中国实验动物学报
中國實驗動物學報
중국실험동물학보
ACTA LABORATORIUM ANIMALIS SCIENTIA SINICA
2014年
5期
39-43
,共5页
宋磊%陈颖敏%张方亮%罗章源%张文赞%何奔
宋磊%陳穎敏%張方亮%囉章源%張文讚%何奔
송뢰%진영민%장방량%라장원%장문찬%하분
房颤%动物模型%长期遥测%程控高频电刺激%兔
房顫%動物模型%長期遙測%程控高頻電刺激%兔
방전%동물모형%장기요측%정공고빈전자격%토
Atrial fibrillation%Animal model%Long-term telemetering%Program-controlled high frequency electri-cal stimulation%Rabbit
目的:探索一种在无线遥测和刺激技术基础上的兔房颤模型的制作。方法新西兰兔皮下植入自主研发的植入式遥测刺激器,植入式遥测刺激器的制作是以TI公司(德州仪器)的MSP单片机和TI公司的RF无线收发芯片CC2250为核心开发设计。优化植入系统设计以满足新西兰兔房颤模型建立的探索实验;植入子植入新西兰兔腹部皮下,采集电极留置于左上肢和右上肢腋下皮下,两个刺激电极分别缝合于左心耳和左心房上,通过无线收发采集和刺激信号;实现利用Powerlab生理记录仪连续监测体表I导联心电信号,并通过专用计算机程序刺激软件,发放间歇(刺激2 s,暂停2 s)高频(频率20 Hz)阈上(强度2 mA,脉宽1 ms)刺激,若间歇期内出现房颤,则人为干预中止刺激,若转为窦性心律,则继续刺激。结果植入式遥测刺激器在体内可稳定工作(包括采集模拟心电信号和发放刺激)30 d,植入新西兰兔体内刺激3周后可诱导出房颤,持续时间>48 h。结论用新西兰兔代替比格犬建立基于无线遥测和刺激基础上的房颤模型是完全可行的,同时也体现了动物福利优化和替代原则。
目的:探索一種在無線遙測和刺激技術基礎上的兔房顫模型的製作。方法新西蘭兔皮下植入自主研髮的植入式遙測刺激器,植入式遙測刺激器的製作是以TI公司(德州儀器)的MSP單片機和TI公司的RF無線收髮芯片CC2250為覈心開髮設計。優化植入繫統設計以滿足新西蘭兔房顫模型建立的探索實驗;植入子植入新西蘭兔腹部皮下,採集電極留置于左上肢和右上肢腋下皮下,兩箇刺激電極分彆縫閤于左心耳和左心房上,通過無線收髮採集和刺激信號;實現利用Powerlab生理記錄儀連續鑑測體錶I導聯心電信號,併通過專用計算機程序刺激軟件,髮放間歇(刺激2 s,暫停2 s)高頻(頻率20 Hz)閾上(彊度2 mA,脈寬1 ms)刺激,若間歇期內齣現房顫,則人為榦預中止刺激,若轉為竇性心律,則繼續刺激。結果植入式遙測刺激器在體內可穩定工作(包括採集模擬心電信號和髮放刺激)30 d,植入新西蘭兔體內刺激3週後可誘導齣房顫,持續時間>48 h。結論用新西蘭兔代替比格犬建立基于無線遙測和刺激基礎上的房顫模型是完全可行的,同時也體現瞭動物福利優化和替代原則。
목적:탐색일충재무선요측화자격기술기출상적토방전모형적제작。방법신서란토피하식입자주연발적식입식요측자격기,식입식요측자격기적제작시이TI공사(덕주의기)적MSP단편궤화TI공사적RF무선수발심편CC2250위핵심개발설계。우화식입계통설계이만족신서란토방전모형건립적탐색실험;식입자식입신서란토복부피하,채집전겁류치우좌상지화우상지액하피하,량개자격전겁분별봉합우좌심이화좌심방상,통과무선수발채집화자격신호;실현이용Powerlab생리기록의련속감측체표I도련심전신호,병통과전용계산궤정서자격연건,발방간헐(자격2 s,잠정2 s)고빈(빈솔20 Hz)역상(강도2 mA,맥관1 ms)자격,약간헐기내출현방전,칙인위간예중지자격,약전위두성심률,칙계속자격。결과식입식요측자격기재체내가은정공작(포괄채집모의심전신호화발방자격)30 d,식입신서란토체내자격3주후가유도출방전,지속시간>48 h。결론용신서란토대체비격견건립기우무선요측화자격기출상적방전모형시완전가행적,동시야체현료동물복리우화화체대원칙。
Objective To explore the establishment of a rabbit model of atrial fibrillation by wireless telemetering and stimulation technology.Method An implantable telemetering stimulator which was independently designed and devel-oped was hypodermically implanted in New Zealand rabbits.The implantable telemetering stimulator was made with the core development and design of MSP single-chip microcomputer of TI Corporation ( Texas Instruments) and RF wireless trans-ceiver chip CC2250 of TI Corporation.The design of the implantation system was optimized to cater to the exploratory ex-periment to establish atrial fibrillation model of New Zealand rabbits.The implanter was implanted into the abdominal sub-cutaneous tissue of the New Zealand rabbits, the collecting electrodes were placed in the oxter subcutaneous tissues of the left and the right upper extremities, and the two stimulating electrodes were sutured at the left auricle and the left atrium. The signals were collected and stimulated by the wireless transceiver.The I-lead ECG electrical signals were continuously monitored on the body surface by a Powerlab physiological recorder.High frequency ( >20 Hz) suprathreshold stimulus ( intensity 2 mA, pulse width 1 ms) was emitted by specialized stimulation software of a computer program by the interval ( stimulating for 2 s and pausing for 2 s) .In case of atrial fibrillation during intervals, the stimulation could be stopped by hand.In case of sinus rhythm, the stimulation could be continued.Results The implantable telemetering stimulator can work stably in vivo ( including collecting stimulated electrocardio signal and emitting stimulations) for 30 days.Atrial fibril-lation can be induced after stimulating in vivo of the New Zealand rabbits for 3 weeks, with a duration of >48 h.Conclu-sions Applying implantable telemetering stimulator can build a New Zealand istead of beagles model of atrial fibrillation which is more consistent with welfare optimization and substitution principle for laboratory animals.