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Topic:Magnetic Resonance Imaging

Magnetic Resonance Imaging (MRI) is a non-invasive diagnostic tool used in veterinary medicine to obtain detailed images of the internal structures of horses. It utilizes strong magnetic fields and radio waves to create cross-sectional images, allowing for the examination of soft tissues, bones, and joints without the need for radiation. MRI is particularly useful for diagnosing conditions in areas that are challenging to assess with other imaging modalities, such as the hoof, distal limb, and head. This page compiles peer-reviewed research studies and scholarly articles that explore the application, techniques, and advancements in MRI technology for equine diagnostics, as well as its role in improving the understanding of equine anatomy and pathology.
Computed tomography and magnetic resonance imaging of the equine head.
The Veterinary clinics of North America. Equine practice    August 8, 2001   Volume 17, Issue 1 131-vii doi: 10.1016/s0749-0739(17)30079-2
Tucker RL, Farrell E.Horses are frequently presented with clinical conditions warranting diagnostic imaging of the head. Unfortunately, evaluation of the equine head can be difficult using conventional radiography. The anatomic complexity and superimposition of the osseous, dental, and soft tissue structures complicate radiographic interpretation and diagnoses. Multiple radiographic projections may be necessary to image specific regions, and side-to-side comparison is often essential.
Computed tomography and magnetic resonance imaging of the equine musculoskeletal conditions.
The Veterinary clinics of North America. Equine practice    August 8, 2001   Volume 17, Issue 1 145-vii doi: 10.1016/s0749-0739(17)30080-9
Tucker RL, Sande RD.There is a growing interest in the use of computed tomography (CT) and magnetic resonance (MR) imaging in equine orthopedic patients. It is well established that CT and MR imaging offer superior diagnostic information in a wide variety of musculoskeletal injuries in human beings and small animals. The highly detailed cross-sectional images obtained with these two modalities can often demonstrate pathologic changes undetected with other common imaging techniques. Based on their multiple applications in human beings and small animals, CT or MR imaging may prove to be the optimal diagnostic imagi...
Physical principles and technical considerations for equine computed tomography and magnetic resonance imaging.
The Veterinary clinics of North America. Equine practice    August 8, 2001   Volume 17, Issue 1 115-vii doi: 10.1016/s0749-0739(17)30078-0
Kraft SL, Gavin P.This article discusses how cross-sectional imaging methods such as computed tomography and magnetic resonance imaging can provide unique and diagnostically important information in situations where radiography or diagnostic ultrasound have been unrewarding.
Magnetic resonance imaging of two normal equine brains and their associated structures.
The Veterinary record    April 6, 2001   Volume 148, Issue 8 229-232 doi: 10.1136/vr.148.8.229
Vázquez JM, Rivero M, Gil F, Ramírez JA, Ramírez G, Vilar JM, Arencibia A.Magnetic resonance images were obtained from two isolated horses' heads. Ten mm thick, T1-weighted images were taken with a 1.5 Tesla magnet and a body coil, and compared with the corresponding frozen cross-sections of the heads, relevant structures being identified and labelled at each level. The images should provide reference material for clinical magnetic imaging studies of horses' heads.
Effect of a static magnetic field on blood flow to the metacarpus in horses.
Journal of the American Veterinary Medical Association    September 21, 2000   Volume 217, Issue 6 874-877 doi: 10.2460/javma.2000.217.874
Steyn PF, Ramey DW, Kirschvink J, Uhrig J.To determine the effect of a static magnetic field on relative blood flow to the metacarpus of horses. Methods: Randomized controlled clinical trial. Methods: 6 healthy adult horses. Methods: Red blood cells were radiolabeled in vivo by administration of technetium Tc 99m (pyro- and trimeta-) phosphates, and scintigraphic images were obtained 30 minutes later. A magnetic wrap that emitted a static magnetic field was applied to 1 metacarpus and a control wrap was applied to the contralateral metacarpus. Forty-eight hours later, the wraps were removed, and scintigraphy was repeated. Relative per...
Magnetic resonance imaging and cross sectional anatomy of the normal equine sinuses and nasal passages. Arencibia A, Vázquez JM, Jaber R, Gil F, Ramírez JA, Rivero M, González N, Wisner ER.The purpose of this investigation was to define the magnetic resonance imaging anatomy of the rostral part of the equine head. 10 mm-thick, T1-weighted images of two isolated equine cadaver heads were obtained using a 1.5 Tesla magnet and a body coil. MR images were compared to corresponding frozen cross-sections of the cadaver head. Relevant anatomic structures were identified and labeled at each level. The resulting images provided excellent anatomic detail of the oral and nasal cavities, paranasal sinuses and associated structures. Annotated MR images from this study are intended as a refer...
Detection of biological threat agents by immunomagnetic microsphere-based solid phase fluorogenic- and electro-chemiluminescence.
Biosensors & bioelectronics    August 17, 2000   Volume 14, Issue 10-11 829-840 doi: 10.1016/s0956-5663(99)00068-8
Yu H, Raymonda JW, McMahon TM, Campagnari AA.This article reviews the recent development of two solid-phase chemiluminescence-based techniques, fluorogenic-chemiluminescence (FCL) and electro-chemiluminescence (ECL) for detection of biological threat agents. Both techniques entail a labeled sandwich immunoassay. The objectives of this work are to develop advanced techniques for sensitive and effective detection of a target analyte, particularly in cases where the analysis includes complex samples containing multiple contaminating factors. Other important considerations in developing such detection techniques include the ease of use, the ...
MRI of the equine digit with a dedicated low-field magnet.
The Veterinary record    June 28, 2000   Volume 146, Issue 21 616-617 doi: 10.1136/vr.146.21.616
Choquet P, Sick H, Constantinesco A.No abstract available
Low-field magnetic resonance imaging of the equine tarsus: normal anatomy. Blaik MA, Hanson RR, Kincaid SA, Hathcock JT, Hudson JA, Baird DK.The objective of this study was to define the normal gross anatomic appearance of the adult equine tarsus on a low-field magnetic resonance (MR) image. Six radiographically normal, adult, equine tarsal cadavers were utilized. Using a scanner with a 0.064 Tesla magnet, images were acquired in the sagittal, transverse and dorsal planes for T1-weighted and the sagittal plane for T2-weighted imaging sequences. Anatomic structures on the MR images were identified and compared with cryosections of the imaged limbs. Optimal image planes were identified for the evaluation of articular cartilage, subch...
Use of radiography, computed tomography and magnetic resonance imaging for evaluation of navicular syndrome in the horse. Widmer WR, Buckwalter KA, Fessler JF, Hill MA, VanSickle DC, Ivancevich S.Radiographic evaluation of navicular syndrome is problematic because of its inconsistent correlation with clinical signs. Scintigraphy often yields false positive and false negative results and diagnostic ultrasound is of limited value. Therefore, we assessed the use of computed tomography and magnetic resonance imaging in a horse with clinical and radiographic signs of navicular syndrome. Cadaver specimens were examined with spiral computed tomographic and high-field magnetic resonance scanners and images were correlated with pathologic findings. Radiographic changes consisted of bony remodel...
Comparison of results of scanning electron microscopy and magnetic resonance imaging before and after administration of a radiographic contrast agent in the tendon of the deep digital flexor muscle obtained from horse cadavers.
American journal of veterinary research    March 14, 2000   Volume 61, Issue 3 321-325 doi: 10.2460/ajvr.2000.61.321
Asperio RM, Marzola P, Sbarbati A, Osculati F, Addis F.To analyze the tendon of the deep digital flexor (TDDF) muscle of the forelimb in horses by use of a contrast radiographic agent (gadopentate dimeglumine [Gd-DTPA/Dimeg]) and magnetic resonance imaging (MRI) and to determine the concentration of water protons in the tendons by use of MRI. Methods: 8 TDDF harvested from the forelimbs of 6 horse cadavers. Methods: Examinations were performed on the same portion of each tendon. Tendons were examined by use of two techniques: MRI before and after treatment with Gd-DTPA/Dimeg as well as scanning electron microscopy. Results: Tendons did not have de...
Antemortem evaluation for magnetic resonance imaging of the equine flexor tendon.
The Journal of veterinary medical science    February 17, 2000   Volume 62, Issue 1 81-84 doi: 10.1292/jvms.62.81
Kotani H, Taura Y, Sakai A, Tsuka T, Kageyama Y, Nakaichi M.In this study antemortem evaluation of equine flexor tendons--the superficial digital flexor tendon and the deep digital flexor tendon--using magnetic resonance (MR) images was performed. Postmortem flexor tendons were used to prepare the slice positions, coil and body positions for MR imaging. It was possible by this method to take antemortem MR images of equine limbs that distinguished features as well as postmortem images described in previous studies. The total time of antemortem scanning was about 40 min. This study is the first to report antemortem MR images in horses.
An MRI study of the effect of treadmill training on bone morphology of the central and third tarsal bones of young thoroughbred horses.
Equine veterinary journal. Supplement    February 5, 2000   Issue 30 258-261 doi: 10.1111/j.2042-3306.1999.tb05230.x
Whitton RC, Murray RC, Buckley C, Goodship AE, Lekeux P.Training results in marked modelling of the subchondral bone of the carpus, but the effect of training on the subchondral bone of the distal tarsal joints is unknown. The aim of this study was to determine whether training influenced modelling of the third and central tarsal bones in Thoroughbred horses. Twelve untrained Thoroughbred horses were divided into 2 groups. Group 1 underwent a 19 week progressive training regimen on a high speed treadmill. Group 2 were walked for 40 min daily. Images of left tarsi were obtained by magnetic resonance imaging (MRI) with a 0.5 Tesla superconducting mag...
Biophysical and 1H magnetic resonance spectroscopy characteristics of fractionated stallion ejaculates.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 101-110 
Magistrini M, Lindeberg H, Koskinen E, Beau P, Seguin F.The composition of seminal plasma must be determined to assess the possible roles of sex gland secretions in survival of stallion spermatozoa. In the present study, an automated semen collection device and 1H magnetic resonance spectroscopy were used to analyse and compare the composition of seminal plasma from fractionated and nonfractionated stallion ejaculates. The contribution of each semen component to the ejaculate (sequence of production of component and concentration) was evaluated and its relationship to biophysical parameters was determined. 1H magnetic resonance spectroscopy was use...
Magnetic resonance (MR) imaging studies on horses. Kneissl S, Konar M, Bindeus T, Vrba S, Buchner F.No abstract available
Magnetic resonance imaging and ultrasonography of the lumbricale muscles in the horse.
Australian veterinary journal    March 17, 1999   Volume 77, Issue 2 82-84 doi: 10.1111/j.1751-0813.1999.tb11671.x
Bindeus T, Rand T, Alton K, Imhof H, Stanek C.No abstract available
A technique for magnetic resonance imaging of equine cadaver specimens. Widmer WR, Buckwalter KA, Hill MA, Fessler JF, Ivancevich S.We tested an adaptation of a technique for performing magnetic resonance (MR) imaging of human cadaver limbs in the horse. The forelimbs from a normal horse were collected, frozen, and sealed with a paraffin-polymer combination prior to imaging with either a high- or midfield magnetic resonance scanner. Each forelimb was defrosted, scanned, and refrozen on two separate occasions. A five-point scale was used to evaluate the quality of each set of sagittal and transverse, T1-weighted images of each digit. There was no difference in image quality between first and second scans of either specimen ...
Ultrasonography of the equine shoulder: technique and normal appearance. Tnibar MA, Auer JA, Bakkali S.This study was intended to document normal ultrasonographic appearance of the equine shoulder and anatomic landmarks useful in clinical imaging. Both forelimbs of five equine cadavers and both forelimbs of six live adult horses were used. To facilitate understanding of the images, a zoning system assigned to the biceps brachii and to the infraspinatus tendon was developed. Ultrasonography was performed with a real-time B-mode semiportable sector scanner using 7.5- and 5-MHz transducers. On one cadaver limb, magnetic resonance imaging (MRI) was performed using a system at 1.5 Tesla, T1-weighted...
Low-field magnetic resonance imaging (0.2 T) of tendons with sonographic and histologic correlation. Cadaveric study.
Investigative radiology    August 15, 1998   Volume 33, Issue 8 433-438 doi: 10.1097/00004424-199808000-00002
Rand T, Bindeus T, Alton K, Voegele T, Kukla C, Stanek C, Imhof H.The authors evaluate the role of low-field strength magnetic resonance imaging (MRI) compared with sonography in the evaluation of degenerative changes of tendons, with histologic correlation, based on investigations of horse cadavers. Methods: Low-field MRI and sonography was performed in 42 hours specimens for the evaluation of tendons and ligaments. Magnetic resonance imaging included sagittal and axial T1-weighted, T2-weighted, and gradient echo images. Sonography and MR images were evaluated for degenerative changes or tears and the findings were correlated with the histologic results. Re...
The diagnosis of lameness associated with distal limb pathology in a horse: a comparison of radiography, computed tomography and magnetic resonance imaging.
Veterinary journal (London, England : 1997)    June 25, 1998   Volume 155, Issue 3 223-229 doi: 10.1016/s1090-0233(05)80014-0
Whitton RC, Buckley C, Donovan T, Wales AD, Dennis R.A cadaver limb from an eight-year-old horse with right forelimb lameness that was relieved with an intra-articular distal interphalangeal joint block was imaged with radiographs, spiral computed tomography (CT) and magnetic resonance imaging (MRI). Spiral CT demonstrated several lucencies within the deep digital flexor tendon immediately proximal to the navicular bone. On MRI these areas had increased signal and there was enlargement of the tendon at this site. Effusion in the proximal interphalangeal joint and navicular bursa and thinning of the fibrocartilage of the navicular bone were also ...
Advanced diagnostic imaging modalities available at the referral center.
The Veterinary clinics of North America. Equine practice    November 22, 1997   Volume 13, Issue 3 601-612 doi: 10.1016/s0749-0739(17)30233-x
Hoskinson JJ, Tucker RL, Lillich J, Bertone JJ.While many equine diagnostic imaging procedures can be done in field, some procedures require specialized facilities, equipment or expertise which are generally only available in referral or specialty practices. As client awareness of the availability and advantages of these diagnostic procedures increases, veterinarians are faced with the increasing opportunity to utilize these services to provide optimal patient care. A working knowledge of the value and limitations of these methods is required to help guide veterinarians and clients in the selection of additional, and sometimes costly, diag...
Evaluation of the variably ossified collateral cartilages of the distal phalanx and adjacent anatomic structures in the Finnhorse with computed tomography and magnetic resonance imaging. Ruohoniemi M, Kärkkäinen M, Tervahartiala P.Six Finnhorse cadaver forefeet were selected to represent radiographically different types and grades of ossification of the collateral cartilages of the distal phalanx. These cartilages and adjacent tissues were evaluated with computed tomography (CT) and high field magnetic resonance imaging (MRI). In CT the internal structure of the cartilages was consistent, but in MRI some differences were noted. The shape of the collateral cartilages and their ligamentous attachments varied. The border between ossified and non-ossified cartilage appeared distinct, with considerable variation in the exten...
Magnetic resonance imaging of the equine metacarpophalangeal joint: three-dimensional reconstruction and anatomic analysis. Martinelli MJ, Kuriashkin IV, Carragher BO, Clarkson RB, Baker GJ.Magnetic resonance imaging was used to examine the equine metacarpophalangeal joint. Thirty-two saggital images generated by partial volume imaging were transferred to a computer for three-dimensional reconstruction and analysis. All the tissues constituting the metacarpophalangeal joint were readily identified. The most significant increase finding regarded the soft tissues on the palmar aspect of the metacarpophalangeal joint and their interactions with the proximal sesamoid bones. The equine metacarpophalangeal joint has not previously been evaluated using 3-dimensional imaging software.
Ultrasonographic examination of the proximal scutum in the horse.
Equine veterinary journal    March 1, 1997   Volume 29, Issue 2 136-141 doi: 10.1111/j.2042-3306.1997.tb01655.x
Denoix JM, Busoni V, Olalla MJ.Normal and abnormal ultrasonographic images are presented of the proximal scutum (proximal sesamoid bones and palmar ligament) in the horse. Comparison between anatomical sections, MRI (magnetic resonance imaging) and ultrasound scans enabled the authors to establish the normal ultrasonographic anatomy of the palmar fetlock. Nine cases of proximal scutum injuries were identified ultrasonographically, of which 4 are illustrated. On normal limbs, the facies flexoria of the proximal sesamoid bones appeared as a thin and regular hyperechoic line and the palmar ligament was regularly echogenic. Les...
Magnetic resonance imaging of the brain of normal neonatal foals. Chaffin MK, Walker MA, McArthur NH, Perris EE, Matthews NS.Magnetic resonance imaging (MRI) was performed on the brain of 5 normal, anesthetized, neonatal (age 3-to-6 days) Quarter Horse foals. The objectives of the study were to develop a technique for imaging the brain of neonatal foals, and to ascertain their normal brain anatomy. Intravenous propofol was administered for induction and maintenance of general anesthesia. Using spin echo MR techniques, T1 weighted sagittal and transverse views, and spin density and T2 weighted transverse views were successfully made of each foal. MR images provided excellent visualization of many anatomic structures ...
Correlation between anatomic features and low-field magnetic resonance imaging of the equine metacarpophalangeal joint.
American journal of veterinary research    October 1, 1996   Volume 57, Issue 10 1421-1426 
Martinelli MJ, Baker GJ, Clarkson RB, Eurell JC, Pijanowski GJ, Kuriashkin IV, Carragher BO.To expand our current knowledge and to establish limits of correlation between signal intensities of the magnetic resonance (MR) image and actual macroscopic and microscopic anatomic features of the imaged structures of the equine metacarpophalangeal joint (MCPJ). Methods: The right MCPJ was obtained from 4 adult horses that were euthanatized for reasons unrelated to the musculoskeletal system. Methods: The distal portion of the right forelimbs was collected from 4 equine cadavers. The bones were drilled to provide fixed reference points and examined by MR imaging. After imaging, the joints we...
Magnetic resonance imaging of degenerative joint disease in a horse: a comparison to other diagnostic techniques.
Equine veterinary journal    September 1, 1996   Volume 28, Issue 5 410-415 doi: 10.1111/j.2042-3306.1996.tb03114.x
Martinelli MJ, Baker GJ, Clarkson RB, Eurell JC, Pijanowski GJ, Kuriashkin IV.No abstract available
Ultrasonographic anatomy of the dorsal and abaxial aspects of the equine fetlock.
Equine veterinary journal    January 1, 1996   Volume 28, Issue 1 54-62 doi: 10.1111/j.2042-3306.1996.tb01590.x
Denoix JM, Jacot S, Bousseau B, Perrot P.This paper describes normal ultrasound images of the soft tissues of the dorsal and abaxial aspects of the equine fetlock. The palmar aspect of the fetlock is not discussed because it is related to the suspensory apparatus and flexor tendon anatomy which has been previously described. Ultrasound scanning was performed with 7.5 MHz linear or 10 MHz sector probes and recorded on 7.5 cm U-matic videocassettes allowing further retrospective data analysis, computer manipulation and good image reproducibility. Sagittal, parasagittal, frontal and transverse ultrasound scans of 13 lameness free mature...
Short echo time magnetic resonance imaging of tendon.
Investigative radiology    December 1, 1993   Volume 28, Issue 12 1095-1100 doi: 10.1097/00004424-199312000-00003
Koblik PD, Freeman DM.Current clinical magnetic resonance (MR) imaging studies provide almost no useful signal from normal tendon and have no clear advantage over other imaging modalities in the evaluation of tendon injuries. The authors believe that tendon MR signal may be T2-limited, and, if so, could be enhanced by short echo time (TE) pulse sequences. The relationship of tendon signal intensity and tendon infrastructure conspicuity to TE was assessed at three different field strengths. Methods: Magnetic resonance imaging studies were performed on samples of normal equine tendon at 3 different field strengths wi...
Investigations of the horse conceptus via magnetic resonance imaging (MRI) and nitroxide spin labels as contrast agents.
Free radical research communications    January 1, 1990   Volume 9, Issue 3-6 391-397 doi: 10.3109/10715769009145699
Oehler UM, Janzen EG, Betteridge K, Fyfe C, Towner RA, Savage N, Scodras J.Results are presented which illustrate the usefulness of Magnetic Resonance Imaging as applied to the study of living embryos. Nitroxide spin labels were employed as contrast agents to study the structure and properties of the embryos. These spin labels offer the additional advantage that they may potentially be bound to biologically important molecules thereby imparting the ability to produce contrast in the MR images to these new molecules. The horse conceptus was chosen over other embryos due to its large size. Whereas the embryos of cattle and swine are sub-millimetre in size, the horse co...