高血壓 高尿酸 慢性腎病 胰島素 https://2019medicinenote.blogspot.com/2019/12/blog-post_57.html . 糖尿病相關筆記~目錄 https://2019medicinenote.blogspot.com/2020/01/blog-post_4.html

2023年11月1日 星期三

流感-感冒跟流行性感冒不同嗎?

2026-08-27
剛整理資料發現 2026-07-14 寫了相同的筆記  流感: 普通感冒與流行性感冒差異


2023-11-02 10:35AM
有些人說. 普通感冒不是流行性感冒. 部分對. 部分錯

一般感冒. 通常不會進行病毒採檢分析. 因為報告還沒出來之前. 往往已經痊癒.

一般症狀輕微的呼吸道感染. 我們會當成感冒. 感冒並不需要採集檢體. 但其中有一部分其實是流感病毒感染造成的. 每月或每季的病毒種類有些差異. 下面這張表是2022年第40周. 統計到 2023-
病毒採檢. 目的不是為了治療患者. 而是監測傳染病是否即將爆發.
資料來源: 疾管署網站 [傳染病統計資料查詢系統]

以2022年第44周為例. 其中一部分的病毒. 是流感病毒. 


流感的英文是 influenza, 或稱為 flu
感冒叫做 common cold 或直接說 cold. 意思是"冷" 
這幾個詞. 在英文上差異很大. 但這兩種情況翻譯成中文. 就造成很大的問題. 

有些民眾以為. 流感病毒就是一般感冒病毒大流行. 但醫學稱呼的流感. 專門指流感A型或B型病毒造成的感染. 其他不同病毒造成的感冒症狀, 不管症狀輕微或嚴重. 都不是流感. 

感冒並不是一種特定病毒感染造成. 而是將近兩百種不同病毒. 造成相似的症狀, 通稱叫做感冒. 如果沒有採集檢體做化驗. 單純從症狀並無法斷定是哪一種病毒感染. 因為很多不同的病毒感染. 症狀會與其他病毒感染重疊在一起. 症狀都很相似. 其中就隱藏了一些流感輕症在裡面. 只有透過定點醫師做採檢, 才會知道是哪一種病毒. 
裡面提到很多國家都有這種定點醫師採檢,
以美國為例. 最早是設立'人流感偵測系統'. 美國在 2001 年前的流感偵測是偏重肺炎病例中有多少人死亡及重症與死 亡病例及其在美國的涵蓋面, 而紐約在911事件之後又設立 "「症候群偵測系統". 針對輕症做採集分析. 

台灣的定點醫師. 我沒找到官方資料. 但2021年的新聞報導. 裡面提到台灣有100多間定點醫師診所. 

中央流行疫情指揮中心公布五大監測方案,其中「社區定點加強監測」為首要作法,主要是由「定點醫師之診所」執行,何謂「定點醫師診所」?前疾管局副局長施文儀說,定點醫師是運作逾30年的監測機制,形同「主動監測的眼睛」,由一群熱忱守護社區健康的基層醫師所組成。
社區定點加強監測由在診所的定點醫師判斷,並提供具有高風險民眾快篩試劑,民眾自行居家篩檢後回報結果若快篩陽性者則需前往社區採檢站或醫療院所進行PCR檢測。
指揮中心發言人莊人祥進一步說明,目前有100多間定點醫師診所,不排除再擴充更多,預計每月共發一萬份快篩試劑,希望每間診所每周回報至少100件檢驗結果,達成每周至少一萬份快篩的監測目標。
莊人祥表示,疾管署會定期發快篩試劑到這些定點醫師診所,經醫師評估建議篩檢的民眾,就發給試劑,民眾不需自費購買。如果民眾不會用,診所可以給予衛教,但原則上還是希望民眾自行篩檢再回報結果。

疾管署-定點監測周報(這篇是 2009年. 沒找到新的...)






2023年10月31日 星期二

糖尿病足底檢查

2023-11-01
Comprehensive Foot Examination and Risk Assessment: A report of the Task Force of the Foot Care Interest Group of the American Diabetes Association, with endorsement by the American Association of Clinical Endocrinologists

Features that should be assessed during foot inspection are outlined in Table 3 and are discussed below.
Table 3—
Key components of the diabetic foot exam


足底檢查包括外觀檢視. 神經功能測試. 血管測試
外觀檢視包括皮膚及骨骼肌肉.
皮膚檢查重點.
皮膚狀態, 顏色. 厚度. 乾燥. 龜裂
冒汗
感染: 檢查足趾之間是否有黴菌感染
潰瘍
老繭.水泡

Dermatologic
skin status: color, thickness, drynes, cracking
sweating
infection: check between toes for fungal infection
ulceration
calluses/blistering: hemorrhage into callus?

骨骼肌肉檢查包括
是否變形. 雞爪狀. 肌肉萎縮 . 夏柯式神經骨關節病變(Charcot joint)
Charcot joint 與 DM foot 是不同的.

Musculoskeletal
deformity, e.g., claw toes, prominent metatarsal heads, Charcot joint (Fig. 1)
muscle wasting (guttering between metatarsals)

下圖來自 https://mass4d.com/blogs/clinicians-blog/types-of-foot-deformities


神經功能測試包括: 震動. 針刺. 踝關節反射, VPT
振動感覺閾值Vibration perception threshold (半定量音叉120-200HZ頻率)
Neurological assessment
    10-g monofilament + 1 of the following 4
vibration using 128-Hz tuning fork
pinprick sensation
ankle reflexes
VPT


General inspection
A careful inspection of the feet in a well-lit room should always be carried out after the patient has removed shoes and socks. Because inappropriate footwear and foot deformities are common contributory factors in the development of foot ulceration (1,5), the shoes should be inspected and the question “Are these shoes appropriate for these feet?” should be asked. Examples of inappropriate shoes include those that are excessively worn or are too small for the person's feet (too narrow, too short, toe box too low), resulting in rubbing, erythema, blister, or callus. Features that should be assessed during foot inspection are outlined in Table 3 and are discussed below.
Dermatological assessment.

The dermatological assessment should initially include a global inspection, including interdigitally, for the presence of ulceration or areas of abnormal erythema. The presence of callus (particularly with hemorrhage), nail dystrophy, or paronychia should be recorded (9), with any of these findings prompting referral to a specialist or specialty clinic. Focal or global skin temperature differences between one foot and the other may be predictive of either vascular disease or ulceration and could also prompt referral for specialty foot care (10–13).
Musculoskeletal assessment.

The musculoskeletal assessment should include evaluation for any gross deformity (14). Rigid deformities are defined as any contractures that cannot easily be manually reduced and are most frequently found in the digits. Common forefoot deformities that are known to increase plantar pressures and are associated with skin breakdown include metatarsal phalangeal joint hyperextension with interphalangeal flexion (claw toe) or distal phalangeal extension (hammer toe) (15–17). (Examples of these deformities are shown in Fig. 1.)

An important and often overlooked or misdiagnosed condition is Charcot arthropathy. This occurs in the neuropathic foot and most often affects the midfoot. This may present as a unilateral red, hot, swollen, flat foot with profound deformity (18–20). A patient with suspected Charcot arthropathy should be immediately referred to a specialist for further assessment and care.

Neurological assessment
Peripheral neuropathy is the most common component cause in the pathway to diabetic foot ulceration (1,4,5,7). The clinical exam recommended, however, is designed to identify loss of protective sensation (LOPS) rather than early neuropathy. The diagnosis and management of the latter were covered in a 2004 ADA technical review (7). The clinical examination to identify LOPS is simple and requires no expensive equipment.
Five simple clinical tests (Table 3), each with evidence from well-conducted prospective clinical cohort studies, are considered useful in the diagnosis of LOPS in the diabetic foot (1–7). The task force agrees that any of the five tests listed could be used by clinicians to identify LOPS, although ideally two of these should be regularly performed during the screening exam—normally the 10-g monofilament and one other test. One or more abnormal tests would suggest LOPS, while at least two normal tests (and no abnormal test) would rule out LOPS. The last test listed, vibration assessment using a biothesiometer or similar instrument, is widely used in the U.S.; however, identification of the patient with LOPS can easily be carried out without this or other expensive equipment.
10-g monofilaments.
Monofilaments, sometimes known as Semmes-Weinstein monofilaments, were originally used to diagnose sensory loss in leprosy (21). Many prospective studies have confirmed that loss of pressure sensation using the 10-g monofilament is highly predictive of subsequent ulceration (3,21,22). Screening for sensory loss with the 10-g monofilament is in widespread use across the world, and its efficacy in this regard has been confirmed in a number of trials, including the recent Seattle Diabetic Foot Study (4,21,23,24).
Nylon monofilaments are constructed to buckle when a 10-g force is applied; loss of the ability to detect this pressure at one or more anatomic sites on the plantar surface of the foot has been associated with loss of large-fiber nerve function. It is recommended that four sites (1st, 3rd, and 5th metatarsal heads and plantar surface of distal hallux) be tested on each foot.
The technique for testing pressure perception with the 10-g monofilament is illustrated in Fig. 2; patients should close their eyes while being tested. Caution is necessary when selecting the brand of monofilament to use, as many commercially available monofilaments have been shown to be inaccurate. Single-use disposable monofilaments or those shown to be accurate by the Booth and Young (23) study are recommended. The sensation of pressure using the buckling 10-g monofilament should first be demonstrated to the patient on a proximal site (e.g., upper arm). The sites of the foot may then be examined by asking the patient to respond “yes” or “no” when asked whether the monofilament is being applied to the particular site; the patient should recognize the perception of pressure as well as identify the correct site. Areas of callus should always be avoided when testing for pressure perception.
128-Hz tuning forks.
The tuning fork is widely used in clinical practice and provides an easy and inexpensive test of vibratory sensation. Vibratory sensation should be tested over the tip of the great toe bilaterally. An abnormal response can be defined as when the patient loses vibratory sensation and the examiner still perceives it while holding the fork on the tip of the toe (3,4).
Pinprick sensation.
Similarly, the inability of a subject to perceive pinprick sensation has been associated with an increased risk of ulceration (4). A disposable pin should be applied just proximal to the toenail on the dorsal surface of the hallux, with just enough pressure to deform the skin. Inability to perceive pinprick over either hallux would be regarded as an abnormal test result.

Ankle reflexes.
Absence of ankle reflexes has also been associated with increased risk of foot ulceration (4). Ankle reflexes can be tested with the patient either kneeling or resting on a couch/table. The Achilles tendon should be stretched until the ankle is in a neutral position before striking it with the tendon hammer. If a response is initially absent, the patient can be asked to hook fingers together and pull, with the ankle reflexes then retested with reinforcement. Total absence of ankle reflex either at rest or upon reinforcement is regarded as an abnormal result.Vibration perception threshold testing.
The biothesiometer (or neurothesiometer) is a simple handheld device that gives semiquantitative assessment of vibration perception threshold (VPT). As for vibration using the 128-Hz tuning fork, vibration perception using the biothesiometer is also tested over the pulp of the hallux. With the patient lying supine, the stylus of the instrument is placed over the dorsal hallux and the amplitude is increased until the patient can detect the vibration; the resulting number is known as the VPT. This process should initially be demonstrated on a proximal site, and then the mean of three readings is taken over each hallux. A VPT >25 V is regarded as abnormal and has been shown to be strongly predictive of subsequent foot ulceration

Vascular assessment

Peripheral arterial disease (PAD) is a component cause in approximately one-third of foot ulcers and is often a significant risk factor associated with recurrent wounds (5,25). Therefore, the assessment of PAD is important in defining overall lower-extremity risk status. Vascular examination should include palpation of the posterior tibial and dorsalis pedis pulses (10,26), which should be characterized as either “present” or “absent” (26).

Diabetic patients with signs or symptoms of vascular disease (Table 2) or absent pulses on screening foot examination should undergo ankle brachial pressure index (ABI) pressure testing and be considered for a possible referral to a vascular specialist. The ABI is a simple and easily reproducible method of diagnosing vascular insufficiency in the lower limbs. Blood pressure at the ankle (dorsalis pedis or posterior tibial arteries) is measured using a standard Doppler ultrasonic probe. This technique is outlined in Fig. 3. The ABI is obtained by dividing the ankle systolic pressure by the higher of the two brachial systolic pressures (8). An ABI >0.9 is normal, <0.8 is associated with claudication, and <0.4 is commonly associated with ischemic rest pain and tissue necrosis.

The ADA Consensus Panel on PAD recommended measurement of ABI in diabetic patients over 50 years of age and consideration of ABI measurement in younger patients with multiple PAD risk factors, repeating normal tests every 5 years (8). ABI may therefore be part of the annual comprehensive foot exam in these patient subgroups. ABI measurements may be misleading in diabetes because the presence of medial calcinosis renders the arteries incompressible and results in falsely elevated or supra-systolic ankle pressures. In the presence of incompressible calf or ankle arteries (ABI >1.3), measurements of digital arterial systolic pressure (toe pressure) or transcutaneous oxygen tension may be performed.


Risk classification and referral/follow-up

Once the patient has been thoroughly assessed as described above, he or she should be assigned to a foot risk category (Table 4). These categories are designed to direct referral and subsequent therapy by the specialty clinician or team (17,20) and frequency of follow-up by the generalist or specialist. Increased category is associated with an increased risk for ulceration, hospitalization, and amputation (17). Patients in risk category 0 generally do not need referral and should receive general foot care education and undergo comprehensive foot examination annually. Patients in foot risk category 1 may be managed by a generalist or specialist every 3–6 months. Consideration should be given to an initial specialist referral to assess the need for specialized treatment and follow-up. Those in categories 2 and 3 should be referred to a foot care specialist or specialty clinic and seen every 1–3 months.











2023年10月25日 星期三

降血壓藥物 norvasc(amlodipine)造成周邊水腫機率

2025-01-10 14:47 另一篇筆記. 比較各種鈣離子阻斷劑 CCB 發生周邊水腫的機率. 降血壓藥物-鈣離子阻斷劑造成水腫的機率

常見劑量每天 5mg. 發生水腫機率約 5%

Reported rates of peripheral edema are dose-dependent, ranging from 5% to 70% with a high dose. Only 5% of pedal edema was seen with a 5 mg dose, 25% with a 10 mg dose, whereas >75% was seen with 20 mg of daily dose.

J Pharm Technol. 2019 Apr; 35(2): 51–55. Published online 2018 Oct 31. doi:  10.1177/8755122518809005 PMCID: PMC6383103 
PMID: 34861024
Amlodipine-Induced Pedal Edema and Its Relation to Other Variables in Patients at a Tertiary Level Hospital of Kathmandu, Nepal 

Abstract
Background: Vasodilatory edema is a frequently encountered side effect among hypertensive patients using antihypertensive drugs. This dose-dependent adverse effect is seen more commonly with amlodipine, so low-dose combination therapy is often used and preferred in practice. Pedal edema following use of amlodipine is scarcely studied in Nepalese population so far. Objectives: To find out the prevalence of amlodipine-associated pedal edema and its relation with other variables among patients presenting to a tertiary care center of Kathmandu, Nepal. Methods: A prospective cross-sectional study was conducted among hypertensive patients using amlodipine in combination with or without other antihypertensive medications under regular follow-up in an outpatient department of internal medicine of Shree Birendra Hospital, Kathmandu, Nepal, during the 7-month period from September 2017 to March 2018. The prevalence of pedal edema and its relation with amlodipine dose, duration, and other factors were studied using χ2 test and logistic regression using SPSS version 22. Results: A total of 505 patients were observed during the study period, with the mean age of the population being 61.5 ± 13.4 years. Among the cases studied, edema was present in 79 (15.6%) cases. Use of amlodipine longer than 5 years was 21.65 (confidence interval [CI] = 9.575-48.970, P ˂ .001) times more likely to exhibit pedal edema; similarly, there was 2.149 (CI = 1.209-3.820, P = .009) times higher risk of having pedal edema in hypertensive individuals with other comorbidities. Increasing the dose of amlodipine has increased the likelihood of having pedal edema, but it is not statistically significant (odds ratio = 2.804, CI = 0.423-18.584, P = .285). Conclusion and Relevance: Significant number of hypertensive patients using amlodipine developed pedal edema. Likelihood of vasodilatory edema increases with the presence of comorbidities, higher dose, along with longer duration of amlodipine use.

野外與登山醫學-危險分級-高海拔疾病風險評估(表格) 風險等級 風險分級

2025-08-14 新增 2024 WMS指引的表格
這個表格是評估急性高海拔疾病風險(不是AMS風險)


















2025-08-04 修改 2024 CDC yellow book 表格中的翻譯

2023-10-25 16:08
NEJM 2001 High altitude illness 裡面沒有特別放上風險分級評估的表
NEJM 2013 Acute High Altitude Illness 

下圖來自美國CDC 2024 黃皮書l
是評估AMS風險(不是高海拔疾病風險)





下圖來自 uptodate. 引用的是 WMS 2014 指引, 評估高海拔疾病風險(非AMS風險)

評估高海拔疾病風險(非AMS)



下圖是 NEJM 2013 高海拔疾病風險評估 (非AMS風險)




2023年10月24日 星期二

野外與登山醫學-動物抓咬傷的緊急處置

2023-10-25 11:25AM
疾管署-似狂犬病或麗沙病毒感染 動物抓咬傷臨床處置指引 更新日期 2019 年 05 月 03 日
節錄自-狂犬病-治療照護-page 5

關於傷口的處置. 在這份指引有提到
㇐、 傷口清潔: 請立即及徹底的以肥皂及大量且流動清水清洗沖洗傷口至少 15 分鐘,完成 後用生理食鹽水將傷口洗淨,再用無菌棉將傷口處殘留液吸盡,避免在傷口 處殘留,再以優碘或 70%酒精消毒。 
二、 傷口處理: (㇐) 如果可能的話,避免縫合傷口,如須縫合,應儘可能地寬鬆,不可影響 血流及其他分泌物順暢地流出。 (二) 當傷口需同時施予免疫球蛋白浸潤注射時,建議在數小時後(≧2小時)再 進行縫合,這將可使抗體在縫合前能夠在組織內充分擴散。 (三) 請詳細檢查患者身體是否有動物抓咬傷之其他傷口,避免遺漏。 (四) 其它的治療,例如抗生素、破傷風疫苗或破傷風免疫球蛋白的施予,應 如同其他抓咬傷口的處理㇐樣。 

野外與登山醫學-蜂螫並不一定需打破傷風疫苗

2026-06-13
破傷風疫苗
1. 若過去曾接種三次以上破傷風疫苗. 且最後一次施打破傷風疫苗在5年內. 不需打破傷風疫苗(包括所有外傷或動物昆蟲螫咬傷)
2. 若是乾淨的 minor or clean wound 傷口(例如蜂螫), 過去曾施打三劑以上破傷風疫苗. 最後一劑是十年內. 不需要打破傷風疫苗
3. 台灣疾管署建議意外創傷高危險群十年打一次(不管是否最近有受傷)
4. 蜂螫可視為一般昆蟲螫咬傷. 美國疾管局建議. 昆蟲螫咬傷可施打破傷風疫苗
5. 目前文獻尚無蜂螫(膜翅目昆蟲)造成破傷風感染案例(from uptodate)

另一篇相關筆記. 破傷風疫苗施打時機 寫的比較詳細. 


2024-08-01 09:20AM 
破傷風與新冠疫苗可同時接種. 不須間隔兩周. (須或需., 須帶有強制意味)
疾管署出版品 2021年11月 COVID-19疫苗系列專欄:可以跟其他疫苗一起接種嗎? 節錄其中一段內容.
在COVID-19疫苗使用初期,國際間及WHO對與其他疫苗同時接種之建議均較保守。WHO之疫苗專家諮詢小組(Strategic Advisory Group of Experts on Immunization)於2021年對目前核准使用之各種COVID-19疫苗,均建議須與其他疫苗間隔至少14天接種,並強調此建議可能隨實證而更新。隨著COVID-19疫苗接種計畫展開,大規模資料顯示其安全性與有效性,為避免間隔時間接種可能造成接種率下降,美國疾病管制與預防中心(CDC)目前建議COVID-19疫苗與其他疫苗可同時或間隔任何時間接種,但若同一天施打多種疫苗,建議施打在不同部位(如距離超過1英吋以上);若與較常引起局部反應的疫苗同時接種,則盡可能施打在不同側手臂上。

2023-11-12 17:46補充. 
在臉書看到盧醫師的留言. 如果將蜂螫歸類在昆蟲螫咬叮咬. 美國疾管局建議. 昆蟲螫咬傷也可能發生破傷風感染. 所以打破傷風疫苗是合理的(但uptodate 的內文提到. 目前並無蜂螫引起破傷風感染的病例). 
筆記: 破傷風疫苗施打時機
2023-10-25 11:01AM
先說結論. 蜂螫並不一定需要打破傷風疫苗. 除非傷口同時受到泥土汙染.
但打破傷風是OK的. 理由是高風險群. 而非蜂螫. 

我們國家是這樣建議的~~ 沒有受傷的情況. 高風險群也可以定期施打. 
疾管署-破傷風Q&A  
Q: 破傷風有哪些高風險族群?
A: 沒有接種過疫苗或距離最後一次破傷風疫苗接種超過 10 年者。建議在工作中接觸土壤、污物、動物者及軍人、警察等意外創傷高危險群定期(每10年)追加破傷風類毒素以維持主動免疫力。
最後更新日期 2019/6/6

目前認為膜翅目螫傷不會造成破傷風感染. 螫傷的深度通常很淺. 目前並無任何已經發表的文獻, 證實膜翅目昆蟲螫傷發生破傷風
Uptodate- Bee, yellow jacket, wasp, and other Hymenoptera stings: Reaction types and acute management
Hymenoptera stings are considered "clean" for the purposes of tetanus vaccination. Stings are very superficial, and there are no published reports of tetanus infection following Hymenoptera stings. A tetanus booster is not necessary following a sting unless there was a concomitant soil-contaminated injury. (See "Tetanus-diphtheria toxoid vaccination in adults", section on 'Immunization for patients with injuries'.)

農業部-農業知識入口網(文圖 陸聲山 林業試驗所森林保護組)
虎頭蜂在分類上屬於昆蟲綱(Insecta)膜翅目(Hymenoptera)胡蜂科(Vespidae)中胡蜂亞科(Vespinae)之一屬(Vespa),民眾對虎頭蜂一詞相當熟悉,因為虎頭蜂螫人致死的案例時有所聞,這也是造成許多人聞「蜂」色變的主因。但其實一般大眾對虎頭蜂與相近似之胡蜂卻有諸多混淆,甚至也常將虎頭蜂與蜜蜂混為一談。由於農友們在從事農作時偶會遇到虎頭蜂或其他蜂類,本文主要針對作者較熟悉的蜂類(尤其是胡蜂)作一介紹,希望能使讀者經由了解胡蜂類的生態習性,而有助於對蜂螫的傷害預防。
膜翅目資料可參考維基百科

細腰亞目包括螞蟻及各種蜂類. 
台灣常見的胡蜂超過100種. 例如有阿里山黃胡蜂. 細黃胡蜂, 德國黃胡蜂, 長腳蜂. 獨居性的蜾蠃亞科(例如黃腹泥壺蜂)等等. 其中體型較大的被稱為虎頭蜂. 虎頭蜂通常是指其中體型較大具強烈攻擊性與毒性的蜂類. 全世界有23種虎頭蜂. 台灣有九種虎頭蜂. 虎頭蜂也可稱胡蜂或黃蜂. 但胡蜂不一定就是虎頭蜂. 

參考資料

全世界胡蜂屬共有23種,台灣記錄有9種[3]:



下面是同樣範圍不同出處的資料
台灣九種虎頭蜂
黑腹虎頭蜂 Vespa basalis:腹部全黑,體型雖小但性格最為凶猛,毒性最強,是台灣山林中最危險的蜂種之一。
中華大虎頭蜂(金環胡蜂)Vespa mandarinia:台灣體型最大的虎頭蜂。頭部橙黃色,腹部有明顯的橙黃色與黑色環帶,具強烈攻擊性。
黃腰虎頭蜂Vespa affinis:腹部前段為鮮明的金黃色,是都會區與平地最常見的種類。
黃跗虎頭蜂(黃腳虎頭蜂)Vespa velutina:腳部呈明顯的黃色,常出沒於中低海拔山區及步道。
擬大虎頭蜂(大陸稱三齒胡蜂)Vespa analis:外觀與中華大虎頭蜂相似但體型稍小,腹部具雙金環,個性較溫馴。
雙色虎頭蜂Vespa bicolor:因中胸背板黑色而得名,為台灣近年確認的新紀錄種。
威氏虎頭蜂Vespa wilemani:台灣特有種,主要分布於中高海拔山區。 

2023年10月22日 星期日

甲癬治療: 服用抗黴菌藥物 terbinafine 發生肝指數異常之機率

美國FDA統計. 發生肝指數異常機率 < 1%, 因肝指數異常需停藥機率在兒童及成人 < 0.5%. 發生嚴重肝指數異常機率 五萬~12萬分之一
因此FAD取消過去建議服藥之後4-6周常規追蹤肝指數建議(但給藥前還是建議測肝指數)

英國國民保健署NHS統計 < 1/1000
If you take terbinafine tablets for a long time, there's a small chance that they can affect your liver. This happens to less than 1 in 1,000 people. Your doctor may ask you to have a blood test to check that your liver is working properly.

另一篇文章提到的也是引用英國研究報告. 跟上面資料是同一篇研究 
In fact, a studyTrusted Source dating back to 1996 evaluated use of the medication in 9,879 UK patients — and while there was a risk for adverse effects, the study found liver problems in only 0.1% of study participants.

健保給付規定: 10.6.4. Terbinafine ( 如 Lamisil tab ):(85/1/1、91/4/1、98/8/1)限 1.手指甲癬及足趾甲癬病例使用, 每日 250 mg,手指甲癬限用 42 顆,需於 8 週內使用完畢。足趾 甲癬限用 84 顆,需於 16 週內使 用完畢。治療結束日起算,各在 6 及 12 個月內不得重複使用本品或 其他同類口服藥品。(98/8/1) 2.其他頑固性體癬及股癬病例使 用,每日一次,最長使用 2 週, 治療期間不得併用其他同類藥 品。 3.頭癬病例使用,每日一次,最長使 用 4 週,若確需延長治療時間,須 於病歷詳細載明備查。(98/8/1)

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