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Topic:Radiotherapy

Radiotherapy for horses involves the use of ionizing radiation to treat various conditions, primarily neoplastic diseases. This therapeutic approach aims to target and destroy cancerous cells while minimizing damage to surrounding healthy tissues. Radiotherapy can be applied as a standalone treatment or in conjunction with surgery and chemotherapy, depending on the specific case and type of malignancy. The application of radiotherapy in equine medicine requires specialized equipment and expertise to ensure precise delivery and optimal outcomes. This page compiles peer-reviewed research studies and scholarly articles that explore the methodologies, efficacy, and safety of radiotherapy in equine patients, as well as its impact on equine health and recovery.
Breast Cancer: How Hippotherapy Bridges the Gap between Healing and Recovery-A Randomized Controlled Clinical Trial.
Cancers    February 19, 2023   Volume 15, Issue 4 1317 doi: 10.3390/cancers15041317
Viruega H, Galy C, Loriette C, Jacquot S, Houpeau JL, Gaviria M.Breast cancer is the most diagnosed women's cancer, and has a high survival rate. Despite great progress in detection and treatment, life reconstruction requires comprehensive cross-sectoral approaches between different disciplines and deeper consideration of the patient's challenges. Hippotherapy is an emerging specialized rehabilitation approach, performed by accredited health professionals and equine specialists, on specially trained horses via their movement, activating major paths for physical, mental, psychic and social reinforcement, and is synergistic to rehabilitative and supportive c...
Outcome of external beam radiotherapy for treatment of noncutaneous tumors of the head in horses: 32 cases (1999-2015).
Journal of veterinary internal medicine    November 9, 2020   Volume 34, Issue 6 2808-2816 doi: 10.1111/jvim.15954
Gillen A, Mudge M, Caldwell F, Munsterman A, Hanson R, Brawner W, Almond G, Green E, Stephens J, Walz J.The long-term outcomes of external beam radiotherapy for treatment of noncutaneous tumors of the head in horses is unknown. Objective: To report the long-term outcomes for treatment of noncutaneous tumors of the head of horses, and report short and long-term clinical adverse effects. Methods: Thirty-two horses treated in 2 referral hospitals. Methods: In this retrospective study, medical records of horses receiving radiation therapy for noncutaneous tumors between 1999 and 2015 were reviewed. Signalment, tumor type, treatment protocol, tumor control duration, and survival were recorded. Kaplan...
Cobalt 60 radiotherapy for treatment of squamous cell carcinoma of the nasal cavity and paranasal sinuses in three horses.
Journal of the American Veterinary Medical Association    April 8, 1998   Volume 212, Issue 6 848-851 
Walker MA, Schumacher J, Schmitz DG, McMullen WC, Ruoff WW, Crabill MR, Hawkins JF, Hogan PM, McClure SR, Vacek JR, Edwards JF, Helman RG, Frelier PF.Three adult horses underwent aggressive treatment of squamous cell carcinoma of the nasal cavity and paranasal sinuses, using course-fractionated cobalt 60 radiotherapy. Squamous cell carcinoma of the nasal cavity and paranasal sinuses is not commonly diagnosed in horses. Historically, horses with this type of neoplasm have not been treated or have undergone some form of surgery. The prognosis for long-term survival or cure has been poor. Long-term results of cobalt 60 radiotherapy were good to excellent and exceeded those usually reported for horses treated surgically. On the basis of these r...
Treatment of intranasal lymphoma in a horse by radiotherapy.
Equine veterinary journal    May 1, 1996   Volume 28, Issue 3 245-248 doi: 10.1111/j.2042-3306.1996.tb03781.x
Weaver MP, Dobson JM, Lane JG.No abstract available
Management of equine sarcoids: 1975-93.
New Zealand veterinary journal    October 1, 1994   Volume 42, Issue 5 180-184 doi: 10.1080/00480169.1994.35816
McConaghy FF, Davis RE, Reppas GP, Rawlinson R J, McClintock SA, Hutchins DR, Hodgson DR.Treatment options for equine sarcoids are briefly reviewed and the results of a retrospective study of 63 cases of equine sarcoid (66 lesions) treated by clinicians from the Rural Veterinary Centre, Camden, Australia from 1975 to 1993 presented. Five different treatments were employed in the management of these 66 lesions, including surgical excision alone or in combination with cryotherapy, radiotherapy, immunotherapy and tumour transfer to a subcutaneous site on the neck. The majority of cases were treated with surgical excision alone (18/66), excision followed by cryotherapy (31/66) and imm...
Combined treatment of ocular squamous cell carcinoma in a horse, using radiofrequency hyperthermia and interstitial 198Au implants.
Journal of the American Veterinary Medical Association    June 1, 1990   Volume 196, Issue 11 1831-1833 
Wilkie DA, Burt JK.Unilateral ocular squamous cell carcinoma in a horse was treated effectively with a combination of repeated radiofrequency hyperthermia and interstitial radiotherapy. These 2 modalities of treatment are synergistic. Interstitial irradiation was achieved, using 198Au implants to deliver a total dose of approximately 5,000 rads/implant over an area of 1 cm2. Radio frequency hyperthermia was repeated 3 times, and radiotherapy was used twice. Treatment resulted in complete regression of the tumor, and ocular complications have not been seen.
Treatment of equine cutaneous neoplasia by radiotherapy using iridium 192 linear sources.
Equine veterinary journal    October 1, 1983   Volume 15, Issue 4 361-365 doi: 10.1111/j.2042-3306.1983.tb01824.x
Wyn-Jones G.The treatment of equine cutaneous tumours by conventional or cryosurgical techniques can be limited where the position of the tumour makes radical excision or freezing impractical or dangerous. Radiotherapy provides an effective and practical alternative. The use of iridium pins with guide needles allows accurate positioning of sources and uniform radiation fields to be achieved. The subsequent removal of the pins reduces the period of incapacity and reduces the radiation risk when compared to permanently implanted sources. Twenty-seven tumours on 26 horses were treated by this method with a 1...
Treatment of periocular tumours of horses using radioactive gold198 grains.
Equine veterinary journal    January 1, 1979   Volume 11, Issue 1 3-10 doi: 10.1111/j.2042-3306.1979.tb01283.x
Wyn-Jones G.The literature is briefly reviewed concerning the clinical features of equine cutaneous tumours. The data from 19 horses with periocular skin tumours are reported together with the results of their treatment by implantation with radioactive gold198. The principles governing the implantation of radioactive sources are explained and a method for computing the initial activity of the sources is outlined. Five histologically different tumour types were treated in this series of 19 horses, 2 horses were bilaterally affected. The techniques of implantation using a simple needle/stillette combination...
Radiotherapy of spontaneous fibrous connective-tissue sarcomas in animals.
Journal of the National Cancer Institute    February 1, 1976   Volume 56, Issue 2 365-368 doi: 10.1093/jnci/56.2.365
Hilmas DE, Gillette EL.The clinical records and follow-up data obtained over 13 years on the results of radiotherapy of spontaneous fibrous connective-tissue sarcomas in dogs, cats, and horses were reviewed. The results obtained from the treatment of fibrosarcomas and sarcoids of horses indicated that radiation administered with 60Co is important in the medical and surgical management of these tumors. Fibrous connective-tissue sarcomas in horses were radioresponsive. When radiotherapy was applied postoperatively, the probability of a 2-year cure approached 50% for all prescribed radiation doses of less than 2,000 to...
Fundamentals of radiotherapy in animal joint diseases.
Acta radiologica. Supplementum    January 1, 1972   Volume 319 137-140 
Hartung K.No abstract available
RADIOTHERAPY AND CHEMOTHERAPY FOR DOMESTIC ANIMALS. I. THE TREATMENT OF MALIGNANT TUMOURS AND BENIGN CONDITIONS IN HORSES.
Acta radiologica: therapy, physics, biology    June 1, 1964   Volume 2 226-238 doi: 10.3109/02841866409134148
SILVER IA, CATER DB.No abstract available