網誌文章搜尋建議

給多發性硬化症MS病友和親友的建議:
如要搜尋站內相關文章可多利用
"搜尋此網誌的文章內容"的功能,這樣就可以快速的找到你想要得資訊而不需要從第一篇開始看了.
有關CCSVI(靜脈血管窄化及手術的資訊)可在相關連結以及相關MS blog內

推薦頻道:Gimmy a break

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2012年3月2日 星期五

中樞神經靜脈循環異常CCSVI 三年來的觀察

此篇大致節錄翻譯自一位美國紐約MS病友 (自稱輪椅神風特攻隊)的文章

大意如下:
從我開始在這個部落格寫有關CCSVI的文章已經3年了,
剛開始時,只不過是在網路上由數十位病人在網路論壇上相互辯論這一個醫療發現.
直到今天, CCSVI的議題成為由患者在社會媒介所驅動的一個現象, 已經有2萬到3萬不等的MS病人進行了這一項醫療手術. 世界各地的研究人員都正對此議題如火如荼的研究著.
而這只是揭開神秘面紗的第一步.
上星期International Society for Neurovascular Disease (ISNVD)國際神經靜脈疾病學會在佛羅里達舉行,會中長達106頁論文集中有關於CCSVI的資訊被揭露, 連結在此 (click here)
其中,是給病人最感興趣報導包含幾個CCSVI治療醫生(頁62,79,83,84,86和87的PDF可以找到)顯示出多種治療效果,包含疲勞,認知的問題,熱敏感)而且RRMS(復發緩解型)患者比PPMS或SPMS患者復原更好

下圖右側圓圈所指為血管窄化處

原文如下:

CCSVI: Three Years On, Some Thoughts and Observations

English: MRI image of a patient with CCSVI. Di...
Image via Wikipedia

It seems almost incredible, but it's been nearly 3 years since I wrote my first Wheelchair Kamikaze post on CCSVI (click here). At the time of that first post, CCSVI had hardly been heard of outside of some researchers in Italy and a few dozen patients debating the merits of the hypothesis on an Internet forum. Today, CCSVI has become a patient driven social media medical phenomenon. An estimated 20,000-30,000 patients have already undergone CCSVI treatment, researchers from around the world are investigating the hypothesis, and the surgical treatment of CCSVI has become a thriving industry. CCSVI has certainly come a long way, but in many ways we've only taken the first steps on what could be an epic journey.

Last week, the International Society for Neurovascular Disease (ISNVD) held its second annual scientific meeting, which lasted five full days, in Orlando, Florida. A tremendous amount of information about the nature and treatment of CCSVI was exchanged by researchers and physicians, a compendium of which can be found in a 106 page online PDF publication put out by the Society (click here).

Of most interest to patients are undoubtedly the treatment outcomes reported by several CCSVI treatment practitioners (which can be found on pages 62, 79, 83, 84, 86, and 87 of the PDF), which displayed a wide variety of treatment outcomes, but do seem to suggest several identifiable trends. It appears that quality of life issues (fatigue, cognitive issues, heat sensitivity) saw more benefit post treatment than mobility related issues, and that RRMS patients fared better than patients suffering from SPMS or PPMS. None of these studies was double blinded, all being observational and most relying on self-reported information, which can lead to inaccuracies. Still, the findings generally fall in line with some of the few double blinded studies that have been done, such as a recently completed study done in Italy (click here). CORRECTION:an anonymous reader points out that this Italian study was in fact not double blinded, and just used an independent physician to evaluate EDSS scores. Thanks for the heads up.

The meeting did bring into focus the fact that the CCSVI treatment protocol is far from standardized, with physicians varying in opinion on issues ranging from which veins to treat, whether treatment should concentrate on valves rather than the veins themselves, the use of intravascular ultrasound, and other important issues, a list of which can be found on pages 104-106 of the PDF document linked to above. There were quite a few presentations on the use of noninvasive imaging techniques (Doppler Ultrasound and MRV technology) to diagnose CCSVI, with the consensus appearing to be that neither method was especially accurate, except for extremely specialized MRV protocols that are practiced at only a few facilities. One leading CCSVI practitioner went so far as to state that he no longer requires his patients to undergo Doppler Ultrasound investigations before venoplasty, since the ultrasound results were found to be so prone to error (page 63 of the PDF).

In addition to presentations involving CCSVI treatment techniques, some important observations about the nature of the condition were also presented. The effects of reduced blood flow through the brain were discussed, as was the possible connection between bloodflow disruptions and a breakdown of the blood brain barrier, and the role of iron deposition in the MS disease process. In all, my impression (keeping in mind that I did not attend the meeting) is that the findings presented at this year's ISNVD scientific meeting were more evolutionary than revolutionary, which I suppose is something to be expected. The explosion of interest in CCSVI amongst interventional radiologists and research physicians must logically lead to attempts to fill in the many gaps of knowledge that remain in regards to CCSVI, before more dramatic leaps in understanding can be accomplished.

This eruption of interest in CCSVI within the interventional radiology community is in some ways a double-sided sword. On the plus side, it has given patients access to treatment, which in the early days was extremely hard to come by. Today, patients have their choice of treating physicians, and must do their due diligence when choosing which physician in whose hands to place themselves. As noted above, treatment techniques and philosophies vary widely from physician to physician, and patients exploring the possibility of CCSVI treatment should not be shy about asking questions in an effort to find a doctor whose treatment modality best fits their comfort level.

On the potentially negative side, CCSVI has become big business. With CCSVI treatment procedures costing about $10,000, and somewhere between 25,000-30,000 patients already treated, a little math reveals that treating CCSVI has already generated hundreds of millions of dollars in gross revenue for treating physicians. Yes, those procedures covered by medical insurance probably don't get reimbursed at the full rate charged, but this is likely made up for by patients who have undergone multiple procedures because of CCSVI's ongoing problems with restenosis. Given the fact that the number of treated patients represents only a tiny percentage of the worldwide MS population, it's easy to see that CCSVI treatment could quickly develop into a multibillion-dollar a year enterprise.

The David vs. Goliath narrative that has driven the CCSVI story thus far may soon become obsolete. To be sure, the neurology community still remains incomprehensibly steadfast in its negativity regarding CCSVI, but this is becoming counterbalanced by the enthusiasm of the interventional radiology community, and, I suspect, by the interests of the medical device manufacturers, who also stand to profit greatly should CCSVI become an accepted treatment option for MS patients. Despite the fact that very legitimate issues remain regarding the efficacy of CCSVI treatment and the lack of a consensus as to optimal interventional techniques, CCSVI treatment is being aggressively marketed by several US and international treatment facilities, which should raise some ethical questions.

Until issues with effectiveness and technique are satisfactorily answered, the CCSVI treatment procedure must be considered an experimental one, a fact that should not be lost on patients who are understandably desperate to address their illness but faced with a dizzying array of statistics, patient testimonials, and marketing efforts by for-profit ventures. In a very real way patients who choose to undergo CCSVI treatment at the current time are guinea pigs, a fact that I understood explicitly when I underwent my venoplasty back in the dark ages of CCSVI, almost two years ago. Although we've come a long way since then, in some ways the procedure remains as experimental as ever, as physicians treat a much wider array of veins much more aggressively than they did back when I underwent the procedure. Though the treatment is a minimally invasive one, it is not without risks, as is evidenced by the contingent of patients who have experienced clotting issues and vein thrombosis in the aftermath of their procedures. Indeed, one of the presentations at ISNVD highlighted a patient whose condition worsened after treatment (page 89 of the PDF), a rare occurrence to be sure, but a possibility that must factor into the decision-making process of patients considering venoplasty.

One of the most volatile controversies raging on CCSVI forums and social media sites is whether or not the condition is a cause or effect of multiple sclerosis, with those arguing for CCSVI as cause often citing the fact that the venous abnormalities being found appear to be congenital (developed in the womb) in nature. I am unsure as to the question of cause vs. effect, although I do believe that if CCSVI is a cause of MS, it is only one of many factors involved in the initiation of the disease. Even if the vascular defects being found in the veins of MS patients are congenital, this does not necessarily mean they are a cause of multiple sclerosis. There are many congenital defects that cause no adverse effect whatsoever, and I'd venture to say that many of us have some physical trait somewhere in our bodies that is outside of normal variance.

We've all heard stories of world-class athletes suddenly collapsing during or directly after extreme physical exertion. Quite often, the follow-up story is that the unfortunate athlete was a victim of a congenital heart defect, which would never have been noticed had that person not pushed his body to physical extremes. Had they not been athletes, they very well could have lived a normal life span. Likewise, a person born with congenitally abnormal ligaments in their knees might never know of their condition unless they encounter an environmental element (such as a hit to their knees) that brings their abnormality to the fore, in the form of a knee injury more severe than that which might have been suffered by a person with "normal" ligaments. Given the varied elements that have been linked to MS (infectious agents, exposure to toxins, vitamin deficiencies, genetic markers, etc.), a likely scenario is that vascular abnormalities play a part in predisposing an individual to developing MS when exposed to an unfortunate storm of other factors.

To my mind, it is becoming increasingly clear that, despite our greatest hopes, CCSVI is only a part of a much bigger and more complex MS picture. Precisely how big a part it plays is still open to question. Although CCSVI treatment does appear to benefit many patients, it has also been shown to be of little or no value to many others. CCSVI does not explain some of the factors that have previously been established about MS, such as the geographic distribution of the disease (click here), the male-female ratio that is well known to exist in MS (click here), the existence of "Multiple Sclerosis clusters" (which would seem to point to an infectious cause-click here), or the unmistakable link between MS and Epstein-Barr virus (click here). Nevertheless, CCSVI offers the promise of opening up whole new areas of research into the causes of, and treatments for, multiple sclerosis. Certainly, interested MS patients should investigate the possibility of CCSVI treatment, and make a sober assessment as to whether now is the proper time for them to jump in.

There are several ongoing research projects that should further illuminate the CCSVI picture scheduled to publish results later this year, but further robust and expeditious research is desperately needed. It is essential that we ascertain just how prevalent CCSVI is in the healthy population, gain a better understanding of the role, if any, of vascular abnormalities in the MS disease process, determine which MS patients respond best to CCSVI venoplasty, refine the techniques used to treat CCSVI, reduce the number of patients who experience restenosis, and see the development of surgical implements specifically designed to treat venous abnormalities. Neurologists need to get on board to provide interdisciplinary expertise to CCSVI studies. After all, whatever the results of the research, positive or negative, answering these questions can only be in the best interest of their patients.

CCSVI has come a long way, but there is still a long way to go. Ahankfully, the pace of CCSVI research is gaining momentum, and hopefully we will see answers to many of our questions sooner rather than later. In the meantime, my best advice is to educate yourself to the best of your ability, be your own most powerful advocate, and make treatment decisions based more on reason than emotion.

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2010年11月2日 星期二

有關靜脈循環異常的研究 CCSVI related 必讀

在前不久的一篇文章(多發性硬化症患者尋求 靜脈擴張治療)當中曾經提到:

But Dr. James Bowen, who's been treating MS patients in Seattle for 27 years, says the theory is problematic. He says it's difficult to explain how blockages in the neck could affect so many parts of the body that are affected by MS, like the eyes.
Dr. James Bowen他認為對於眼睛的部分很難用靜脈窄化來解釋 (其實這個部分 榮總胡醫師曾做過研究,其實眼睛的症狀和靜脈血液回流有相關)

以下就附上之前我找到 榮總胡漢華醫師先前在靜脈循環異常的研究,我想病友和醫師看過他的研究結論之後之後,就不難發現,搭的研究似乎也說明了一件事:在經過靜脈血管擴張術之後,有些MS病人的視力恢復做了最佳的解釋。

很久之前,胡漢華醫師就已經針對超音波此一技術做過了許多腦血關管相關的病症的研究,所以
他就如同於Dr.Zamboni一樣. 而去年Dr. Zamboni首先提出了多發性硬化症可能起源於 靜脈循環異常(CCSVI)的關聯性。也是利用超音波針對頸靜脈做出步的檢查而觀察到 頸靜脈內的血管窄化以及血液會回流腦部的現象。所以我認為若能夠就這個基礎上來繼續的研究一定會對全台灣甚至是全世界的MS患者有非常大的貢獻和助益!!

腦血管疾病靜脈回流障礙臨床致病機轉之發現及檢查方法之建立
神經醫學中心神經血管科 胡漢華主任/教授

一、前言

如何利用經濟、有效、方便且不侵犯人體的檢查工具,來瞭解患者腦內循環,是 身為神經內科醫師在診斷病情時所迫切需要的。台北榮總神經內科自從民國79年購置彩色超音波起,即不斷發展新的顱內外血管超音波診斷檢查技術。這十餘年來 已陸續發表十幾篇相關論文在國際知名的雜誌,當然也將這些技術應用在臨床上腦血管疾病患者的檢查。以下所介紹的是我們近幾年來所致力研發的:「腦靜脈回流 障礙」對腦血管疾病患者的致病機轉及其檢查方法。
二、研究緣起
1) 研究背景、環境因素
自從我們率先利用及證實彩色超音波檢查眼動靜脈的流速與管徑,可協助診斷頸動脈虹吸部狹窄(Stroke, 1993)和低腦壓頭痛 (Lancet, 1999) 。眼部動靜脈血管超音波檢查便成為本科常做的檢查項目之一。民國88年有位15歲男性,在車禍頭部外傷一個月後,發生多次的暫時性單眼失明 (Transient Monocular Blindness)。此人眼部超音波檢查發現其上眼靜脈(superior ophthalmic vein)血流呈現方向相反的pulsatile flow pattern。一度認為是C-C fistula,但仔細觀察其血流方向可隨呼吸而改變。再檢查其內頸靜脈(Jugular vein),發現有內頸靜脈瓣膜閉鎖不全 (Jugular venous valve incompetence )的現象,其靜脈血流的方向亦是隨呼吸改變。這令我們第一次思索頸靜脈瓣膜閉鎖不全與暫時性單眼失明是否有所關聯。接著我們在一星期內連續又作了兩位暫時 性單眼失明患者,發現其上眼靜脈的流向及內頸靜脈瓣膜閉鎖不全的形態,都與第一位男孩相似。於是我們開始進行一系列的資料收集,瞭解內頸靜脈瓣膜閉鎖不全 現象在一般人與我們的病人分佈的情形,其與那些疾病有密切關係,又彩色超音波檢查與核磁共振(MRA)在內頸靜脈瓣膜閉鎖不全的診斷上如何進行為宜。
2)研究創意、個人因素
台北榮總神經內科的腦血管超音波檢查室是個人親自帶領設置的,二十多年來因 一直不斷的研究與技術發表,使我們的團隊不僅在國內居領導地位,更為世界神經超音波界所熟悉。由於長期推展國內腦血管超音波雙月會,個人亦因此而被推舉為 台灣腦中風學會創會理事長與世界神經超音波研究小組(NSRG)執行委員會委員。在此任重道遠的責任下,希望對醫學,尤其是腦血管病患有所貢獻。因此不斷的創新與研究是個人畢生之志向。
傳統上,腦血管病多著重在動脈系統之研究,對於靜脈系統則少有探討。由於國 人腦動脈之硬化狹窄部位迥異於西方人,卻找不到解釋原因。已知靜脈壓上升可導致小動脈血管硬化,因此個人在十餘年前即開始計畫從靜脈回流著手研究,試圖找 出解答。這是為什麼我們會從事一系列靜脈回流研究的主要原因。
三、研究過程
1)研究方法
A:建立頸靜脈超音波檢查方法
利用超音波掃描所有頸部靜脈,設法釐清相對位置及靜脈瓣膜所在。
從因腦血管疾病而作過磁振造影(MRA)患者的影像中,挑選腦部靜脈循環異常者,安排做頸靜脈超音波檢查,瞭解超音波可能會看到何種異狀。
建立正常人頸靜脈超音波檢查的標準。
B:找尋與靜脈回流障礙有關之疾病
從文獻探討中找到「暫時性失憶症」(Transient Global Amnesia)可能與靜脈回流障礙有關
從之前腦血管超音波室檢查的發現與文獻探討提出假設:「暫時性單眼失明」(Amaurosis Fugax)亦可能與靜脈回流障礙有關。
C:利用個案對照研究設計(case-control study)方式,證明靜脈回流障礙是形成「暫時性失憶症」與「暫時性單眼失明」兩種病因的主要原因之一。
2)難忘經驗
作超音波檢查時發現受檢者內頸靜脈血流不能流回心臟且呈滯流,為瞭解靜脈為何不通,我們安排受檢者做胸部X光檢查,竟然有三位發現是胸腺瘤壓住下腔靜脈,因而形成左側頸靜脈血無法流回心臟。有兩位開刀後靜脈不通的現象沒了,另 一位則抱怨本來人好好的,來作檢查後竟然要開刀,無法接受此事實。這是我們在作內頸靜脈檢查意外的收獲。
另一難忘經驗的經驗是,一位常患「暫時性單眼失明」的病人,形容他每次發作時多在低頭的姿勢。因此我們先讓他平躺作檢查,並無發現。但在我們加高了他頭部的枕頭讓他模擬低頭時的情形後,竟然看到左側頸靜脈開始滯流,沒多久就呈霧狀不通。此時我們趕緊放平頭部,並請他大口吸氣,不久就恢復正常了。此次雖然讓我們對頸靜脈滯流與「暫時性單眼失明」之間的關係更增加了信心,但也讓我們 緊張了一下。有同仁打趣說如果當時再堅持一下,讓患者當場發作「暫時性單眼失明」,那就有NEJM級的case report了。
四、研究成果
1)重大發現
A.新的靜脈瓣膜檢查:
為了確切瞭解腦血管病靜脈回流障礙致病機轉,我們研發了一套以彩色超音波作頸部靜脈檢查方法。以往認為頸靜脈瓣是唯一腦和心臟之間的瓣膜,在研發的過程中我們新發現腦部回流之靜脈在脊髓靜脈(AJNR, 2002)及左側頭臂靜脈(Neurology, 2006 ; Ultrasound in Med. & Biol., 2007)都有瓣膜阻止靜脈逆流及胸壓上傳至腦部,其重要性正如頸靜脈瓣膜一樣,不應忽視或根本不知其存在。且傳統之超音波頸靜脈瓣膜檢查方法有其盲點造 成誤差。如注射空氣作為顯影劑以檢查頸靜脈瓣膜閉鎖不全,將嚴重地誤導,造成左側頸靜脈閉鎖不全被低估,而右側被高估。因此我們撰寫兩篇文章,敍述了其所 以造成誤差之原因,並介紹了我們的檢查方法及其重要性(Ultrasound in Med. & Biol., 2007)。
B.暫時失憶症的新發現:
我們首先發現暫時失憶症(Transient Global Amnesia)之患者,磁振造影可顯示頸靜脈血液逆流至腦部各主要靜脈竇,導致靜脈壓上升產生症狀。造成頸靜脈逆流之原因為左側頭臂靜脈 (Brachiocephalic vein)之生理性壓迫阻塞造成。左側鎖骨下靜脈及頭頸外部靜脈無法回流,血流必須回流至腦部由對側頸靜脈或上眼靜脈回流到心臟之故。此靜脈逆流不需特別 動作增加胸內壓,正常平臥即已存在。相關致病機轉論述及檢查方法陸續發表於:(1)暫時失憶症之靜脈阻塞機轉及檢查方法發表於Neurology (2006),本文並被Neurology選錄在當期highlighted section中。研究發現此類患者50%均有靜脈逆流到顱內之現象,正常人50位為對照組則無一人有此現象,究其原因為左側頭臂靜脈之生理壓迫阻塞之 故。(2)Neck vein檢查方法及其臨床意義,已在世界超音波大會受邀keynote speech時發表(Seoul, Korea 2006 in May),並發表二篇論文於Ultrasound in Med. & Biol.(2007)。在此二文中,第一篇我們創新了檢查頸靜脈分枝之方法,這是以往從未有人注意的一條血管,我們介紹了檢查方法及具代表靜脈壓上升的 重要意義。另一篇則強調當近端頭臂靜脈阻塞時,其頸靜脈之表現有一些特別之處。補強了靜脈壓上升造成腦部病變暫時失憶症之原因,我們於此文提出了一個新的 醫學病症,即cerebral venous intermittent claudication,以靜脈障礙解釋致病機轉。
C.建立靜脈回流異常造成暫時性單眼失明(Amaurosis Fugax)的新理論:
教科書教導醫學院學生及住院醫師:暫時性單眼失明致病原因多為內頸動脈狹 窄,造成眼睛血流不足或血管栓塞。因此此類患者一定會接受頸動脈的檢查,但我們發現事實上動脈疾病不多,原因不明者佔多數。因此我們大膽假設靜脈回流障礙 為其致病機轉,全世界醫界我們是第一位提出此理論,並陸續提出理論之佐證文章。
除了在2005年7月日本大阪世界神經超音波大會受邀專題演講發表過外,我 們也陸續整理成文章發表在知名雜誌上(Stroke, 2006; Stroke, 2007及Ann Neurology, 2008)。在第一篇文章討論了教科書教導之不正確訊息,我們發現僅有15.2%的人有顱外頸動脈疾病,67.7%之人單眼失明原因不明,並無頸動脈疾病。第二篇中,我們對這些原因不明之患者進行超音波檢查眼小動脈,證實了患者有眼小動脈阻力顯著地上升之問題。經過排除其他原因後,認為眼小動脈阻力上升乃是靜脈壓上升所造成。我們首度於這一篇文章提出venous hypertension在單眼失明之致病理論,能被Stroke雜誌認同接受刊登,代表我們提出之理論合理。第三篇文章則提出這些原因不明之患者,其超音波檢查發現有顯著高於正常人的盛行率之頸靜脈逆流(reflux)及上眼靜脈逆流。此更佐證靜脈壓確為這一類習慣性單眼失明疾病之致病機轉。
2)對醫療科技發展的影響
在腦血管疾病的治療與評估中,各種危險因子的控制佔極重要的一部份。然而一 些腦中風病患並無法找到明顯造成動脈硬化的原因,在這些患者中極有可能有一些是因為靜脈循環異常所造成的腦缺血, 但至今尚未有人報導過。究其原因,靜脈因管壁薄易變形,不易測量其管徑,其流速易隨呼吸而改變故無法定量。因此除非靜脈壓很大,造成明顯的靜脈回流,否則 在以前是無法利用非侵入性檢查方法如超音波,將病患診斷為靜脈循環異常。今我們提供了簡易有效的頸靜脈檢查方法及佐證,可讓後繼研究者使用。另我們也證明 了靜脈循環異常確實與「暫時性失憶症」與「暫時性單眼失明」兩種疾病有關,目前我們又發現了一些疾病可能與靜脈壓上升相關,也希望未來此將可促使醫界同仁 的眼光,將注意力投入靜脈循環系統。在眾多的智慧努力下,應可將醫學未解之區塊逐步釐清,並發展適合的藥物或處置方式來幫助病患。


在我做血管攝影的時候,我的頸靜脈瓣膜也出現閉鎖不全的情形,以及頸靜脈具有窄化的地方。
希望更多的醫師能夠開始正視此一問題,而我也堅定的相信,CCSVI 靜脈循環異常就是一個造成中樞神經受損的另一個重要的原因之一!


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請參考
http://www.strokecare.org.tw/share7.html
http://history.vghtpe.gov.tw/portal_f8_cnt_page.php?button_num=f8&folder_id=1&cnt_id=5&search_field=&search_word=&up_page=1
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