参考文献
[1]
GustiloRB, MendozaRM, WilliamsDN.
Problems in the management of type Ⅲ (severe) open fractures: a new classification of type Ⅲ open fractures[J].
J Trauma,
1984,
24(
8):
742-
746.
.
[2]
GustiloRB.
Interobserver agreement in the classification of open fractures of the tibia.The results of a survey of two hundred and forty-five orthopaedic surgeons[J].
J Bone Joint Surg Am,
1995,
77(
8):
1291-
1292.
.
[3]
JohansenK, DainesM, HoweyT, et al.
Objective criteria accurately predict amputation following lower extremity trauma[J].
J Trauma,
1990,
30(
5):
568-572, 572-573.
.
[4]
JedlickaN, SummersNJ, MurdochMM.
Overview of concepts and treatments in open fractures[J].
Clin Podiatr Med Surg,
2012,
29(
2):
279-
290.
.
[5]
GustiloRB, AndersonJT.
Prevention of infection in the treatment of one thousand and twenty-five open fractures of long bones: retrospective and prospective analyses[J].
J Bone Joint Surg Am,
1976,
58(
4):
453-
458.
.
[6]
GustiloRB, AndersonJT.
JSBS classics.Prevention of infection in the treatment of one thousand and twenty-five open fractures of long bones.Retrospective and prospective analyses[J].
J Bone Joint Surg Am,
2002,
84(
4):
682.
.
[7]
LeeC, PorterKM.
Prehospital management of lower limb fractures[J].
Emerg Med J,
2005,
22(
9):
660-
663.
.
[8]
RossaintR, BouillonB, CernyV, et al.
Management of bleeding following major trauma: an updated European guideline[J].
Crit Care,
2010,
14(
2):
R52.
.
[9]
KraghJF, O NeillML, BeebeDF, et al.
Survey of the indications for use of emergency tourniquets[J].
J Spec Oper Med,
2011,
11(
1):
30-
38.
[10]
BeekleyAC, SebestaJA, BlackbourneLH, et al.
Prehospital tourniquet use in Operation Iraqi Freedom: effect on hemorrhage control and outcomes[J].
J Trauma,
2008,
64(
2
Suppl):
S28-S37, S37.
.
[11]
JagodaAS, CampbellM, KarasSJ, et al.
Clinical Policy for Procedural Sedation and Analgesia in the Emergency Department[J].
Ann Emerg Med,
1998,
31(
5):
663-
677.
.
[12]
GodwinSA, CaroDA, WolfSJ, et al.
Clinical policy: procedural sedation and analgesia in the emergency department[J].
Ann Emerg Med,
2005,
45(
2):
177-
196.
.
[13]
SchauerSG, MoraAG, MaddryJK, et al.
Multicenter, prospective study of prehospital administration of analgesia in the U.S. Combat Theater of Afghanistan[J].
Prehosp Emerg Care,
2017,
21(
6):
744-
749.
.
[14]
PorterK.
Ketamine in prehospital care[J].
Emerg Med J,
2004,
21(
3):
351-
354.
.
[15]
O'ConnorRE, SamaA, BurtonJH, et al.
Procedural sedation and analgesia in the emergency department: recommendations for physician credentialing, privileging, and practice[J].
Ann Emerg Med,
2011,
58(
4):
365-
370.
.
[16]
VivienB, AdnetF, BounesV, et al.
Sedation and analgesia in emergency structure.Reactualization 2010 of the Conference of Experts of Sfar of 1999[J].
Ann Fr Anesth Reanim,
2012,
31(
4):
391-
404.
.
[17]
GodwinSA, BurtonJH, GerardoCJ, et al.
Clinical policy: procedural sedation and analgesia in the emergency department[J].
Ann Emerg Med,
2014,
63(
2):
247-
258.
.
[18]
MinerJR, GrayRO, BahrJ, et al.
Randomized clinical trial of propofol versus ketamine for procedural sedation in the emergency department[J].
Acad Emerg Med,
2010,
17(
6):
604-
611.
.
[19]
PhillipsW, AndersonA, RosengreenM, et al.
Propofol versus propofol/ketamine for brief painful procedures in the emergency department: clinical and bispectral index scale comparison[J].
J Pain Palliat Care Pharmacother,
2010,
24(
4):
349-
355.
.
[20]
RuthWJ, BurtonJH, BockAJ.
Intravenous etomidate for procedural sedation in emergency department patients[J].
Acad Emerg Med,
2001,
8(
1):
13-
18.
.
[21]
DochezE, van GeffenGJ, BruhnJ, et al.
Prehospital administered fascia iliaca compartment block by emergency medical service nurses, a feasibility study[J].
Scand J Trauma Resusc Emerg Med,
2014,
22:
38.
.
[22]
McRaePJ, BendallJC, MadiganV, et al.
Paramedic-performed fascia iliaca compartment block for femoral fractures: a controlled trial[J].
J Emerg Med,
2015,
48(
5):
581-
589.
.
[23]
QuinnRH, WedmoreI, JohnsonEL, et al.
Wilderness Medical Society practice guidelines for basic wound management in the austere environment: 2014 update[J].
Wilderness Environ Med,
2014,
25(
4
Suppl):
S118-
S133.
.
[24]
OzdemirG, YilmazB, KomurB, et al.
Treatment preferences in Turkey for open fracture of the tibial diaphysis[J].
Acta Orthop Traumatol Turc,
2017,
51(
2):
133-
137.
.
[25]
中国医师协会急诊医师分会,中国人民解放军急救医学专业委员会,北京急诊医学学会,等.
成人破伤风急诊预防及诊疗专家共识[J].
临床急诊杂志,
2018,
19(
12):
801-
811.
.
Society of Emergency Physicians, Association of Chinese Doctors; Professional Committee of Emergency Medicine, The Chinese People's Liberation Army; Beijing Society of Emergency Medicine; et al.Experts consensus on emergency prevention, diagnosis and treatment of adult tetanus[J].J Clin Emerg, 2018, 19(12): 801-811..
[26]
PatzakisMJ, WilkinsJ, MooreTM.
Considerations in reducing the infection rate in open tibial fractures[J].
Clin Orthop Relat Res,
1983(
178):
36-
41.
.
[27]
PatzakisMJ, WilkinsJ.
Factors influencing infection rate in open fracture wounds[J].
Clin Orthop Relat Res,
1989(
243):
36-
40.
.
[28]
IorioML, HarperCM, RozentalTD.
Open distal radius fractures: timing and strategies for surgical management[J].
Hand Clin,
2018,
34(
1):
33-
40.
.
[29]
OndariJN, MasikaMM, OmbachiRB, et al.
Unblinded randomized control trial on prophylactic antibiotic use in gustilo Ⅱ open tibia fractures at Kenyatta National Hospital, Kenya[J].
Injury,
2016,
47(
10):
2288-
2293.
.
[30]
SaveliCC, MorganSJ, BelknapRW, et al.
Prophylactic antibiotics in open fractures: a pilot randomized clinical safety study[J].
J Orthop Trauma,
2013,
27(
10):
552-
557.
.
[31]
RodriguezL, JungHS, GouletJA, et al.
Evidence-based protocol for prophylactic antibiotics in open fractures: improved antibiotic stewardship with no increase in infection rates[J].
J Trauma Acute Care Surg,
2014,
77(
3):
400-407, 407-408, 524.
.
[32]
HauserCJ, AdamsCJ, EachempatiSR.
Surgical Infection Society guideline: prophylactic antibiotic use in open fractures: an evidence-based guideline[J].
Surg Infect (Larchmt),
2006,
7(
4):
379-
405.
.
[33]
DunkelN, PittetD, TovmirzaevaL, et al.
Short duration of antibiotic prophylaxis in open fractures does not enhance risk of subsequent infection[J].
Bone Joint J,
2013,
95-B(
6):
831-
837.
.
[34]
AndersonA, MillerAD, BrandonBP.
Antimicrobial prophylaxis in open lower extremity fractures[J].
Open Access Emerg Med,
2011,
3:
7-
11.
.
[35]
HoffWS, BonadiesJA, CachechoR, et al.
East Practice Management Guidelines Work Group: update to practice management guidelines for prophylactic antibiotic use in open fractures[J].
J Trauma,
2011,
70(
3):
751-
754.
.
[36]
ZalavrasCG.
Prevention of infection in open fractures[J].
Infect Dis Clin North Am,
2017,
31(
2):
339-
352.
.
[37]
CarverDC, KuehnSB, WeinleinJC.
Role of systemic and local antibiotics in the treatment of open fractures[J].
Orthop Clin North Am,
2017,
48(
2):
137-
153.
.
[38]
HarleyBJ, BeaupreLA, JonesCA, et al.
The effect of time to definitive treatment on the rate of nonunion and infection in open fractures[J].
J Orthop Trauma,
2002,
16(
7):
484-
490.
.
[39]
AshfordRU, MehtaJA, CrippsR.
Delayed presentation is no barrier to satisfactory outcome in the management of open tibial fractures[J].
Injury,
2004,
35(
4):
411-
416.
.
[40]
ReussBL, ColeJD.
Effect of delayed treatment on open tibial shaft fractures[J].
Am J Orthop (Belle Mead NJ),
2007,
36(
4):
215-
220.
[41]
CrowleyDJ, KanakarisNK, GiannoudisPV.
Irrigation of the wounds in open fractures[J].
J Bone Joint Surg Br,
2007,
89(
5):
580-
585.
.
[42]
SrourM, InabaK, OkoyeO, et al.
Prospective evaluation of treatment of open fractures: effect of time to irrigation and debridement[J].
JAMA Surg,
2015,
150(
4):
332-
336.
.
[43]
WeberD, DulaiSK, BergmanJ, et al.
Time to initial operative treatment following open fracture does not impact development of deep infection: a prospective cohort study of 736 subjects[J].
J Orthop Trauma,
2014,
28(
11):
613-
619.
.
[44]
BhandariM, JerayKJ, PetrisorBA, et al.
A trial of wound irrigation in the initial management of open fracture wounds[J].
N Engl J Med,
2015,
373(
27):
2629-
2641.
.
[45]
AnglenJO.
Comparison of soap and antibiotic solutions for irrigation of lower-limb open fracture wounds. A prospective, randomized study[J].
J Bone Joint Surg Am,
2005,
87(
7):
1415-
1422.
.
[46]
SpragueS, PetrisorB, JerayK, et al.
Wound irrigation does not affect health-related quality of life after open fractures: results of a randomized controlled trial[J].
Bone Joint J,
2018,
100-B(
1):
88-
94.
.
[47]
PapeHC, TornettaPR, TarkinI, et al.
Timing of fracture fixation in multitrauma patients: the role of early total care and damage control surgery[J].
J Am Acad Orthop Surg,
2009,
17(
9):
541-
549.
.
[48]
MarshJL, NepolaJV, WuestTK, et al.
Unilateral external fixation until healing with the dynamic axial fixator for severe open tibial fractures[J].
J Orthop Trauma,
1991,
5(
3):
341-
348.
.
[49]
EdwardsCC, SimmonsSC, BrownerBD, et al.
Severe open tibial fractures. Results treating 202 injuries with external fixation[J].
Clin Orthop Relat Res,
1988 (
230):
98-
115.
[50]
SirkinM, SandersR, DiPasqualeT, et al.
A staged protocol for soft tissue management in the treatment of complex pilon fractures[J].
J Orthop Trauma,
1999,
13(
2):
78-
84.
.
[51]
HenleyMB, ChapmanJR, AgelJ, et al.
Treatment of type Ⅱ, ⅢA, and ⅢB open fractures of the tibial shaft: a prospective comparison of unreamed interlocking intramedullary nails and half-pin external fixators[J].
J Orthop Trauma,
1998,
12(
1):
1-
7.
.
[52]
RobertsCS, PapeHC, JonesAL, et al.
Damage control orthopaedics: evolving concepts in the treatment of patients who have sustained orthopaedic trauma[J].
Instr Course Lect,
2005,
54:
447-
462.
.
[53]
BenirschkeSK, AgnewSG, MayoKA, et al.
Immediate internal fixation of open, complex tibial plateau fractures: treatment by a standard protocol[J].
J Orthop Trauma,
1992,
6(
1):
78-
86.
[54]
KregorPJ, StannardJA, ZlowodzkiM, et al.
Treatment of distal femur fractures using the less invasive stabilization system: surgical experience and early clinical results in 103 fractures[J].
J Orthop Trauma,
2004,
18(
8):
509-
520.
.
[55]
MoedBR, KellamJF, FosterRJ, et al.
Immediate internal fixation of open fractures of the diaphysis of the forearm[J].
J Bone Joint Surg Am,
1986,
68(
7):
1008-
1017.
.
[56]
Court-BrownCM, McQueenMM, QuabaAA, et al.
Locked intramedullary nailing of open tibial fractures[J].
J Bone Joint Surg Br,
1991,
73(
6):
959-
964.
.
[57]
GriffinM, MalahiasM, KhanW, et al.
Update on the management of open lower limb fractures[J].
Open Orthop J,
2012,
6:
571-
577.
.
[58]
BhandariM, ZlowodzkiM, TornettaPR, et al.
Intramedullary nailing following external fixation in femoral and tibial shaft fractures[J].
J Orthop Trauma,
2005,
19(
2):
140-
144.
.
[59]
GovenderS, CsimmaC, GenantHK, et al.
Recombinant human bone morphogenetic protein-2 for treatment of open tibial fractures: a prospective, controlled, randomized study of four hundred and fifty patients[J].
J Bone Joint Surg Am,
2002,
84(
12):
2123-
2134.
.
[60]
MundiR, ChaudhryH, NiroopanG, et al.
Open tibial fractures: updated guidelines for management[J].
JBJS Rev,
2015,
3(
2).
.
[61]
LiuX, ZhangH, CenS, et al.
Negative pressure wound therapy versus conventional wound dressings in treatment of open fractures: a systematic review and meta-analysis[J].
Int J Surg,
2018,
53:
72-
79.
.
[62]
PhilandrianosC, MoullotP, GayAM, et al.
Soft tissue coverage in distal lower extremity open fractures: comparison of free anterolateral thigh and free latissimus dorsi flaps[J].
J Reconstr Microsurg,
2018,
34(
2):
121-
129.
.
[63]
GopalS, MajumderS, BatchelorAG, et al.
Fix and flap: the radical orthopaedic and plastic treatment of severe open fractures of the tibia[J].
J Bone Joint Surg Br,
2000,
82(
7):
959-
966.
.
[64]
SmallJO, MollanRA.
Management of the soft tissues in open tibial fractures[J].
Br J Plast Surg,
1992,
45(
8):
571-
577.
.
[65]
ChoEH, ShammasRL, CarneyMJ, et al.
Muscle versus fasciocutaneous free flaps in lower extremity traumatic reconstruction: a multicenter outcomes analysis[J].
Plast Reconstr Surg,
2018,
141(
1):
191-
199.
.
[66]
HallockGG.
Utility of both muscle and fascia flaps in severe lower extremity trauma[J].
J Trauma,
2000,
48(
5):
913-
917.
.
[67]
MubarakSJ, OwenCA, HargensAR, et al.
Acute compartment syndromes: diagnosis and treatment with the aid of the wick catheter[J].
J Bone Joint Surg Am,
1978,
60(
8):
1091-
1095.
.
[68]
McQueenMM, Court-BrownCM.
Compartment monitoring in tibial fractures. The pressure threshold for decompression[J].
J Bone Joint Surg Br,
1996,
78(
1):
99-
104.
.
[69]
von KeudellAG, WeaverMJ, AppletonPT, et al.
Diagnosis and treatment of acute extremity compartment syndrome[J].
Lancet,
2015,
386(
10000):
1299-
1310.
.
[70]
MubarakSJ, OwenCA.
Double-incision fasciotomy of the leg for decompression in compartment syndromes[J].
J Bone Joint Surg Am,
1977,
59(
2):
184-
187.
.
[71]
CohenMS, GarfinSR, HargensAR, et al.
Acute compartment syndrome. Effect of dermotomy on fascial decompression in the leg[J].
J Bone Joint Surg Br,
1991,
73(
2):
287-
290.
.
[72]
DebnathUK, MaripuriSN, GuhaAR, et al.
Open grade Ⅲ "floating ankle" injuries: a report of eight cases with review of literature[J].
Arch Orthop Trauma Surg,
2007,
127(
8):
625-
631.
.
[73]
张贵春,梁进.
创伤性截肢治疗体会[J].
中国矫形外科杂志,
2005,
13(
6):
479-
480.
.
ZhangGC, LiangJ. Experiences in treatment of traumatic amputation[J]. Orthop J Clin, 2005, 13(6):479-480. .
[74]
赵国强,朱建,杨利平,等.
儿童外伤性截肢的手术治疗策略[J].
中华急诊医学杂志,
2010,
19(
5):
479-
481.
.
ZhaoGQ, ZhuJ, YangLP, et al. Treatment strategy for traumatic amputation in children[J]. Chin J Emerg Med, 2010, 19(5): 479-481. .
[75]
MacKenzieEJ, BosseMJ, KellamJF, et al.
Factors influencing the decision to amputate or reconstruct after high-energy lower extremity trauma[J].
J Trauma,
2002,
52(
4):
641-
649.
.
[76]
KhalilIM, LivingstonDH.
Intravascular shunts in complex lower limb trauma[J].
J Vasc Surg,
1986,
4(
6):
582-
587.
.
[77]
MathewS, SmithBP, CannonJW, et al.
Temporary arterial shunts in damage control: Experience and outcomes[J].
J Trauma Acute Care Surg,
2017,
82(
3):
512-
517.
.
[78]
WebbLX, BosseMJ, CastilloRC, et al.
Analysis of surgeon-controlled variables in the treatment of limb-threatening type-open tibial diaphyseal fractures[J].
J Bone Joint Surg Am,
2007,
89(
5):
923-
928.
.
[79]
CelikozB, SengezerM, IsikS, et al.
Subacute reconstruction of lower leg and foot defects due to high velocity-high energy injuries caused by gunshots, missiles, and land mines[J].
Microsurgery,
2005,
25(
1):
3-14, 15.
.
[80]
BosseMJ, McCarthyML, JonesAL, et al.
The insensate foot following severe lower extremity trauma: an indication for amputation?[J].
J Bone Joint Surg Am,
2005,
87(
12):
2601-
2608.
.
[81]
CzernieckiJM.
Rehabilitation in limb deficiency. 1. Gait and motion analysis[J].
Arch Phys Med Rehabil,
1996,
77(
3
Suppl):
S3-
S8.
.
[82]
MattesSJ, MartinPE, RoyerTD.
Walking symmetry and energy cost in persons with unilateral transtibial amputations: matching prosthetic and intact limb inertial properties[J].
Arch Phys Med Rehabil,
2000,
81(
5):
561-
568.
.
[83]
BusseJW, JacobsCL, SwiontkowskiMF, et al.
Complex limb salvage or early amputation for severe lower-limb injury: a meta-analysis of observational studies[J].
J Orthop Trauma,
2007,
21(
1):
70-
76.
.
[84]
Saddawi-KonefkaD, KimHM, ChungKC.
A systematic review of outcomes and complications of reconstruction and amputation for type ⅢB and ⅢC fractures of the tibia[J].
Plast Reconstr Surg,
2008,
122(
6):
1796-
1805.
.
[85]
BosseMJ, MacKenzieEJ, KellamJF, et al.
An analysis of outcomes of reconstruction or amputation after leg-threatening injuries[J].
N Engl J Med,
2002,
347(
24):
1924-
1931.
.
[86]
TintleSM, KeelingJJ, ShawenSB, et al.
Traumatic and trauma-related amputations: part Ⅰ: general principles and lower-extremity amputations[J].
J Bone Joint Surg Am,
2010,
92(
17):
2852-
2868.
.
[87]
ScaleaTM, BoswellSA, ScottJD, et al.
External fixation as a bridge to intramedullary nailing for patients with multiple injuries and with femur fractures: damage control orthopedics[J].
J Trauma,
2000,
48(
4):
613-621, 621-623.
.
[88]
JansenJO, ThomasR, LoudonMA, et al.
Damage control resuscitation for patients with major trauma[J].
BMJ,
2009,
338:
b1778.
.
[89]
PapeHC, GiannoudisPV, KrettekC, et al.
Timing of fixation of major fractures in blunt polytrauma: role of conventional indicators in clinical decision making[J].
J Orthop Trauma,
2005,
19(
8):
551-
562.
.
[90]
PapeHC, SchmidtRE, RiceJ, et al.
Biochemical changes after trauma and skeletal surgery of the lower extremity: quantification of the operative burden[J].
Crit Care Med,
2000,
28(
10):
3441-
3448.
.