Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

54
Prepared by Dr.Salah Mohammad Fatih MBChB,DMRD,FIBMS(radiology)

description

The lecture has been given on Apr. 7th, 2011 by Dr. Salah Mohammad Fatih.

Transcript of Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Page 1: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Prepared by Dr.Salah Mohammad FatihMBChB,DMRD,FIBMS(radiology)

Page 2: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

X-rayIsotope US CT MRI

Page 3: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

1-Plain bone radiograph

Page 4: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Initially, a musculoskeletal lesion should be simply imaged with a plain film. It should be remembered that plain films remain the most reliable imaging method for assessment of both biologic activity and probable histological diagnosis of an osseous lesion.

Page 5: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Signs of bone disease in plain X-ray are;

Page 6: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

1-Decreased bone density2-Increased bone density

(sclerosis).3- Periosteal reaction4- Cortical thickening5- Alteration in the trabecular pattern6- Alteration in the shape of a bone7-Altreration in bone age

Page 7: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Localize (lytic area or area of ‘ bone distruction’)

Generalize

Page 8: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Giant cell tumor

Page 9: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

osteoporosis

Page 10: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

2-increased bone density (sclerosis).

Focal Generalized

Page 11: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Osteopetrosis

Page 12: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

osteosarcoma

Page 13: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

It refers to excessive bone produced by the periosteum, which occur in response to infection , trauma & tumors

Page 14: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Patterns of periosteal reaction;

Page 15: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

1- Linear

Page 16: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 17: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 18: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 19: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Also involve laying down of new bone by the periosteum,but the process is very slow & it has the same homogeneous density as does the normal cortex& there is no separate lines or specules of calcification as seen in a periosteal reaction

Page 20: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

causes 1- chronic osteomylitis. 2-healed truama 3- response to chronic stress or benign

tumor

Page 21: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Chronic osteomylitis

Page 22: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Usually involving a reduction in the no. of trabeculae with an alteration in the remaining trabeculae.

e.g in osteoporosis, there is reduction in the no. of the trabeculae & remaining trabiculae are more prominent than usual associated with thinning of the cortex.

in paget‘s disease , there is thickening of the trabeculae & associated with thickening of the cortex & bone expansion

Page 23: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Local osteoporosis Normal

Page 24: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Paget disease

Page 25: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Congenital Acquired , e.g Acromegaly, expanding bone

tumors

Page 26: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 27: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 28: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

US can not demonstrate bone pathology but does have a complementary imaging role;

Dtecting tenosynovitis, tendon tear & rupture.

In diagnosis of ostiomyelitis

Page 29: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Technetium-99m lablled phosphate complexes

Page 30: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Dtection of metastasis. Detection of oseomylitis . Determination of whether a lesion in solitary or multiple. Investigation of clinically suspected lesion when the Plain

radiograph is –ve. Investigation of radiographically equivocal cases whether is

significant or not.

Investigation of pain full prosthesis .

Page 31: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 32: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Is only needed in selected cases. Indications for bone CT are1. Demonstrating abnormalities in the areas where

plain films are frequently difficult to be interpretated for exam. Spine , hip &pelvis

2. As a guide for bone biopsy.

3. Demonstration of the extent &characterization of the bone tumor in selected cases to complement MRI

Page 33: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 34: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 35: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 36: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Play a vital important role in musculoskeletal disorders.

In can demonstrate bone marrow directly but calcified tissues & cortical bones produces no signal.

MRI particularly good for showing soft tissue abnormalities

Page 37: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Disc herniation & spinal cord or nerve root compression.

Dx of bone metastasis. Extend of primary bone tumor. To image soft tissue masses To Dx osteomyelitis & shows any soft

tissue abscess. To Dx avascular necrosis & other joint

pathologies

Page 38: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 39: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 40: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Bone disease can be devided in to; 1- focal: lytic , sclerotic or mixed solitory multiple 2- generalized; where all the bones show

diffuse increase or decease in bone density 3- alteration in the trabecular pattern or

changes in the shape

Page 41: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Lytic Sclerotic Mixed

Page 42: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Radiological approach for diagnosis of solitary bone lesions

to decide whether the lesion is benign (i.e. stable or very slow growing) or

whether the lesion is aggressive (malignant tumor or infection).

Page 43: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

1. Age of the patient. This can be an extremely important determinant

in some lesions in which the age range of occurrence may be quite narrow. For example,

Malignant osseous lesions in patients under one year of age are usually metastatic neuroblastoma.

Malignant osseous lesions in the age range of 1 to 30 years are usually osteosarcoma or Ewing's sarcoma.

Malignant osseous lesions in the 30- to 60-years range most commonly will be either chondrosarcoma, primary lymphoma, or malignant fibrous histiocytoma,

Malignant lesions in the age range over 50 most commonly will be due to metastatic disease or multiple myeloma.

Page 44: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Three different types of locations should be noted:

1- the particular bone that is involved. ( long bone ,flat bone , small bones)

3- the location in a transverse axis. (central, eccentric, or a cortically-based epicenter).

3- the location in a longitudinal axis of a long bone. (epiphysis, metaphysis or diaphysis).

Certain lesion occur at the certain sites;E.g. Osteomyelitis characteristically occur in the metaphyseal

areas specially of the knee & lower tibia whereas giant cell tumor occur in subarticular areas

Page 45: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)
Page 46: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

i.e. Zone of transition of the lesion from abnormal to normal bone;

A wide zone of transition denotes an aggressive lesion.

A narrow zone is a much less aggressive lesion.

well defined sclerotic edge is almost certainly benign.

Page 47: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Any destruction of the adjacent cortex indicates an aggressive lesion such as a malignant tumor or osteomyelitis

Page 48: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Bone expansion with an intact well formed cortex usually indicate a slow growing lesion such as an encondroma or fibrous dysplasia.

Page 49: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Presence of an active periosteal reaction in the absence of the trauma usually indicates an aggressive lesion

Page 50: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

. Cortical breakthrough of a bone lesion to create a soft tissue mass generally suggest an aggressive lesion(infection or tumor) .

ill define soft tissue swelling adjacent to focal bone disruction lesion suggest infection .

well define soft tissue swelling adjacent to the bone lesion suggest neoplasm& such soft tissue masses will often distort but not obliterate nearby muscle planes.

Page 51: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Common terminology includes ; "geographic" (well-defined or map-like lesion, the least aggressive

pattern), "moth-eaten" (holes, with less well-defined margins, appearing

more aggressive) "permeative" (a poorly demarcated pattern which is often very

difficult to visualize and represents a highly aggressive lesion)

Page 52: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

allow categorization of a lesion as bone producing versus cartilage producing.

Diffuse ill defined calcification within the lesion suggest osteoid lesion .

presence of a patchy calcification of popcorn or stippled type with density more than normal bone usually indicate cartilagenous tumor

Page 53: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

Generally, a larger lesion (greater than 5 cm) is more likely to be malignant or aggressive, but there are many exceptions to this statement, and other determinants are generally more important than this one.

Page 54: Radiology 5th year, 1st lecture (Dr. Salah Mohammad Fatih)

This is the last most important point , since polyostotic lesions automatically restrict the number of disease processes that might be considered. For example,

nonaggressive polyostotic lesions should be confined to; fibrous dysplasia Paget's disease Histiocytosis multiple exostosis multiple enchondromatosis Aggressive polyostotic lesions would be confined to osseous metastases multiple myeloma primary bone tumor with osseous metastases, multifocal osteomyelitis, aggressive histiocytosis, and multifocal

vascular bone tumors.