Bakit iminungkahi ang operasyong ito¶
Ang cervical disc replacement ay nangangahulugan ng pagpapalit ng isang gasgas na disc sa iyong leeg ng isang artificial disc na patuloy na gumagalaw. Ito ay isang aprubadong alternatibo sa fusion surgery, kung saan tinatanggal ang disc at pinagsasama nang matibay ang mga buto sa leeg. Karaniwan namin itong inaalok para sa wear-and-tear disease sa isa o dalawang disc level sa iyong leeg. Ang pangunahing dahilan kung bakit namin ito maaaring imungkahi para sa iyo ay dahil ang pagpapanatili ng paggalaw ng treated level ay nagpapababa ng pagkakataon na magkaroon ng problema sa mga katabing disc. Sa mga pag-aaral, higit sa isa sa bawat apat na pasyente ang nangailangan ng karagdagang surgery sa loob ng sampung taon pagkatapos ng fusion dahil sa mga problema sa kalapit na level. Layunin ng operasyong ito na pagaanin ang sakit sa iyong braso at leeg at tulungan kang bumalik sa normal na function.
Bago ang operasyon¶
Kapag nakaplano na ang operasyon, bibigyan ka namin ng malinaw na mga tagubilin upang maging maayos ang takbo ng araw. Kakailanganin mong itigil ang pagkain at pag-inom pitong oras bago ang operasyon. Humihingi kami ng pitong oras sa halip na ang karaniwang anim upang maaaring isagawa nang mas maaga ang iyong operasyon kung maagang matapos ang listahan sa theatre. Ang ilang mga gamot ay maaaring kailangang itigil muna bago ang operasyon; sasabihin namin sa iyo kung alin ang mga ito at kailan. Magdala ng nakasulat na listahan ng lahat ng iyong iniinom, kabilang ang mga tabletas, patak, at mga natural na lunas. Mag-ayos ng taong maghahatid sa iyo pauwi pagkatapos, dahil hindi mo magagawang magmaneho nang mag-isa. Magsuot ng maluwag at komportableng damit na madaling hubarin. Ang imaging tulad ng mga X-ray o MRI scan ay tumutulong sa amin sa pagpaplano ng operasyon, at karaniwan ay mayroon na kami nito mula sa iyong mga naunang pagbisita. Kung mayroon kang iba pang kondisyong medikal, maaaring kailanganin mo ng mga blood test o pagsusuri kasama ang anaesthetist bago ang araw ng operasyon.
Sa araw ng operasyon¶
Darating ka sa surgical admissions unit ng ospital, kung saan ka ire-rehistro at ihahanda para sa theatre. Makikilala mo ang anaesthetist, ang doktor na magpapatulog sa iyo para sa operasyon at mag-aalaga sa iyo habang isinasagawa ito. Ang operasyong ito ay ginagawa sa ilalim ng general anaesthetic. Minsan ay nagdaragdag ng regional nerve block para sa pagpapaginhawa ng sakit pagkatapos ng operasyon; tatalakayin ito ng anaesthetist sa iyo sa araw na iyon. Pagkatapos ay dadalhin ka sa operating theatre, kung saan isasagawa ang operasyon.
Kapag natapos na ito, magigising ka sa recovery area. Babantayan ka ng mga nurse doon habang nawawala ang bisa ng anaesthetic. Kapag stable ka na, ililipat ka sa ward o uuwi na, depende sa procedure at kung paano ang iyong paggaling. Kung uuwi ka sa araw ring iyon, ang taong inayos mong magmamaneho para sa iyo ang maghahatid sa iyo pauwi.
Ano ang kinapapalooban ng operasyon¶
Ang cervical disc replacement ay ginagawa sa harap ng iyong leeg. Gagawa ang iyong surgeon ng maliit na hiwa doon at isasantabi ang mga soft tissue upang maabot ang iyong spine. Tatanggalin ang gasgas na disc, at isang artificial disc na nananatiling gumagalaw ang ilalagay sa puwang. Pagkatapos ay sasara ang hiwa.
Ang layunin ay alisin ang pressure sa mga nerve sa iyong leeg habang pinapanatili ang paggalaw ng bahaging iyon ng iyong leeg, sa halip na pagdugtungin nang matibay ang mga buto gaya ng ginagawa sa fusion surgery.
Pagkatapos ng operasyon¶
Magigising ka sa recovery area, kung saan babantayan ka ng mga nurse habang nawawala ang bisa ng anaesthetic. Maaaring makaramdam ng pananakit sa iyong leeg, at maaaring maging kakaiba ang pakiramdam ng paglunok sa simula; mawawala rin ito. May nakaplano nang pain relief para sa iyo bago ka umalis, at ipapaliwanag ng iyong team kung ano ang dapat inumin. Karaniwan ay maaari ka nang bumangon at maglakad sa loob ng ilang oras, nang may tulong sa unang pagkakataon. Sasabihin sa iyo ng iyong team kung uuwi ka sa araw ring iyon o mananatili ng isang gabi sa ospital. Dapat may kasama ka sa unang 24 oras pagkauwi mo sa bahay. Pananatilihin namin ang dressing sa loob ng humigit-kumulang 10 araw; pakiusap na huwag itong tanggalin bago ang panahong iyon maliban kung sinabi namin sa iyo. Papalitan o tatanggalin namin ito kapag nakita ka na namin.
Paggaling¶
Sa unang ilang araw, makakaramdam ka ng pananakit at paninigas ng iyong leeg, at maaaring maging kakaiba ang pakiramdam ng paglunok. Normal ito at mawawala habang bumababa ang pamamaga. Ipagpatuloy ang pag-inom ng pain relief na itinakda ng iyong team, at gumalaw-galaw nang dahan-dahan sa halip na manatiling nakahiga lamang sa kama.
Hindi ka magsusuot ng brace para sa operasyong ito. Malayang makakagalaw ang iyong leeg, at ang paggalaw na iyon ay bahagi ng kung paano dapat gumana ang artificial disc. Gagabayan ka ng iyong physiotherapist sa mga simpleng ehersisyo habang umuusad ang iyong paggaling. Hinihikayat ang paglalakad mula pa sa simula, at maaari mong dagdagan ang layo nito sa sarili mong bilis. Iwasan ang pagbubuhat ng mabibigat, at anumang bagay na yumayanig o pumipilipit sa iyong leeg, hanggang sa sabihin ng iyong surgeon na ligtas na itong gawin.
Habang nawawala ang pananakit, mapapansin mong bumubuti ang pakiramdam sa iyong braso at leeg. Kapag kaya mo nang ipihit ang iyong ulo nang sapat upang tingnan ang iyong mga salamin at blind spot, kaya mong magpreno nang malakas nang walang pag-aalinlangan, at wala ka nang iniinom na malalakas na gamot sa sakit, maaari mo nang isiping magmaneho muli. Kung may inireseta sa iyong collar, tanungin ang iyong sariling surgeon tungkol sa pagmamaneho habang suot ito, at hayaan silang magpasya kung kailan. Ang pagbabalik sa trabaho ay depende sa kung ano ang saklaw ng iyong trabaho; ang desk work ay karaniwang nauuna bago ang mga mas mabibigat na tungkulin.
Ang paggaling ay nag-iiba sa bawat tao. Ang iyong timeline ay maaaring naiiba sa iba, at gagabayan ka ng iyong surgeon at physiotherapist sa bawat review.
Ano ang maaaring maging problema¶
Karamihan sa mga pasyente ay nagiging maayos, ngunit paminsan-minsan ay maaaring magkaroon ng mga problema. Binabantayan kayo nang maigi ng inyong surgeon at ng team upang maagapan ang anumang isyu.
Ang isang dahilan kung bakit pinipili ang operasyong ito kaysa sa fusion surgery ay dahil maaari nitong mapababa ang pagkakataon na magkaroon ng problema sa mga katabing disc. Hindi ito sigurado, at ang ilang tao ay nangangailangan pa rin ng karagdagang operasyon sa huli para sa isang gasgas na disc sa kalapit na level. Kung bumalik ang bagong pananakit ng braso o leeg pagkalipas ng ilang buwan o taon matapos ang inyong operasyon, ipaalam ito sa amin sa inyong susunod na review upang masuri namin ang mga level sa itaas at ibaba.
Dahil ang operasyong ito ay ginagawa sa harap ng inyong leeg, ang mga nerve patungo sa inyong voice box ay malapit sa surgical path. Ang ilang tao ay nakapapansin ng paos o mas mahinang boses, o napapansing madaling mapagod ang kanilang boses, sa mga unang linggo. Karamihan sa mga pagbabagong ito ay nawawala. Kung ang inyong boses ay hindi pa rin bumabalik sa normal pagkatapos ng ilang linggo, banggitin ito sa inyong review upang maayos namin ang tamang pangangalaga.
Ang impeksyon ay hindi karaniwan ngunit maaaring mangyari sa paligid ng sugat o mas malalim sa leeg. Bantayan ang malalim at tumitibok na pananakit na hindi nawawala sa mga simpleng painkiller, pamumula na kumakalat mula sa hiwa, pagtagas ng likido, o lagnat at panginginig. Maaari rin kayong makaramdam ng pangkalahatang panghihina o mapansin ang pamamaga sa inyong leeg na nagpapahirap sa paglunok. Kung makakita kayo ng alinman sa mga senyales na ito, tumawag sa clinic sa mismong araw na iyon. Kung nakakaramdam ng lagnat at panghihina sa labas ng oras ng opisina, pumunta sa emergency department.
Ang pakiramdam ng pagkabalisa bago ang operasyon ay karaniwan, ngunit mahalaga ito para sa inyong paggaling. Ang pagkabalisa bago ang operasyon ay nauugnay sa mas maraming problema pagkatapos, kabilang ang mga komplikasyon at hindi planadong pagbabalik sa ospital. Sabihin sa inyong surgeon kung ano ang inyong nararamdaman upang makapag-ayos ng suporta bago ang araw ng operasyon.
Ang paggamit ng nicotine, kabilang ang vaping, ay nagpapataas ng pagkakataon ng mga problema pagkatapos ng operasyon sa leeg. Kung gumagamit kayo ng nicotine, ipaalam ito nang maaga sa inyong team upang matulungan namin kayong huminto bago ang operasyon.
Ang pagkakaroon ng panibagong operasyon sa inyong leeg ay may mas mataas na panganib kaysa sa una. Kung sakaling may talakayin sa inyong karagdagang operasyon, ipapaliwanag namin ito nang maigi.
Ang table ng mga komplikasyon sa pahinang ito ay naglilista ng mga tipikal na rate kung nais ninyo ang mga detalye.
Kailan dapat tumawag sa amin¶
Karamihan sa mga problema ay lumalabas sa unang ilang linggo, kaya nakatutulong na malaman kung ano ang dapat bantayan. Tumawag sa amin kung ikaw ay may lagnat, o kung ang balat sa paligid ng iyong hiwa ay lalong namumula, namamaga, o nagsisimulang maglabas ng likido. Tumawag sa amin kung ang iyong sakit ay biglang lumala nang husto, o kung ang bagong sakit ay hindi nawawala gamit ang iyong nakasanayang pain relief. Pumunta sa emergency kung ikaw ay may pamamaga o sakit sa binti (calf), o kung nahihirapang huminga, dahil ang mga ito ay maaaring mga senyales ng blood clot. Pumunta agad sa emergency kung mawalan ka ng pakiramdam sa iyong braso o kamay, o kung mapansin mong hindi mo na ito maigalaw. Kung hindi ka sigurado kung seryoso ang isang sintomas, tumawag sa klinika at tutulungan ka naming magpasya kung ano ang susunod na gagawin.
Evidence & references
This is the clinical evidence summary written for health professionals. It is technical, and it lists the research this page was built from. You do not need to read it to understand your treatment or to make a decision about it.
Anatomy & Pathophysiology¶
Bony Anatomy¶
- The bony anatomy of the spine consists of 7 cervical vertebrae, 12 thoracic vertebrae, 5 lumbar vertebrae, 5 fused sacral vertebrae, and 4 or 5 fused coccygeal vertebrae [3].
- The vertebral body consists of a fairly cylindrical mass of bone connected by the pedicles to the posterior arch, which consists of the lamina and spinous process [3].
- The vertebral bodies function primarily to bear weight and transfer forces to the pelvis and hips, while the posterior elements provide protection to neural structures and function as a tension band [3].
- The cervical spine is composed of seven vertebrae and assumes a lordotic curvature [8].
- Each vertebra is composed of an anterior portion (vertebral body) and a posterior arch formed by the pedicle, facet, lamina, and spinous process [8].
- The vertebral body is composed of an inner region of cancellous bone surrounded by a thin shell of cortical bone [8].
- The cervical vertebral body is an oblong structure with a coronal diameter larger than its sagittal diameter [20].
- Cervical endplates have a cup-in-saucer configuration, distinct from the normally flat endplates of the thoracic and lumbar vertebrae [20].
- The posterior aspect of the cervical transverse process guides the cervical spinal nerves as they exit the spinal canal, with the spinal nerves lying posterior to the vertebral artery [20].
- The transverse process forms a half-pipe configuration that cradles the exiting spinal nerve as it projects in an anteroinferior direction [20].
Intervertebral Disc Anatomy¶
- The intervertebral disc (IVD) separates each successive vertebral body except between the atlas (C1) and the axis (C2) [8].
- The IVD is composed of an inner nucleus pulposus (NP) and an outer ring termed the anulus fibrosus (AF) [8].
- The nucleus pulposus serves as an osmotic pump to attract water and generate hydraulic pressure when subjected to significant loads [8].
- The anulus fibrosus encapsulates the gelatinous nucleus pulposus and provides mechanical support to contain NP pressure and constrain intervertebral rotations [8].
- The outer anulus fibrosus is integrated with the vertebral rim via a fibrocartilage enthesis that consists of a thin layer of calcified cartilage, or "tidemark" [8].
- The end plate is a bilayer of cartilage and bone that separates the disk from adjacent vertebrae [8].
- The cartilage end plate integrates with the inner anulus fibrosus to fully encapsulate the nucleus pulposus [8].
- The end plate must be strong and thick to resist significant loads but also permeable to favor chemical transport and disk cellular vitality [8].
Ligaments and Soft Tissue¶
- Each successive vertebra is connected anteriorly via the IVD and posteriorly via the facet joints [8].
- Passive support for the spinal column is provided by the anterior longitudinal ligament, posterior longitudinal ligament, ligamentum flavum, facet joint capsule, interspinous ligament, and supraspinous ligaments [8].
- The erector spinae muscle runs longitudinally on the dorsal surface of the spinal column and functions to extend the spine [8].
- The psoas muscle runs longitudinally on the ventrolateral surface of the spinal column and serves to flex the hip or laterally bend the trunk [8].
- The multifidus muscle connects intersegmentally to stabilize the spine by acting like a bowstring to maintain lordosis [8].
Vascular Anatomy¶
- The cervical spine derives its circulation primarily from the vertebral arteries [12].
- The vertebral arteries arise from the subclavian arteries and typically enter the transverse foramen at the C6 level [12].
- The vertebral arteries run proximally through the transverse foramina to C1, then course posteriorly over the superior aspect of the C1 ring before entering the foramen magnum [12].
- Segmental branches to each cervical vertebra arise from the vertebral artery and the deep cervical branch of the costocervical trunk [12].
- There is significant variability in vertebral artery anatomy, including entry through the C7 transverse foramen or anomalous courses looping through a cervical vertebral body [12].
- The vascular supply of the spinal cord is primarily from the medullary branches of the segmental spinal arteries [12].
- The anterior spinal artery is responsible for supplying approximately 80% of the vascular supply to the spinal cord [12].
- Three anterior medullary arteries typically supply the cervical region of the spinal cord [12].
Biomechanics and Alignment¶
- Normal cervical alignment is approximately 15° of lordosis [7].
- The curvatures of the spine function to keep the head balanced over the pelvis and to transmit axial forces through the spine to the pelvis [7].
- The lordotic curvatures of the cervical and lumbar spine develop secondarily later in life to allow the growing child to develop an upright posture [7].
- The functional spinal unit consists of two vertebrae, the disk between them, and the facet joints (and their capsules) [7].
- The functional spinal unit serves to limit motion of the spine within the confines of protecting the neural structures contained therein [7].
- Vertebral bodies bear 70% to 90% of the static axial load of the spine [7].
- The facet joints support 10% to 20% of axial load in a standing, neutral alignment [7].
- In extension, the facet joints may bear up to 30% of the axial load [7].
- In flexion, the facet joints may be burdened with up to 50% of the anterior shear load [7].
- As compressive forces are applied to the disk, the nucleus pulposus deforms, redistributing axial forces radially [7].
- The radial pressure generated by the nucleus pulposus is resisted by the tensile properties of the alternating bands of fibers within the anulus fibrosus [7].
Pathophysiology of Degeneration¶
- Cervical degenerative disc disease (DDD) is a pathophysiologic process that incorporates a spectrum of disease states ranging from neck pain and headache to cervical radiculopathy and/or myelopathy [30].
- Disc degeneration does not always cause pain, but it can lead to internal disc derangement or disc herniation [30].
- The degenerative process of the spine has been divided into three stages: dysfunction, instability, and stabilization [28].
- The dysfunction stage of spinal degeneration is seen in individuals 15 to 45 years old and is characterized by circumferential and radial tears in the disc anulus and localized synovitis of the facet joints [28].
- The instability stage of spinal degeneration is found in 35- to 70-year-old patients and is characterized by internal disruption of the disc, progressive disc resorption, degeneration of the facet joints with capsular laxity, subluxation, and joint erosion [28].
- The stabilization stage of spinal degeneration is present in patients older than 60 years and is characterized by progressive development of hypertrophic bone around the disc and facet joints leading to segmental stiffening or frank ankylosis [28].
- Disc herniation is considered a complication of disc degeneration in the dysfunction and instability stages [28].
- Spinal stenosis from degenerative arthritis is a complication of bony overgrowth compromising neural tissue in the late instability and early stabilization stages [28].
- Degenerative cervical myelopathy results from static compression, spinal malalignment leading to altered cord tension and vascular supply, and dynamic injury mechanisms [27].
- The cascade of events after compression of the spinal cord in degenerative cervical myelopathy includes ischemia, destruction of the blood–spinal cord barrier, demyelination, and neuronal apoptosis [27].
- Potential genetic factors for degenerative disc disease include those related to MMP-2 and collagen IX [27].
- Potential genetic factors for ossification of the posterior longitudinal ligament include collagen VI and XI [27].
- Congenital anomalies including spinal stenosis, Down syndrome, and Klippel-Feil syndrome may predispose to the development of cervical disc degeneration [27].
- The incidence of significant abnormalities shown by imaging studies in asymptomatic matched controls is 76% [30].
- Approximately 80% of individuals are affected by nonspecific axial pain at some time in their lives [30].
Investigations¶
Magnetic Resonance Imaging (MRI)¶
- MRI is the standard for advanced imaging of the spine and is superior to CT in most circumstances, particularly for identifying infections, tumors, and degenerative changes within the discs [23].
- MRI is superior to CT for imaging the disc and directly imaging neural structures [23].
- MRI typically shows the entire region of the spine (cervical, thoracic, or lumbar) [23].
- MRI allows for imaging of the nerve root in the foramen, which is difficult with postmyelography CT because the subarachnoid space and contrast agent do not extend fully through the foramen [23].
- MRI evidence of disc degeneration has been reported in the cervical spine in 25% of patients younger than 40 years [23].
- MRI evidence of disc degeneration has been reported in the cervical spine in 60% of patients 60 years and older [23].
- The most common indication for MRI of the spine is evaluation of intervertebral disc disease [22].
- After routine radiography, MRI is the procedure of choice for screening patients with low back or sciatic pain [22].
- In the lumbar and thoracic spine, MRI has supplanted CT myelography because it is noninvasive and less expensive [22].
- The combination of high soft-tissue contrast and high resolution in MRI allows ideal evaluation of the intervertebral discs, nerve roots, posterior longitudinal ligament, and intervertebral foramen [22].
- MRI provides excellent assessment of the spinal cord [22].
- Sagittal images provide an initial evaluation of the intervertebral discs and posterior longitudinal ligament [22].
- A normal disc exhibits signal hyperintensity on T2-weighted images due to its high water content [22].
- The aging process results in gradual desiccation of the disc material and loss of T2-weighted signal hyperintensity [22].
- Disc herniations or extrusions appear as convex or polypoid masses extending posteriorly into the ventral epidural space, frequently maintaining a signal intensity similar to that of the disc of origin [22].
- Sagittal T2-weighted or gradient-echo images create a “myelographic” effect useful for evaluating compromise of the subarachnoid space [22].
- Sagittal T1-weighted images should be closely examined to identify narrowing of the neuroforamina [22].
- Normal T1-weighted hyperintense perineural fat in the foramina provides excellent contrast to darker displaced disc material [22].
- Far lateral disc herniations are best seen on selected axial images localized through disc levels [22].
- Free disc fragments appear discontinuous with the intervertebral disc, usually of intermediate T1-weighted signal in contrast to the hypointense cerebrospinal fluid [22].
- MRI can detect significant spinal cord compromise in the cervical and thoracic spine [22].
- Edema within the spinal cord is readily demonstrated as hyperintensity with T2 weighting [22].
- A bulge is defined as a circumferential, symmetric extension of the disc beyond the interspace around the endplates [22].
- A protrusion is defined as a focal or asymmetric extension of the disc beyond the interspace, with the base against the disc of origin broader than any other dimension of the protrusion [22].
- An extrusion is defined as a more extreme extension of the disc beyond the interspace, with the base against the disc of origin narrower than the diameter of the extruding material itself or with no connection between the material and the disc of origin [22].
- A sequestration specifically refers to a disc fragment that has completely separated from the disc of origin [22].
- Diffusion tensor imaging is an MRI technique based on the diffusion rate of water in tissue that has been reported to demonstrate spinal cord impairment in patients with early stage cervical spondylosis before it is visible on plain MRI scans [26].
- Information from diffusion tensor imaging can be helpful in early identification of patients in whom operative treatment is indicated [26].
Computed Tomography (CT)¶
- CT has largely supplanted plain radiographs as the initial screening study of choice due to its combination of high sensitivity and specificity [24].
- CT of the spine should be obtained in the setting of a high-risk mechanism, in the presence of acute thoracic or lumbar pain after a trauma, when fractures have been identified on plain radiographs, and in situations where there are other reasons to suspect a spine injury such as the presence of a neurologic deficit [24].
- A dedicated spine CT consists of 2- to 3-mm wide axial slices of the thoracic and lumbar spine, typically reformatted into sagittal and coronal images [24].
- Compared to plain radiographs, CT allows for identification of subtler fractures that might have remained undiagnosed on plain radiographs [24].
- CT provides additional three-dimensional detail, even for more severe and easily recognized injuries, such as the degree of canal compromise and the amount of fracture comminution [24].
- CT is particularly useful in differentiating compression fractures from burst fractures [24].
- CT is useful in identifying subtle yet important features of an injury such as the presence of facet widening [24].
- CT evaluation is essential in determining the stability of thoracic and lumbar spine fractures [24].
- The primary disadvantage of CT imaging in comparison to magnetic resonance imaging (MRI) is that it does not provide as good a visualization of the soft tissues [24].
- CT myelography is invasive and more costly than MRI and is reserved for patients who have contraindications to MRI or who have equivocal MRI examinations [22].
Clinical Correlation and Interpretation¶
- One of the difficulties with MRI is showing anatomy that is abnormal but may be asymptomatic [23].
- MRI findings must be carefully correlated with the clinical impression [23].
- The best way to obtain meaningful clinical information from MRI is to have a specific question before the study derived from the patient’s history and careful physical examination [23].
- The specific question for MRI interpretation is posed using the parameters of (1) neural compression, (2) instability, and (3) deformity [23].
- In each case, the specific location of the abnormality should be suspected before MRI and confirmed with the study [23].
- Only abnormalities in one or a combination of the categories of neural compression, instability, and deformity are important because operative techniques can treat only these problems [23].
- Failure to interpret an imaging study in this way, especially MRI, would inevitably lead to poor clinical choices and outcomes [23].
- Ideally, an advanced imaging study should be used for confirmation, not reevaluation [26].
References¶
[3] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Spinal Anatomy > Osseous Anatomy.
[7] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Spinal Anatomy > Biomechanics.
[8] Orthopaedic Basic Science Fifth Edition Print Ebook. Biology and Mechanics of the Skeletal Extracellular Matrix > Anatomy.
[12] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Spinal Anatomy > Vascular Anatomy.
[20] Rockwood And Green S Fractures In Adults. Imaging of Cervical Spine Fractures and Dislocations > Lower Cervical Spine (C3–C7).
[22] Campbell S Operative Orthopaedics 4 Volume Set. INTERVERTEBRAL DISC DISEASE.
[23] Campbell S Operative Orthopaedics 4 Volume Set. OVERVIEW OF LUMBAR AND THORACIC DISC DEGENERATION AND HERNIATION > MAGNETIC RESONANCE IMAGING.
[24] Rockwood And Green S Fractures In Adults. Imaging of Cervical Spine Fractures and Dislocations > Computed Tomography.
[26] Campbell S Operative Orthopaedics 4 Volume Set. POSTERIOR APPROACH TO THE LUMBAR SPINE, L1 TO L5 > MAGNETIC RESONANCE IMAGING.
[27] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Cervical Degenerative Conditions > Annotated References.
[28] Campbell S Operative Orthopaedics 4 Volume Set. POSTERIOR APPROACH TO THE LUMBAR SPINE, L1 TO L5 > NATURAL HISTORY OF DISC DISEASE.
[30] Campbell S Operative Orthopaedics 4 Volume Set. POSTERIOR APPROACH TO THE LUMBAR SPINE, L1 TO L5 > OVERVIEW OF DISC DEGENERATION AND HERNIATION IN THE CERVICAL SPINE.
