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Original

Hemorrhage control using high intensity focused ultrasound

, PhD &
Pages 203-211 | Received 16 Sep 2006, Accepted 01 Dec 2006, Published online: 09 Jul 2009

References

  • Greenfield L. Surgery: Scientific principles and practice. Lippincott Williams & Wilkins. 2005
  • Bonnie RJ, Fulco C, Liverman CT. Institute of medicine (US). Committee on injury prevention and control. Reducing the burden of injury: Advancing prevention and treatment. National Academy Press, Washington, DC 1999
  • Starnes BW, Beekley AC, Sebesta JA, Andersen CA, Rush RM, Jr. Extremity vascular injuries on the battlefield: Tips for surgeons deploying to war. J Trauma 2006; 60: 432–442
  • Shackford SR, Mackersie RC, Holbrook TL, Davis JW, Hollingsworth-Fridlund P, Hoyt DB, et al. The epidemiology of traumatic death. A population-based analysis. Arch Surg 1993; 128: 571–5
  • Anderson RN. Deaths: Leading causes for 2000. Natl Vital Stat Rep 2002; 50: 1–85
  • MacKenzie E, Fowler C. Epidemiology. Trauma, KFD Mattox, EE Moore. McGraw Hill, New York, NY 2000; 21–40
  • Miller TR, Lestina DC. Patterns in US medical expenditures and utilization for injury, 1987. Am J Public Health 1996; 86: 89–93
  • Rice DP, Max W. The high cost of injuries in the United States. Am J Public Health 1996; 86: 14–15
  • Vaezy S, Andrew M, Kaczkowski P, Crum L. Image-guided acoustic therapy. Annu Rev Biomed Eng 2001; 3: 375–390
  • Hill CR. Optimum acoustic frequency for focused ultrasound surgery. Ultrasound Med Biol 1994; 20: 271–277
  • Leighton T. The acoustic bubble. Academic Press, San Diego 1994
  • Holt RG, Roy RA. Measurements of bubble-enhanced heating from focused, MHz-frequency ultrasound in a tissue-mimicking material. Ultrasound Med Biol 2001; 27: 1399–1412
  • Sokka SD, King R, Hynynen K. MRI-guided gas bubble enhanced ultrasound heating in in vivo rabbit thigh. Phys Med Biol 2003; 48: 223–241
  • Poliachik SL, Chandler WL, Mourad PD, Ollos RJ, Crum LA. Activation, aggregation and adhesion of platelets exposed to high-intensity focused ultrasound. Ultrasound Med Biol 2001; 27: 1567–1576
  • Vaezy S, Vaezy S, Starr F, Chi E, Cornejo C, Crum L, Martin RW. Intra-operative acoustic hemostasis of liver: Production of a homogenate for effective treatment. Ultrasonics 2005; 43: 265–269
  • Delon-Martin C, Vogt C, Chignier E, Guers C, Chapelon JY, Cathignol D. Venous thrombosis generation by means of high-intensity focused ultrasound. Ultrasound Med Biol 1995; 21: 113–119
  • Hynynen K, Chung AH, Colucci V, Jolesz FA. Potential adverse effects of high-intensity focused ultrasound exposure on blood vessels in vivo. Ultrasound Med Biol 1996; 22: 193–201
  • Hynynen K, Colucci V, Chung A, Jolesz F. Noninvasive arterial occlusion using MRI-guided focused ultrasound. Ultrasound Med Biol 1996; 22: 1071–1077
  • Ishikawa T, Okai T, Sasaki K, Umemura S, Fujiwara R, Kushima M, et al. Functional and histological changes in rat femoral arteries by HIFU exposure. Ultrasound Med Biol 2003; 29: 1471–1477
  • Denbow ML, Rivens IH, Rowland IJ, Leach MO, Fisk NM, ter Haar GR. Preclinical development of noninvasive vascular occlusion with focused ultrasonic surgery for fetal therapy. Am J Obstet Gynecol 2000; 182: 387–392
  • Rivens IH, Rowland IJ, Denbow M, Fisk NM, ter Haar GR, Leach MO. Vascular occlusion using focused ultrasound surgery for use in fetal medicine. Eur J Ultrasound 1999; 9: 89–97
  • Wu F, Chen WZ, Bai J, Zou JZ, Wang ZL, Zhu H, et al. Tumor vessel destruction resulting from high-intensity focused ultrasound in patients with solid malignancies. Ultrasound Med Biol 2002; 28: 535–542
  • Cornejo CJ, Vaezy S, Jurkovich GJ, Paun M, Sharar SR, Martin RW. High-intensity ultrasound treatment of blunt abdominal solid organ injury: An animal model. J Trauma 2004; 57: 152–156
  • Vaezy S, Noble ML, Keshavarzi A, Paun M, Prokop AF, Cornejo C, et al. Liver hemostasis with high-intensity ultrasound: Repair and healing. J Ultrasound Med 2004; 23: 217–225
  • Noble ML, Vaezy S, Keshavarzi A, Paun M, Prokop AF, Chi EY, et al. Spleen hemostasis using high-intensity ultrasound: Survival and healing. J Trauma 2002; 53: 1115–1120
  • Cohn SM, Cross JH, Ivy ME, Feinstein AJ, Samotowka MA. Fibrin glue terminates massive bleeding after complex hepatic injury. J Trauma 1998; 45: 666–672
  • Martin RW, Vaezy S, Kaczkowski P, Keilman G, Carter S, Caps M, et al. Hemostasis of punctured vessels using Doppler-guided high-intensity ultrasound. Ultrasound Med Biol 1999; 25: 985–990
  • Vaezy S, Martin R, Yaziji H, Kaczkowski P, Keilman G, Carter S, et al. Hemostasis of punctured blood vessels using high-intensity focused ultrasound. Ultrasound Med Biol 1998; 24: 903–910
  • Zderic V, Keshavarzi A, Noble ML, Paun M, Sharar SR, Crum LA, et al. Hemorrhage control in arteries using high-intensity focused ultrasound: A survival study. Ultrasonics 2006; 44: 46–53
  • Vaezy S, Shi X, Martin RW, Chi E, Nelson PI, Bailey MR, et al. Real-time visualization of high-intensity focused ultrasound treatment using ultrasound imaging. Ultrasound Med Biol 2001; 27(1)33–42
  • Rabkin BA, Zderic V, Vaezy S. Hyperecho in ultrasound images of HIFU therapy: Involvement of cavitation. Ultrasound Med Biol 2005; 31: 947–956
  • Burgess S, Zderic V, Vaezy S. Image-guided acoustic hemostasis for treatment of hidden liver injuries. 2007; 33: 113–119, Ultrasound Med Biol
  • Held RT, Zderic V, Nguyen TN, Vaezy S. Annular phased-array high-intensity focused ultrasound device for image-guided therapy of uterine fibroids. IEEE Trans Ultrason Ferroelectr Freq Control 2006; 53: 335–348
  • Melodelima D, Chapelon JY, Theillere Y, Cathignol D. Combination of thermal and cavitation effects to generate deep lesions with an endocavitary applicator using a plane transducer: Ex vivo studies. Ultrasound Med Biol 2004; 30: 103–111
  • Khokhlova VA, Bailey MR, Reed JA, Cunitz BW, Kaczkowski PJ, Crum LA. Effects of nonlinear propagation, cavitation, and boiling in lesion formation by high intensity focused ultrasound in a gel phantom. J Acoust Soc Am 2006; 119: 1834–1848
  • Balci NC, Sirvanci M, Tufek I, Onat L, Duran C. Spontaneous retroperitoneal hemorrhage secondary to subcapsular renal hematoma: MRI findings. Magn Reson Imaging 2001; 19: 1145–1148
  • Miller FH, Kline MJ, Vanagunas AD. Detection of bleeding due to small bowel cholesterol emboli using helical CT examination in gastrointestinal bleeding of obscure origin. Am J Gastroenterol 1999; 94: 3623–3625
  • Sato T, Hirose Y, Saito H, Yamamoto M, Katayanagi N, Otani T, et al. Diagnostic peritoneal lavage for diagnosing blunt hollow visceral injury: The accuracy of two different criteria and their combination. Surg Today 2005; 35: 935–939
  • McGahan PJ, Richards JR, Bair AE, Rose JS. Ultrasound detection of blunt urological trauma: A 6-year study. Injury 2005; 36: 762–770
  • Poletti PA, Kinkel K, Vermeulen B, Irmay F, Unger PF, Terrier F. Blunt abdominal trauma: Should US be used to detect both free fluid and organ injuries?. Radiology 2003; 227: 95–103
  • Catalano O, Lobianco R, Raso MM, Siani A. Blunt hepatic trauma: Evaluation with contrast-enhanced sonography: Sonographic findings and clinical application. J Ultrasound Med 2005; 24: 299–310
  • Catalano O, Nunziata A, Lobianco R, Siani A. Real-time harmonic contrast material-specific US of focal liver lesions. Radiographics 2005; 25: 333–349
  • Miele V, Buffa V, Stasolla A, Regine G, Atzori M, Ialongo P, et al. Contrast enhanced ultrasound with second generation contrast agent in traumatic liver lesions. Radiol Med (Torino) 2004; 108: 82–91
  • Catalano O, Lobianco R, Sandomenico F, Siani A. Splenic trauma: Evaluation with contrast-specific sonography and a second-generation contrast medium: Preliminary experience. J Ultrasound Med 2003; 22: 467–477
  • Glen P, MacQuarrie J, Imrie CW, Leen E. A novel application of ultrasound contrast: Demonstration of splenic arterial bleeding. Br J Radiol 2004; 77: 333–334
  • Liu JB, Merton DA, Goldberg BB, Rawool NM, Shi WT, Forsberg F. Contrast-enhanced two- and three-dimensional sonography for evaluation of intra-abdominal hemorrhage. J Ultrasound Med 2002; 21: 161–169
  • Schmiedl UP, Carter S, Martin RW, Eubank W, Winter T, Chang PP, et al. Sonographic detection of acute parenchymal injury in an experimental porcine model of renal hemorrhage: Gray-scale imaging using a sonographic contrast agent. AJR Am J Roentgenol 1999; 173: 1289–1294
  • Luo W, Zderic V, Carter S, Crum L, Vaezy S. Detection of bleeding in injured femoral arteries with contrast-enhanced sonography. J Ultrasound Med 2006; 25: 1169–1177

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