Lea Alhilali, MD Profile picture
May 9 23 tweets 10 min read Twitter logo Read on Twitter
1/It’s called the skullBASE but it’s anything but BASIC!

Does the sight of a skullbase lesion strike fear into your heart?

Never fear! Here’s a #tweetorial about a simple approach to these lesions that will change how you look at these cases

#medtwitter #meded #neurosurgery Image
2/Everyone fears the skullbase. It is so complex that not even experts can agree on a classification for the anatomy.

But you don’t need to know detailed anatomy to be able to give a differential diagnosis for a skullbase lesion that accurate & almost as importantly—short. Image
3/The skullbase is incredibly important. If you think of your brain as master or God of your body, then the skullbase is where the finger of God breathes life into the rest of you. All of the neuronal information from the brain travels through the skullbase to bring you to life Image
4/Skullbase is also very complex. It’s not just complex anatomy—it’s got a complex array of tissues.

It’s the meeting of the brain, bones of the skullbase, & extracranial head & neck. Each of these is their own specialty & w/a variety of tissues that can give rise to pathology Image
5/In imaging the skullbase, CT & MR are complimentary. So if someone asks you if you want to do a CT or an MR for a skullbase lesion, simply say “Yes.”

MR tells you about tumor characteristics & soft tissue spread, while CT defines the bony matrix & bone reaction Image
6/At the skullbase, T2 is your best friend. Unlike the brain, everything can enhance at the skullbase—so T2 helps define what enhancement is abnormal.

It also tells you about the tissue type. T2 dark means highly cellular or fibrous & T2 bright meaning chondroid or chordoid Image
7/And like in junior high, you have a second best friend--T1 pre contrast.

Fat is everywhere at the skullbase & on T1 pre contrast images, you can look for filling defects in the fat (either in marrow fat or soft tissue fat) to help define the extent of tumor Image
8/Think of pathology at the skullbase like the bad things that can happen while running.

Bad things can get you from below—like falling into a pothole. Bad things can come from within—like a sudden heart attack, or bad things can strike from above, like a bolt of lightning Image
9/Same thing w/the skullbase—bad things can come from below, within, or above. Lesions from below are potholes tripping you up. Lesions from w/in the skullbase are like heart attacks striking from inside. Lesions from above are the lightning, hitting the skullbase from above Image
10/So what lesions come from below, within, or above? This is determined by what tissues live there.

Think of the skullbase like a sandwich. Bones of the skullbase are the filling, sandwiched between the bread of the sinonasal cavity & intracranial contents Image
11/So pathology from below comes from the lower bread—sinonasal cavity & nasopharynx.

This includes sinonasal masses, nasopharyngeal carcinoma & perineural spread of tumor, typically from head & neck malignancies Image
12/Lesions from w/in are from the sandwich filling—bones & cartilage that make up the skullbase itself.

So these are primary bone/cartilage tumors & lesions that commonly spread to bone. Also, notochordal remnants are here, so notochordal tumors can occur here also Image
13/Lesions from above come from the upper bread, the intracranial contents—typically from the intracranial tissues that abut the skullbase. These tissues are the pituitary gland, cranial nerves, & the dura.

So here you see pituitary lesions, schwannomas & meningiomas Image
14/But this is only one dimension, the z axis—below, within, & above.

There is also a second dimension—where along the length of the skullbase does the lesion arise: Does it arise from the anterior, central, or posterior skullbase? Image
15/What are the boundaries of the anterior, central & posterior skullbase? No one fully agrees.

Good rule of thumb is that if you look at the skullbase from above, central skullbase looks like bat. Anterior skullbase is the region anterior to the bat & posterior is behind it Image
16/You should think of these different regions of the skullbase like different countries.

Just like different countries have their own culture, food, & traditions, these different skull base regions have their typical pathology & typical tumors Image
17/Countries developed different cuisines based on what was plentiful in their area. Like tomatoes grew well in Italy but not England, so Italy has more tomato based dishes.

Same w/the skullbase—different regions have different tumors depending on what’s plentiful in their area Image
18/Ant. skullbase looks like England on its side, w/its undulating border, while central skullbase goes inferior like the Italy boot, & post. skulbase circles around like the Greek isles

You can remember pathology in these areas by remembering what these countries are known for Image
19/Let’s start w/the ant. skullbase (England). Lesions from below here are mainly from sinonasal neoplasms.

You can remember this bc the English like to look down their NOSE at everyone, especially Americans like me—so lesions from below in the ant. skullbase come from the NOSE Image
20/A classic sinonasal lesion from below that involves the anterior skullbase is ethesioneuroblastoma, which arises from olfactory crest cells. Classic finding in these lesions peritumoral cysts that cap the lesion. You can remember this bc the English love CAPS or hats. Image
21/Lesions from within are rare in the ant. skullbase bc bones here are thin.

Fibrous dysplasia does arise here, which has a ground glass appearance. Remember this bc the British are tough or FIBROUS. Stereotypically, they also wear monocles/GLASSES—to remember ground GLASS Image
22/Ant. skullbase lesions from above are usually meningiomas, typically olfactory groove. I remember this bc meningiomas are tough & fibrous—like the British. They are also extra-axial & removed from the brain—just like how the British are very proper & removed from everyone Image
23/So now you know how to approach skullbase lesions—is it from below, within or above—& is it from England, Italy or Greece?

We’ve reviewed the anterior skullbase (England). Please stay tuned as I review the central & posterior skullbase next! Image

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More from @teachplaygrub

May 1
1/Do radiologists sound like they are speaking a different language when they talk about MRI? T1 shortening what? T2 prolongation who?

Here’s a translation w/a #tweetorial introduction to MRI.

#medtwitter #FOAMed #FOAMrad #medstudent #neurorad #radres #ASNR23 #neurosurgery Image
2/When it comes to bread and butter neuroimaging—MRI is definitely the butter. Butter makes everything taste better and packs a lot of calories. MRI can add so much information to a case Image
3/In fact, if CT is a looking glass into the brain—MRI is a microscope. It can tell us so much more about the brain and pathology that affects the brain.

So let’s talk about the basic sequences that make up an MRI and what they can show us. Image
Read 22 tweets
Apr 21
1/Don’t let all your effort be in VEIN!

Developmental venous anomalies (DVAs) are often thought incidental but ignore them at your own risk!

A #tweetorial about how to know when DVAs are the most important finding

#meded #medtwitter #neurorad #neurotwitter #radtwitter #radres Image
2/DVAs aren’t hard to recognize on imaging—they have a typical “caput medusae” appearance.

Dilated medullary veins look like snakes all converging into the medusa head of a large draining vein. Image
3/DVAs are incredibly common—1 in 50 may have one

Although >90% are asymptomatic, that would still results in a relatively large number of patients w/symptoms

Also, w/increasing knowledge of DVA physiology, we may find they’re responsible for more symptoms than we realize Image
Read 21 tweets
Apr 13
1/Is trying to understand peripheral nerve injury getting on your last nerve? Is the brachial plexus breaking you?

Here’s a #tweetorial to help you understand, recognize & remember the classification of peripheral nerve injuries
#medtwitter #meded #FOAMed #neurorad #neurotwitter Image
2/Normally the peripheral nerve is protected by surrounding myelin & connective tissue.

Think of the nerve like a hot dog. It is wrapped nice & cozy: first, by toppings right up against the hot dog (myelin) & then a bun holding it all in (connective tissue) Image
3/Although nerve injury can be compressive or stretch or even from radiation, it is easiest to think of it like a punch to the face. Imaging that sort of injury hits the nerve, like a fist to your face Image
Read 19 tweets
Apr 3
1/Time is brain! But what time is it?

If you don’t know the time of stroke onset, are you able to deduce it from imaging?

Here’s a #tweetorial to help you date a #stroke on MR!
#medtwitter #meded #neurotwitter #neurology #neurorad #radres #radtwitter #radiology #FOAMed #FOAMrad
2/In up to 25% of acute stroke patients, the time of last known well is well, not known. Then it’s important to use the stroke’s MR imaging features to help date its timing. Is it hyperacute? Acute? Subacute? Or are the “stroke” symptoms from a seizure from their chronic infarct?
3/Strokes evolve, or grow old, the same way people evolve or grow old. The appearance of stroke on imaging mirrors the life stages of a person—you just have to change days for a stroke into years for a person. So 15 day old stroke has features of a 15 year old person, etc.
Read 22 tweets
Mar 27
1/Feeling unarmed when it comes to evaluating cervical radiculopathy & foraminal narrowing on MR?

Here’s a #tweetorial that’ll take that weight off your shoulder & show you how to rate cervical foraminal stenosis!
#medtwitter #meded #FOAMed #radtwitter #neurorad #spine #radres
2/First, the anatomy. Nerve rootlets arise from the anterior & posterior horns, merging to form anterior (motor) & dorsal (sensory) nerves roots in the thecal sac.

These come together & the dorsal root has its dorsal root ganglion before the spinal nerve extends extravertebral
3/Think of it like a road system but carrying information/impulses instead of cars. Small roads (rootlets) merging to make larger roads (roots), before these finally merge together onto the big highway, which is the dorsal root ganglion and spinal nerve
Read 22 tweets
Mar 20
1/Does the work up for dizziness make your head spin?

Wondering what you should look for on an MRI for dizziness?

Here’s a #tweetorial on what you can (and can’t) see on MRI in #dizziness

#medtwitter #meded #neurotwitter #neurorad #radres #HNrad #neurotwitter #stroke #FOAMed Image
2/The etiology for dizziness depends both on how you define dizziness (i.e., vertigo, imbalance) & where you see the patient

For imaging, subtle distinctions in symptoms usually aren’t provided & many common diagnoses are without imaging findings (BPPV, vestibular migraine) Image
3/The most important finding on imaging for dizziness is a stroke from vertebrobasilar insufficiency (VBI)

It's a relatively uncommon etiology of dizziness, but its prevalence increases in emergent/acute dizziness populations

Missed VBI can have profound consequences/morbidity. Image
Read 24 tweets

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