoma - often more lateral in adults

martedì 11 agosto 2009

Rathkle's cleft cysts



Rathke’s cleft cysts (RCC) may occasionally present with symptoms of pituitary apoplexy, curiously in one small series only 2/6 had hemorrhage in the lesion at surgery so cause symptoms is uncertain.
Intralesional nodules help make the diagnosis of RCC and are believe to be due to mucinous material on histologic examination and cholesterol and protein on biochemical analysis. It has been suggested that the nodule is a concretion of material within the cyst and that the amount of protein in intracystic nodules influences MR signal intensity.
Demographics and clinical presentation
Rathke’s cleft cysts are typically asymptomatic and are found in 13-22% of autopsies. If large, they may cause visual disturbance due to compression of the optic chiasm or pituitary dysfunction due to compression of adjacent pituitary tissue and distortion of the pituitary stalk.
There appears to be a female preponderance with a female to male ratio of approximately 2:1.
Pathology
Rathke’s pouch forms during the 4th week of embryologic development as a rostral outpouching from the roof of the primitive oral cavity. The anterior wall of the pouch gives rise to the anterior lobe of the pituitary (pars distalis). The posterior wall of the pouch does not proliferate and remains as the intermediate lobe of the pituitary (pars intermedia). The lumen of the pouch narrows to form a cleft (Rathke’s cleft) that normally regresses. Persistence of this cleft with expansion is believed to be the origin of a Rathke’s cleft cyst.
The wall of the cyst is typically lined by a single cell layer of epithelium, often containing goblet cells, and often ciliated.
Radiographic findings
On imaging a Rathke’s cleft cyst is seen as a well-defined non-enhancing midline cyst within the sellar arising between the anterior and intermediate lobes of the pituitary. 40% are purely intrasellar and 60% have suprasellar extension, and purely suprasellar location, although reported, is rare.
On CT it is typically non-calcified and of homogenous low density. Uncommonly it may be of mixed iso- and low density, or contain small curvilinear calcifications in the wall (seen in 10-15% of cases)
On MRI the signal characteristics vary according to the cyst content which may be mucoid or serous. On T1, 50% are hyperintense and 50% are hypointense. On T2, 70% are hyperintense and 30% are iso or hypointense. In 70-80% of cases a small non-enhancing intracystic nodule can be identified which is virtually pathognomic of a Rathke’s cleft cyst. When seen it is hyperintense to surrounding fluid on T1 and hypointense on T2. Depending on the signal of the surrounding fluid it may be inapparent on one or other sequence.
No contrast enhancement of the cys is seen, however a thin enhancing rim of surrounding compressed pituitary tissue may be apparent.
Differential diagnosis
The main differential differential diagnoses are:
craniopharyngioma
no gender difference
similar age group
usually suprasellar or have a suprasellar component
cystic pituitary adenoma
arachnoid cyst
older patients
no gender difference
epidermoid cyst
usually suprasellar
restriction on DWI