• 제목/요약/키워드: CSF flow study

검색결과 37건 처리시간 0.018초

경추 척수병증 환자에 있어서 Phase-Contrast Cine MRI 평가의 임상적 유용성 (Clinical Usefulness of Phase-Contrast Cine MRI Evaluation in Patients with Cervical Myelopathy)

  • 임정환;송준혁;신규만;김성학
    • Journal of Korean Neurosurgical Society
    • /
    • 제29권12호
    • /
    • pp.1634-1641
    • /
    • 2000
  • Objective : The cerebrospinal fluid(CSF) pulsates within the craniospinal axis in response to rhythmic cerebral blood volume variation during the cardiac cycle. The aim of this study is to characterize the normal and abnormal CSF flow and its waveforms in the cervical spinal subarachnoid space. Methods : The magnetic resonance(MR) images were obtained with 1.5 T(GE Signa, GE Medical Systems, Milwaukee, USA) unit using the 2 dimensional cine PC(phase contrast) sequence with cardiac gating and gradient recalled echo imaging. This pulse sequence yielded 16 quantitative flow-encoded images per cardiac cycle. Sagittal and axial images of the cervical spinal CSF space were obtained, and target sites were analyzed for characteristic CSF flow (TR=50ms, TE=12.5-15ms). The region of interest(ROI) was 1mm 3 in volume. Twenty six persons were included in this study : 10 healthy volunteers and 16 patients with cervical myelopathy. The post-operative cine MR study were also done in five patients. Results : The normal CSF pulsation dynamics in the cervical spine showed discrete systolic and diastolic components. The CSF flow revealed a sine wave pattern, in which the systolic phase was shorter than the diastolic phase(ratio=2 : 3). The patient group revealed decreased amplitudes of the CSF flow and irregularly distored flow waves. The systolic phase was elongated in the ROI above the stenotic level, whereas the diastolic phase was lengthened below the level. In the postoperative images, the abnormal pattern and amplitude were found to be corrected. Conclusion : From these results, the authors believe that the CSF flow study provides valuable informations regarding the extent of cervical stenosis and may be useful for the surgical planning and post-operative evaluation.

  • PDF

의료용 CSF 제어 밸브 설계를 위한 유동/구조 상호작용 해석 (Flow/solid Interaction Analysis for Design of Medical CSF-Flow Control Valve)

  • 원찬식;허남건;이종선
    • 한국전산유체공학회:학술대회논문집
    • /
    • 한국전산유체공학회 2000년도 춘계 학술대회논문집
    • /
    • pp.21-26
    • /
    • 2000
  • Pressure-flow control characteristics of a commercially available cerebrospinal flow(CSF) control shunt valve was tested using fluid-solid interaction analysis. Pre-stress of the valve diaphragm(membrane) was computed for proper valve opening. The results were ir good agreements with the valve specification listed in the commercially available CSF control valve. The results of the study can be effectively used to design variety of CSF control shunt valves.

  • PDF

의료용 CSF 제어 밸브 설계를 위한 유동/구조 상호작용 해석 (A Flow/structure Interaction Analysis for the Design of Medical CSF-Flow Control Valve)

  • 원찬식;허남건;이종선
    • 한국전산유체공학회지
    • /
    • 제6권1호
    • /
    • pp.40-46
    • /
    • 2001
  • Pressure-flow control characteristics of a commercially available cerebrospinal flow(CSF) control shunt valve was studied using flow/structure interaction analyses. Pre-stress of the valve diaphragm(membrane) was accounted for the simulation of an actual valve. The present results were in good agreement with the valve specification listed in the commercially available CSF control valve. The flow/structure interaction analysis of the present study can be effectively used to design a variety of CSF control shunt valves.

  • PDF

Transcranial Doppler and Cerebrospinal Fluid Flow Study in Normal Pressure Hydrocephalus

  • Lee, Hui-Keun;Hu, Chul;Whang, Kum;Kim, Hun-Joo
    • Journal of Korean Neurosurgical Society
    • /
    • 제39권1호
    • /
    • pp.20-25
    • /
    • 2006
  • Objective : The authors analyze prospectively the result of transcranial doppler[TCD] in normal pressure hydrocephalus and compared its cerebral blood flow parameters to radionuclide cerebrospinal fluid[CSF] flow study, postoperative brain computed tomography[CT] findings and clinical outcome, and studied the relationship between cerebral hemodynamics and clinical performance. Methods : Twenty five patients with hydrocephalus undertook pre- and post-operative TCD but only preoperative CSF flow study was performed. Mean flow velocity[Vm], pulsatility index[PI] and resistance index[RI] were assessed through TCD and changes in ventricle size and cortical gyral atrophy were checked through brain CT. Results : Postoperative hydrocephalus showed an increase in Vm[ACA P=0.037, MCA P=0.034], decrease in PI[ACA P=0.019, MCA P=0.017] and decrease in RI [ACA P=0.017, MCA P=0.021] compared to preoperative TCD parameters in the postoperative improvement group. In the postoperative improvement group, postoperative TCD parameters correlated with CSF flow study grade [Vm : $R^2=-0.75$, PI : $R^2=0.86$, RI : $R^2=0.78$] and ventriculocranial ratio change correlated with PI change [$R^2=0.73$]. The convexity gyral atrophy and initial TCD parameters showed close relationship to outcome. Conclusion : PI and RI can be used as an indicator of post operative prognosis, and with the addition of CSF flow study values, can also be used as a tool to predict pre-op and post-op patient status and successful shunt surgery.

Saturable Disposition of Taurine in the Cerebrospinal Fluid of the Rat

  • Chung, Suk-Jae
    • 한국응용약물학회:학술대회논문집
    • /
    • 한국응용약물학회 1996년도 제4회 추계심포지움
    • /
    • pp.99-113
    • /
    • 1996
  • Taurine, a ${\beta}$-amino acid, plays an important role as a neuromodulator and is necessary for the normal development of the brain. Since de novo synthesis of taurine in the brain is minimal and in vivo studies suggest that taurine does not cross the blood-brain barrier, the blood-cerebrospinal fluid (CSF) barrier is likely to play a role in taurine transport between the central nervous system and the systemic circulation. Therefore, we examined in vivo elimination of taurine from the CSF in the rat to characterize in vivo kinetics of elimination for taurine from the CSF is consistent with the in vitro study. Using a stereotaxic device, cannulaes were placed into the lateral ventricle and the cisterna magna of the rat. Radio-labelled taurine and inulin (a marker of CSF flow) were injected into the lateral ventricle, and the concentrations of the labelled compounds in the CSF were monitored for up to 3 hrs in the cisterna magna. The apparent clearance of taurine from CSF was greater than the estimated CSF flow (p<0.005), indicating that there is a clearance process in addition to the CSF flow. Taurine distribution into the choroid plexus was at least 10 fold higher than that found in other brain areas (e.g., cerebellum, olfactory bulb and cortex). When unlabelled taurine was co-administered with radio-labelled taurine, the apparent clearance of the labeled taurine was reduced (p<0.01), suggesting a saturable disposition of taurine from CSF. Distribution of taurine into the choroid plexus, cerebellum, olfactory bulb and cortex was similarly diminished, indicating that the saturable uptake of taurine into these tissues is responsible for the non-linear disposition. A pharmacokinetic model involving first order elimination and saturable distribution described these data adequately. The Michaelis-Menten rate constant estimated from in vivo elimination study is similar to that obtained in the in vitro uptake experiment Collectively, our results demonstrate that taurine is transported in the choroid plexus via a taurine is cleared from the CSF via a saturable process. This process may be functionally relevant to taurine homeostasis in the brain.

  • PDF

Sodium Dependent Taurine Transport into the Choroid Plexus, the Blood-Cerebrospinal Fluid Barrier

  • Chung, Suk-Jae;Ramanathan, Vikram;Brett, Claire M.;Giacomini, Kathleen M.
    • Journal of Pharmaceutical Investigation
    • /
    • 제25권3호spc1호
    • /
    • pp.7-20
    • /
    • 1995
  • Taurine, a ${\beta}-amino$ acid, plays an important role as a neuromodulator and is necessary for the normal development of the brain. Since de novo synthesis of taurine in the brain is minimal and in vivo studies suggest that taurine dose not cross the blood-brain barrier, we examined whether the choroid plexus, the blood-cerebrospinal fluid (CSF) barrier, plays a role in taurine transport in the central nervous system. The uptake of $[^3H]-taurine$ into ATP depleted choroid plexus from rabbit was substantially greater in the presence of an inwardly directed $Na^+$ gradient taurine accumulation was negligible. A transient in side-negative potential gradient enhanced the $Na^+-driven$ uptake of taurine into the tissue slices, suggesting that the transport process is electrogenic, $Na^+-driven$ taurine uptake was saturable with an estimated $V_{max}$ of $111\;{\pm}\;20.2\;nmole/g/15\;min$ and a $K_M\;of\;99.8{\pm}29.9\;{\mu}M$. The estimated coupling ratio of $Na^+$ and taurine was $1.80\;{\pm}\;0.122.$ $Na^+-dependent$ taurine uptake was significantly inhibited by ${\beta}-amino$ acids, but not by ${\alpha}-amino$ acids, indicating that the transporter is selective for ${\beta}-amino$ acids. Since it is known that the physiological concentration of taurine in the CSF is lower than that in the plasma, the active transport system we characterized may face the brush border (i.e., CSF facing) side of the choroid plexus and actively transport taurine out of the CSF. Therefore, we examined in vivo elimination of taurine from the CSF in the rat to determine whether elimination kinetics of taurine from the CSF is consistent with the in vitro study. Using a stereotaxic device, cannulaes were placed into the lateral ventricle and the cisterna magna of the rat. Radio-labelled taurine and inulin (a marker of CSF flow) were injected into the lateral ventricle, and the concentrations of the labelled compounds in the CSF were monitored for upto 3 hrs in the cisterna magna. The apparent clearance of taurine from CSF was greater than the estimated CSF flow (p<0.005) indicating that there is a clearance process in addition to the CSF flow. Taurine distribution into the choroid plexus was at least 10 fold higher than that found in other brain areas (e. g., cerebellum, olfactory bulb and cortex). When unlabelled taurine was co-administered with radio-labelled taurine, the apparent clearance of taurine was reduced (p<0.0l), suggesting a saturable disposition of taurine from CSF. Distribution of taurine into the choroid plexus, cerebellum, olfactory bulb and cortex was similarly diminished, indicating that the saturable uptake of taurine into these tissues is responsible for the non-linear disposition. A pharmacokinetic model involving first order elimination and saturable distribution described these data adequately. The Michaelis-Menten rate constant estimated from in vivo elimination study is similar to that obtained in the in vitro uptake experiment. Collectively, our results demonstrate that taurine is transported in the choroid plexus via a $Na^+-dependent,saturable$ and apparently ${\beta}-amino$ acid selective mechanism. This process may be functionally relevant to taurine homeostasis in the brain.

  • PDF

Multi-Layer Onlay Graft Using Hydroxyapatite Cement Placement without Cerebrospinal Fluid Diversion for Endoscopic Skull Base Reconstruction

  • Kim, Young-Hoon;Kang, Ho;Dho, Yun-Sik;Hwang, Kihwan;Joo, Jin-Deok;Kim, Yong Hwy
    • Journal of Korean Neurosurgical Society
    • /
    • 제64권4호
    • /
    • pp.619-630
    • /
    • 2021
  • Objective : The skull base reconstruction step, which prevents cerebrospinal fluid (CSF) leakage, is one of the most challenging steps in endoscopic skull base surgery (ESS). The purpose of this study was to assess the outcomes and complications of a reconstruction technique for immediate CSF leakage repair using multiple onlay grafts following ESS. Methods : A total of 230 consecutive patients who underwent skull base reconstruction using multiple onlay grafts with fibrin sealant patch (FSP), hydroxyapatite cement (HAC), and pedicled nasoseptal flap (PNF) for high-flow CSF leakage following ESS at three institutions were enrolled. We retrospectively reviewed the medical and radiological records to analyze the preoperative features and postoperative results. Results : The diagnoses included craniopharyngioma (46.8%), meningioma (34.0%), pituitary adenoma (5.3%), chordoma (1.6%), Rathke's cleft cyst (1.1%) and others (n=21, 11.2%). The trans-planum/tuberculum approach (94.3%) was the most commonly adapted surgical method, followed by the trans-sellar and transclival approaches. The third ventricle was opened in 78 patients (41.5%). Lumbar CSF drainage was not performed postoperatively in any of the patients. Postoperative CSF leakage occurred in four patients (1.7%) due to technical mistakes and were repaired with the same technique. However, postoperative meningitis occurred in 13.5% (n=31) of the patients, but no microorganisms were identified. The median latency to the diagnosis of meningitis was 8 days (range, 2-38). CSF leakage was the unique risk factor for postoperative meningitis (p<0.001). Conclusion : The use of multiple onlay grafts with FSP, HAC, and PNF is a reliable reconstruction technique that provides immediate and complete CSF leakage repair and mucosal grafting on the skull base without the need to harvest autologous tissue or perform postoperative CSF diversion. However, postoperative meningitis should be monitored carefully.

가와사키병 환아의 혈장내 G-CSF와 GM-CSF 농도 및 과립구에서의 이들 수용체의 발현 변화 (Plasma G-CSF and GM-CSF Concentration and Amount of Their Receptors on the Granulocyte in Kawasaki Disease)

  • 유영경;이기범;김현희;김소영;김유정;이원배
    • Clinical and Experimental Pediatrics
    • /
    • 제46권4호
    • /
    • pp.376-381
    • /
    • 2003
  • 목 적 : G-CSF와 GM-CSF는 과립구생성에 중요한 사이토카인으로서, 각각의 수용체(이하 G-CSFr과 GM-CSFr)에 결합하여 기능을 하게 되며, 이들 수용체들은 미성숙 골수 세포로부터 성숙된 말초 과립구까지 발현된다. 일반적으로 혈중 G-CSF와 GM-CSF의 농도 및 이들 수용체의 발현은 과립구가 증가하는 감염질환에서 변화한다고 알려져 있으나, 가와사키병에서 과립구 수 증가와 관련된 변화에 대해서는 아직 연구된 바가 없다. 본 연구에서는 가와사키병 환아와 정상아의 혈중 G-CSF와 GM-CSF의 농도를 측정하고 말초혈액의 과립구 표면에 존재하는 이들의 수용체를 정량분석 하였으며, 또한 수용체를 충분히 포화시킬 수 있는 과량의 CSF에 수용체를 노출시켰을 때 결합하지 않고 남은 수용체 발현양에는 어떤 변화가 있는 지를 분석하여 가와사키병 환자의 과립구 수 증가와 G-CSF와 GM-CSF 및 이들 수용체 변화의 관련성을 규명하고자 하였다. 방 법 : 정상 대조군으로서 비감염성질환으로 입원한 같은 연령대의 아동 중 말초혈액 백혈구 수 및 중성구 수가 정상인 아동 13명과 면역글로불린을 쓰기 전 급성기 초기의 가와사키병 환아 14명, 총 27명의 혈중 G-CSF와 GM-CSF의 농도를 측정하였고 세포표면 G-CSFr와 GM-CSFr의 발현양은 각각 항 G-CSF 수용체 단클론항체, 항 GM-CSF 수용체 단클론항체와 혼합 후 유세포 분석기를 이용하여 정량적으로 분석하였으며, 활동성 G-CSFr, GM-CSFr의 양적변화를 유세포 분석기를 이용하여 측정하였다. 결 과 : 가와사키병 환아의 총 백혈구 수는 정상대조군과 차이가 없었으나 중성구 수, 단핵구 수는 증가하였고 총 백혈구수는 중성구 수 증가에 따라 증가하였다. 혈중 G-CSF의 농도는 정상대조군과 유의한 차이가 없었으나 감소되어 있었고(P=0.133) 혈중 GM-CSF의 농도는 정상대조군에 비해 유의하게 감소되어 있었다(P=0.027). 가와사키병 환아의 중성구의 G-CSFr, GM-CSFr의 발현양은 정상대조군과 통계적으로 유의한 차이가 없었다(P=0.721, P=0.912). 수용체를 포화시키기에 충분한 과량의 CSF와 배양시킨 후 포화농도에도 결합하지 않은 수용체의 양을 측정하면 남은 수용체수는 감소하게 되는데, 가와사키병 환아에서 과량의 G-CSF에 배양한 후 감소된 중성구 G-CSFr의 발현양은 정상대조군과 유의한 차이는 없었고(P=0.554), 혈중 G-CSF 농도와는 무관하였으며(P>0.05) 혈중 GM-CSF 농도와 반비례하였다(정상아; r=-0.589, P=0.044, 가와사키병 환아; r=-0.946, P=0.004). 가와사키병 환아와 정상대조군에서 수용체를 포화시키기에 충분한 과량의 GM-CSF에 배양한 후 중성구의 GM-CSFr의 발현양을 분석한 결과는 발현이 증가된 소견을 보여(P=0.255) 항 GM-CSF항체가 항 G-CSF 항체와는 달리 GM-CSF와 그 수용체의 결합에 무관한 것으로 나타났다. 증가된 중성구의 GM-CSFr의 양은 정상아에서는 총 백혈구 수와 비례하였으나(r=0.788, P=0.035), 가와사키병 환아에서는 상관관계가 없었다(P=0.644). 결 론 : 가와사키병 환아의 백혈구 수 증가의 원인은 중성구 수의 증가로 보이고 G-CSF, GM-CSF의 농도는 감소되어 있었으며 G-CSFr, GM-CSFr 발현양 및 활동성 G-CSFr, GM-CSFr 발현양은 정상아와 유의한 차이가 없어서 이는 중성구 수 증가가 G-CSF, GM-CSF의 증가나 그 수용체 수 변동에 의한 것이 아닌 것으로 나타났고 GM-CSF 농도의 감소가 활동성이 있는 G-CSFr의 증가를 일으켜 가와사키병 급성기 총 백혈구 수 증가의 원인인 중성구 수 증가를 유도했을 가능성을 나타낸다.

백혈구 증가증 환아의 혈장내 G-CSF와 GM-CSF의 농도 및 과립구에서의 이들 수용체의 발현 (Plasma G-CSF and GM-CSF Concentrations and Expression of their Receptors on the Granulocyte in Children with Leukocytosis)

  • 최원석;유경환;김유정;김소영;김현희;이원배
    • Clinical and Experimental Pediatrics
    • /
    • 제46권3호
    • /
    • pp.271-276
    • /
    • 2003
  • 목 적 : G-CSF와 GM-CSF는 과립구생성에 중요한 사이토카인으로서, 각각의 수용체 G-CSFr과 GM-CSFr에 결합하여 기능을 하게 되며, 이들 수용체들은 미성숙 골수 세포로부터 성숙 된 말초 과립구까지 발현된다. 일반적으로 혈중 G-CSF와 GM-CSF의 농도 및 이들 수용체의 발현은 과립구가 증가하는 감염질환에서 변화한다고 알려져 있으나, 백혈구 증가증에서 과립구수 증가와 관련된 변화에 대해서는 아직 연구된 바가 없다. 본 연구에서는 백혈구 증가증 환아와 정상아의 혈중 G-CSF와 GM-CSF의 농도를 측정하고 말초혈액의 과립구 표면에 존재하는 이들의 수용체를 정량분석하였으며, 활동성이 있는 수용체 발현 양에는 어떤 변화가 있는 지를 분석하여 백혈구 증가증 환아의 과립구 수 증가와 G-CSF와 GM-CSF 및 이들 수용체 변화의 관련성을 규명하고자 하였다. 방 법 : 정상 대조군으로서 비감염성 질환으로 입원한 같은 연령대의 아동 중 말초혈액 백혈구 수 및 중성구 수가 정상인 아동 13명과 급성기 초기의 백혈구 증가증 환아 14명, 총 27명의 혈중 G-CSF와 GM-CSF의 농도를 측정하였고 세포표면 G-CSFr와 GM-CSFr의 발현양은 각각 항 G-CSF 수용체 단 클론항체, 항 GM-CSF 수용체 단클론항체와 혼합 후 유세포 분석기를 이용하여 정량적으로 분석하였으며, 활동성 G-CSFr, GM-CSFr의 양적변화를 유세포 분석기를 이용하여 측정하였다. 결 과 : 백혈구 증가증 환아의 총 백혈구 수는 $24,100{\pm}6960/{\mu}L$로 정상 대조군 $8,680{\pm}378/{\mu}L$에 비해 유의하게 증가되었으며 중성구 수는 백혈구 증가증 환아에서 유의하게 증가되어 있었으나($20,800{\pm}2120/{\mu}L$ vs $3,360{\pm}2,120/{\mu}L$) 단구수는 차이가 없었다. 혈중 G-CSF의 농도 $164.0{\pm}187.5pg/mL$는 정상 대조군 $71.9{\pm}94.1pg/mL$과 감소된 경향을 보였으나 통계적으로 유의한 차이가 없었고(P=0.217) 혈중 GM-CSF의 농도도 유의한 차이가 없었다(P=0.968). 백혈구 증가증 환아의 중성구의 G-CSFr 발현양 $963.6{\pm}575.7$은 정상대조군 $1711.1{\pm}452.6$에 비해 유의한 감소를 보였으며(P=0.012), 백혈구 증가증 환아의 중성구의 GM-CSFr의 발현양 $471.7{\pm}217.0$은 정상 대조군의 $854.8{\pm}383.0$과 통계적으로 유의한 차이가 없었다(P=0.220). 항 G-CSFr항체는 수용체가 G-CSF와 결합하고 나면 수용체에 결합하지 못하는 epitope에 대한 항체로 보여지며, 수용체를 포화시키기에 충분한 과량의 CSF와 배양시킨 후 포화농도에도 결합하지 않은 수용체의 양을 측정하면 남은 수용체 즉, 활동성 수용체 수는 감소하게 되는데, 백혈구 증가증 환아에서 과량의 G-CSF에 배양한 후 감소된 중성구 G-CSFr의 발현양은 $407.8{\pm}405.1$로 정상 대조군의 $1,012.2{\pm}488.5$에 비해 유의한 감소를 보였고(P=0.050), 혈중 G-CSF 농도 및 혈중 GM-CSF 농도와 무관하였다(P=0.735, P=0.087). 백혈구 증가증 환아와 정상대조군에서 수용체를 포화시키기에 충분한 과량의 GM-CSF에 배양한 후 중성구의 GM-CSFr의 발현양을 분석한 결과는 발현이 증가된 소견을 보였다. 증가된 중성구의 GM-CSFr의 발현 양은 정상아 및 백혈구 증가증 환아에서 유의한 차이가 없었다(P=0.828). 결 론 : 백혈구 증가증에서는 중성구 수 증가에 의하여 총 백혈구 수가 증가되고 혈중 G-CSF의 농도는 중성구 증가의 원인으로 생각되며 G-CSFr과 결합하여 백혈구 증가증을 일으키는 것으로 보인다. GM-CSF 농도 및 GM-CSFr은 백혈구 증가에 영향을 주지 않음을 알 수 있었다.

Analysis of Design Parameters For Shunt Valve and Anti-Siphon Device Used to Treat Patients with Hydrocephalus

  • Lee, Chong-Sun;Jang, Jong-Yun;Suh, Chang-Min
    • Journal of Mechanical Science and Technology
    • /
    • 제15권7호
    • /
    • pp.1061-1071
    • /
    • 2001
  • The present study investigated design parameters of shunt valves and anti-siphon device used to treat patients with hydrocephalus. The shunt valve controls drainage of cerebrospinal fluid (CSF) through passive deflection of a thin and small diaphragm. The anti-siphon device(ASD) is optionally connected to the valve to prevent overdrainage when the patients are in the standing position. The major design parameters influencing pressure-flow characteristics of the shunt valve were analyzed using ANSYS structural program. Experiments were performed on the commercially available valves and showed good agreements with the computer simulation. The results of the study indicated that predeflection of the shunt valve diaphragm is an important design parameter to determine the opening pressure of the valve. The predeflection was found to depend on the diaphragm tip height and could be adjusted by the diaphragm thickness and its elastic modulus. The major design parameters of the ASD were found to be the clearance (gap height) between the thin diaphragm and the flow orifice. Besides the gap height, the opening pressure of the ASD could be adjusted by the diaphragm thickness, its elastic modulus, area ratio of the diaphragm to the flow orifice. Based on the numerical simulation which considered the increased subcutaneous pressure introduced by the tissue capsule pressure on the implanted shunt valve system, optimum design parameters were proposed for the ASD.

  • PDF