1.Baastrup's Disease Is Associated with Recurrent of Sciatica after Posterior Lumbar Spinal Decompressions Utilizing Floating Spinous Process Procedures.
Masao KODA ; Chikato MANNOJI ; Masazumi MURAKAMI ; Tomoaki KINOSHITA ; Jiro HIRAYAMA ; Tomohiro MIYASHITA ; Yawara EGUCHI ; Masashi YAMAZAKI ; Takane SUZUKI ; Masaaki ARAMOMI ; Mitsutoshi OTA ; Satoshi MAKI ; Kazuhisa TAKAHASHI ; Takeo FURUYA
Asian Spine Journal 2016;10(6):1085-1090
STUDY DESIGN: Retrospective case-control study. PURPOSE: To determine whether kissing spine is a risk factor for recurrence of sciatica after lumbar posterior decompression using a spinous process floating approach. OVERVIEW OF LITERATURE: Kissing spine is defined by apposition and sclerotic change of the facing spinous processes as shown in X-ray images, and is often accompanied by marked disc degeneration and decrement of disc height. If kissing spine significantly contributes to weight bearing and the stability of the lumbar spine, trauma to the spinous process might induce a breakdown of lumbar spine stability after posterior decompression surgery in cases of kissing spine. METHODS: The present study included 161 patients who had undergone posterior decompression surgery for lumbar canal stenosis using a spinous process floating approaches. We defined recurrence of sciatica as that resolved after initial surgery and then recurred. Kissing spine was defined as sclerotic change and the apposition of the spinous process in a plain radiogram. Preoperative foraminal stenosis was determined by the decrease of perineural fat intensity detected by parasagittal T1-weighted magnetic resonance imaging. Preoperative percentage slip, segmental range of motion, and segmental scoliosis were analyzed in preoperative radiographs. Univariate analysis followed by stepwise logistic regression analysis determined factors independently associated with recurrence of sciatica. RESULTS: Stepwise logistic regression revealed kissing spine (p=0.024; odds ratio, 3.80) and foraminal stenosis (p<0.01; odds ratio, 17.89) as independent risk factors for the recurrence of sciatica after posterior lumbar spinal decompression with spinous process floating procedures for lumbar spinal canal stenosis. CONCLUSIONS: When a patient shows kissing spine and concomitant subclinical foraminal stenosis at the affected level, we should sufficiently discuss the selection of an appropriate surgical procedure.
Case-Control Studies
;
Constriction, Pathologic
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Decompression
;
Humans
;
Intervertebral Disc Degeneration
;
Logistic Models
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Magnetic Resonance Imaging
;
Odds Ratio
;
Postoperative Complications
;
Range of Motion, Articular
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Recurrence
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Retrospective Studies
;
Risk Factors
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Sciatica*
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Scoliosis
;
Spinal Canal
;
Spine
;
Weight-Bearing
2.Effects of combined therapy of alendronate and low-intensity pulsed ultrasound on metaphyseal bone repair after osteotomy in the proximal tibia of glucocorticoid-induced osteopenia rats.
Tetsuya KAWANO ; Naohisa MIYAKOSHI ; Yuji KASUKAWA ; Michio HONGO ; Hiroyuki TSUCHIE ; Chie SATO ; Masashi FUJII ; Masazumi SUZUKI ; Manabu AKAGAWA ; Yuichi ONO ; Yusuke YUASA ; Itsuki NAGAHATA ; Yoichi SHIMADA
Osteoporosis and Sarcopenia 2017;3(4):185-191
OBJECTIVES: Glucocorticoid (GC) treatment inhibits activation of runt-related transcription factor 2 (Runx2), which is essential for osteoblast differentiation from stem cells. As a result, GC treatment results in bone loss, GC-induced osteoporosis (GIO), elevated fracture risk, and delayed bone healing. Bisphosphonates such as alendronate (ALN) are recommended for treating or preventing GIO, and lowintensity pulsed ultrasound (LIPUS) facilitates fracture healing and maturation of regenerated bone. Combined therapy with ALN and LIPUS may stimulate cancellous bone healing in GIO rats. Here, we examined the effect of ALN and LIPUS on cancellous bone osteotomy repair in the proximal tibia of GIO rats. METHODS: Prednisolone (10 mg/kg body weight/day) was administered for 4 weeks to induce GIO in 6-month-old female Sprague-Dawley rats. Tibial osteotomy was then performed and daily subcutaneous injection of ALN (1-µg/kg body weight) was subsequently administered alone or in combination with LIPUS (20 min/day) for 2 or 4 weeks. RESULTS: ALN significantly increased bone mineral density (BMD) at 2 and 4 weeks, and ALN + LIPUS significantly increased BMD at 4 weeks. Bone union rates were significantly increased after 2 and 4 weeks ALN and ALN + LIPUS treatment. Lastly, ALN and ALN + LIPUS significantly increased the proportion of Runx2 positive cells at 4 weeks. CONCLUSIONS: ALN monotherapy and combined ALN and LUPUS treatment augmented BMD and stimulated cancellous bone repair with increased Runx2 expression at the osteotomy site in GIO rats. However, the combined treatment had no additional effect on cancellous bone healing compared to ALN monotherapy.
Alendronate*
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Animals
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Bone Density
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Bone Diseases, Metabolic*
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Diphosphonates
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Female
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Fracture Healing
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Humans
;
Infant
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Injections, Subcutaneous
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Osteoblasts
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Osteoporosis
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Osteotomy*
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Prednisolone
;
Rats*
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Rats, Sprague-Dawley
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Stem Cells
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Tibia*
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Transcription Factors
;
Ultrasonic Waves*